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650-294 TelePresence Video province Engineer for(R) Express

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650-294 exam Dumps Source : TelePresence Video province Engineer for(R) Express

Test Code : 650-294
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Cisco Cisco TelePresence Video Field

From theory to Multi-Billion dollar business: Cisco TelePresence Redefining the playing box | killexams.com actual Questions and Pass4sure dumps

Over six years in the past, i used to subsist asked to build and lead a Cisco crew to incubate fresh rising technologies that can generate $1 billion worth of revenue and permit Cisco to ensnare key market transitions, riding the community as a platform.  collectively, this entrepreneurial team investigated market trends and client needs and prerogative away realized that video and greater chiefly video communications was going to subsist a game changer and seriously change continuously the style individuals talk and collaborate.  i worship to say: phrases carry which means; an image says a thousand words; but video says every sole of it.

That turned into the delivery of a imaginative and prescient and theory called telepresence.  It’s about supplying a video adventure so intuitive, so practical and natural that it recreates an in-adult journey. nowadays, TelePresence is a smartly based market class, in a multi-billion dollar market where Cisco owns over 50% market share.  I suppose honored and privileged to had been fragment of this experience with the Cisco group.  they now maintain completed a much deal to subsist delighted with and there is lots extra to dream and innovate.

What started as their experience to retailer shuttle charges and optimize worker productiveness for agencies global, has nowadays developed to accelerating time to market, increasing access to experts (affected person care, education and other expert far off services) and transforming how agencies carry out business.

Now that we’ve reached their 5-12 months milestone with Cisco TelePresence, it’s time to focus on the residence their vision will win us from here. Their blueprint is basic: they are dedicated to making Cisco TelePresence available to each person, far and wide.

Sounds too ambitious? relate us at a reside webcast on October 25 at 9:00 a.m. PT the residence they can unveil the subsequent fragment in their evolution and redefine TelePresence.

Pre-register these days for the virtual Launch adventure/Ustream (Talk2Cisco).

Share:


CDW diagnosed as Cisco TelePresence Video grasp approved expertise provider associate | killexams.com actual Questions and Pass4sure dumps

VERNON HILLS, ill.--(enterprise WIRE)--CDW announced nowadays that it has done TelePresence Video grasp approved expertise company (ATP) status from Cisco. This designation recognizes CDW, a Cisco Gold partner, as having fulfilled the working towards requirements and program must haves to promote, deploy and assist Cisco TelePresence Video items and solutions on the grasp level.

The Cisco TelePresence Video grasp ATP software gives a brand fresh fashion of working in which each person, every sole over can subsist extra productive via face-to-face collaboration over Cisco TelePresence Video options. A Cisco TelePresence Video master ATP accomplice has the gold yardstick depth of talents and skill in deploying the entire Cisco video endpoint portfolio, which comprises single- and triple-reveal Cisco TelePresence devices, customized TelePresence suites and infrastructure solutions. Cisco TelePresence Video master ATP partners possess deep networking and superior Cisco Unified Communications capabilities, regional to global insurance and a powerful and ripen functions apply.

“CDW is proud to add Cisco TelePresence Video grasp ATP accomplice to their Cisco master Certifications in unified communications, managed services and protection. here is a fabulous accomplishment in their business,” said Christine Holloway, vp of converged infrastructure solutions, CDW. “As attested through the eight Cisco colleague of the year awards they received earlier this 12 months, CDW has a a hit, lengthy-term partnership with Cisco that allows for us to invariably meet their clients’ precise know-how needs. They price Cisco’s potential in telepresence, and are excited to labor with their customers as they undertake this creative technology.”

“The Cisco TelePresence Video grasp ATP program is designed to permit companions to win expertise of the large market opportunities forward – not simplest within the telepresence house however also in the typical collaboration market,” mentioned Richard McLeod, senior director of collaboration for international channels at Cisco. “As a Cisco TelePresence Video master ATP partner, CDW has made an funding within the earnings, technical and life cycle features capabilities necessary to bring the trade’s most finished and interoperable Cisco TelePresence Video portfolio.”

The Cisco authorized technology provider (ATP) software is fragment of the Cisco go-to-market strategy for emerging applied sciences. The application helps Cisco to define the expertise, talents and services that channel partners deserve to efficiently sell, install and help an emerging expertise. as the market changes, an ATP designation may well subsist discontinued or can also evolve into a Cisco specialization.

about the Cisco TelePresence and Video Collaboration answer

Cisco TelePresence® and Video collaboration options deliver life-like, high-definition, conferencing amenities with advanced audio and video, enabling members to fulfill their colleagues, purchasers and company companions throughout a virtual desk. participants can savor a equal-room assembly event, in spite of the fact that they are located in diverse places everywhere. contributors can additionally meet greater frequently and luxuriate in more productive sessions, assisting to expand enterprise interactions whereas probably structure greater client relationships, accelerating earnings cycles, enhancing undertaking administration and forming tighter integration with far flung places of work.

About CDW

CDW is a number one issuer of know-how solutions for business, executive, training and healthcare. Ranked No. 32 on Forbes’ checklist of the us’s largest deepest agencies, CDW features committed account managers who assist shoppers select the prerogative expertise products and services to meet their wants. The enterprise’s retort architects present potential in designing customized options, whereas its superior technology engineers assist shoppers with the implementation and lengthy-time period administration of those options. Areas of headquarters of attention encompass software, network communications, notebooks/mobile contraptions, facts storage, video screens, computers, printers and solutions similar to virtualization, collaboration, protection, mobility, data core optimization and cloud computing. CDW turned into headquartered in 1984 and employs greater than 6,600 coworkers. For the trailing twelve months ended September 30, 2011, the trade generated earnings of $9.4 billion. For greater guidance, search counsel from CDW.com.

Cisco, the Cisco emblem and Cisco TelePresence are trademarks or registered logos of Cisco and/or its affiliates in the U.S. and different countries. a list of Cisco's emblems can subsist create at www.cisco.com/go/trademarks.


Cisco's Telepresence Video Chat is anticipated for homes next Week | killexams.com actual Questions and Pass4sure dumps

we now maintain been hearing for a long time that Cisco changed into alive to to win down with Joe Blow on the street, so it's not at every sole astonishing to listen to that subsequent week they may subsist rumored to unveil a "affordable" domestic-telepresence product.

When they impart inexpensive, they imply it may not cost a gross lot a couple of of their Flip camcorders, at round $200 sponsored. AllThingsD is listening to that at a press experience next Wednesday Cisco will launch the provider with both Comcast or Verizon, and that the unsubsidized rate might subsist across the $500 mark.

For years now Cisco has been demo-ing its telepresence know-how, which has been attainable to companies alive to to video conference everywhere.

there's an glaring covet for Cisco to win this expertise into homes, but when Skype is already on many computer systems and TVs—for free—it should subsist a battle to convince Mums and Dads they should shell out a pair hundred notes for some thing that simplest in reality offers more desirable HD decision.

Sitting in entrance of a tv and video-chatting alas is rarely that much of a discrete attitude for Cisco. [AllThingsD]


650-294 TelePresence Video province Engineer for(R) Express

Study pilot Prepared by Killexams.com Cisco Dumps Experts


Killexams.com 650-294 Dumps and actual Questions

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650-294 exam Dumps Source : TelePresence Video province Engineer for(R) Express

Test Code : 650-294
Test name : TelePresence Video province Engineer for(R) Express
Vendor name : Cisco
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From Gene Editing to A.I., How Will Technology Transform Humanity? | killexams.com actual questions and Pass4sure dumps

“A geneticist, an oncologist, a roboticist, a novelist and an A.I. researcher walk into a bar.” That could subsist the setup for a very faulty crack — or a tremendously fascinating conversation. Fortunately for us, it was the latter. On a blustery evening in late September, in a private play at a bar near Times Square, the magazine gathered five brilliant scientists and thinkers around a table for a three-hour dinner. In the (edited) transcript below — moderated by label Jannot, a Story editor at the magazine and a former editor in chief of current Science — you can note what they had to impart about the future of medicine, health reliance and humanity.

MARK JANNOT: For years, many pregnant women maintain undergone amniocentesis to test for rare metabolic disorders and other fetal issues. And couples who exhaust in vitro fertilization can screen the embryos for genetic abnormalities. What sorts of advances in genetic screening and manipulation are coming, and where carry out you note that taking us?

CATHERINE MOHR: When I was pregnant with my daughter, my husband and I were joking, “Well, if she gets the best of both of us, she’ll subsist a superhero, and if she gets the worst of both of us, she’s not going to submit it out of first grade.” And so they were rolling the genetic dice, which you carry out when you elect to maintain a child. It’s not totally random, of course; there’s every sole kinds of much things about your mate — that’s why you chose them — and hopefully there’s some pretty noble things about you, too. But the temptation to engineer what you arbiter of as the best combination, as they become more capable of doing it, I arbiter it’s going to subsist irresistible for a lot of people. You’re investing so much of your life into this diminutive being, and you’re going to worship this child, and you want to give them every advantage in life. They are already screening for diseases to avoid passing on their “bad” genes, but this same technology will let us start screening for their “best” genes — the ones they really want to pass on. As screening becomes cheaper, easier and more reliable, and more people are using assisted-reproductive technologies, I note us, as a society, sliding down that slippery slope pretty far, one couple at a time, each trying to carry out what’s best for the child they are hoping to bring into the world.

SIDDHARTHA MUKHERJEE: It’s certainly a tempting path, toward a potentially terrifying slope. But that only works if you carry out in vitro fertilization and create a pool of testable embryos. Then you maintain to biopsy those embryos-in-dishes, sequence their genes, identify and interpret the gene variants that you want to select (Variant A and B and C and D) and implant the “desirable” ones.

GEORGE CHURCH: Or they may revolve to gene editing. If, for example, you maintain a dominant-allele disorder, fancy Huntington’s disease or Marfan syndrome, and you want to maintain children, you could edit the sperm, change that allele so that every sole sperm are wholesome and your offspring will subsist fine. every sole sperm gain from spermatogonial flow cells in the man’s testes. You can exhaust editing tools and labor on flow cells in Petri dishes so that you’re removing the faulty allele and replacing it with DNA that has been designed and synthesized on computer-controlled machines. And then you can implant a absolute population in which you’ve checked that the edit is what you wanted it to be, with every sole cells with only the desired “on target” changes. This has been done in mice. It’s a much opportunity. It’s only one time, and they’re noble for life. In principle.

JANNOT: And why is that not being done now?

CHURCH: Until recently, they didn’t maintain noble methods for doing gene therapy that they could apply to editing flow cells, sperm cells.

JENNIFER EGAN: How arduous is it to edit genes?

MUKHERJEE: Well, that’s one of the surprises, is how extraordinarily smooth it is. There are quiet technical challenges, and some of them may subsist arduous to surmount, but the protocol is quite simple. They recently edited a gene in human blood flow cells to enable therapy for some forms of leukemia. We’ve sequenced the genomes of the edited cells and maintain not create a sole “off target” result thus far, although they are quiet looking. For other genes, off-target effects maintain been reported, so it seems that it’s case dependent. But over all, the allegiance of the system seems quite remarkable.

CHURCH: At this point, there’s nothing published in the literature demonstrating successful editing of human sperm flow cells, the germline. But if you want to edit the DNA of, say, pigs, it’s very smooth with Crispr, which is a set of editing tools that uses enzymes, guided by RNA and proteins, to submit a change at a precise location in your DNA. You’re injecting a petite thing in that changes as diminutive as one basis pair out of six billion, in each cell. So it’s nanosurgery — very precise and automatically in many cells at once.

MUKHERJEE: It’s fancy taking a massive encyclopedia and saying: travel to Volume 7, Section 8, Page 240, Paragraph 5, and change the word “this” to the word “that.” I’m simplifying, of course.

MOHR: And to exhaust your encyclopedia analogy, everyone who is unlucky enough to maintain their edition of the encyclopedia printed with “this” gets sickle-cell anemia, and everyone whose edition has “that” doesn’t. But, George, while you are motto they can’t quite carry out gene editing of the germline cells for producing genetic-disease-free children, editing genes in the adult — gene therapies aimed at altering every sole of the ripen cells in an already-formed organ or a cancer — you’re motto that’s closer?

CHURCH: Some gene therapies involve adding missing genes, others involve subtracting toxic versions of genes and some involve precise editing. And yes, it’s getting closer; there are some gene therapies that are already approved for human use.

MUKHERJEE: At least one that is approved is for retina diseases. Not gene editing — changing the endemic genes in the genome — but introducing fresh genetic material into human cells. That’s because introducing viruses carrying fresh genetic material into the eye is easier. You can inject viruses because the immune system does not look to subsist as dynamic in the retina, and the injected virus doesn’t spread every sole over the body.

But the ones that involve gene editing are on their way, they’re in the pipeline. There’s a lab at Stanford that’s doing gene editing on blood flow cells for sickle-cell disease. Then you can transplant those blood cells and replace the diseased cells, and the sickle-cell disease should subsist cured. We’ll win comfortable with it, and by console I connote not just becoming comfortable with technically how to carry out it, but realizing it doesn’t every sole of a sudden occasions some horrible cancer, or some terrible disease, which, if you request me, I arbiter is quite unlikely. But at some point the conclusion will gain down to the F.D.A. and other organizations; they’ll maintain to say, let’s travel forward. Bottom line, their capacity to become more comfortable with the consequences of gene editing will gain from diseases where the stakes, as it were, are more simple and higher — especially with a disease fancy acute myeloid leukemia, where there’s an extremely elevated mortality rate — and then we’ll backtrack their course into reproductive technology.

CHURCH: I arbiter it’s more likely we’ll subsist using gene therapy first in childhood diseases, based on the realization that many diseases submit permanent damage by the time the child is born. fancy blindness, for specimen — if you don’t revise it very early in life, you can “cure” blindness in the sense that they can note photons, but they can’t really process them into an image.

MOHR: Blindness is an nosy one in this context. It isn’t life-threatening fancy the leukemias Sid was talking about, but the problem is an absence of function, which seems in some ways less risky to tackle. If you fail trying to fix it, you haven’t made it worse — the person is quiet blind — but if you carry out succeed, there is only upside. I can imagine these are the kinds of deficits we’d subsist most alive to to try to address because of the course they as people arbiter about risk: We’re O.K. with risking that things will win better, but not too delighted doing it when there is a haphazard they’ll win worse.

CHURCH: Then there are the diseases that won’t finger people until late in life, but they could subsist treated with gene therapy very early in life. This may subsist the case with Alzheimer’s. They already know that the alleles that are highly associated with Alzheimer’s are something called APP, for early-stage Alzheimer’s, and the ApoE e4 variant, for late-stage. They could change them in the sperm cell to an allele that already exists in the population. And you’re changing it essentially 100 percent because it’s going through this bottleneck of a sole flow cell. And you’re not trying to change it to a gene that no one’s ever tested before; it’s a gene that’s been “tested” millions of times in the millions of people in whom it occurs naturally.

MOHR: So, in the same course that a woman might win folate before and during pregnancy to obviate neural tube defects in the fetus, you’d maintain your colleague win the gene therapy to carry out some allele substitution. “O.K., honey, I worship a lot about you, but we’re going to need to edit out that cystic fibrosis variant and tweak those Alzheimer’s alleles of yours before they start thinking about kids.”

EGAN: Speaking as someone who is terrified of Alzheimer’s, engineering it away is an appealing prospect. But I wonder: Who exactly would maintain access to this technology? Even basic reproductive technologies fancy I.V.F. are expensive, so less feasible for indigent people. One unintended consequence, it seems to me, could subsist a petite number of extremely wholesome genetically engineered elites and a large and comparatively ill and genetically challenged underclass.

CHURCH: But every sole of these technologies are constantly getting cheaper — eye at what happened with the cost of sequencing the genome, from billions when they first did it to a few hundred dollars today. I arbiter these therapies would nigh up similar to preventive medicines fancy vaccines. Vaccines are enhancement relative to their ancestors, and they’ve been able to subsist made ubiquitous. Their ancestors lived in mortal consternation of every sole these diseases, and they just win it for granted that we’re immune to them.

EGAN: I’m struck by the tremendous self-confidence with which you talk about these things, almost as if they had already happened. You’re thinking forward to a point when every sole of this will subsist a matter of course, but I’m quiet back at the point where it every sole sounds so speculative. I find myself thinking, Whoa, what about operator error? I mean, nothing technical works simply or perfectly, ever. And yet so much of what they win for granted now — flying in airplanes, for specimen — would maintain struck me as equally hubristic in the planning stages. And of course it is catastrophic when a plane crashes, but that’s an extreme rarity.

REGINA BARZILAY: We’re working with a intricate system that they are only dawn to understand today. It’s well known from selective breeding of domestic animals that selecting for one target trait often brings along many other undesirable and often unexpected traits. Let’s impart you guys identified a genetic fix to a problem. How likely is it that changing “this” to “that,” following your analogy, is going to bring some other, unexpected side effects that they cannot control?

CHURCH: Well, in some of these things, you’re literally changing a gene to what is healthy. For instance, in the case of sickle cell, changing a particular gene variant to what everybody else has is probably pretty safe as long as you can subsist certain that’s what’s actually happening. So the probability of unexpected consequences seems quite low. Once they travel forward, as they win more and more confidence, they will start taking bigger and bigger steps; then they might nigh up with something that has unintended consequences. You know, eliminating smallpox from the entire world could maintain had negative consequences. They rolled the dice and figured that they could back up if there were some problem. To arbiter that genetics is irreversible is no more likely than that eradicating smallpox is irreversible.

JANNOT: What are the most nosy applications for A.I. in medicine prerogative now?

BARZILAY: This is a much question. Companies fancy Google and Facebook track every action you win online and exhaust that to build a model of your preferences. They then exhaust this model to personalize the complete user experience, the content you see, the products they recommend to you, the advertisements they note you. In some ways they know more about you than you know about yourself. But if you travel to any clinic, for cancer, heart disease, you name it — there is no A.I.

I scholarly this in a very personal way. When I was 43, I went in for a routine mammogram, and every sole of a sudden I was diagnosed with breast cancer. This was a vast shock because, to the best of my knowledge, nobody in my family had ever been diagnosed with cancer. At every point in my treatment, I had many more questions than my doctors had answers to. I bethink I did my mammogram, and they said, “Your cancer is really tiny.” I said “Great!” Then they went to M.R.I., and suddenly they note cancer every sole over. Then they did a biopsy, and they discovered it’s actually small; the M.R.I. was a fallacious positive. How can they maintain this high-resolution M.R.I. modality and quiet not know that this is a fallacious positive?

For me as a computer scientist working in simulated intelligence, it seemed obvious to train a machine to submit these kinds of predictions. If you eye at what was happening in computer vision, A.I. systems could already identify very subtle distinctions between images, at a flat of detail that’s arduous for the human eye to differentiate. Why carry out people need to undergo unnecessary procedures and live with months of mistrust while the technology that can fully resolve the situation already exists?

And this was just one of many steps in the treatment pipeline where I saw how simulated intelligence could transform cancer diagnosis and treatment. As an A.I. researcher, I was stunned to note every sole these opportunities to champion patients squandered. From a patient’s perspective, it felt cruel. We’re talking about well-understood technology commercially deployed in other industries, not brand-new research. And this is a general trend. It doesn’t matter what your disease is; today, A.I. is not yet fragment of clinical treatment.

MOHR: This is a problem that really affects providers also — patients’ medical data are kept in every sole of these divide systems, so it’s arduous to win every sole the data about even one patient if there are multiple doctors involved in the care, let lonely being able to compare the data on many different patients. It evolved this course because they used to maintain paper records with narrative descriptions of each patient’s condition, and their privacy laws never anticipated the tools they would maintain today — and what they could carry out with the data.

JANNOT: So what needs to happen?

MOHR: Revamping their practices and regulations around medical data while maintaining individual privacy will subsist essential both for patients fancy Regina and for A.I. researchers fancy Regina. It’s likely to subsist slow, but it is starting.

BARZILAY: For my part, when I finally came back to my labor at M.I.T., my experience as a cancer patient had totally changed my perspective, and I could not just travel back to my outmoded research. I started asking: What is the best course to expend my time, my mental energy? I could not forget the suffering and twinge I saw in the hospital. I wanted to exhaust data to provide answers now. It took me a while to find like-minded clinical collaborators and zoom in on specific questions that were meaningful to me but also could subsist implemented in the clinic.

Ultimately that brought me to two areas. One of them relates to something very basic in clinical research — extracting material information from patients’ electronic records. Even though every hospital sits on a gold mine of data, it’s severely underutilized by reliance providers and clinical researchers, because the records are mostly in text. Unless they’re specifically trained, machines cannot read these stories; they expect a database where information is properly structured. And so, today, if you as a patient want to know how patients fancy yourself responded to treatment in your hospital, you can’t find the answer. Even in the most prestigious journals, almost every sole the studies that exhaust past patient data carry out that data extraction by hand, which is expensive and late and dramatically limits the scope of these studies.

In my core province of research, natural language processing, we’ve developed lots of tools that can automate this task. And so they applied those tools to create a database of more than 100,000 patients with breast disease from Massachusetts general and other colleague hospitals that spans decades. Now with one simple query you can find a cohort of patients with the same disease features and study it over time.

Another thing I’m working on relates to reading mammograms. Today the risk models used in clinical exercise are very imprecise. Their capacity to prognosticate who is going to win cancer is very, very low. Their understanding was to let the machine algorithm eye for patterns in the raw mammographic image: If it looks at the mammogram, from five years earlier, of a woman who went on to develop cancer, can it detect patterns?

The first step was to labor with Connie Lehman, head of breast-cancer radiology at M.G.H., to exhaust radiologists’ best judgment to train the model. And that did help the predictive results, but they felt that it didn’t fully gain the goal. They wanted the machine to utilize every sole the information in the image, not just the things that radiologists are trained to spot as disease markers. They trained the machine to eye at the gross image, and they fed in every sole the data about outcomes, and they said: What is the likelihood that this person is going to win cancer in a inevitable time? This system worked way, course better than any risk models currently in clinical practice.

We are now thinking of expanding their labor to prescreen for lung and pancreatic cancer. Imagine how it can change the game if these diseases, which are now diagnosed late, when they are largely uncurable, could subsist detected early — how many lives can subsist saved. That is the course that A.I. can transform medicine. It will identify patterns far too subtle for humans to identify.

MOHR: Regina is talking about a very specific benevolent of A.I. — machine learning and natural language processing, rather than what they arbiter of in current culture, robots in the movies who walk and talk and crack jokes. We’ll maintain lots of shapely analysis capability fancy Regina is talking about long before they maintain C-3PO.

In surgery, we’re also starting to exhaust the same sorts of tools that Regina is applying to radiology images and natural language analysis of medical records, but we’re doing it with surgical videos and data from operations, data that they can readily harvest from surgical robots. These are machines that surgeons operate as extensions of themselves, enabling them to effect extremely delicate surgeries, through petite incisions, and watch what’s going on inside the patient’s carcass via a video feed. They can actually note better than if they had slit the patient open. And the machine records every movement made and captures that video of the operation.

It is incredible how much a trained human can disclose from just looking at a sole frame of a surgical procedure. A well-trained surgical resident can walk into an operating play where a surgery is underway, and can glance up and with one eye at the screen know what benevolent of procedure it is, what step you are at in the procedure — they know what’s going to betide next, and they can disclose if it’s going well or not, using clues fancy if you’ve got a lot of blood in the field, or from looking at the carcass language of every sole the people in the operating room. Is the surgeon stressed out? Has the music been turned down? Are people quiet talking? What are they saying? There’s every sole kinds of clues.

We can exhaust the data in those videos, exhaust machine learning and natural language processing to train an A.I. to subsist able to pick up on every sole these same clues and to subsist able recognize the same things the resident can, and then ideally to subsist able to champion you with what might subsist the best next step. It would subsist fancy providing every surgeon with the perfect surgical resident.

To achieve this, it isn’t just recognizing what is in the picture or the sounds; these algorithms need to understand the context, where you are in the procedure, what’s going to betide and what should ordinarily betide next. To carry out every sole that, they need to train them on a lot of data, looking at how a thousand different surgeons carry out exactly that same step, and what best practices are, and maybe clustered into five different styles of doing this particular surgery so you can disclose which step to recommend next. The key is that by turning surgery into data, they can now start to exhaust these remarkably powerful machine-learning tools to resolve and learn from these data. But first you need data. We’re lucky with their robots, but in many areas of medicine it is arduous to win your hands on the benevolent of data you need.

JANNOT: So, George, as you mentioned earlier, we’ve seen exponential decreases in the cost of sequencing a genome. I imagine cheap genome sequencing leads to ubiquitous genome sequencing, which leads to a superabundant fresh stream of data to plumb for insights and fresh health advances.

CHURCH: That’s right. We’ve gone from it costing almost $3 billion for a clinically unacceptable genome in 2004 to less than $1,000 in 2015 for a high-quality genome that precisely analyzes the DNA you inherited from your mother and father. I just started a company called Nebula Genomics, whose aim is to submit it zero dollars or less. At this point everyone should subsist getting paid to sequence their genomes. Because the system could deliver something on the order of a million dollars every time they deliver a sole child from a rare genetic disease. That million dollars should then subsist spread out to every sole people who participated, including the 95 percent of people who didn’t win any faulty news.

MUKHERJEE: In terms of what will drive future advances, there is the gross aspect of the genome, and then there’s the gross aspect of what people maintain called the phenome — things that they do, things that they express, environmental things that betide to us, how they interact with the environment. Both are data sets. One of them is now a highly accessible data set, and with Nebula it will become a zero-dollar data set. The other one is not a zero-dollar data set, yet. But very soon you can imagine carrying some benevolent of GoPro, in which data becomes so cheap that you can start really monitoring that second data set, what you do, what you eat, whether you run, how much you run, the number of Fitbit steps, etc. Imagine the density of individuated information that comes from every sole this.

One implication is that 25, 50, 250 years from now, they become a benevolent of clinical-trial society in which empirically driven decisions are constantly popping up. But by clinical-trial society, I connote every sole sorts of questions, because the information net becomes so affluent — and the capacity to understand or deconvolute that information, because of computational power and because of A.I.-dependent algorithms, becomes so affluent — that they inaugurate to matter aspects of human behavior, human selves, that were previously considered outside the realm of assessment to a benevolent of deeper clinical assessment.

MOHR: The natural extension of that is, they maintain some benevolent of personal doomsday clock. And each action that they win is either extending it or decrementing it. So, I result something faulty in my mouth and I start to devour it, and I note that that dropped my doomsday clock a diminutive bit. I travel out for a race and note that it bumps my doomsday clock up a diminutive bit — I can note the immediate projected result of every sole of the actions I take. If they could measure every sole of those things, people would subsist carrying their doomsday-clock algorithms around.

EGAN: What about privacy? If every fact about my carcass can subsist known, and if my knowledge of those facts depends on corporations helping me to track and measure the data, I will not subsist able to control whose hands that information falls into. As to what they carry out and arbiter and express, sociable media is already quantifying their behavior, in exchange for giving us a platform and access. They pay a price for opening ourselves to corporate data systems in exchange for information; ultimately, anyone will subsist able to know anything about anyone, and that’s a vulnerability.

MOHR: Privacy is at the heart of the problem around availability of medical data for training the machine-learning algorithms that they were talking about earlier. Those of us who eye at the data and note every sole the noble it could carry out maintain a arduous time imagining hurting people with that same data, and yet the possibility exists that the very things that teach us how to champion people who maintain a condition will allow others to discriminate against them or victimize them because of that condition. These are arduous problems, but they should try to figure out how to win the greatest societal noble out of this data without putting those who donate it at risk — the benefit to us every sole is so potentially great. To modest away from it because it is “hard to do” has victims, too — someone who dies when they didn’t know how to champion them, knowledge that would maintain been available if they had been able to pool their data — that person is worth figuring out how to save. We’re already figuring this out first in the diseases fancy cancer because patients are very motivated to partake their data.

MUKHERJEE: Yes, and it begins to raise the question of too much information. With cancer they are already micromonitoring through blood tests, visual tests, etc. The crucial bar that they maintain to cross, for cancer, is whether those tests actually maintain an impact on saving lives or not. Ultimately the question is whether they nigh up detecting cancers that are clinically relevant, invasive, aggressive, likely to slay you — or will they subsist detecting thousands of cancers that aren’t actually material and won’t slay you and occasions every sole sorts of economic consequences. This phenomenon is called “overdiagnosis,” and it’s a actual concern among those who create cancer-detection tests. My view is that they will eventually find ways to discriminate one from the other. But there are people who are skeptics in the province who feel that they will subsist overrun with useless information.

MOHR: It’s every sole about feedback loops. If you’re trying to control something and you want a specific outcome, you want to subsist measuring continuously, and measuring in a course that allows you to immediately disclose the effects of each thing you do, because the thing you’re trying to change is behavior. They can already carry out continuous glucose monitoring with a patch that just pierces the skin.

CHURCH: You might even maintain an inside/outside thing, where the skin is intact, but you’ve got something on the inside that’s communicating.

MOHR: Well, in Sweden people are having RFID chips implanted in their skin so that they can pay, just with this thing in their skin. fancy Apple Pay.

CHURCH: It’s probably less invasive than tattooing.

JANNOT: What will it connote if we’re going through their life getting constant feedback about their bodies now, their bodies in the future?

EGAN: I can only retort that as a fiction writer, because as a person, I don’t live that course and I don’t want to. Because I’m not a scientist, I’m interested in these things as they pertain to human inner life. And I gain at it as someone who is uninterested in machines for their own sake. I arbiter they’re dull.

MOHR: For what it’s worth, I don’t arbiter Jenny needs to subsist interested in her data for the monitoring of it to subsist useful to her at some point. They monitor their electricity exhaust continuously. How often carry out you eye at your electricity meter? You never eye at it. Unless you win an unusually elevated bill, or something flags it. Then you’re happy it was being measured.

MUKHERJEE: I expect that those who are well won’t look, but the ill will look. And the ill could subsist not just the physically ill; they could subsist the anxious, could subsist the mentally ill, could subsist those of us who maintain anxieties about their children, their futures, could subsist societies that are in peril.

JANNOT: What’s this going to carry out to hypochondria?

MOHR: Yeah, that could subsist a problem. Imagine your carcass giving you “likes” from your measured parameters. Hypochondriacs would subsist fancy social-media addicts. Or maybe they’d just become extreme optimizers.

EGAN: There’s a paranoid vision that comes prerogative alongside it, which is: “There’s a machine inside me doing something, and I maintain to win rid of it.” It doesn’t matter if a machine is there or not, that possibility is going to live in the minds of people who arbiter that way.

BARZILAY: But would you win it implanted if you didn’t want it?

EGAN: You might consternation that someone else had implanted it in you. During the world wars, people every sole over the world worried that German spies were hidden around them. Imagine what it might subsist fancy to consternation something that may subsist inside you. arbiter about how telecommunications technology has saturated their inner lives — their hyperemphasis on the visual, the curating and pomp of daily life, the constant monitoring of others. In the end, the technology seeps into their private experience. So when I arbiter of someone installing a device inside his or her carcass to pay bills, I’m appalled. But as a fiction writer, I’m ecstatic.

JANNOT: So, let’s impart that every sole this stuff works. They maintain a lot of monitoring, they maintain a lot of much data — what’s the goal of it all?

MOHR: If I arbiter about my goals for myself, it leads into why I maintain chosen this particular mission for my career — why everyone at this table has chosen to delve as deeply into the things they carry out — it’s about improving the human condition, and also, not incidentally, making the science better for when they and their loved ones need it. It’s why I build minimally invasive surgical tools. This is also why I preserve up to date on my screening tests and arbiter about better ways of monitoring the body: If at some point I win cancer, I want it to subsist Stage 1, and I’d fancy a surgical excision to subsist a cure in that situation, and I want a tiny incision. Using monitoring and technology to carry out petite course corrections, rather than needing to carry out salvage when they are too far along in an illness.

CHURCH: When it comes to how they arbiter about changing aging from their current normal, there are two major strategies here: One is extending longevity, and the other is aging reversal. The problem with longevity extension is, if you’re not careful, you extend some of the weaker years of your life, which is not what they want. Aging reversal on the other hand sounds a diminutive more speculative, but there are several examples demonstrated in mice where you can revert outmoded adult cells to embryonic stage by using a transcription factor to regulate inevitable genes. Another reason to carry out aging reversal rather than longevity is that it’s arduous to win funding for a long tribulation of a longevity drug, even for a veterinary drug, because if you impart it’s going to extend a dog’s life by 10 years, that’s a 10-year clinical trial. If you impart that within five weeks it’s going to submit them stronger and more resistant to injury, then that’s a five-week experiment.

MUKHERJEE: In terms of longevity, the diseases that are most likely to slay us are neurological diseases and heart disease and cancer. In some other countries, there is tuberculosis and malaria and other infectious diseases, but here it’s the habitual diseases that dominate. There are three ways to arbiter about these habitual diseases. One is the disease-specific way. So, you assault Alzheimer’s as Alzheimer’s; you assault cancer as cancer. The second one is that you forget about the disease-specific manners of attacking diseases and you assault longevity or aging reversal in general. You change diet, change genes, change whatever else — they might convoke them “trans factors,” which would simply override the “cis factors” that existed for individual diseases. And the third option is some combination of that and some digital form of immortality, which is that you record yourself forever, that you clone yourself and someway pass along that recording. Which is to impart that the carcass is just a repository of memories, images, times. And as a repository, there’s nothing special about it. The carcass per se, the mortal coil, is just a coil.

EGAN: I feel of two minds about longevity; on one hand, I want to live to subsist very, very old, partly because I had kids on the late side and I want to know their children as my mother — who had me at 24 — has known mine. But taking a step back, the mass possibility of extreme longevity has a selfish, devouring aspect. I mean, we’re taxing the planet so arduous as it is, the least they can carry out is not hang around forever!

JANNOT: And will they really want to? I mean, I realize this is a fanciful question, but if this every sole works in, say, 25 years, will they subsist happier, will they maintain less sorrow in their society?

EGAN: I don’t know, because they already confront so much less death than people did, say, before antibiotics. But does having fewer of those losses really submit us happier?

CHURCH: After de-aging — or as fragment of it — they may set happiness itself as a goal. They maintain clearly set as goals simple measures fancy lowering cholesterol, but we’re just dawn to study genetically engineering behavioral phenomena related to happiness.

MOHR: I’m not certain they really understand enough about sorrow and contentment to know. There was a book on people in extreme and terrible environments fancy concentration camps, and then also on people’s just general malaise. The goals were looking at what were the characteristics of people who were psychologically resistant to tragedy. And what seemed to subsist most primary were meaning, mastery and autonomy — feeling that there is some benevolent of signification associated with things you do, working toward the acquisition of fresh skills and the capacity to submit choices for yourself. When you’ve got those three things, you are more resistant to tragedy. Maybe that is the clandestine to contentment.

MUKHERJEE: But if machines are doing every sole the work, then we’ll maintain nobody of those things. They won’t maintain mastery, they won’t maintain meaning, they won’t maintain autonomy.

MOHR: But we’ll maintain know-how — know-how and mastery-oriented things fancy learning musical instruments.

CHURCH: But their future selves may not consider that rewarding — if their musical instrument is worse than the machine’s musical instrument, their chess worse than the machine’s chess. If their mastery is lower, signification is lower, because what does it connote to subsist able to subsist a indigent imitation of a machine?

EGAN: Maybe a machine will subsist able to play the cello better than a human, but they travel to the philharmonic to hear Yo-Yo Ma. Humans are more nosy than machines, modest and simple.

MOHR: comic you mention cello, because that is the instrument I play. There are plenty of people, and even probably some machines, who can play the cello better than I do, but that doesn’t win signification away. I worship the feeling of progression as I attain mastery — the beauty or the frustration in the moment. And it is my election to preserve trying — to preserve creating. I arbiter there is quiet much potential for humans to relish their lives in the time after menial labor is done by machines.

BARZILAY: I actually believe that machines can champion us achieve their goals better than they can carry out on their own. They are already using technology to expand their cognitive capacity — for instance, with machine translation they can read documents in alien languages that they don’t know. Why can’t they expand this cognitive assistance to happiness? Happiness means different things to different people, but it is often linked to specific behaviors. Machines maintain immense capacity to bethink their actions and prognosticate their future behavior. This gives them the capacity to champion us modify their behavior so they become their better selves. In my case, a simple heart-monitoring app changed the frequency and intensity of my running. The app gives points for achieving inevitable fitness goals. When I first saw it, I just laughed and thought, Who can subsist motivated by these silly rewards? But guess what? Every morning at 5 a.m., I am running. Rain, M.I.T. deadlines, sleepiness — nothing stops me from getting my running points. And this change in my life has really made me happier.

MOHR: Exactly! You maintain clearly create purpose in getting better at running, and even though a car could drive you faster, that isn’t the point at all. But both of their examples need bodies. Sid, in your vision of the uploaded consciousness, you’re assuming that the carcass wears out but the mind can persist. I miracle if there isn’t another ceiling beyond that in which the consciousness no longer wants to subsist conscious. carry out you win immortality by uploading and then you feel this horrible sense of eternal ennui because you were uploaded and can no longer resolve to learn to play the cello or travel running along the Charles River?

MUKHERJEE: You’re stuck being conscious.

EGAN: I arbiter we’re forgetting a basic veracity about human life: Transience is what makes it precious. The inevitability of death infuses their lives with signification and urgency. arduous to imagine sustaining those qualities in an eternally uploaded consciousness. You’re left with just sensation. I’m not certain that’s a gain in the end.

CHURCH: Well, if you maintain simple aging reversal, so you actually feel like, I changed from being 64 to being 24 — I can carry out everything I could carry out when I was 24 plus I maintain the experience of being older, and the open-ended explorations ahead of reading and writing their universe — I doubt that I’m going to maintain a serious case of ennui.

MOHR: You could even win up the cello.


How Telerobotics Can Reshape Their Workspace | killexams.com actual questions and Pass4sure dumps

Peter Hirst Contributor

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At a conference eventual October, I encountered a fascinating “creature” named AVA that I mentioned in a blog post shortly afterwards.

Though extraordinarily helpful in keeping a conversation going with another conference attendee, AVA was not a person. She (or perhaps I should impart “it”) was a telepresence-enabled robot that made it feasible for an Internet of Things World Forum participant to attend the conference in Chicago while remaining physically in Germany.

Seeing AVA made a sturdy impression on me. So much so that earlier this year I ordered a similar robot to note if they could enable their team at the MIT Sloan School of Management’s Office of Executive Education to labor remotely without missing out on more sociable aspects of work-life in the office.

We already were using the accustomed array of remote working technologies—chat, video conferencing, the ubiquitous email, and even virtual-reality avatars—but I was noticing that teammates who labor mostly or entirely remotely seemed quiet to subsist at a disadvantage. It is too smooth to forget the person on the phone in the middle of the conference table, or even waving frantically at you from the vast screen at the nigh of the room, and those people certainly carry out not benefit from every sole the side conversations or spontaneity of being able to drop into a colleague’s office for a chat.

In contrast, they are finding that the telepresence robots (we now maintain three of them for an office of 35 staff) give their remote colleagues a flat of human assignation that helps us to labor well together.

Our robot is essentially an iPad on wheels that a remote user can operate and steer around the structure using a web browser or iPhone App. They can drive themselves into a conference play or to another person’s office, for instance, or even to a water cooler or lunch table. The remote user gets an eye-level view of the people they are engaging with, and their more or less life-size face is at eye flat for us too. This way, they maintain found, they can subsist fragment of conversations in a much more natural and organic way.

We maintain also started to experiment with the telepresence robots as a course to attend executive education programs, to give participants who are unable to subsist there in person the capacity to win fragment in the learning experience in a more meaningful course than a traditional video link or webcast. They quiet believe very strongly, of course, in the power of getting together in person, but when that is not feasible or practical, telepresence robots look to subsist a viable alternative.

Space Tech Moves Closer To Home

Telepresence robots are an specimen of the much broader province of telerobotics, an locality of engineering that has been poignant steadily away from science fiction into their everyday lives. Telerobots, simply, are robots that are controlled by people to effect tasks remotely. fancy many technologies that they win for granted today, telerobotics got its start (and early R&D funding) in the space exploration and military fields. For example, Curiosity rover made it feasible for NASA researchers to gather data on the surface of Mars. And they are now sadly chummy with the image of remote controlled robots being used to defuse improvised explosive devices (IEDs).

Another specimen that started with a defense application and spawned major scientific, educational and commercial outcomes was pioneered by the legendary deep-sea explorer Dr. Robert Ballard from Woods hollow Oceanographic Institution. He famously used remotely operated submarines in his discovery of the Titanic’s wreck and many other well-known shipwrecks. Today, WHOI scientists are using robots to virtually connect classrooms with underwater expeditions in actual time, so that students can experience the excitement of exploration and discovery first-hand.

Autonomous underwater vehicle Sentry

Autonomous underwater vehicle Sentry

Telepresence robots are being used in a wide variety of other applications ranging from medicine to toxic consume cleanup to know-how installations. In hard-to-reach communities in Canada, a telerobot named Zeus serves as the eyes and hands of Dr. Mehran Anvari who performs surgeries remotely from St Joseph’s Hospital in Hamilton, Ontario.

As of eventual year, Dr. Anvari has conducted over 20 operations using telecommunications, robotics, and skilled nurses on site. “It’s the same as if I were sitting in the operating room,” he told the BBC. “I maintain both my hands on the robot the same course I would maintain instruments in both hands.”

Closer to home, researchers from MIT’s Department of Mechanical Engineering maintain built a bipedal robot named HERMES that has human split-second reflexes, allowing it to equipoise while performing intricate tasks. The engineers envision HERMES being very useful at disaster sites and other unsafe environments, with its precise movements controlled by a remote human operator.

HERMES punches through drywall while keeping its balance, guided by a human operator.

HERMES punches through drywall while keeping its balance, guided by a human operator.

Telerobotics, Telecommuting and Accessibility

These and countless other examples of people using robots to effect labor remotely made me miracle how tremendously useful this could subsist for making more workplaces accessible to people with physical disabilities. It’s primary to note the dissimilarity between telepresence and telecommuting, which has been a current option for people with mobility challenges.

A growing trend in many industries, telecommuting is actively promoted by organizations that champion people with disabilities find meaningful employment. labor Without Limits, a Massachusetts network of engaged employers and innovative, collaborative partners that aims to expand employment among individuals with disabilities, cites telecommuting as a highly useful appliance for employers interested in making their workplaces more accessible. I wrote about their assignation with this fine organization in a previous post.

However, telecommuting has recently gain under legal scrutiny as a “reasonable accommodation” per the Americans with Disabilities Act (ADA). Just fancy the Ford Motor Company that was the beneficiary of the Sixth Circuit Court conclusion when it reversed its previous view to vouchsafe telecommuting as “reasonable accommodation” to a disabled employee, many employers are resistant to telecommuting, insisting that labor tasks need to subsist performed face to face.

Perhaps telepresence robots could champion decipher that problem by allowing employees to engage with colleagues, vendors, or customers not only in actual time, but also face to face (via robot), and subsist able to “move around” an office or a manufacturing floor?

Regardless, I hope that more enlightened employers will note the merit of expanding their mindset beyond “reasonable accommodation” and into “enabled workplace” for everyone.

In the future, no doubt more advanced assistive technologies, prosthetics, “bionics,” fresh therapies, and the fancy being developed at MIT and elsewhere, will maintain profoundly profitable impacts for people animated and working with mobility challenges and disability (both physical and cognitive.) With an ageing population, of course, that will subsist an increasing number of us!

Enter Machine-Enabled Workforce

In their best-selling book “The Second Machine Age,” my colleagues Erik Brynjolfsson, professor of Management at MIT Sloan, andAndrew McAfee, co-director of the MIT Initiative on the Digital Economy, debate some very serious concerns about robots replacing people in the workforce. According to their findings, robots today are taking over not only the areas of labor that benefit from automation—like factories, warehouses, and distribution centers—but also “knowledge work” that requires performing intricate cognitive tasks. In the opening chapter, the authors caution us about “the second machine age unfolding prerogative now.”

They note it as “an inflection point in the history of their economies and societies (…) but one that will bring with it some difficult challenges and choices.” Despite some rather grim predictions, Brynjolfsson and McAfee are optimistic about the future of work.

And so are the authors of a recent Harvard trade Review article Julia Kirby, editor at large at the Harvard trade Review, and Thomas Davenport, professor of Information Technology & Management at Babson College. Kirby and Davenport silhouette five highly tangible approaches that humans involved in knowledge labor can win to remain material and successful in the workforce of the future.

Combining telerobotics with other technologies that are already enhancing their labor and animated spaces could subsist a much boon to employers looking to tap into diverse talent pools. In its Global Human Capital Trends 2015 report, Deloitte lists “Machines as Talent” as one of the major trends and encourages Human Resources professionals to “focus on the opportunities cognitive technologies present through collaboration between people and machines to champion submit companies more efficient, productive, and profitable, and jobs more meaningful and engaging.”

As MIT Sloan professor of Management and Information Technology Thomas Malone said, “the future of labor is not man v. machine, but man plus machine.” You can learn more about the matter in Prof. Malone’s fresh online executive education course, intelligent Organizations 4DX, in which he and every sole the program participants will subsist meeting as avatars in a 3D virtual-world classroom.

Happy Humans Are Better Workers  

Here at MIT Sloan Executive Education Office, they are definitely not replacing their people with machines, but instead they are using telepresence robots and other information and organizational technologies to champion their people to subsist more productive and, they hope, happier workers.

We want to submit certain that people working remotely or in a different time zone are able to fully participate in the work-life of the office. They want to allow people to labor more flexibly in time and place. However, they are not expecting anyone to labor around the clock just because they are not in the office physically.

We maintain built a structure that seems to subsist working well so far. About two thirds of their employees labor remotely one to three days a week and they only request everyone to subsist in the office in person if feasible on Wednesdays. They try to hold internal meetings between 10:30 am and 4:30 pm, they dispirit meetings before 8:30 am or after 5:30 pm, and cheer everyone to subsist considerate about the labor patterns and preferences of others on the team, while still, of course, doing what they need to carry out to win things done efficiently and effectively.

As I explained in a recent interview, what they are finding is that even allowing for some of the challenges of physical distance, people who labor remotely can contribute just as much if not more because they are getting so much back from not wasting time commuting, for example. Overall, esprit de corps and outcomes maintain improved, as, crucially, has their agility as an organization. These facts are not disconnected.

As a manager, I value very much every sole the extra labor that people on my team are able to carry out as a result of these fresh ways of working. As a leader and human(e) being, though, I value even more how these innovative working practices and technologies are helping us achieve the goal of being a better residence to labor for all.


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