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“Vicarious, the mysterious company that’s been funded by Tesla and SpaceX CEO Elon Musk, Facebook’s Mark Zuckerberg, and actor Ashton Kutcher, wants to do something completely radical — build the world’s first human-level artificial intelligence (AI).”


Smarter than Siri and Cortana.

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Seventeen years ago, Helen Greiner was scrambling to find investors to back her company’s development of a robot that would clean people’s houses. As she made the rounds of venture capitalists, the responses ranged from “You’re not an Internet company” to “You’re too early stage” to “I would do this, but my partners would kill me.”

But Greiner and her partners, Colin Angle and MIT robotics professor Rodney Brooks, persevered, funneling money from their firm’s contract engineering work to fund the robot project. Today, that company, iRobot Corp. of Bedford, is one of the nation’s largest makers of home robots, generating more than $500 million in annual sales from its Roomba floor vacuum and other products, and employing 600 people, including 500 in Massachusetts.

iRobot is an anchor of a burgeoning Massachusetts robotics industry that includes more than 100 companies, employs more than 3,000, and attracts tens, if not hundreds, of millions of dollars of investments. Since 2008, at least 20 robotics startups have launched in Massachusetts. Venture capital funding of the local industry tripled to more than $60 million in 2012, the most recent year available, from less than $20 million in 2008, according to the Massachusetts Technology Leadership Council, a trade group in Burlington.

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BOSTON, Sept. 29, 2015 /PRNewswire/ — Veritas Genetics today announced that the company is making it possible for participants in the Personal Genome Project (PGP) to be among the first to get their whole genome sequenced and interpreted for less than a $1,000.

Led by Veritas Genetics Co-Founder Dr. George Church, Professor of Genetics at Harvard Medical School and Director of the Personal Genome Project, PGP is a long-term effort to sequence thousands of complete genomes to enable research into personal genomics and personalized medicine. PGP has more than 16,000 participants worldwide.

The “$1,000 Genome” has long been considered the tipping point when sequencing and interpreting the human genome becomes commonplace and begins to rapidly increase what is known and to dramatically impact healthcare. The catchphrase underscores how far science has come since the actual cost of the Human Genome Project, estimated at $2.7 billion spent over a decade.

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This short video (with some fun integrated graphics) is from an interview I did with El País (the largest newspaper in Spain). It highlights some of the emerging technologies and approaches which have the potential to shift health, medicine and biopharma from an intermittent and reactive physician-centric mode, to an era of more continuous data and a proactive approach in which the individual is increasingly empowered and integrated into personalized wellness, diagnosis and therapy.

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A team of physicists has proposed a way of teleporting energy over long distances. The technique, which is purely theoretical at this point, takes advantage of the strange quantum phenomenon of entanglement where two particles share the same existence.

The researchers, who work out of Tohoku University in Japan, and led by Masahiro Hotta,describe their proposal in the latest edition of Physical Review A. Their system exploits properties of squeezed light or vacuum states that should allow for the teleportation of information about an energy state. In turn, this teleported quantum energy could be made useable.

Unlike teleportation schemes as portrayed in Star Trek or The Fly, this type of teleportation describes entanglement experiments in which two entangled particles are joined despite no apparent connection between them. When a change happens to one particle, the same change happens to the other. Hence, the impression of teleportation. Physicists have conducted experiments using light, matter, and now, energy.

According to Hotta, a measurement on the first particle injects quantum energy into the system. Then, by carefully choosing the measurement to do on the second particle, it is possible to extract the original energy.

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