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Ray Kurzweil — The Future of Medicine

Ray Kurzweil: https://en.wikipedia.org/wiki/Ray_Kurzweil#Health_and_aging

Raymond “Ray” Kurzweil is an American author, computer scientist, inventor and futurist. Aside from futurology, he is involved in fields such as optical character recognition (OCR), text-to-speech synthesis, speech recognition technology, and electronic keyboard instruments. He has written books on health, artificial intelligence (AI), transhumanism, the technological singularity, and futurism. Kurzweil is a public advocate for the futurist and transhumanist movements, and gives public talks to share his optimistic outlook on life extension technologies and the future of nanotechnology, robotics, and biotechnology.

Kurzweil admits that he cared little for his health until age 35, when he was found to suffer from a glucose intolerance, an early form of type II diabetes (a major risk factor for heart disease). Kurzweil then found a doctor (Terry Grossman, M.D.) who shares his non-conventional beliefs to develop an extreme regimen involving hundreds of pills, chemical intravenous treatments, red wine, and various other methods to attempt to live longer. Kurzweil was ingesting “250 supplements, eight to 10 glasses of alkaline water and 10 cups of green tea” every day and drinking several glasses of red wine a week in an effort to “reprogram” his biochemistry. Lately, he has cut down the number of supplement pills to 150.

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Company Aims To Bring Back The Dead Within 30 Years

Humai, a Los Angeles-based tech company, is hoping to bring back the dead within 30 years. A Los Angeles-based technology company has a goal of bringing dead people back to life within the next 30 years. Humai’s official website states that artificial intelligence and nanotechnology are being used to analyze human processes, and the creation of “an artificial body” is in the works. Once the artificial body has been perfected, the member’s brain, which will have been preserved through cryonics after death, will be implanted to direct movement and function. Helping the integration will be the extensive information the company gained while tracking each person for years during his or her life, according to the company’s founder and CEO Josh Bocanegra. An artificial intelligence app will retain the voice, personality, and behavioral patterns of each person and deploy as needed. This app is expected to launch among the membership by 2017. Aiding in this pursuit is the nanotechnology Humai is assisting in developing, which “will repair the cells destroyed in the brain after death.” The company, which employs five people total, is thus far self-funded but may be open to investments in the near future.

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Fastest robot to solve a Rubik’s Cube — Guinness World Records

The fastest time to solve a Rubik’s cube by a robot is 2.39 seconds, achieved by a robot built by Zackary Gromko (USA) at an event at Saint Stephens, Bradenton, Florida, USA, on 15 October 2015. Read the full story: http://bit.ly/GWR-RubiksCubeRobot

The robot utilises 6 arms (one for each face of the cube) connected to stepper motors to rotate the faces of the cube.

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Medical robots – the future of surgery?

For some people the idea of being operated on by a robot might sound horrifying, particularly if there isn’t even a doctor in the room to check that everything is running smoothly. Surgery is in any case a risky business that few would undertake willingly if it wasn’t absolutely necessary, and it seems unlikely that the spectacle of an enormous machine with mechanical arms attached to surgical scalpels would reassure anyone about having to undergo an operation. However, the use of robotic surgery has spread rapidly in recent years and for some types of operations it is becoming the standard. While there is a lot of controversy surrounding the topic, many doctors see surgical robots as a vital tool to provide better medical care and lower the risks associated with surgery.

History of robotic surgery

The roots of robotic surgery go back to the mid-1980s, when a robotic surgical arm was first used to perform a neurosurgical biopsy. Two years later, the first robot-assisted laparoscopic (i.e. keyhole) operation was conducted, a cholecystectomy. The following years saw continued advances in the area of robotic surgery, which was used for a growing range of surgical procedures. One of the earliest robotic surgical systems to enter into general use was the ROBODOC system, which came on the market in the early 1990s and allowed surgeons conducting hip replacements to mill the femur with more precision that would have been conventionally possible.

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