In the future, implanted chips will have the ability to stop food absorption when caloric intake reaches 2,200. Cells in our forearm will be able to monitor our glucose levels and adjust our insulin appropriately. These implantable cells or “chips” have their own IP address with their own circuitry that is connected to a network 24/7. Through this network, cells communicate with real-time supercomputers to synthesize the next step for an individual’s body. If Dr. Anthony Atala can utilize 3D printers to create a new kidney, then it is only a matter of time before we can incorporate the circuitry within an organ necessary to monitor its function wirelessly. This was the future I was challenged to paint in my talk at TEDMED 2012 at the Kennedy Center for the Performing Arts in Washington, D.C. As TEDMED 2013 commences, I ask myself: Where are we one year later? A caveat: The following are simple overviews on novel technologies I had been tracking over the past year and does no justice to the many amazing leaps we have made in innovative science and medicine during this time.
곧자신의IP주소와함께칩을 이식하게 됩니다!
새 법안으로 미래에이식될칩은 칼로리섭취량이2,200에도달하면 음식흡수를막을수가있을것입니다. 우리의팔뚝에 이식된 셀이우리 몸속의포도당레벨을감시하고인슐린을 적절하게조정할수있을것입니다.
이러한이식"칩"은 네트워크에연결된그들자신의회로와함께 자신의IP주소를 가지고있습니다.
이네트워크를통해세포합성과개인의신체에대한단계를실시간으로 슈퍼 컴퓨터와통신을합니다.
이것은 혁신적인과학과의학이만든놀라운도약입니다 라고 워싱턴DC 케네디 센타에서 닥터안토니가 강연시 밝혔다.
첫댓글 Ali Ansary at TEDMED 2012 캡션입니다.
출처는 http://durl.me/4tdx9t 입니다.
인간을 기계에 조종당하는 휴머노이드로 만드려고 하는군요