Recently, Scientific American and the World Economic Forum jointly released 2017 Global Top Ten Emerging Technologies in 2017 Summer Davos Forum. The list, selected by Scientific American magazine, Scientific American Global Advisory Council, World Economic Forum Global Expert Network, and World Commission for the Future, covers the latest technologies in the medical, computer and environmental fields, It has unlimited potential in improving the quality of life, promoting industrial restructuring and protecting the global environment.
"Emerging technologies are redefining industry by blurring the traditional boundaries and creating new opportunities on a scale we have never seen before." Murat, member of the Governing Board of the World Economic Forum and director of the Fourth Industrial Revolution Center Murat S nmez said: "All agencies must adopt the right policies, programs, and partnerships to make technology innovations for the betterment of mankind while avoiding the risks posed by the proliferation of technologies."
Since 2012, the World Economic Forum has started the selection of the top ten emerging technologies of the year. In the first five years of the list, 3D printing, CRISPR-Cas9, optical and other technologies have become an important element of our lives and research. And in this year's list, what else will change the future of mankind?
1, liquid biopsy
The emergence of liquid biopsy technology marks a great step forward for mankind in the battle against cancer. Liquid biopsy offers several advantages over traditional biopsy: First, liquid biopsy can be a surrogate for sites that are beyond the reach of biopsies. Second, tissue biopsies only reflect the information in the sample, and fluid biopsies detect the patient's overall condition. In addition, liquid biopsies primarily detect circulating tumor DNA (ctDNA), which typically enter the bloodstream from the tumor tissue. As a result, liquid biopsies locate cancer cells more rapidly than diagnosing with symptoms and images.
2, collect clean water from the air
Until now, scientists have been able to collect clean water from the air, but existing technologies require a lot of power and can only be done when humidity is high.
Now, things are changing. Research teams from MIT and the University of California, Berkeley, successfully collect clean water in environments of as little as 20% air humidity, using a new class of porous, metal-organic frameworks, Consume energy
"Emerging technologies are redefining industry by blurring the traditional boundaries and creating new opportunities on a scale we have never seen before." Murat, member of the Governing Board of the World Economic Forum and director of the Fourth Industrial Revolution Center Murat S nmez said: "All agencies must adopt the right policies, programs, and partnerships to make technology innovations for the betterment of mankind while avoiding the risks posed by the proliferation of technologies."
Since 2012, the World Economic Forum has started the selection of the top ten emerging technologies of the year. In the first five years of the list, 3D printing, CRISPR-Cas9, optical and other technologies have become an important element of our lives and research. And in this year's list, what else will change the future of mankind?
1, liquid biopsy
The emergence of liquid biopsy technology marks a great step forward for mankind in the battle against cancer. Liquid biopsy offers several advantages over traditional biopsy: First, liquid biopsy can be a surrogate for sites that are beyond the reach of biopsies. Second, tissue biopsies only reflect the information in the sample, and fluid biopsies detect the patient's overall condition. In addition, liquid biopsies primarily detect circulating tumor DNA (ctDNA), which typically enter the bloodstream from the tumor tissue. As a result, liquid biopsies locate cancer cells more rapidly than diagnosing with symptoms and images.
2, collect clean water from the air
Until now, scientists have been able to collect clean water from the air, but existing technologies require a lot of power and can only be done when humidity is high.
Now, things are changing. Research teams from MIT and the University of California, Berkeley, successfully collect clean water in environments of as little as 20% air humidity, using a new class of porous, metal-organic frameworks, Consume energy
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