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Mar 21, 2016

Resurrection and Biotechnology

Posted by in categories: biotech/medical, disruptive technology, Elon Musk, futurism, human trajectories, neuroscience, posthumanism, Ray Kurzweil, Skynet, transhumanism

“He is not here; He has risen,” — Matthew 28:6

As billions of Christians around the world are getting ready to celebrate the Easter festival and holiday, we take pause to appreciate the awe inspiring phenomena of resurrection.

crypt

In religious and mythological contexts, in both Western and Eastern societies, well known and less common names appear, such as Attis, Dionysus, Ganesha, Krishna, Lemminkainen, Odin, Osiris, Persephone, Quetzalcoatl, and Tammuz, all of whom were reborn again in the spark of the divine.

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Mar 21, 2016

Relatively slow greenhouse injections triggered ancient hothouse — By Eric Hand | Science

Posted by in categories: environmental, events, science

permafrost

“There is a cautionary tale buried in Earth’s past. Some 56 million years ago, about 10 million years after the dinosaurs went extinct, a massive amount of carbon surged into the atmosphere, triggering a rise in temperature of 5°C. Scientists often look to the so-called Paleocene-Eocene thermal maximum (PETM) as an analog for today’s rising temperatures, because the magnitude of that ancient carbon injection is thought to be comparable to what humans will release if fossil fuel emissions continue unabated for a few more centuries.”

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Mar 21, 2016

Tesla charging stations outnumber gas stations in Manhattan

Posted by in category: transportation

Free fill-ups for your Tesla in many of the 105 (and growing) Tesla charging stations in Manhattan. Meanwhile, gas stations disappear when landowners find they get $25 million for the property.

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Mar 21, 2016

Bionic Fingertip

Posted by in categories: cyborgs, transhumanism

This new bionic fingertip allows amputees to regain the sense of touch.

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Mar 21, 2016

DNA from Mysterious ‘Denisovans’ Helped Modern Humans Survive

Posted by in categories: biotech/medical, genetics, neuroscience

Genetic mutations from extinct human relatives called the Denisovans might have influenced modern human immune systems, as well as fat and blood sugar levels, researchers say.

Very little is known about the Denisovans. The first evidence of them was discovered in Denisova Cave in Siberia in 2008, and DNA from their fossils suggests they shared an origin with Neanderthals but were nearly as genetically distinct from Neanderthals as Neanderthals were from modern humans.

Previous work found that any modern humans with ancestry outside of Africa inherited about 1.5 to 2.1 percent of their DNA from Neanderthals. In contrast, prior research suggested that substantial levels of Denisovan ancestry are found only in the Pacific islands of Melanesia. Scientists are increasingly uncovering the effects of Neanderthal ancestry on modern humans, from potential immune boosts to increased risks for depression, obesity, heart attacks, nicotine addiction. However, relatively little was known about the effects of Denisovan ancestry.

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Mar 21, 2016

See ‘twin’ comets buzz Earth hotter and brighter than expected

Posted by in category: space

Two comets, perhaps fragments of the same larger space rock, will make two of the closest passes in modern history, one right after the other.

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Mar 21, 2016

This Prototype Could Be The Future Of Low- Cost Solar Power

Posted by in categories: solar power, sustainability

A chemical compound named Perovskite could be the next big innovation in solar power technology. http://voc.tv/14JQHoo

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Mar 21, 2016

Exploring other dimensions — Alex Rosenthal and George Zaidan

Posted by in category: futurism

View full lesson: http://ed.ted.com/lessons/exploring-other-dimensions-alex-ro…rge-zaidan

Imagine a two-dimensional world — you, your friends, everything is 2D. In his 1884 novella, Edwin Abbott invented this world and called it Flatland. Alex Rosenthal and George Zaidan take the premise of Flatland one dimension further, imploring us to consider how we would see dimensions different from our own and why the exploration just may be worth it.

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Mar 21, 2016

Smart 3D modeling lets you mess with faces in videos

Posted by in categories: computing, entertainment

Have you ever wanted to mess with a video by making its cast say things they never would on camera? You might get that chance. Researchers have built a face detection system that lets you impose your facial expressions on people in videos. The software uses an off-the-shelf webcam to create a 3D model of your face in real time, and distorts it to fit the facial details in the target footage. The result, as you’ll see below, is eerily authentic-looking: you can have a dead-serious Vladimir Putin make funny faces, or Donald Trump blab when he’d otherwise stay silent.

This isn’t about to reach software you can buy, but the implications for video creation are big if it becomes more than a university project. You could use the tool to mess with your friends by having celebrities say audacious things, or have famous figures recite dialogue in movies without needing to painstakingly animate faces frame by frame. In other words: get ready for an era when even the most plausible videos aren’t safe from a little computer trickery.

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Mar 21, 2016

Treating disease at stage zero

Posted by in categories: bioengineering, biotech/medical, health, information science, nanotechnology

It sounds really obvious, but hospitals aren’t for healthy people. The world’s entire health system is really there to react once people get ill. If doctors are able to catch an illness at stage one that’s great, but if it reaches stage three or four there’s often not that much that can be done. So what if we could treat patients at stage zero and predict the likelihood of contracting diseases? We could then get treatment to people who need it much earlier and take preventative steps to avoid illness altogether.

Currently, when we think of monitoring in healthcare we’re usually referring to monitoring patients’ reactions to drugs or treatments, but this is changing. No amateur runner’s uniform is complete these days without a Fitbit or some kind of analytics tool to monitor progress, so the idea of monitoring the healthy is becoming ingrained in the public’s consciousness. But Fitbits only scrape the surface of what we can do. What if the data from fitness trackers could be combined with medical records, census data and the details of supermarket loyalty cards to predict the likelihood of contracting a particular disease?

With big data we can move from reacting to predicting, but how do we move beyond just making predictions; how do we prevent disease from occurring altogether? Up until now all of our monitoring technology has been located outside of the body, but nano-sized entities made of DNA could one day patrol the body, only acting when they come into contact with specific cells – cancer cells, for example. The technology that would turn tiny machines – roughly the size of a virus – into molecular delivery trucks that transport medication is already being worked on by bioengineers. If this kind of technology can be used to treat cancer, without needing to release toxic agents into the body, can the same technology be inserted into a healthy person and lie in wait for the opportunity to fight disease on its host’s behalf?

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