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Archive for the ‘neuroscience’ category: Page 920

Aug 10, 2016

Understanding brain circuit development: an interview with Dr Hollis Cline

Posted by in category: neuroscience

Interview conducted by , MA (Cantab)

Prior to your study, how much was known about the way brain circuits develop? How has your recent study advanced our understanding?

There’s a tremendous amount known about brain circuit development. Our work was inspired by experiments that were done over 50 years ago by scientists at Harvard University, Hubel and Wiesel. They received a Nobel Prize for their work and have inspired many additional experiments over the last 50 or 60 years.

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Aug 8, 2016

China may be the future of genetic enhancement

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

Indeed, if we set ethical and safety objections aside, genetic enhancement has the potential to bring about significant national advantages. Even marginal increases in intelligence via gene editing could have significant effects on a nation’s economic growth. Certain genes could give some athletes an edge in intense international competitions. Other genes may have an effect on violent tendencies, suggesting genetic engineering could reduce crime rates.


We may soon be able to edit people’s DNA to cure diseases like cancer, but will this lead to designer babies? If so, bioethicist G Owen Schaefer argues that China will lead the way.

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Aug 8, 2016

Ultrasonic wireless ‘neural dust’ sensors monitor nerves, muscles in real time

Posted by in categories: computing, neuroscience

Prototype wireless battery-less “neural dust” mote (3 × 1 x 1 millimeters) with electrodes attached to a nerve fiber in a rat. The mote contains a piezoelectric crystal (silver cube) that converts ultrasonic signals to electrical current, powering a simple electronic circuit containing a transistor (black square) that responds to the voltage generated by a nerve firing and triggers the piezoelectric crystal to create ultrasonic backscatter, which indicates detection of a neural signal. (photo credit: Ryan Neely/UC Berkeley)

University of California, Berkeley engineers have designed and built millimeter-scale device wireless, batteryless “neural dust” sensors and implanted them in muscles and peripheral nerves of rats to make in vivo electrophysiological recordings.

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Aug 4, 2016

Hackers could get inside your brain, warns experts

Posted by in categories: cybercrime/malcode, neuroscience, quantum physics

I have reported on this threat for a very long time as we see more BMI technology advance. However, one are where things could drastically reduce hacking and breeches is the migration to a Quantum based net and infrastructure.


Cyberthieves might be mining personal information from your brainwaves at this very moment.

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Aug 4, 2016

New microfluidic chip replicates muscle-nerve connection

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

MIT engineers have developed a microfluidic device that replicates the neuromuscular junction—the vital connection where nerve meets muscle. The device, about the size of a U.S. quarter, contains a single muscle strip and a small set of motor neurons. Researchers can influence and observe the interactions between the two, within a realistic, three-dimensional matrix.

The researchers genetically modified the neurons in the device to respond to light. By shining light directly on the neurons, they can precisely stimulate these cells, which in turn send signals to excite the muscle fiber. The researchers also measured the force the muscle exerts within the device as it twitches or contracts in response.

The team’s results, published online today in Science Advances, may help scientists understand and identify drugs to treat amyotrophic lateral sclerosis (ALS), more commonly known as Lou Gehrig’s disease, as well as other neuromuscular-related conditions.

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Aug 3, 2016

Machine Learning Is Helping Us Find The Genetics Of Autism

Posted by in categories: genetics, neuroscience, robotics/AI

Princeton researchers are working smarter, not harder.

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Aug 3, 2016

Neurons position their parts for rapid communication

Posted by in category: neuroscience

Very cool.


Scientific Method — Neurons position their parts for rapid communication Neurons that talk to each other have proteins that mirror each other.

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Aug 3, 2016

A.D. 2035: Rich people will be thousands of times smarter than poor people

Posted by in categories: neuroscience, Ray Kurzweil

When not all men and women are created equal.


If futurist, inventor, and Google executive Ray Kurzweil is right about the future, we’ll all be augmenting our brains with extra capacity in the cloud at some point in the future.

Which sounds exciting, even if a little frightening.

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Aug 3, 2016

New “Neural Dust” sensor could be implanted in the body

Posted by in categories: bioengineering, neuroscience

Engenheiros da University of California, Berkeley construíram os primeiros, sensores sem fio do tamanho de poeira que podem ser implantados no organismo, trazendo mais perto o dia em que um dispositivo Fitbit poderia monitorar os nervos internos, músculos ou órgãos em tempo real.

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Aug 3, 2016

Would it be immoral to send out a generation starship?

Posted by in categories: biotech/medical, education, ethics, food, health, neuroscience, security, space travel

If human beings are ever to colonise other planets – which might become necessary for the survival of the species, given how far we have degraded this one – they will almost certainly have to use generation ships: spaceships that will support not just those who set out on them, but also their descendants. The vast distances between Earth and the nearest habitable planets, combined with the fact that we are unlikely ever to invent a way of travelling that exceeds the speed of light, ensures that many generations will be born, raised and die on board such a ship before it arrives at its destination.

A generation ship would have to be a whole society in microcosm, with hospitals and schools, living quarters and perhaps entertainment districts, a security force, maybe even a judiciary. It would need to be able to provide food for its crew, and that might require agriculture or aquaculture, perhaps even domestic animals (which might also be needed for the colonisation effort). Its design therefore presents a major challenge: not just to engineers but also to social scientists. How should the crew be selected and the environment structured to minimise interpersonal conflict? What size of population is optimal for it to remain committed to the single overarching project of colonising a new planet without too much of a risk of self-destructive boredom or excessive narrowing of the gene pool? Does mental health require that a quasi-natural environment be recreated within the ship (with trees, grass and perhaps undomesticated birds and small animals)?

As well as the technological and social challenges confronting the designers of such ships, there are fascinating philosophical and ethical issues that arise. The issue I want to focus on concerns the ethics of a project that locks the next generation into a form of living, the inauguration of which they had no say over, and that ensures their options are extremely limited.

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