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Nov 7, 2020

New target to prevent, treat alcoholism identified

Posted by in category: neuroscience

Circa 2019


New research conducted at OHSU in Portland, Oregon, identifies a gene that could provide a new target for developing medication to prevent and treat alcoholism.

Scientists at the Oregon National Primate Research Center at OHSU discovered a gene that had lower expression in the brains of nonhuman primates that voluntarily consumed heavy amounts of alcohol compared with those that drank less.

Continue reading “New target to prevent, treat alcoholism identified” »

Nov 7, 2020

Study finds nearly 100 percent recycling rate for lead batteries

Posted by in categories: energy, sustainability

Battery Council International (BCI), Chicago, and Essential Energy Everyday have released a study showing lead batteries have a recycling rate of 99.3 percent, making them the No. 1 recycled consumer product in the U.S.

The groups say the near-perfect rate of recycling is attributed to industry investment in a closed loop collection and recycling system that keeps 1.7 million tons of batteries out of landfills annually.

The National Recycling Rate Study, released in conjunction with America Recycles Day Nov. 15, 2017, demonstrates the sustainability of lead batteries and their role in environmentally friendly energy storage for automotive and industrial applications, say the organizations.

Nov 7, 2020

A Nameless Hiker and the Case the Internet Can’t Crack

Posted by in category: internet

The man on the trail went by “Mostly Harmless.” He was friendly and said he worked in tech. After he died in his tent, no one could figure out who he was.

Nov 7, 2020

The p53 tumor suppressor protein

Posted by in categories: biotech/medical, genetics

The p53 gene like the Rb gene, is a tumor suppressor gene, i.e., its activity stops the formation of tumors. If a person inherits only one functional copy of the p53 gene from their parents, they are predisposed to cancer and usually develop several independent tumors in a variety of tissues in early adulthood. This condition is rare, and is known as Li-Fraumeni syndrome. However, mutations in p53 are found in most tumor types, and so contribute to the complex network of molecular events leading to tumor formation.

The p53 gene has been mapped to chromosome 17. In the cell, p53 protein binds DNA, which in turn stimulates another gene to produce a protein called p21 that interacts with a cell division-stimulating protein (cdk2). When p21 is complexed with cdk2 the cell cannot pass through to the next stage of cell division. Mutant p53 can no longer bind DNA in an effective way, and as a consequence the p21 protein is not made available to act as the ‘stop signal’ for cell division. Thus cells divide uncontrollably, and form tumors.

Help with unraveling the molecular mechanisms of cancerous growth has come from the use of mice as models for human cancer, in which powerful ‘gene knockout’ techniques can be used. The amount of information that exists on all aspects of p53 normal function and mutant expression in human cancers is now vast, reflecting its key role in the pathogenesis of human cancers. It is clear that p53 is just one component of a network of events that culminate in tumor formation.

Nov 7, 2020

World’s first metasurface laser that produces “super-chiral light”

Posted by in categories: energy, nanotechnology

Scientists in collaboration have developed the world’s first metasurface laser that produces “super-chiral light”- the light with ultra-high angular momentum. Also, they have developed a nanostructured metasurface that has the most significant phase gradient ever produced and allows for high power operation in a compact design.

Nov 7, 2020

Researchers develop a high-power, portable terahertz laser

Posted by in categories: biotech/medical, computing, quantum physics, terrorism

Researchers at MIT and the University of Waterloo have developed a high-power, portable version of a device called a quantum cascade laser, which can generate terahertz radiation outside of a laboratory setting. The laser could potentially be used in applications such as pinpointing skin cancer and detecting hidden explosives.

Until now, generation of powerful enough to perform real-time imaging and fast spectral measurements required temperatures far below 200 Kelvin (−100 degrees Fahrenheit) or lower. These temperatures could only be achieved with bulky equipment that limited the technology’s use to a laboratory setting. In a paper published in Nature Photonics, MIT Distinguished Professor of Electrical Engineering and Computer Sciences Qing Hu and his colleagues report that their terahertz can function at temperatures of up to 250 K (−10 degrees Fahrenheit), meaning that only a compact portable cooler is required.

Terahertz quantum cascade lasers, tiny chip-embedded semiconductor laser devices, were first invented in 2002, but adapting them to operate far above 200 K proved to be so difficult that many people in the field speculated that there was a fundamental physical reason preventing it, Hu says.

Nov 7, 2020

The Genetic Code

Posted by in category: genetics

This video explain the details of genetic code in detail.

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Nov 7, 2020

These are truly exciting times for the science of brain zapping

Posted by in categories: neuroscience, science

Yes, there’s been hype, but electrical brain stimulation is a genuine technique, and the science behind it is improving.

Nov 7, 2020

Poimo inflatable scooter

Posted by in category: futurism

We all know how difficult it is to bring a scooter anywhere.

Here is an interesting solution. An infatable scooter.


This is an inflatable scooter you can put in your backpack.

Nov 7, 2020

Chain Delete Bike

Posted by in category: transportation

For those who like biking.

I stilll remember all those times my bike chains got lose. Could these guys have found a solution?


This chainless bike is dubbed ‘the most aerodynamic bike ever made’.