Judo Falls for the Elderly

When old people fall the results are likely to be far worse than when younger people hit the floor. There’s a long history of technology assistance for elderly individuals who fall from the infamous “I’ve fallen and can’t get up” device to the modern smartwatch with fall detection. As always, the best solution is prevention.

In Quebec an organization has popped up to help teach people how to fall so they don’t injure themselves. Yes, that’s right to prevent falls and help people deal with them is to get them to fall in the first place.

One of the principal lessons is to encourage suppleness and to teach students to not be afraid of falling, says Jean-François Marceau, executive director of Judo Quebec.

As part of the courses, students are taught the basics of how to drop down to — and then get up from — the floor.

“When you go back to that basic thing then you become less afraid of the floor,” said Marceau. “Of course you don’t learn to fall in one lesson and then it’s acquired for life. You have to practise for several weeks … It keeps the reflex on your body and your mind.”

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Thanks to Lindsay!

Catching Illegal Fishers

Many people reduce their meat intake (which is good!) by swapping it with another animal protein source of fish. The problem here lies in how fishing is done around the world and the crimes committed by too many fishers. Indeed, crime on the high seas is alive and well with fishing vessels partaking in swaths of illicit behaviour. This all sounds bad, but the good news comes down to preventing it.

Indeed, researchers have published the results of a large effort to track when, where, and sometimes why fishing vessels turn off their tracking systems known as AIS. This is fantastic because it will help nations enforce the rules of the ocean by stopping illegal maritime activities.

AIS disabling is also strongly correlated with transshipment events – exchanging catch, personnel and supplies between fishing vessels and refrigerated cargo vessels, or “reefers,” at sea. Reefers also have AIS transponders, and researchers can use their data to identify loitering events, when reefers are in one place long enough to receive cargo from a fishing vessel.

It’s not unusual to see fishing vessels disable their AIS transponders near loitering reefers, which suggests that they want to hide these transfers from oversight. While transferring people or cargo can be legal, when it is poorly monitored it can become a means of laundering illegal catch. It has been linked to forced labor and human trafficking.

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Pompeii Powered by Polymer Panels

Historic sites that attract a lot of tourists know that if they loose their historical look that the tourists will stop coming, so how do you locally produce renewable energy while not looking modern? This question has been answered by the stewards of Pompeii with a simple solar solution. A local solar artisan found a way to manufacture solar panels that look like standard Roman roof tiles. They aren’t the most efficient solar panels but they work and they fit in with the aesthetic.

The traditional PV tiles are made from a polymer compound, which allows the sun’s rays to filter through. The photovoltaic cells are then integrated into it by hand and covered with a layer of the polymer compound. “We can also give it the look of stone, wood, concrete, and brick. As a result, such a solution can be installed not only on roofs but also on walls and floors,” says Quagliato.

Dyaqua’s clients are mainly local councils, owning assets that are subject to artistic or architectural constraints. Approved by the Italian Ministry of Culture, the traditional PV tiles have been also installed in Vicoforte, not far from Cuneo, and will soon be used in Rome’s renowned museum of contemporary art, Maxxi. In the coming months, they will also cover the roofs of some public buildings in Split, Croatia, and Evora, Portugal. Together with Alkmaar, in the Netherlands, the Portuguese city is one of the demo sites that are testing innovative solutions aimed at combining sustainability with the valorization of architectural and cultural heritage, within the European project Pocityf. The Italian company Tegola Canadese is among its technical partners.

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This Heat Pump Uses Sound

AI generated image of energy efficient home
Normal heat pumps make use of chemicals to modulate temperatures, in the future they may all use sound. A new French startup has announced they will sell a residential heat pump using acoustics. It’s not loud since the sound waves stay in the system to change the temperature, which also means the system can be quickly adjusted. Using acoustics for temperature control isn’t new (it’s used on the James Webb space telescope), this application of it in a residential system is novel.

Loyer said the heat pump can generate domestic water at up to 80 C. He claims that one of the key benefits of the acoustic heat pump, in comparison with traditional units using refrigerants, is its ability to reach very high or low temperatures.

“Traditional heat pumps use refrigerants with a temperature phase. They a have temperature limit, which is the temperature of the changing phase from liquid to gas of the refrigerant,” said Loyer. “In our core, the helium stays in gas form. Because helium remains a gas until -200 C, we can achieve higher temperatures inside our heat pump core.”

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Pigeons Outperform Radiologists

birds

Radiology is very complex and even doctors with years of training and experience can make misdiagnoses. So far AI systems haven’t been competitive with humans; however, pigeons are. Researchers trained pigeons to identify cancers in radiology images and concluded that the birds are just as good, if not better, than human observers. With the increasing costs of healthcare maybe paying workers in birdseed is a potential solution.

We report here that pigeons (Columba livia)—which share many visual system properties with humans—can serve as promising surrogate observers of medical images, a capability not previously documented. The birds proved to have a remarkable ability to distinguish benign from malignant human breast histopathology after training with differential food reinforcement; even more importantly, the pigeons were able to generalize what they had learned when confronted with novel image sets. The birds’ histological accuracy, like that of humans, was modestly affected by the presence or absence of color as well as by degrees of image compression, but these impacts could be ameliorated with further training. Turning to radiology, the birds proved to be similarly capable of detecting cancer-relevant microcalcifications on mammogram images.

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