This week, the killings of George Floyd, Breonna Taylor, and other Black Americans by police brutality and racial inequality continue to fuel demonstrations around the nation. In many cities, police are using tear gas, rubber bullets, and other control tactics on protesters.
A history of 50 years of research reveals what makes a protest safe for participants and police alike. The findings show that police response is what makes the biggest difference: de-escalating and building trust supports peaceful demonstrations rather than responding with weapons and riot gear.
And, as thousands of protesters risk abrasive, cough-inducing tear gas and mass arrests, health researchers are concerned a militant response could increase demonstrators’ risk of acquiring COVID-19.
Maggie Koerth, senior science writer for FiveThirtyEight and a Minneapolis, Minnesota resident, joins Ira to discuss these stories.
Dermatologists presented with a new patient have a number of symptoms to look at in order to diagnose. Does the patient have a rash, bumps, or scaling skin? Is there redness, inflammation, or ulceration? For rare conditions a doctor may have never seen in person before, it’s likely that they were trained on photos of the conditions—or can turn to colleagues who may themselves have photos.
But in people with darker, melanin-rich skin, the same skin conditions can look drastically different, or be harder to spot at all—and historically, there have been fewer photos of these conditions on darker-skinned patients. And for these patients, detection and diagnosis can be life-saving: people of color get less melanoma, for example, but are also less likely to survive it.
Dr. Jenna Lester, who started one of the few clinics in the country to focus on such patients, explains the need for more dermatologists trained to diagnose and treat people with darker skin tones—and why the difference can be both life-saving and life-altering.
A cup of coffee first thing in the morning is a ritual—from grinding the beans to boiling the water and brewing your cup. But following those steps won’t always get you a consistent pour. Researchers developed a mathematical model to determine how the size of grind affects water flow and the amount of coffee that gets into the final liquid. Their results were published in the journal Matter.
Computational chemist Christopher Hendon, who was an author on that study, talks about how understanding atomic vibration, particle size distribution, and water chemistry can help you brew the perfect cup of coffee.
Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374 Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.
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Covering the outer reaches of space to the tiniest microbes in our bodies, Science Friday is the source for entertaining and educational stories about science, technology, and other cool stuff.
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Folge vom 05.06.2020Police Behavior Research, Dermatology In Skin Of Color, Coffee Extraction. June 5, 2020, Part 1
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Folge vom 29.05.2020Vaccine Rate Decrease, Mind-Body Music. May 29, 2020, Part 1One unintended consequence of families sheltering at home is that children’s vaccination rates have gone way down. In New York City, for example, vaccine doses for kids older than two dropped by more than 90 percent. That could mean new outbreaks of measles and whooping cough, even while we’re struggling with COVID-19. Joining Ira to talk about decreasing vaccination rates are two pediatricians, James Campbell, professor of pediatrics at the University of Maryland School of Medicine in Baltimore, and Amanda Dempsey, professor of pediatrics at the University of Colorado Denver. Electronic musician Grace Leslie makes music that creates a sense of calm—long notes held on the flute, creating rich tones, and layered sounds. But her method for creating her songs sets her apart from most other electronic musicians: Leslie collects heartbeats, neuroelectric activity, and other biofeedback with sensors on people’s bodies. She feeds this input into a computer, which then converts the data into flowing waves of sound. As a researcher at Georgia Tech in Atlanta, she explores how the brain and body react to music at the university’s School of Music. Leslie joins Ira to talk about her methods for creating art, and the mysteries of why music elicits an emotional response from those who listen. Hydroxychloroquine, the malaria drug the president promoted as a treatment for COVID-19, has not been proven effective against the virus. And new research published in The Lancet, involving 96,000 patients around the world, found the drug is linked to irregular heartbeats and increased risk of death for people who take it. As a result, numerous trials to further understand the drug have been put on hold, including one planned by the World Health Organization. IEEE Spectrum news editor Amy Nordrum joins Ira to explain what this means for the future of understanding hydroxychloroquine as a potential help against coronavirus. Plus, understanding false negative results in COVID-19 tests, engineering virus-killing masks, and how researchers found a way to trail elusive narwhals and record their sounds—all in the name of understanding these shy, sea ice-dwelling mammals better even as the world they depend on changes. Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374 Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.
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Folge vom 29.05.2020Bio-Inspired Concrete, Nose Microbiome, Space News. May 29, 2020, Part 2The human microbiome—our own personalized bacteria profile—plays a part in our health. The different parts of our body, from our skin to our gut, each have their own microbial profile. A team of researchers decided to explore the bacteria living inside our nose, publishing this week in the journal Cell Reports. Microbiologist Sarah Lebeer, one of the authors of the study, discusses what beneficial bacteria reside in our nose—and how this could be used to create a probiotic for upper respiratory infections. Concrete is a seemingly simple mix of wet cement, but it’s been the foundation of many civilizations. Ancient Mayans and Romans used concrete in their structures, and it is the basic building block of the sky-scraping concrete jungles we inhabit today. But it turns out, it’s still possible to improve. In an effort to create crack-free concrete that can resist the stresses of freezing temperatures, one group of researchers looked to organisms that live in sub-zero environments. Their results were published this week in the journal Cell Reports Physical Science. Engineer Wil Srubar, who is an author on that study, talks about how nature can serve as inspiration in the quest to create more sustainable concrete, wood, and other building materials. On Wednesday, a planned launch of two astronauts from Cape Canaveral had to be scrubbed due to weather. The launch would have been the first crewed flight to the space station launched from U.S. soil since 2011—and will use a Dragon rocket built by the private company SpaceX. There will be a second launch attempt this weekend. The Commercial Crew program began in 2011 to develop private launch capabilities to replace the retired space shuttle. Now, nine years later, is private industry finally ready to take over responsibilities that were once the territory of national governments? Miriam Kramer, who writes the space newsletter for Axios, and Brendan Byrne, who reports on space for public radio station WMFE in Orlando, join Ira to talk about the DEMO-2 crewed launch and other spaceflight news. Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374 Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.
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Folge vom 22.05.2020Ancient East Asian Genomes, COVID And Clotting, And Cassowary Plumage. May 22, 2020, Part 2The cassowary, a large flightless bird native to Australia, New Guinea, and nearby islands, has a reputation for aggression and wickedly clawed feet that can cause serious injury. Indeed, they’ve been known to attack humans dozens of times, and even occasionally kill people. But they also have a beauty trick: Their glossy black body feathers have a structure for producing shine that’s never before been seen in birds. Where other black birds like crows are shiny because of structures in their feather barbules, the cassowary instead derives its shine from a smooth, wide rachis—the main “stem” of the feather. University of Texas paleontologist Julia Clarke explains how the cassowary’s color could help shed light on the feathers of extinct birds and dinosaurs—and how paleontologists are investigating the evolution of birds as we see them today. The novel coronavirus SARS-CoV-2 has primarily been considered a respiratory virus, causing acute problems in the lungs. But doctors around the world have recently been reporting unusual blood clotting in some COVID-19 patients. The exact cause of these blood clots isn’t yet known—there are several interacting biological pathways that all interact to create a blood clot. One theory is that the clotting is related to an overactive immune response, producing inflammation that damages the lining of small blood vessels. Other theories point to the complement system, part of the overall immune response. Ira speaks with hematologists Jeffrey Laurence of Weill-Cornell Medicine, and Mary Cushman of the University of Vermont Medical Center about the unusual clotting, how it impacts medical treatment, and what research they’re doing now in order to better understand what’s going on in patients. The history of a group of people can be reconstructed through what they’ve left behind, whether that’s artifacts like pottery, written texts, or even pieces of their genome — found in ancient bones or living descendents. Scientists are now collecting genetic samples to expand the database of ancient East Asian genomes. One group examined 26 ancient genomes that provide clues into how people spread across Asia 10,000 years ago, and their results were published this month in the journal Science. Biologist Melinda Yang, an author on the study, explains how two particular groups dominated East Asia during the Neolithic Age, and how farming may have influenced their dispersal over the continent. Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374 Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.