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<td><span style="font-family:Helvetica, sans-serif; font-size:20px;font-weight:bold;">Science Daily Mind & Brain Daily Digest (Unofficial)</span></td>
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<td><a href="https://www.sciencedaily.com/releases/2025/02/250225201304.htm" style="font-family:Helvetica, sans-serif; letter-spacing:-1px;margin:0;padding:0 0 2px;font-weight: bold;font-size: 19px;line-height: 20px;color:#222;">First female runner could soon break the 4-minute-mile barrier</a>
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<p>With ideal conditions and strategic pacing and drafting, Kenyan Faith Kipyegon is on the brink of hitting the fabled track and field milestone, a new study suggests. The authors are now calling for a staged 'Breaking 4' event to help her do it.</p>
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<td><a href="https://www.sciencedaily.com/releases/2025/02/250225121825.htm" style="font-family:Helvetica, sans-serif; letter-spacing:-1px;margin:0;padding:0 0 2px;font-weight: bold;font-size: 19px;line-height: 20px;color:#222;">A new model accurately predicts the movement of elite athletes to catch the ball in parabolic flight</a>
<div style="font-family:Helvetica, sans-serif; text-align:left;color:#999;font-size:11px;font-weight:bold;line-height:15px;">Feb 25th 2025, 12:18</div>
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<p>How does a tennis player like Carlos Alcaraz decide where to run to return Novak Djokovic's ball by just looking at the ball's initial position? These behaviours, so common in elite athletes, are difficult to explain with current computational models, which assume that the players must continuously follow the ball with their eyes. Now, researchers have developed a model that, by combining optical variables with environmental factors such as gravity, accurately predicts how a person will move to catch a moving object just from an initial glance. These results could have potential applications in fields such as robotics, sports training or even space exploration.</p>
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<td><a href="https://www.sciencedaily.com/releases/2025/02/250225121820.htm" style="font-family:Helvetica, sans-serif; letter-spacing:-1px;margin:0;padding:0 0 2px;font-weight: bold;font-size: 19px;line-height: 20px;color:#222;">Researchers discover 16 new Alzheimer's disease susceptibility genes</a>
<div style="font-family:Helvetica, sans-serif; text-align:left;color:#999;font-size:11px;font-weight:bold;line-height:15px;">Feb 25th 2025, 12:18</div>
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<p>Investigators have conducted a multi-ancestry, whole genome sequencing association study of Alzheimer's disease and found evidence for 16 new susceptibility genes, expanding the study of Alzheimer's disease in underrepresented groups.</p>
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<td><a href="https://www.sciencedaily.com/releases/2025/02/250225121807.htm" style="font-family:Helvetica, sans-serif; letter-spacing:-1px;margin:0;padding:0 0 2px;font-weight: bold;font-size: 19px;line-height: 20px;color:#222;">Clashing with classmates: Off-putting traits spark enemy relationships</a>
<div style="font-family:Helvetica, sans-serif; text-align:left;color:#999;font-size:11px;font-weight:bold;line-height:15px;">Feb 25th 2025, 12:18</div>
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<p>Making enemies isn't random. Traits like emotional instability, aggression, and disruptive behavior early in life can lead to antagonistic relationships. Research on students aged 9-14 found that negative behaviors, such as lack of empathy, increase the likelihood of mutual antagonisms, a pattern seen across genders and school levels. Emotionally struggling students were 35% more likely to develop enemies, showing that how we manage emotions and interact with others early on can have lasting social and emotional effects.</p>
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<td><a href="https://www.sciencedaily.com/releases/2025/02/250225121520.htm" style="font-family:Helvetica, sans-serif; letter-spacing:-1px;margin:0;padding:0 0 2px;font-weight: bold;font-size: 19px;line-height: 20px;color:#222;">'Ultra-rapid' testing unlocks cancer genetics in the operating room</a>
<div style="font-family:Helvetica, sans-serif; text-align:left;color:#999;font-size:11px;font-weight:bold;line-height:15px;">Feb 25th 2025, 12:15</div>
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<p>A novel tool for rapidly identifying the genetic 'fingerprints' of cancer cells may enable future surgeons to more accurately remove brain tumors while a patient is in the operating room, new research reveals.</p>
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<p><strong>Forwarded by:<br />
Michael Reeder LCPC<br />
Baltimore, MD</strong></p>
<p><strong>This information is taken from free public RSS feeds published by each organization for the purpose of public distribution. Readers are linked back to the article content on each organization's website. This email is an unaffiliated unofficial redistribution of this freely provided content from the publishers. </strong></p>
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