An innovative temperature-compensation mechanism for oscillating chemical reactions based on temperature-responsive gels has been developed. Experimental findings, alongside a detailed mathematical analysis, hint at the possibility that circadian rhythms found in nature may all rely on a similar mechanism, allowing their period to remain independent of temperature.
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Researchers map the brain's self-healing abilities after stroke
A new study sheds light on one of the most severe consequences of stroke: damage to the brain's 'cables'-- the so-called nerve f...
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