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    Stanford Medicine says the human brain is two organs●Stanford Medicine reveals human brain is two organs▶youtubeHealthMedicine1.2M39 min ago

    Stanford Medicine is drawing widespread attention with the claim that the human brain functions as two distinct organs rather than a single one. The announcement was reported by KRON 4 and has generated heavy engagement online. Details of the research, including how the finding was reached and its implications for neuroscience and medicine, were not included in the coverage available.

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    Musk says biological enhancement needed to keep pace with AI▼Elon Musk highlights biological enhancement as key to closing AI speed gap✉newsScienceBiology1 d ago

    Elon Musk argued that enhancing human biology is key to closing the speed gap between human cognition and artificial intelligence. The comments renew his long-running warning that AI is advancing faster than people can keep up, and his interest in brain-computer interfaces as a way for humans to remain relevant alongside increasingly capable machines.

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    Study finds the human brain is two separate organs●The human brain is two separate organs, study findsYhnScience1320 h ago

    A Stanford study argues that the human brain should be understood as two separate organs rather than a single unified structure, challenging long-held assumptions in neuroscience. The finding is drawing attention among science readers, with discussion centered on what it means for how brain function, development and disorders are studied going forward.

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    Dog brains split speech into consonants and vowels like ours●Dogs don't just hear our words; their brains split sound into consonants and vowels just like ours, revealing a deep evoMmastodonScience46 h ago

    New research suggests dogs process human speech in a way far closer to humans than previously thought: their brains segment sounds into consonants and vowels rather than hearing words as uniform noise. The neural evidence points to an evolutionary kinship in speech processing, suggesting the capacity to break language into its smallest sound units is far older and more widespread among mammals than scientists assumed.