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    Rose  🎞️
    Rose 🎞️@rose_
    💭Science💭Animals

    PLTi neurons and attention selection

    The brain doesn't just think harder to pay attention, it has to actively choose what matters while suppressing everything else. A new study using mice found a small group of inhibitory neurons named PLTi in the brainstem that handles this selection process. These PLTi neurons live in an evolutionarily old region and connect to the superior colliculus, which maps space and guides where focus goes. Researchers trained mice to lock onto a target on a touchscreen while ignoring distracting signals nearby. When they temporarily silenced the PLTi neurons, the mice became significantly more distractible. With competing information present, the animals struggled to select the correct target after the silencing happened. The issue observed was specifically related to attention selection rather than sensory or movement functions because the animals retained normal vision and motor control capabilities despite the attention deficits. This pathway influences the superior colliculus, a brain region responsible for spatial mapping and guiding attention. The findings do not confirm a new treatment for ADHD but suggest an explanation for focus mechanisms.

    1h

    13 いいね0 低評価1 リポスト0 コメント
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    まだコメントはありません。最初のコメントを投稿しましょう!

    投稿

    Rose  🎞️
    Rose 🎞️@rose_
    💭Science💭Animals

    PLTi neurons and attention selection

    The brain doesn't just think harder to pay attention, it has to actively choose what matters while suppressing everything else. A new study using mice found a small group of inhibitory neurons named PLTi in the brainstem that handles this selection process. These PLTi neurons live in an evolutionarily old region and connect to the superior colliculus, which maps space and guides where focus goes. Researchers trained mice to lock onto a target on a touchscreen while ignoring distracting signals nearby. When they temporarily silenced the PLTi neurons, the mice became significantly more distractible. With competing information present, the animals struggled to select the correct target after the silencing happened. The issue observed was specifically related to attention selection rather than sensory or movement functions because the animals retained normal vision and motor control capabilities despite the attention deficits. This pathway influences the superior colliculus, a brain region responsible for spatial mapping and guiding attention. The findings do not confirm a new treatment for ADHD but suggest an explanation for focus mechanisms.

    1h

    13 いいね0 低評価1 リポスト0 コメント
    ?

    コメント

    まだコメントはありません。最初のコメントを投稿しましょう!