異なる下降運動皮質経路と運動におけるその役割
Michael N Economo1, Sarada Viswanathan1, Bosiljka Tasic2
1Janelia Research Campus, Howard Hughes Medical Institute, Ashburn, VA, USA.
Nature
|November 2, 2018
まとめ
研究者達は 運動皮質の神経細胞の 2つの異なるタイプを発見しました 一つは運動開始のための準備活動を維持し,もう一つは運動コマンドを実行し,運動制御の専門的な役割を明らかにします.
科学分野:
- 神経科学
- モーター コントロール
- 細胞生物学
背景:
- 運動皮質の活動は,第5層のピラミッド経路の神経細胞で発見される準備信号で,運動の開始に先行する.
- 運動制御における重要な問題は,準備活動が早すぎる動きを誘発することなくどのように維持され,どのように運動コマンドに変換されるかです.
研究 の 目的:
- 運動皮質のピラミッド管の神経細胞の種類を特定し特徴づけること
- 運動準備と実行における異なる運動皮質出力ニューロン集団の特定の役割を解明する.
主な方法:
- 遺伝子発現パターンを分析するための単細胞転写プロファイリング
- ニューロンのプロジェクションと接続性をマップする軸索の再構築
主要な成果:
- 転写プロファイルと軸索投影に基づく2つの異なるタイプのピラミッド管ニューロンの識別.
- ニューロンの一種はタラミック領域に発射され,早期に持続的な準備活動を示します.
- 2つ目のニューロンは 末期の準備活動を示し 運動指令を生成します
結論:
- 運動皮質の出力ニューロンの2つのタイプは,運動制御に特化した機能を備えています.
- 異なる神経経路が 運動の準備と実行に差異的に貢献します
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