日本基礎理学療法学雑誌
Online ISSN : 2434-0731
Print ISSN : 2186-0742
ミニレビュー
片側大脳皮質障害後の運動および脳機能の回復メカニズム
一原 里江村上 新治藤戸 裕
著者情報
キーワード: 障害, 学習, 回復, , Therapy
ジャーナル オープンアクセス

2002 年 5 巻 2 号 p. 9-15

詳細
抄録
To assess the effect of behavioral manipulation as therapy on the new neural network after brain damage, we studied the effect of skilled training on neurophysiological change in the intact cortex after unilateral damage to the forelimb sensorimotor cortex. Eighteen male Wistar rats (4-5 months) were assigned to 6 groups: (1) rats receiving unilateral forelimb sensorimotor cortex lesion (FSMC lesion) and postoperative training on the skilled task (L-skilled), (2) rats with unilateral FSMC lesion receiving simple repetitive task (L-simple), (3) rats with unilateral FSMC lesion receiving no task (L-non-training), (4)sham-operated rats receiving skilled task, (5) sham-operated rats receiving simple task, (6) sham-operated rats with no task. Rats were anesthized with halothene and followed with Ketamine HCI and electrical lesion was added at FSMC where was confirmed by electrical microstimulation (less than 20 μA). After chronic operations, rats were trained according to each task. Recovery of motor behavior was tested by the symmetry in the use of the forelimbs for upright postural support. Recovery from the asymmetrical use in the forelimbs indicated the recovery period was faster in the L-skilled and L-simple than L-non-training groups. Microstimulation mapping showed forelimb area was expanded in intact cortex of the L-skilled group especially. These findings suggested that therapeutic effect as behavioral manipulation makes neurophysiological change in whole brain, evening the intact side, after unilateral cortical lesion.
著者関連情報
© 2002 日本基礎理学療法学会
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