Kolesnikov V G
Biull Eksp Biol Med. 1985 Oct;100(10):394-8.
The movement of the cat forelimb was studied under the conditions of complete transection of the classical somatosensory pathways from the limb to the cortex of the contralateral hemisphere. It was demonstrated that in animals with the intact system of the somatosensory (kinesthetic) feedback, the parameters of the same memorized movement varied widely from response to response whereas the exclusion of lemniscus projections from the control system led to the poor movement pattern and to the appearance of motor stereotypy. The hypothesis is advanced that deficit of kinesthetic information in this case is compensated for not only by the other intact connections of the kinesthetic analyzer but also due to the conversion of the nervous system to the central-programmed level control which itself demands less participation of the somatosensory feedback. The non-crossed projections of the kinesthetic analyzer are capable of forming and correcting this program and of ensuring the effect afferentation as well. The same principle of the functioning may take place in any compensatory reconstructions in the CNS.
在经典体感通路从肢体完全横断至对侧半球皮质的条件下,对猫的前肢运动进行了研究。结果表明,在具有完整体感(动觉)反馈系统的动物中,相同记忆运动的参数在每次反应中差异很大,而从控制系统中排除薄束投射会导致运动模式不佳和运动刻板行为的出现。有人提出假说,在这种情况下,动觉信息的不足不仅由动觉分析器的其他完整连接来补偿,还由于神经系统转变为中枢程序水平控制,而这种控制本身对体感反馈的参与要求较低。动觉分析器的非交叉投射能够形成和纠正这一程序,并确保传入效应。相同的功能原理可能发生在中枢神经系统的任何代偿性重构中。