Grüsser C, Grüsser-Cornehls U
Freie Universität Berlin, FB Humanmedizin, Universitätsklinikum Benjamin Franklin, Department of Physiology, Germany.
Behav Brain Res. 1998 Dec;97(1-2):189-94. doi: 10.1016/s0166-4328(98)00042-4.
In Weaver mutants (B6CBA wv/wv) cerebellar granule cells degenerate almost completely postnatally. A partial loss of Purkinje cells (PC) and a degeneration of dopaminergic cells in the substantia nigra have also been found. Weaver mice suffer from striking motor symptoms, including difficulty in walking without toppling over. In an attempt to influence the poor motor performance, the cerebellum in young animals was removed, thus eliminating the faulty output of surviving PCs, demonstrated electrophysiologically. Unoperated Weaver, lesioned wildtypes and one sham mouse were used as controls. Before and after operation, a battery of behavioural tests was performed. In Weaver mice, tumbling to the side (t) and the relation of t to the motor activity (k) while traversing an open-field matrix, (t/k), improved considerably, as did manoeuvring on a slanted wire mesh, but keeping balance on a wooden bench did not to the same degree. Locomotor activity alone improved in some animals. In wildtypes no significant changes occurred after operation, with the exception of a strong reduction in locomotor activity. The experiments demonstrate that the motor performance in Weaver mutant mice benefits from removal of their cerebellum.
在韦弗突变体(B6CBA wv/wv)中,小脑颗粒细胞在出生后几乎完全退化。还发现浦肯野细胞(PC)部分缺失以及黑质中多巴胺能细胞退化。韦弗小鼠患有明显的运动症状,包括行走时容易摔倒。为了改善其不佳的运动表现,切除了幼龄动物的小脑,从而消除了经电生理证明的存活浦肯野细胞的错误输出。未手术的韦弗小鼠、损伤的野生型小鼠和一只假手术小鼠用作对照。手术前后进行了一系列行为测试。在韦弗小鼠中,在穿越开阔场地矩阵时向一侧翻滚(t)以及t与运动活动(k)的关系(t/k)有了显著改善,在倾斜金属网上的操控能力也有所提高,但在木凳上保持平衡的能力改善程度不同。仅部分动物的运动活动有所改善。在野生型小鼠中,除了运动活动大幅减少外,手术后没有发生显著变化。实验表明,切除小脑对韦弗突变小鼠的运动表现有益。