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Common principles of sensory encoding in spinal reflex modules and cerebellar climbing fibres.

机译:脊髓反射模块和小脑攀爬纤维中感觉编码的通用原理。

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An important step towards understanding the function of olivo-cerebellar climbing fibres must be to clarify what they signal. We suggest that climbing fibres projecting to paravermal cerebellum mediate highly integrated sensorimotor information derived from activity in spinal withdrawal reflex modules acting on single forelimb muscles. To test this hypothesis, cutaneous nociceptive receptive fields of spinal reflex modules were mapped and compared to those of climbing fibres. Quantitative methods were used both for mapping and for comparing receptive fields. The organization of muscle afferent input converging on individual climbing fibres was analysed in the light of results from receptive field comparisons. Individual cutaneous receptive fields in the two systems were readily matched. Matched pairs were highly similar with regard to detailed distributions of sensitivity: correlation coefficient r = 0.85; overlap of receptive field foci 72 % (average values). The olivary targets of muscle afferents from a given muscle were mainly climbing fibres with cutaneous receptive fields similar to that of the muscle itself, but to a lesser extent also other climbing fibres. In conclusion, paravermal climbing fibres apparently convey information integrating (i) cutaneous input to an individual spinal withdrawal reflex module, (ii) muscle afferent input from the output muscle of that module and (iii) muscle afferent input from muscles that constitute the output of functionally related modules. This suggests that an individual climbing fibre signals cutaneous sensory events reflecting activity of a single muscle conditional upon the functional state of the muscle itself and that of functionally related muscles.
机译:理解小脑小脑攀爬纤维的功能的重要步骤必须是弄清它们的信号。我们建议,投射到小脑旁小脑的攀登纤维可调节高度整合的感觉运动信息,该信息源自作用于单个前肢肌肉的脊柱退缩反射模块中的活动。为了验证该假设,绘制了脊髓反射模块的皮肤伤害感受野并将其与攀爬纤维的感受野进行了比较。定量方法既用于作图又用于比较感受野。根据接受场比较的结果分析了会聚在单个攀爬纤维上的肌肉传入输入的组织。两个系统中的各个皮肤感受野很容易匹配。匹配对在灵敏度的详细分布方面非常相似:相关系数r = 0.85;感受野焦点重叠72%(平均值)。给定肌肉的肌肉传入的橄榄石目标主要是攀爬纤维,其皮肤感受野与肌肉本身的皮肤相似,但在较小程度上,其他攀爬纤维也是如此。总之,超常爬纤维显然传达了整合了以下信息的信息:(i)皮肤输入到单个脊柱缩回反射模块,(ii)来自该模块输出肌肉的肌肉传入输入,(iii)构成肌肉输出的肌肉传入肌肉功能相关的模块。这表明,单个攀爬纤维发出信号的皮肤感觉事件,反映了以肌肉本身和功能相关的肌肉的功能状态为条件的单个肌肉的活动。

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