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大鼠的触须运动皮层:与桶状区的连接

Vibrissal motor cortex in the rat: connections with the barrel field.

作者信息

Izraeli R, Porter L L

机构信息

Department of Anatomy and Cell Biology, Uniformed Services University of the Health Sciences, Bethesda, MD 20814, USA.

出版信息

Exp Brain Res. 1995;104(1):41-54. doi: 10.1007/BF00229854.

Abstract

The flow of information in the sensorimotor cortex may determine how somatic information modulates motor cortex neuronal activity during voluntary movement. Electrophysiological recordings and neuroanatomical tracing techniques were used to study the connections between the primary somatosensory cortex (SI) and the vibrissal representation of the primary motor cortex (MI) in rodents. Intracortical microstimulation (ICMS) was applied to the vibrissal region of the motor cortex to identify a site from which stimulation evoked movements of the vibrissae. Movements of only a single whisker were evoked by applying low-intensity stimulating current to particular locations within MI. A single injection of either horseradish peroxidase (HRP) or biocytin was made at the stimulus site in each animal, to retrogradely label cells in the somatosensory cortex. Receptive field (RF) responses were recorded from neurons in the barrel cortex to identify the sensory cortex representation of the same whisker that responded to ICMS. The site at which neurons responded predominately to manual stimulation of this particular vibrissa was marked by a small electrolytic lesion. The projection from the somatosensory cortex to the identified whisker representation in the motor cortex was determined by mapping the location of labeled neurons in tissue sections processed for either HRP or biocytin. The relationship of the labeled cells in SI to the barrel structures was determined from adjacent sections that were stained for cytochrome oxidase. In all cases, the barrel column associated with the relevant whisker contained labeled cells. Surrounding barrels also contained labeled cells, although fewer in number. Very few labeled cells were found in non-contiguous barrels. These results show that the SI to MI projection is somatotopically arranged, such that the sensory cortex representation of a whisker is morphologically connected to the motor cortex representation of the same whisker. Thus, sensory information is relayed to MI from the relevant whisker region in SI. Adjacent whisker regions also appear to relay somatic input, but presumably to a lesser degree. A second group of animals received single small injections of the anterograde tracer, Phaseolus vulgaris leucoagglutinin, to an electrophysiologically identified whisker representation in the sensory cortex. A single narrow column of labeled fibers was found in the motor cortex following such injections. Thus, the sensory cortex appears to relay somatic information from the vibrissae to restricted regions of the motor cortex in a somatotopically organized manner. Furthermore, the stimulus-evoked whisker movements suggest that certain features of the output map of the motor cortex are discretely organized.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

感觉运动皮层中的信息流可能决定了在自主运动过程中躯体信息如何调节运动皮层神经元的活动。采用电生理记录和神经解剖示踪技术,研究啮齿动物初级躯体感觉皮层(SI)与初级运动皮层(MI)的触须表征之间的联系。将皮层内微刺激(ICMS)应用于运动皮层的触须区域,以确定刺激能诱发触须运动的部位。通过向MI内的特定位置施加低强度刺激电流,仅诱发了单根触须的运动。在每只动物的刺激部位单次注射辣根过氧化物酶(HRP)或生物胞素,以逆行标记躯体感觉皮层中的细胞。记录桶状皮层中神经元的感受野(RF)反应,以确定对ICMS有反应的同一根触须在感觉皮层的表征。通过对用HRP或生物胞素处理的组织切片中标记神经元的位置进行定位,确定了从躯体感觉皮层到运动皮层中已确定的触须表征的投射。从用细胞色素氧化酶染色的相邻切片中确定SI中标记细胞与桶状结构的关系。在所有情况下,与相关触须相关的桶状柱都含有标记细胞。周围的桶状结构也含有标记细胞,不过数量较少。在不相邻的桶状结构中发现的标记细胞极少。这些结果表明,从SI到MI的投射是按躯体定位排列的,使得一根触须在感觉皮层的表征在形态学上与同一根触须在运动皮层的表征相连接。因此,感觉信息从SI中的相关触须区域传递到MI。相邻的触须区域似乎也传递躯体输入,但程度可能较小。第二组动物在感觉皮层中电生理确定的触须表征处单次小剂量注射顺行示踪剂菜豆凝集素。注射后在运动皮层中发现了单列标记纤维。因此,感觉皮层似乎以躯体定位组织的方式将来自触须的躯体信息传递到运动皮层的受限区域。此外,刺激诱发的触须运动表明运动皮层输出图谱的某些特征是离散组织的。(摘要截选至400字)

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