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行为学大鼠口腔区域至大脑皮层的感觉输入:摄食行为期间皮层体感区和味觉区单位反应的分析。

Sensory inputs from the oral region to the cerebral cortex in behaving rats: an analysis of unit responses in cortical somatosensory and taste areas during ingestive behavior.

作者信息

Yamamoto T, Matsuo R, Kiyomitsu Y, Kitamura R

机构信息

Department of Oral Physiology, Faculty of Dentistry, Osaka University, Japan.

出版信息

J Neurophysiol. 1988 Oct;60(4):1303-21. doi: 10.1152/jn.1988.60.4.1303.

Abstract
  1. The responses of 90 cortical neurons in the somatosensory and gustatory areas were recorded with chronically implanted fine wires in freely moving Wistar rats. The responses were analyzed mainly while the animals were freely licking solutions and eating dry pellets. Cortical neurons were classified into several groups according to their response properties. 2. "Mechanosensitive" neurons (n = 20) showed rhythmic phasic activity in different phases of the licking cycle, depending on the location of their receptive field in the peripheral orofacial region. 3. "Movement-related" neurons (n = 27) changed their activities tonically during licking, chewing, or grooming behavior. The responses were either excitatory or inhibitory. Receptive fields and adequate stimuli could not be identified. These neurons might receive somatosensory (except light tactile) inputs from wide or deep areas of intra- or perioral regions, or might be related to orofacial active movement. 4. "Taste" neurons (n = 35) increased or decreased their discharge rates during licking of particular taste solutions. Some taste neurons received convergence from somatosensory inputs. 5. "Temperature" neurons (n = 2) responded exclusively to water of temperatures lower or higher than room temperature. The responses were opposite in direction between cold and warm stimuli. 6. "Anticipation" neurons (n = 4) increased their impulse discharges before the start of licking in the situation in which the animal expected access to the drinking tube. 7. "Attention" neurons (n = 2) responded to arousal stimulation such as sound, a flash of light, and body touch. These neurons showed only a slightly increasing response during ingestive behavior. 8. The locations of 56 of 90 units were histologically identified. Mechanosensitive neurons were located in the appropriate parts of the somatotopic pattern within the primary somatic sensory area in the granular cortex. Taste neurons were found evenly in the dysgranular cortex and the agranular insular cortex. Other types of neurons were located mainly in the dysgranular cortex between the granular cortex and agranular insular cortex, and some were intermingled with taste neurons in the agranular insular cortex. 9. The present study has shown that cortical neurons in the orolingual somatosensory and taste areas have different response characteristics related to each aspect of ingestive behavior.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在自由活动的Wistar大鼠中,用长期植入的细线记录了体感区和味觉区90个皮层神经元的反应。主要在动物自由舔溶液和吃干颗粒时对反应进行分析。根据皮层神经元的反应特性将其分为几组。2. “机械敏感”神经元(n = 20)在舔舐周期的不同阶段表现出节律性的相位活动,这取决于其感受野在周围口面部区域的位置。3. “运动相关”神经元(n = 27)在舔舐、咀嚼或梳理行为期间其活动呈紧张性变化。反应为兴奋性或抑制性。无法确定感受野和适宜刺激。这些神经元可能从口内或口周区域的广泛或深部区域接收体感(除轻触觉外)输入,或者可能与口面部主动运动有关。4. “味觉”神经元(n = 35)在舔舐特定味觉溶液时其放电率增加或减少。一些味觉神经元接收来自体感输入的汇聚。5. “温度”神经元(n = 2)仅对低于或高于室温的水作出反应。冷刺激和热刺激的反应方向相反。6. “预期”神经元(n = 4)在动物预期能够接触饮水管的情况下,在舔舐开始前其冲动发放增加。7. “注意力”神经元(n = 2)对声音、闪光和身体触摸等唤醒刺激作出反应。这些神经元在摄食行为期间仅表现出轻微增加的反应。8. 对90个单位中的56个单位的位置进行了组织学鉴定。机械敏感神经元位于颗粒状皮层初级体感觉区内躯体定位模式的适当部位。味觉神经元均匀分布于颗粒减少皮层和无颗粒岛叶皮层。其他类型的神经元主要位于颗粒状皮层和无颗粒岛叶皮层之间的颗粒减少皮层,一些与无颗粒岛叶皮层中的味觉神经元混合在一起。9. 本研究表明,口面部体感区和味觉区的皮层神经元在摄食行为的各个方面具有不同的反应特征。(摘要截断于400字)

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