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Temperature sensitivity of neurones in slices of the rat spinal cord.

机译:大鼠脊髓切片中神经元的温度敏感性。

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摘要

1. The inherent temperature sensitivity of 343 spontaneously active neurones recorded from rat spinal cord (SC) slices was investigated electrophysiologically. Recordings were made from 321 neurons from transverse and 22 neurons from longitudinal slices and their thermosensitivity was determined by relating changes in firing rate to changes in slice temperature. 2. Of the neurones from transverse slices, 53% were warm sensitive, 2% were cold sensitive and 45% were temperature insensitive. In longitudinal slices, 68% were warm sensitive and the remaining neurones were temperature insensitive. 3. When classified according to their recording sites in transverse slices, warm-sensitive neurones in laminae I and II had the same mean temperature coefficient compared with those recorded from lamina X, despite the fact that the latter had a significantly higher spontaneous activity. 4. The intrinsic temperature sensitivity of the majority of warm-sensitive neurones was confirmed by blocking their synaptic input. 5. A transient overshoot in activity, i.e. a dynamic response characteristic following rapid temperature stimuli (0.4 degree C s-1) was observed in 73% of the warm-sensitive and 59% of the temperature-insensitive neurones in laminae I and II in response to rapid warming, but only rarely (< 10%) in lamina X. 6. Temperature-sensitive SC neurones share response characteristics with temperature-sensitive neurones in the preoptic and anterior hypothalamic (PO/AH) area and with peripheral temperature receptors. Functionally, these neurones may represent the cellular basis for the temperature sensory function of the spinal cord that has been well characterized in vivo in homeothermic species.
机译:1.电生理研究了从大鼠脊髓(SC)切片记录的343个自发活动神经元的固有温度敏感性。记录来自横向切片的321个神经元和纵向切片的22个神经元,并通过将发射速率的变化与切片温度的变化相关联来确定其热敏性。 2.在横切片的神经元中,53%对热敏感,2%对冷敏感,45%对温度不敏感。在纵向切片中,有68%对热敏感,其余神经元对温度不敏感。 3.当根据横切片上的记录部位进行分类时,薄层I和II中的热敏神经元与从薄层X记录的平均温度系数相同,尽管后者的自发活动明显更高。 4.大多数热敏感神经元的内在温度敏感性是通过阻止其突触输入来证实的。 5.在I,II层中的73%的热敏感神经元和59%的对温度不敏感的神经元中观察到活动的瞬时过冲,即在快速温度刺激(0.4℃s-1)之后的动态响应特性。对快速变暖有反应,但在薄层X中很少(<10%)。6.对温度敏感的SC神经元与在视前和下丘脑(PO / AH)区域的温度敏感神经元以及周围温度受体具有共同的响应特征。从功能上讲,这些神经元可能代表了脊髓的温度感觉功能的细胞基础,而脊髓的温度传感功能已在体内等温物种中得到了很好的表征。

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