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二氧化碳对楔束核突触传递的作用。

The action of carbon dioxide on synaptic transmission in the cuneate nucleus.

作者信息

Morris M E

出版信息

J Physiol. 1971 Nov;218(3):671-89. doi: 10.1113/jphysiol.1971.sp009639.

Abstract
  1. The excitability of synaptic structures in the cuneate nucleus was studied in eighteen decerebrate, unanaesthetized cats during acute changes in inspired P(CO2).2. Micro-electrode stimulation in the caudal half of the cuneate nucleus evoked antidromic and orthodromic responses which were recorded simultaneously from a forelimb nerve and from the medial lemniscus at the transected mid-brain surface.3. Increases in the concentration of inspired CO(2) (2-20%) progressively decreased the direct excitability of both the afferent fibre terminals (reflected in the antidromic potentials) and the cuneate relay neurones (reflected in the alpha wave of the orthodromic lemniscal response). Synaptically mediated responses, recorded as the beta component of the lemniscal potentials, were also depressed.4. The relation between input and output at the cuneate was determined by plotting antidromic against trans-synaptic (beta lemniscal) responses for different intensities of stimulation. The mean slope for logarithmic values of control potential amplitudes was 1.17 (+/- S.E. 0.13). It therefore appears that the transfer function for the cuneate is linear over a wide range.5. In the majority of experiments the input-output relation was unchanged or increased by raising P(CO2). It was concluded that the efficiency of synaptic transmission and release of transmitter appeared to be well maintained or possibly increased at individual active synapses during hypercarbia.6. The depressant action of CO(2) on afferent transmission can therefore be attributed largely to a block of impulse conduction in the primary afferent fibres.
摘要
  1. 在18只去大脑、未麻醉的猫身上,研究了在吸入二氧化碳分压(P(CO2))急性变化期间楔束核突触结构的兴奋性。

  2. 在楔束核后半部进行微电极刺激,诱发逆向和顺向反应,这些反应同时从前肢神经和横断中脑表面的内侧丘系记录下来。

  3. 吸入二氧化碳浓度增加(2% - 20%)会逐渐降低传入纤维末梢(反映在逆向电位中)和楔束中继神经元(反映在顺向丘系反应的α波中)的直接兴奋性。作为丘系电位β成分记录的突触介导反应也受到抑制。

  4. 通过绘制不同刺激强度下逆向反应与跨突触(丘系β)反应的关系,确定了楔束的输入与输出关系。对照电位幅度对数值的平均斜率为1.17(±标准误0.13)。因此,楔束的传递函数在很宽的范围内似乎是线性的。

  5. 在大多数实验中,提高P(CO2)时输入 - 输出关系不变或增加。得出的结论是,在高碳酸血症期间,单个活跃突触处的突触传递效率和递质释放似乎得到了很好的维持或可能增加。

  6. 因此,二氧化碳对传入神经传递的抑制作用很大程度上可归因于初级传入纤维中冲动传导的阻滞。

相似文献

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Input-output relation of transmission through cuneate nucleus.通过楔束核的传导的输入-输出关系
J Physiol. 1976 Jun;257(3):791-815. doi: 10.1113/jphysiol.1976.sp011398.
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Effect of cooling on synaptic transmission through the cuneate nucleus.
Acta Physiol Scand. 1972 Apr;84(4):433-47. doi: 10.1111/j.1748-1716.1972.tb05194.x.

本文引用的文献

1
Intermittent conduction in the spinal cord.脊髓中的间歇性传导。
J Physiol. 1935 Aug 22;85(1):73-103. doi: 10.1113/jphysiol.1935.sp003303.
4
MECHANISMS OF SYNAPTIC TRANSMISSION IN THE CUNEATE NUCLEUS.楔束核内突触传递的机制
J Neurophysiol. 1964 Nov;27:1096-116. doi: 10.1152/jn.1964.27.6.1096.
6

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