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Presynaptic and postsynaptic effects of local cathodal DC polarization within the spinal cord in anaesthetized animal preparations

机译:麻醉动物制剂中脊髓内局部阴极DC极化的突触前和突触后作用

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摘要

The present study aimed to compare presynaptic and postsynaptic actions of direct current polarization in the spinal cord, focusing on DC effects on primary afferents and motoneurons. To reduce the directly affected spinal cord region, a weak polarizing direct current (0.1–0.3 μA) was applied locally in deeply anaesthetized cats and rats; within the hindlimb motor nuclei in the caudal lumbar segments, or in the dorsal horn within the terminal projection area of low threshold skin afferents. Changes in the excitability of primary afferents activated by intraspinal stimuli (20–50 μA) were estimated using increases or decreases in compound action potentials recorded from the dorsal roots or peripheral nerves as their measure. Changes in the postsynaptic actions of the afferents were assessed from intracellularly recorded monosynaptic EPSPs in hindlimb motoneurons and monosynaptic extracellular field potentials (evoked by group Ia afferents in motor nuclei, or by low threshold cutaneous afferents in the dorsal horn). The excitability of motoneurons activated by intraspinal stimuli was assessed using intracellular records or motoneuronal discharges recorded from a ventral root or a muscle nerve. Cathodal polarization was found to affect motoneurons and afferents providing input to them to a different extent. The excitability of both was markedly increased during DC application, although post-polarization facilitation was found to involve presynaptic afferents and some of their postsynaptic actions, but only negligibly motoneurons themselves. Taken together, these results indicate that long-lasting post-polarization facilitation of spinal activity induced by locally applied cathodal current primarily reflects the facilitation of synaptic transmission.
机译:本研究旨在比较脊髓中直流极化的突触前和突触后作用,重点是对初级传入神经和运动神经元的直流作用。为了减少直接受影响的脊髓区域,在深麻醉的猫和大鼠中局部施加了弱极化直流电(0.1–0.3μA);在尾部腰段的后肢运动核内,或在低阈值皮肤传入末端投影区域内的背角内。脊柱内刺激(20-50μA)激活的初级传入兴奋性的变化是通过测量从背根或周围神经记录的复合动作电位的增减来估算的。从后肢运动神经元中的细胞内记录的单突触EPSP和单突触的胞外场电位(由运动核中的Ia组传入或在背角中的低阈值皮肤传入引起),评估传入突触后动作的变化。使用细胞内记录或腹侧根部或肌肉神经记录的单性神经元放电来评估由脊髓内刺激激活的运动神经元的兴奋性。发现阴极极化影响运动神经元和传入神经元以不同程度向它们提供输入。尽管发现极化后的促进涉及突触前传入和它们的一些突触后动作,但运动神经元本身仅微不足道,但在施加直流电期间,两者的兴奋性均显着增加。综上所述,这些结果表明由局部施加的阴极电流引起的脊柱活动的持久极化后促进主要是突触传递的促进。

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