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In vivo responses of mouse superficial dorsal horn neurones to both current injection and peripheral cutaneous stimulation

机译:小鼠浅表背角神经元对电流注射和周围皮肤刺激的体内反应

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摘要

In the superficial dorsal horn (SDH) processing of noxious and innocuous stimuli is critically dependent on the input–output relationship of its component neurones. Such relationships are routinely examined by assessing neuronal responses to somatic current injection or activation of synaptic inputs. A more complete understanding of input–output relationships would be achieved by comparing, in the same neurone, how the two forms of activation contribute to neuronal output. Therefore, we examined how SDH neurones transform depolarizing current injections and synaptic excitation via peripheral cutaneous stimuli (brush and pinch of the hindpaw) into trains of action potentials, in an in vivo preparation of the adult mouse spinal cord. Under whole-cell current clamp recording conditions four action potential discharge patterns were observed during depolarizing current injection: tonic firing neurones (21/93) discharged spikes throughout the step; initial bursting neurones (35/93) discharged several spikes at step onset; single spiking neurones (16/93) discharged one or two spikes at step onset; and delayed firing neurones (21/93) discharged spikes delayed from the step onset. Four characteristic profiles were observed in response to application of noxious (pinch) and innocuous (brush) cutaneous stimuli: nociceptive neurones (20/37) responded maximally to pinch stimulation; light touch neurones (9/37) responded maximally to brush stimulation; subthreshold neurones (4/37) exhibited depolarizing responses without firing action potentials; and hyperpolarizing neurones (4/37) exhibited a sustained pinch-induced hyperpolarization. Comparisons of current-evoked discharge patterns with peripherally evoked responses indicate SDH neurones expressing each of the four discharge patterns could receive, and therefore participate in the processing of information concerning, either noxious or innocuous stimuli. These data suggest that a neurone's response to current injection does not necessarily help identify or predict how the same neurone will respond to physiologically or functionally relevant stimuli.
机译:在浅背角(SDH)中,有害和无害刺激的处理关键取决于其组成神经元的输入-输出关系。通过评估对体电流注入或突触输入激活的神经元反应来常规检查这种关系。通过在同一神经元中比较两种激活形式对神经元输出的贡献,可以更全面地了解输入-输出关系。因此,我们在体内制备成年小鼠脊髓的过程中,研究了SDH神经元如何通过外围皮肤刺激(后爪刷和捏)将去极化电流注射和突触兴奋转变为一系列动作电位。在全细胞电流钳记录条件下,在去极化电流注入过程中观察到四个动作电位放电模式:在整个步骤中,强直发射神经元(21/93)释放了尖峰;最初爆发的神经元(35/93)在发作开始时释放了几个尖峰;单峰神经元(16/93)在发作开始时释放一两个峰值。延迟放电神经元(21/93)的放电峰值从脚步发作延迟。观察到四种特性曲线,分别响应有毒(捏)和无害(刷)皮肤刺激的应用:伤害性神经元(20/37)对捏刺激的反应最大;轻触神经元(9/37)对刷刺激的反应最大。亚阈值神经元(4/37)表现出去极化反应,而没有激发动作电位;超极化神经元(4/37)表现出持续的捏诱导超极化。当前诱发放电模式与周围诱发反应的比较表明,表达四种放电模式中的每一种的SDH神经元都可以接收,因此参与有关有害或无害刺激的信息的处理。这些数据表明,神经元对当前注射的反应并不一定有助于识别或预测同一神经元对生理或功能相关刺激的反应。

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