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体内脊髓运动神经元中动态突触输入的快速放大

Fast amplification of dynamic synaptic inputs in spinal motoneurons in vivo.

作者信息

Jones Sarah M, Lee Robert H

机构信息

Department of Biomedical Engineering, Georgia Institute of Technology, Whitaker Bldg., 3103, 313 Ferst Dr., Atlanta, GA 30332, USA.

出版信息

J Neurophysiol. 2006 Nov;96(5):2200-6. doi: 10.1152/jn.00537.2006. Epub 2006 Jul 5.

Abstract

The ability of voltage-dependent inward currents (likely Na(+)) of the adult cat lumbar motoneurons to amplify rapidly changing (i.e., dynamic) synaptic inputs was investigated using in vivo intracellular recording techniques. Fast amplification was assessed by measuring the magnitude of the high-frequency (180 Hz) component of the Ia synaptic input due to tendon vibration as a function of somatic voltage and was compared with the previously observed amplification of steady inputs (steady state response of PICs to slow inputs). Data from 17 experiments show that amplification of the dynamic input indeed occurred and was directly linked to neuromodulatory drive (standard state: decerebrate with intact descending neuromodulatory systems vs. minimal state: pentobarbital with said systems significantly inhibited). Fast amplification factors averaged 2.0 +/- 0.7 (mean +/- SD) in the standard neuromodulatory state. That is, the effective synaptic current was nearly twice as large at its peak as it was at hyperpolarized levels, ranging as high as 2.6. Although fast amplification was often smaller than the amplification of steady inputs, the difference was not statistically significant. However, the voltage at which fast amplification began was approximately 10 mV more depolarized (P < 0.01). It is concluded that both dynamic and steady inputs can be amplified, but there may be differences in mechanism.

摘要

运用体内细胞内记录技术,研究了成年猫腰段运动神经元电压依赖性内向电流(可能为Na⁺)对快速变化(即动态)突触输入的放大能力。通过测量由于肌腱振动引起的Ia突触输入的高频(180Hz)成分的幅度作为体细胞电压的函数来评估快速放大,并将其与先前观察到的稳定输入的放大(PICs对缓慢输入的稳态反应)进行比较。来自17个实验的数据表明,动态输入的放大确实发生了,并且与神经调节驱动直接相关(标准状态:去大脑且下行神经调节系统完整与最小状态:戊巴比妥使所述系统显著抑制)。在标准神经调节状态下,快速放大因子平均为2.0±0.7(平均值±标准差)。也就是说,有效突触电流在其峰值时几乎是超极化水平时的两倍,高达2.6。虽然快速放大通常小于稳定输入的放大,但差异无统计学意义。然而,快速放大开始时的电压去极化程度约高10mV(P<0.01)。得出的结论是,动态和稳定输入都可以被放大,但机制可能存在差异。

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