Moore L E, Hill R H, Grillner S
Nobel Institute for Neurophysiology, Karolinska Institutet, Stockholm,Sweden.
Brain Res. 1987 Sep 1;419(1-2):397-402. doi: 10.1016/0006-8993(87)90616-0.
Spinal neurons in the lamprey have been subjected to a voltage clamp analysis of the excitatory currents generated during fictive locomotion with particular reference to the phasic activation of voltage dependent N-methyl-D-aspartate (NMDA) receptors. Voltage-clamped neurons observed during NMDA-induced fictive swimming show excitatory and inhibitory synaptic currents in phase with the ipsilateral and contralateral ventral root discharges, respectively. The excitatory synaptic currents showed a marked voltage dependence suggesting that potential sensitive conductances such as the NMDA ionophore are involved in the synaptic events underlying rhythmic locomotor activity. The effect of NMDA receptor activation during application of tetrodotoxin has also been analyzed during NMDA-induced pacemaker-like oscillations. Such NMDA-induced oscillations are essentially abolished during the voltage clamp. In the presence of NMDA current voltage plots reveal a negative slope conductance in the potential range of the inherent oscillations. The addition of tetraethyl ammonium (TEA) to NMDA solution enhanced a net steady state inward current by more than 10-fold due to a partial block of the outward currents. A kinetic analysis was done with a frequency domain technique using a white noise stimulus to linearly perturb the membrane potential over a wide range of frequencies. The analysis revealed that the induced negative conductance leads to a response which is nearly 180 degrees out of phase with the stimulus at low frequencies. This is an unstable condition which leads to the depolarizing phase of the induced oscillations.
七鳃鳗的脊髓神经元已接受电压钳分析,以研究在虚构运动过程中产生的兴奋性电流,特别关注电压依赖性N-甲基-D-天冬氨酸(NMDA)受体的相位激活。在NMDA诱导的虚构游泳过程中观察到的电压钳制神经元,分别显示出与同侧和对侧腹根放电同步的兴奋性和抑制性突触电流。兴奋性突触电流表现出明显的电压依赖性,这表明诸如NMDA离子载体等电位敏感电导参与了节律性运动活动背后的突触事件。在NMDA诱导的起搏器样振荡过程中,也分析了河豚毒素应用期间NMDA受体激活的影响。在电压钳制期间,这种NMDA诱导的振荡基本上被消除。在存在NMDA的情况下,电流-电压图在固有振荡的电位范围内显示出负斜率电导。由于向外电流的部分阻断,向NMDA溶液中添加四乙铵(TEA)使净稳态内向电流增加了10倍以上。使用白噪声刺激在很宽的频率范围内线性扰动膜电位,通过频域技术进行了动力学分析。分析表明,诱导的负电导导致在低频时与刺激几乎相差180度的响应。这是一种不稳定状态,导致诱导振荡的去极化阶段。