Hyun Nam Gyu, Hyun Kwang-Ho, Lee Kyungmin, Kaang Bong-Kiun
Department of Physics, Jeju National University, Jeju, Korea.
Neurosignals. 2012;20(4):252-64. doi: 10.1159/000334960. Epub 2012 Jan 28.
Although the effects of temperature changes on the activity of neurons have been studied in Aplysia, the reproducibility of the temperature dependence of the action potential (AP) parameters has not been verified. To this end, we performed experiments using Aplysia neurons. Fourteen AP parameters were analyzed using the long-term data series recorded during the experiments. Our analysis showed that nine of the AP parameters decreased as the temperature increased: the AP amplitude (A(AP)), membrane potential at the positive peak (V(pp)), interspike interval, first half (Δt(r1)) and last half (Δt(r2)) of the temperature rising phase, first half (Δt(f1)) and last half (Δt(f2)) of the temperature falling phase, AP (Δt(AP, 1/2)), and differentiated signal (Δt(DS, 1/2)) half-width durations. Five of the AP parameters increased with temperature: the differentiated signal amplitude (A(DS)), absolute value of the membrane potential at negative peak (|V(np)|), absolute value of the maximum slope of the AP during the temperature rising (|-MSR|) and falling (|MSF|) phases, and spiking frequency (Frequency). This work could provide the basis for a better understanding of the elementary processes underlying the temperature-dependent neuronal activity in Aplysia.
尽管已经在海兔中研究了温度变化对神经元活动的影响,但动作电位(AP)参数的温度依赖性的可重复性尚未得到验证。为此,我们使用海兔神经元进行了实验。利用实验期间记录的长期数据序列分析了14个AP参数。我们的分析表明,随着温度升高,9个AP参数下降:AP幅度(A(AP))、正峰值处的膜电位(V(pp))、峰间期、升温阶段的前半段(Δt(r1))和后半段(Δt(r2))、降温阶段的前半段(Δt(f1))和后半段(Δt(f2))、AP(Δt(AP, 1/2))以及微分信号(Δt(DS, 1/2))的半宽度持续时间。5个AP参数随温度升高:微分信号幅度(A(DS))、负峰值处膜电位的绝对值(|V(np)|)、升温(|-MSR|)和降温(|MSF|)阶段AP的最大斜率绝对值以及放电频率(Frequency)。这项工作可为更好地理解海兔中温度依赖性神经元活动的基本过程提供依据。