Mizunami M, Tateda H
Department of Biology, Kyushu University, Fukuoka, Japan.
J Gen Physiol. 1988 May;91(5):703-23. doi: 10.1085/jgp.91.5.703.
The relationship between the slow potential and spikes of second-order ocellar neurons of the cockroach, Periplaneta americana, was studied. The stimulus was a sinusoidally modulated light with various mean illuminances. A solitary spike was generated at the depolarizing phase of the modulation response. Analysis of the relationship between the amplitude/frequency of voltage modulation and the rate of spike generation showed that (a) the spike initiation process was bandpass at approximately 0.5-5 Hz, (b) the process contained a dynamic linearity and a static nonlinearity, and (c) the spike threshold at optimal frequencies (0.5-5 Hz) remained unchanged over a mean illuminance range of 3.6 log units, whereas (d) the spike threshold at frequencies of less than 0.5 Hz was lower at a dimmer mean illuminance. The voltage noise in the response was larger and the mean membrane potential level was more positive at a dimmer mean illuminance. Steady or noise current injection during sinusoidal light stimulation showed that (a) the decrease in the spike threshold at a dimmer mean illuminance was due to the increase in the noise variance: the noise had facilitatory effects on the spike initiation; and (b) the change in the mean potential level had little effect on the spike threshold. We conclude that fundamental signal modifications occur during the spike initiation in the cockroach ocellar neuron, a finding that differs from the spike initiation process in other visual systems, including Limulus eye and vertebrate retina, in which it is presumed that little signal modification occurs at the analog-to-digital conversion process.
研究了美洲大蠊二阶小眼神经元的慢电位与锋电位之间的关系。刺激为具有不同平均照度的正弦调制光。在调制响应的去极化阶段产生单个锋电位。对电压调制的幅度/频率与锋电位产生速率之间的关系进行分析表明:(a)锋电位起始过程在约0.5 - 5Hz范围内为带通;(b)该过程包含动态线性和静态非线性;(c)在3.6对数单位的平均照度范围内,最佳频率(0.5 - 5Hz)下的锋电位阈值保持不变,而(d)在平均照度较暗时,频率小于0.5Hz的锋电位阈值较低。在平均照度较暗时,响应中的电压噪声较大,平均膜电位水平更正。在正弦光刺激期间进行稳定或噪声电流注入表明:(a)在平均照度较暗时锋电位阈值降低是由于噪声方差增加:噪声对锋电位起始有促进作用;(b)平均电位水平的变化对锋电位阈值影响很小。我们得出结论,在蟑螂小眼神经元的锋电位起始过程中发生了基本的信号改变,这一发现不同于其他视觉系统(包括鲎眼和脊椎动物视网膜)的锋电位起始过程,在其他视觉系统中,据推测在模拟 - 数字转换过程中几乎没有信号改变。