Schweitzer J
J Comp Physiol A. 1986 Jan;158(1):43-58. doi: 10.1007/BF00614519.
The response properties of 322 single units in the electroreceptive midbrain (lateral mesencephalic nucleus, LMN) of the thornback ray, Platyrhinoidis triseriata, were studied using uniform and local electric fields. Tactile, visual, or auditory stimuli were also presented to test for multimodality. Most LMN electrosensory units (81%) are silent in the absence of stimulation. Those with spontaneous activity fired irregularly at 0.5 to 5 impulses/s, the lower values being more common. Two units had firing rates greater than 10/s. Midbrain electrosensory units are largely phasic, responding with one or a few spikes per stimulus onset or offset or both, but the adaptation characteristics of some neurons are complex. The same neuron can exhibit phasic or phasic-tonic responses, depending upon orientation of the electric field. Tonic units without any initial phasic over-shoot were not recorded. Even the phasic-tonic units adapt to a step stimulus within several seconds. Unit thresholds are generally lower than 0.3 microV/cm, the weakest stimulus delivered, although thresholds as high as 5 microV/cm were recorded, Neuronal responses reach a maximum, with few exceptions, at 100 microV/cm and decrease rapidly at higher intensities. LMN neurons are highly sensitive to stimulus repetition rates: most responded to frequencies of 5 pulses/s or less; none responded to rates greater than 10/s. Three distinct response patterns are recognized. Best frequencies in response to sinusoidal stimuli range from 0.2 Hz (the lowest frequency delivered) to 4 Hz. Responses decrease rapidly at 8 Hz or greater, and no units responded to frequencies greater than 32 Hz. Most LMN neurons have small, well defined excitatory electroreceptive fields (RFs) exhibiting no surround inhibition, at least as detectable by methods employed here. Seventy-eight percent of units recorded had RFs restricted to the ventral surface: of these, 98% were contralateral. The remaining 22% of units had disjunct dorsal and ventral receptive fields. Electrosensory RFs on the ventral surface are somatotopically organized. Anterior, middle, and posterior body surfaces are mapped at the rostral, middle, and caudal levels, respectively, of the contralateral LMN. The lateral, middle, and medial body are mapped at medial, middle, and lateral levels of the nucleus. Moreover, the RFs of all units isolated in a given dorsoventral electrode track are nearly superimposable. About 40% of LMN, measured from the dorsal surface, is devoted to input from ventral electroreceptors located in a small region rostral and lateral to the mouth.(ABSTRACT TRUNCATED AT 400 WORDS)
利用均匀电场和局部电场,对糙背电鳐(Platyrhinoidis triseriata)电感受中脑(外侧中脑核,LMN)中的322个单神经元的反应特性进行了研究。还呈现了触觉、视觉或听觉刺激以测试多模态。大多数LMN电感受神经元(81%)在无刺激时保持沉默。那些具有自发放电的神经元以0.5至5次冲动/秒的不规则频率放电,较低的值更为常见。两个神经元的放电频率大于10次/秒。中脑电感受神经元在很大程度上是相位性的,每个刺激开始或结束或两者时以一个或几个尖峰做出反应,但一些神经元的适应特性很复杂。同一个神经元可根据电场方向表现出相位或相位 - 紧张性反应。未记录到无任何初始相位超调的紧张性神经元。即使是相位 - 紧张性神经元在几秒内也会适应阶跃刺激。神经元阈值通常低于0.3微伏/厘米,这是所施加的最弱刺激,尽管记录到高达5微伏/厘米的阈值。除少数例外,神经元反应在100微伏/厘米时达到最大值,并在更高强度下迅速下降。LMN神经元对刺激重复率高度敏感:大多数对5次脉冲/秒或更低的频率有反应;对大于10次/秒的频率无反应。识别出三种不同的反应模式。对正弦刺激的最佳频率范围为0.2赫兹(所施加的最低频率)至4赫兹。在8赫兹或更高频率时反应迅速下降,且没有神经元对大于32赫兹的频率有反应。大多数LMN神经元具有小的、定义明确的兴奋性电感受野(RFs),至少用此处采用的方法未检测到周围抑制。记录的78%的神经元其RFs局限于腹侧表面:其中98%是对侧的。其余22%的神经元具有分离的背侧和腹侧感受野。腹侧表面的电感受RFs是按躯体定位组织的。身体的前、中、后表面分别映射到对侧LMN的吻侧、中间和尾侧水平。身体的外侧、中间和内侧分别映射到核的内侧、中间和外侧水平。此外,在给定的背腹电极轨迹中分离出的所有神经元的RFs几乎是重叠的。从背侧表面测量,约40%的LMN用于接收来自位于口部吻侧和外侧小区域的腹侧电感受器的输入。(摘要截断于400字)