首页> 美国卫生研究院文献>The Journal of Physiology >Responses of electroreceptors in the platypus bill to steady and alternating potentials.
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Responses of electroreceptors in the platypus bill to steady and alternating potentials.

机译:鸭嘴兽中的电感受器对稳定和交变电势的响应。

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摘要

1. This is a report of further observations on the response characteristics of electroreceptors in the bill of the platypus, Ornithorhynchus anatinus, first described by Gregory, Iggo, McIntyre & Proske (1987). 2. The main finding is that, with the bill immersed in water, applying a potential difference between large plate electrodes on either side of the bill, produced detectable responses in a population of electroreceptors to field strengths as low as 4 mV cm-1. Threshold for individual receptors lay between 4 and 25 mV cm-1. 3. An electric dipole placed in the water close to the receptive field could also elicit responses, threshold being lowest when the cathode was near the centre of the field. On several occasions the most sensitive spot was seen, under the microscope, to correspond to the mouth of a mucous sensory gland (Andres & Von Düring, 1984). Response intensity fell when the dipole was moved further away, the drop being less steep in a direction over the top of the bill towards the mid-line. 4. For individual receptors the latency of the first impulse initiated by supramaximal voltage pulses was 1.1-1.8 ms. Latencies tended to be shorter when the site of the receptor lay closer to the recording electrodes. Plotting each latency against conduction path length for eleven receptors gave an approximately linear relation from which was calculated an average axonal conduction velocity of 56 m s-1. The plot yielded an estimate of impulse initiation time of 0.8 ms. It is argued that this is too short to include a synaptic delay. A peripheral synapse is found in all non-mammalian electroreceptors. 5. Electroreceptors responded to both steady and rapidly changing potential gradients. For ramp-shaped gradients of 1-50 V s-1 peak firing rate was approximately proportional to log stimulus velocity. In response to sinusoidal potential changes a 1:1 relation between each afferent impulse and the peak of the stimulating waveform could be obtained over the range 12-300 Hz. Threshold was at its lowest at 50-100 Hz. Tuning curves measured with the bill immersed in water were little different from those obtained by focal stimulation with the bill in air. 6. It is concluded that platypus electroreceptors, supplied by the trigeminal nerve, and which are therefore not part of the acoustico-lateralis system as in non-mammalian electroreceptors, are also unique in not having a peripheral synapse. Furthermore, they are able to respond to both steady and rapidly changing voltage gradients.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.这是对鸭嘴兽Ornithorhynchus anatinus帐单中的电感受器的响应特性的进一步观察的报告,最早由Gregory,Iggo,McIntyre&Proske(1987)描述。 2.主要发现是,将钞票浸入水中,在钞票两侧的大板电极之间施加电势差,可在一群电感受器中产生对低至4 mV cm-1的场强的可检测响应。单个受体的阈值介于4至25 mV cm-1之间。 3.放置在水中靠近接受电场的电偶极子也可能引起响应,当阴极靠近电场中心时,阈值最低。在显微镜下,有时会看到最敏感的斑点对应于粘液感觉腺的嘴(Andres&VonDüring,1984)。当偶极子移到更远处时,响应强度下降,该下降沿票据顶部朝中线的方向减小。 4.对于单个受体,由超最大电压脉冲引发的第一个脉冲的等待时间为1.1-1.8 ms。当受体的位置更靠近记录电极时,潜伏期趋于缩短。相对于11个受体的传导路径长度绘制每个潜伏期,得出近似线性关系,从中可以计算出56 m s-1的平均轴突传导速度。该图得出的脉冲启动时间估计为0.8 ms。有人认为这太短了以至于没有突触延迟。在所有非哺乳动物的电子受体中都发现了外周突触。 5.电感受器对稳定和快速变化的电势梯度都做出了响应。对于1-50 V s-1的斜坡形梯度,峰值发射速率大约与对数激励速度成正比。响应于正弦电势变化,可以在12-300 Hz的范围内获得每个传入脉冲与刺激波形的峰值之间的1:1关系。阈值处于50-100 Hz的最低点。将钞票浸入水中后测得的调谐曲线与通过空气中的钞票进行局部刺激获得的调谐曲线几乎没有什么不同。 6.结论是,由三叉神经提供的鸭嘴兽电感受器因此不像非哺乳动物电感受器那样是侧耳系统的一部分,在没有周围突触方面也是独特的。此外,它们能够响应稳定且快速变化的电压梯度。(摘要截断为400字)

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