Department of Zoology, University of Cambridge, Cambridge CB2 3EJ, UK.
Department of Zoology, University of Cambridge, Cambridge CB2 3EJ, UK
J Exp Biol. 2019 Nov 8;222(Pt 21):jeb210799. doi: 10.1242/jeb.210799.
We studied bilateral processing in the auditory ON neurons of crickets using reversible cold-deactivation of the hearing organs by means of Peltier elements. Intracellular recordings of the neurons' activity in response to acoustic stimuli were obtained, while either the ipsilateral or the contralateral hearing organ was cold-deactivated. Afferent activity was abolished at a temperature of approximately 10°C. In ON1, contralateral inhibition had no effect on the latency and amplitude of the phasic onset activity, it enhanced the decline of the onset activity and it decreased the subsequent tonic spiking response to acoustic stimuli. As a consequence, the phasic onset activity became more salient and reciprocal inhibition may support the detection of sound pulses. Contralateral inhibition had a significant impact on the tonic ON1 response, in line with its presumed function to enhance the bilateral auditory contrast. In ON2, experiments confirmed a bilateral excitatory input, with the ipsilateral input dominating the response, and no inhibitory coupling between the ON2 neurons.
我们使用珀耳帖元件可逆地冷却听觉器官的方法来研究蟋蟀听觉 ON 神经元的双侧处理。在获得对声刺激的神经元活动的细胞内记录的同时,冷却激活对侧或同侧听觉器官。传入活动在大约 10°C 的温度下被消除。在 ON1 中,对侧抑制对相位起始活动的潜伏期和幅度没有影响,它增强了起始活动的下降,并降低了随后对声刺激的紧张性爆发反应。因此,相位起始活动变得更加明显,而交互抑制可能有助于检测声音脉冲。对侧抑制对紧张性 ON1 反应有显著影响,这与其增强双侧听觉对比的假定功能一致。在 ON2 中,实验证实了双侧兴奋性输入,同侧输入主导反应,ON2 神经元之间没有抑制性偶联。