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蟋蟀尾须感觉系统中已确定的风敏感局部中间神经元的解剖学和生理学

Anatomy and physiology of identified wind-sensitive local interneurons in the cricket cercal sensory system.

作者信息

Bodnar D A, Miller J P, Jacobs G A

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720.

出版信息

J Comp Physiol A. 1991 May;168(5):553-64. doi: 10.1007/BF00215077.

Abstract
  1. A group of wind sensitive local interneurons (9DL Interneurons) in the terminal abdominal ganglion of the cricket Acheta domesticus were identified and studied using intracellular staining and recording techniques. 2. The 9DL interneurons had apparent resting potentials ranging from -38 mV to -45 mV. At this membrane potential, these cells produced graded responses to wind stimuli; action potentials were never observed at these resting potentials. However, when the 9DL interneurons were hyperpolarized to a membrane potential of approximately -60 mV, a single action potential at the leading edge of the wind stimulus response was sometimes observed. 3. The wind stimulus threshold of the 9DL interneurons to the types of stimuli used in these studies was approximately 0.01 cm/s. Above this threshold, the excitatory responses increased logarithmically with increasing peak wind velocity up to approximately 0.5 cm/s. 4. The 9DL interneurons were directionally sensitive; their response amplitudes varied with wind stimulus orientation. 9DL1 cells responded maximally when stimulated with wind directed at the front of the animal. The apparent peak in directional sensitivity of the 9DL2 interneurons varied between the side and the rear of the animal, depending upon the site of electrode penetration within the cell's dendritic arbor. 5. The locations of dendritic branches of the 9DL interneurons within the afferent map of wind direction were used to predict the excitatory receptive field of these interneurons.
摘要
  1. 利用细胞内染色和记录技术,在家蟋蟀(Acheta domesticus)腹部末端神经节中识别并研究了一组对风敏感的局部中间神经元(9DL中间神经元)。2. 9DL中间神经元具有明显的静息电位,范围在-38 mV至-45 mV之间。在此膜电位下,这些细胞对风刺激产生分级反应;在这些静息电位下从未观察到动作电位。然而,当9DL中间神经元被超极化到约-60 mV的膜电位时,有时会在风刺激反应的前沿观察到单个动作电位。3. 9DL中间神经元对这些研究中使用的刺激类型的风刺激阈值约为0.01 cm/s。高于此阈值,兴奋反应随着峰值风速增加至约0.5 cm/s呈对数增加。4. 9DL中间神经元具有方向敏感性;它们的反应幅度随风刺激方向而变化。当用指向动物前方的风刺激时,9DL1细胞反应最大。9DL2中间神经元方向敏感性的明显峰值在动物的侧面和后部之间变化,这取决于电极在细胞树突分支内的穿透位置。5. 9DL中间神经元树突分支在风向传入图谱中的位置被用于预测这些中间神经元的兴奋感受野。

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