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Analysis of responses in visual cells of the leech

机译:水visual视觉细胞的反应分析

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摘要

1. Potentials were recorded from the cytoplasm and from the vacuole of leech photoreceptors. Since the vacuole is lined with microvilli and is connected to the outside by narrow channels, the potential drops between vacuole and outside measure the current through the microvillar membrane.2. In darkness, the potential of the cytoplasm with respect to the outside is about — 45 mV while the potential of the vacuole is approximately zero.3. Following illumination the negativity of the cytoplasm decreases and the vacuole becomes negative relative to the outside.4. For dim intensities, the response to a flash of light may grow proportionately more than the intensity of the flash. This is probably due to development of a depolarizing local response.5. The resistance from the cytoplasm to the outside was about 150 MΩ in darkness and decreased to approximately 40 MΩ at the peak of the response to a bright flash (on average). Corresponding measurements from the vacuole gave 50 MΩ in darkness and 35 MΩ at the peak of the response.6. Charging curves produced by steps of constant currents applied to the cytoplasm or to the vacuole include two time constants (about 5 and 50 msec on average). The longer time constant decreases greatly with bright illumination.7. The results are consistent with the interpretation that the response to light is brought about by an increase of conductance of the microvillar membrane.
机译:1.从细胞质和水ech感光细胞的液泡中记录电位。由于液泡衬有微绒毛,并通过狭窄的通道与外界相连,液泡与外界之间的电位降测量了通过微绒毛膜的电流。2。在黑暗中,细胞质相对于外部的电位约为-45 mV,而液泡的电位约为零。光照后,细胞质的负性降低,液泡相对于外部变为阴性。4。对于暗淡的强度,对闪光灯的响应可能会比闪光灯的强度成比例地增加。这可能是由于去极化的局部反应的发展所致。5。在黑暗中,从细胞质到外界的电阻约为150MΩ,在对亮闪光的响应峰值处(平均)下降至约40MΩ。液泡的相应测量在黑暗中产生50MΩ,在响应峰值处产生35MΩ。6。通过施加到细胞质或液泡的恒定电流的步长产生的充电曲线包括两个时间常数(平均约5和50毫秒)。较长的时间常数随着明亮的照明而大大降低7。结果与以下解释一致:对光的响应是由微绒膜的电导增加引起的。

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