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[猫肠系膜环层小体冲动发放对外部刺激的振荡]

[Oscillation of impulse discharges of Pacinian corpuscles of cat mesentery to external stimulation].

作者信息

Aeba A

机构信息

Department of Physiology, Tokyo Dental College.

出版信息

Shikwa Gakuho. 1990 Apr;90(4):635-53.

PMID:2135502
Abstract

A sensory unit with one or two Pacinian corpuscles was isolated from cat mesentery and square wave mechanical stimulation (duration 5-10 sec), sinusoidal frequency stimulation (duration 4-130 sec, frequency 0.06-300 Hz) and ramp mechanical stimulation (duration 5-10 sec) were applied to the Pacinian corpuscles. When the temperature exceeded 27 degrees C, the sensory unit caused a sustained discharge after on-response to the square wave stimulation. The sustained discharge lasted until the off-response. The sustained discharge was considered to be generated by an oscillation of the receptor potential in the Pacinian corpuscles. The results were as follows: 1. Sensory units with two Pacini corpuscles of cats from young (20 days after birth) to adult were found to respond with both fast-adapting and apparent slow-adapting responses at room temperature (27 degrees C). 2. The two Pacini corpuscles showed the characteristics of fast-adapting mechanoreceptor and vibrator. It was confirmed that the apparent slow-adapting responses from the sensory units were not artifacts induced by vibration from the stimulating bar or experimental table or experimental room, but were originated by an unknown mechanism in the corpuscles. 3. Some sensory units with two Pacinian corpuscles also responded with both fast-adapting and apparent slow-adapting responses in the range of 27-29 degrees C. The apparent slow-adapting responses were caused by pressure and vibratory stimulations above a strength level, but not by dumping of the stimulating bar. 4. The sensory unit evoked only the fast-adapting discharges near the threshold level of stimulus strength at less than 27 degrees C. In the temperature range of 27-40 degrees C, the sensory unit showed an increase in frequency of the apparent slow-adapting discharge by increased displacement and velocity of the stimulus. 5. The sensory unit responded with repeated firing to low-frequency stimulation (0.1-0.06 Hz) at the temperature range and the impulse number was increased by increased strength of the low-frequency stimulation. 6. At the 27-40 degrees C, the sensory units with Pacinian corpuscles evoked after discharge and spontaneous discharges and the impulse number was increased by increased displacement, velocity and frequency of the mechanical stimulus. Thus it is difficult to call the response of Pacinian corpuscles observed at more than 27 degrees C a slow-adapting one, judging from the duration of the receptor potential. We considered that these discharge responses resulted from an electrical oscillation of the receptor potential in the corpuscles.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

从猫的肠系膜中分离出一个带有一两个环层小体的感觉单元,并对环层小体施加方波机械刺激(持续时间5 - 10秒)、正弦频率刺激(持续时间4 - 130秒,频率0.06 - 300赫兹)和斜坡机械刺激(持续时间5 - 10秒)。当温度超过27摄氏度时,该感觉单元在对方波刺激产生起始反应后会引发持续放电。持续放电一直持续到终止反应。这种持续放电被认为是由环层小体内感受器电位的振荡产生的。结果如下:1. 发现从幼年(出生后20天)到成年猫的带有两个环层小体的感觉单元在室温(27摄氏度)下既有快速适应反应又有明显的缓慢适应反应。2. 这两个环层小体表现出快速适应机械感受器和振动器的特征。已证实感觉单元明显的缓慢适应反应不是由刺激杆、实验台或实验室的振动引起的假象,而是由小体内一种未知机制产生的。3. 一些带有两个环层小体的感觉单元在27 - 29摄氏度范围内也既有快速适应反应又有明显的缓慢适应反应。明显的缓慢适应反应是由高于一定强度水平的压力和振动刺激引起的,而不是由刺激杆的倾倒引起的。4. 在低于27摄氏度时,感觉单元在刺激强度阈值附近仅引发快速适应放电。在27 - 40摄氏度的温度范围内,感觉单元随着刺激位移和速度的增加,明显缓慢适应放电的频率增加。5. 在该温度范围内,感觉单元对低频刺激(0.1 - 0.06赫兹)产生重复放电,并且冲动数随着低频刺激强度的增加而增加。6. 在27 - 40摄氏度时,带有环层小体的感觉单元引发后放电和自发放电,并且冲动数随着机械刺激的位移、速度和频率的增加而增加。因此,从感受器电位的持续时间来看,很难将在超过27摄氏度时观察到的环层小体的反应称为缓慢适应反应。我们认为这些放电反应是由小体内感受器电位的电振荡导致的。(摘要截于400字)

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