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雌性大鼠盆腔神经中支配生殖器官及其他盆腔器官的传入纤维的功能特性

Functional properties of afferent fibers supplying reproductive and other pelvic organs in pelvic nerve of female rat.

作者信息

Berkley K J, Hotta H, Robbins A, Sato Y

机构信息

Department of Physiology, Tokyo Metropolitan Institute of Gerontology, Japan.

出版信息

J Neurophysiol. 1990 Feb;63(2):256-72. doi: 10.1152/jn.1990.63.2.256.

Abstract
  1. Electrophysiological techniques were used to characterize responses of afferent fibers in pelvic nerve of adult, virgin female rats to mechanical or chemical stimulation of internal reproductive organs and to mechanical stimulation of other pelvic organs. 2. In an in vivo barbiturate-anesthetized preparation, pelvic nerve afferent fibers responded to a wide variety of mechanical stimulation applied to restricted regions of the vaginal canal, caudal uterus (body and cervix), bladder, ureter, colon, or anus. 3. Single-fiber mechanoreceptive fields were invariably confined to a single organ. Notably, responses could be evoked not only by gentle stimulation of the unit's receptive field directly on the organ itself, but also by stimulating the field indirectly with intense stimulation through the appropriate part of a contiguous organ. This innervation feature is consistent with the separability of pelvic organ functions under innocuous conditions but their confusion under noxious ones. 4. Receptive fields on the reproductive organs extended from the caudal edge of the vagina to the uterine body (including the cervix) but were most often located in the fornix (vaginocervical junction). Most units had no or low levels of spontaneous activity. Their responses to mechanical stimuli were usually slowly or moderately adapting and time-locked to the stimulus. 5. Fibers with vaginal receptive fields (including the fornix) responded best either to vaginal distension with a balloon or, more often, to a probe moving along the internal vaginal surface in a direction toward the cervix. They were observed most frequently during the proestrus stage of the rat's estrous cycle. These fibers, therefore, seem particularly suited for relaying information about stimuli that occur during mating. 6. Fibers with receptive fields on the uterine cervix and body responded best to static pressure and were observed less frequently than those with vaginal fields, regardless of estrous stage. They were, however, sensitized by hypoxia. In addition, irritation of the uterus increased the probability of observing them. These fibers, therefore, may exert their primary function during reproductive conditions different from those of virgin rats, such as parturition. 7. Response activity of most of the mechanoreceptive afferent fibers supplying reproductive organs increased as the stimulus intensity increased into the noxious range; i.e., into a range in which the stimulus momentarily produced ischemia at the stimulus site. In addition, in an in vitro preparation, pelvic nerve fibers responded in a dose-dependent manner to injections through the uterine artery of bradykinin (BRAD) as well as to other algesic chemicals, 5-hydroxytryptamine (5-HT) and KCl.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用电生理技术,对成年未孕雌性大鼠盆腔神经传入纤维对内生殖器官的机械或化学刺激以及对其他盆腔器官的机械刺激的反应进行特征描述。2. 在体内巴比妥类麻醉制备中,盆腔神经传入纤维对施加于阴道管、子宫尾端(体部和宫颈)、膀胱、输尿管、结肠或肛门受限区域的多种机械刺激产生反应。3. 单纤维机械感受野始终局限于单个器官。值得注意的是,不仅直接轻柔刺激器官自身的感受野可诱发反应,通过相邻器官的适当部位进行强烈刺激间接刺激感受野也可诱发反应。这种神经支配特征与无害条件下盆腔器官功能的可分离性一致,但在有害条件下功能会混淆。4. 生殖器官上的感受野从阴道尾端边缘延伸至子宫体(包括宫颈),但最常位于穹窿(阴道宫颈交界处)。大多数单位的自发活动无或水平较低。它们对机械刺激的反应通常是缓慢或适度适应,并与刺激同步。5. 具有阴道感受野(包括穹窿)的纤维对气囊扩张阴道反应最佳,或者更常见的是,对沿阴道内表面朝宫颈方向移动的探针反应最佳。在大鼠发情周期的动情前期阶段观察到它们的频率最高。因此,这些纤维似乎特别适合传递交配期间发生的刺激信息。6. 在宫颈和子宫体有感受野的纤维对静态压力反应最佳,且无论发情阶段如何,观察到它们的频率都低于有阴道感受野的纤维。然而,它们对缺氧敏感。此外,刺激子宫会增加观察到它们的概率。因此,这些纤维可能在与未孕大鼠不同的生殖条件下发挥主要功能,例如分娩时。7. 随着刺激强度增加到有害范围,即刺激瞬间在刺激部位产生缺血的范围,大多数供应生殖器官的机械感受传入纤维的反应活动增加。此外,在体外制备中,盆腔神经纤维对通过子宫动脉注射缓激肽(BRAD)以及其他致痛化学物质5-羟色胺(5-HT)和氯化钾呈剂量依赖性反应。(摘要截取自400字)

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