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Mechanical activation of rectal intraganglionic laminar endings in the guinea pig distal gut

机译:豚鼠远端肠道直肠神经节内层状末端的机械激活

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摘要

The rectum receives specialized extrinsic afferent innervation by stretch-sensitive, low threshold, slowly adapting mechanoreceptors, with transduction sites shown to correspond to rectal intraganglionic laminar endings (IGLEs). Rectal IGLEs are located in myenteric ganglia, surrounded by the longitudinal and circular smooth muscle layers; in this study we investigated the mechanical stimuli to which they respond. Mechanoreceptors had graded responses to highly focal transmural compression with von Frey hairs. They were activated when stretched circumferentially by imposed increases of both length and load. Under both conditions, firing typically occurred in bursts associated with phasic muscle contractions. However, many contractions did not evoke firing. Longitudinal stretch also evoked firing, again associated with contractile activity. Thus, mechanoreceptors did not show directional sensitivity. Two agonists that excited smooth muscle directly (0.1 μm[β-Ala8]-neurokinin A (4–10) and 1 μm carbachol) activated rectal mechanoreceptors, but not in the presence of Ca2>+-free solution or when preparations were kept entirely slack. We measured the dimensions, in both longitudinal and circumferential axes, of receptive fields during smooth muscle contractile activity, using video micrography. Contractile activity within the receptive field often differed significantly from the behaviour of the preparation as a whole, providing an explanation for many of the discrepancies between gross contractility and firing. Simultaneous contraction of both muscle layers within the receptive field was the strongest predictor of mechanoreceptor activation. Our results suggest that rectal mechanoreceptors do not act simply as tension receptors: rather they appear to detect mechanical deformation of myenteric ganglia – especially flattening – associated with stretch of the receptive field, or contractions of smooth muscle within the receptive field.
机译:直肠通过拉伸敏感,低阈值,适应性缓慢的机械感受器接受专门的外来神经支配,其转导部位显示为对应于直肠神经节内层状末端(IGLE)。直肠IGLE位于肌层神经节,周围为纵向和圆形平滑肌层。在这项研究中,我们调查了他们对其作出反应的机械刺激。机械感受器对冯·弗雷毛发高度局灶性透壁压迫的反应分级。当沿周向拉伸时,由于长度和载荷的增加,它们被激活。在两种情况下,射击通常发生在与阶段性肌肉收缩相关的爆发中。但是,许多收缩并未引起射击。纵向拉伸也引起射击,再次与收缩活动有关。因此,机械感受器没有显示方向敏感性。两种直接激动平滑肌(0.1μm[β-Ala 8 ]-神经激肽A(4-10)和1μm卡巴胆碱)的激动剂激活了直肠机械感受器,但不存在Ca 不含2 > + 的溶液,或准备工作完全松弛的情况。我们使用视频显微技术测量了平滑肌收缩活动过程中感受野的纵向和周向尺寸。感受野内的收缩活动通常与整个制剂的行为显着不同,这为总收缩性和射击之间的许多差异提供了解释。接受区域内两个肌肉层的同时收缩是机械受体激活的最强预测因子。我们的研究结果表明,直肠机械感受器不能简单地用作张力感受器:它们似乎可以检测出与感受野的伸展或感受野内平滑肌的收缩有关的肌性神经节的机械变形,尤其是扁平化。

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