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首页> 外文期刊>American Journal of Physiology >Differential selectivity of cardiac neurons in separate intrathoracic autonomic ganglia.
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Differential selectivity of cardiac neurons in separate intrathoracic autonomic ganglia.

机译:单独的胸腔内自主神经节中心脏神经元的差异选择性。

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Analyses of activity generated by neurons in middle cervical or stellate ganglia versus intrinsic cardiac ganglia were performed to determine how neurons in different intrathoracic ganglia, which are involved in cardiac regulation, interact. Discharges of 19% of intrathoracic extracardiac neurons and 32% of intrinsic cardiac neurons were related to cardiodynamics. Epicardial touch increased the activity generated by approximately 80% of intrinsic cardiac neurons and approximately 60% of extracardiac neurons. Both populations responded similarly to epicardial chemical stimuli. Activity generated by neurons in intrinsic cardiac ganglia demonstrated no consistent short-term relationships to neurons in extracardiac ganglia. Myocardial ischemia influenced extracardiac and intrinsic cardiac neurons similarly. Carotid artery baroreceptors influenced neurons in ipsilateral extracardiac ganglia. After decentralization from the central nervous system, intrinsic cardiac neurons received afferent inputs primarily from cardiac chemosensitive neurites, whereas middle cervical ganglion neurons received afferent inputs primarily from cardiac mechanosensory neurites. It is concluded that the populations of neurons in different intrathoracic ganglia can display differential reflex control of cardiac function. Their redundancy in function and noncoupled behavior minimizes cardiac dependency on a single population of intrathoracic neurons.
机译:进行了中颈或星状神经节与固有心脏神经节中的神经元产生的活动的分析,以确定参与心脏调节的不同胸内神经节中的神经元如何相互作用。 19%的胸腔内心外神经元和32%的固有心脏神经元的放电与心脏动力有关。心外膜接触增加了大约80%的固有心脏神经元和大约60%的心外神经元产生的活动。两种人群对心外膜化学刺激的反应相似。固有心脏神经节中神经元产生的活动与心脏外神经节中的神经元没有长期一致的关系。心肌缺血对心外膜和固有心脏神经元的影响相似。颈动脉压力感受器影响同侧心外神经节中的神经元。从中枢神经系统分散后,内在的心脏神经元主要从心脏化学敏感的神经突接收传入的输入,而中颈神经节神经元则主要从心脏机械感觉神经突接收传入的输入。结论是,不同胸内神经节中的神经元群体可以表现出不同的反射控制心功能。它们在功能和非耦合行为方面的冗余性将对单个胸内神经元群体的心脏依赖性降至最低。

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