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Cardiac sympathetic innervation, from a different point of (re)view

机译:来自不同点(重新)视图的心脏交感神经检查

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The audience of basic and clinical scientists is familiar with the notion that the sympathetic nervous system controls heart function during stresses. However, evidence indicates that the neurogenic control of the heart spans from the maintenance of housekeeping functions in resting conditions to the recruitment of maximal performance, in the fight-or-flight responses, across a whole range of intermediate states. To perform such sophisticated functions, sympathetic ganglia integrate both peripheral and central inputs, and transmit information to the heart via 'motor' neurons, directly interacting with target cardiomyocytes. To date, the dynamics and mode of communication between these two cell types, which determine how neuronal information is adequately translated into the wide spectrum of cardiac responses, are still blurry. By combining the anatomical and structural information brought to light by recent imaging technologies and the functional evidence in cellular systems, we focus on the interface between neurons and cardiomyocytes, and advocate the existence of a specific 'neuro-cardiac junction', where sympathetic neurotransmission occurs in a 'quasi-synaptic' way. The properties of such junctional-type communication fit well with those of the physiological responses elicited by the cardiac sympathetic nervous system, and explain its ability to tune heart function with precision, specificity and elevated temporal resolution.
机译:基础和临床科学家的观众熟悉了交感神经系统在压力期间控制心脏功能的观点。然而,证据表明,心脏跨越内心控制在休息条件下,在休息条件下恢复最大绩效,在战斗或飞行响应中,整个中间州。为了执行这种复杂的功能,交感神经神经节将两个外围和中央输入集成,并通过“电动机”神经元向心脏发送信息,直接与靶心细胞相互作用。迄今为止,这两种细胞类型之间的动态和通信方式,这决定了神经元信息如何充分平移到广泛的心脏反应中,仍然是模糊的。通过组合最近的成像技术和细胞系统中的功能证据来利用所带来的解剖和结构信息,我们专注于神经元和心肌细胞之间的界面,并主张存在特定的“神经心脏交界处”,发生同情神经递质以“准突触”方式。这种结型通信的性质适合于心脏交感神经系统引发的生理反应的特性,并解释其调节精度,特异性和升高的时间分辨率的心脏功能的能力。

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