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心血管与汗腺自主神经系统的研究——综述

The Investigation of the Cardiovascular and Sudomotor Autonomic Nervous System-A Review.

作者信息

Ziemssen Tjalf, Siepmann Timo

机构信息

Autonomic and Neuroendocrinological Functional Laboratory, Center of Clinical Neuroscience, Neurological University Clinic Carl Gustav Carus, Dresden, Germany.

Neurological University Clinic Carl Gustav Carus, Dresden, Germany.

出版信息

Front Neurol. 2019 Feb 12;10:53. doi: 10.3389/fneur.2019.00053. eCollection 2019.

Abstract

The autonomic nervous system as operating system of the human organism permeats all organ systems with its pathways permeating that it is involved with virtually all diseases. Anatomically a central part, an afferent part and sympathetic and parasympathetic efferent system can be distinguished. Among the different functional subsystems of the autonomic nervous system, the cardiovascular autonomic nervous system is most frequently examined with easily recordable cardiovascular biosignals as heart rate and blood pressure. Although less widely established, sudomotor tests pose a useful supplement to cardiovascular autonomic assessment as impaired neurogenic sweating belongs to the earliest clinical signs of various autonomic neuropathies as well as neurodegenerative disorders and significantly reduces quality of life. Clinically at first, the autonomic nervous system is assessed with a detailed history of clinical autonomic function and a general clinical examination. As a lof of confounding factors can influence autonomic testing, subjects should be adequately prepared in a standardized way. Autonomic testing is usually performed in that way that the response of the autonomic nervous system to a well-defined challenge is recorded. As no single cardiovascular autonomic test is sufficiently reliable, it is recommended to use a combination of different approaches, an autonomic test battery including test to measure parasympathetic and sympathetic cardiovascular function (deep breathing test, Valsalva maneuver, tilt, or pressor test). More specialized tests include carotid sinus massage, assessment of baroreceptor reflex function, pharmacological tests or cardiac, and regional hemodynamic measurements. Techniques to measure functional integrity of sudomotor nerves include the quantitative sudomotor axon reflex sweat test, analysis of the sympathetic skin response as well as the thermoregulatory sweat test. In addition to these rather established techniques more recent developments have been introduced to reduce technical demands and interindividual variability such as the quantitative direct and indirect axon reflex testing or sudoscan. However, diagnostic accuracy of these tests remains to be determined. We reviewed the current literature on currently available autonomic cardiovascular and sudomotor tests with a focus on their physiological and technical mechanisms as well as their diagnostic value in the scientific and clinical setting.

摘要

自主神经系统作为人体机体的操作系统,其通路遍布所有器官系统,以至于它几乎与所有疾病都有关联。从解剖学上可区分出一个中枢部分、一个传入部分以及交感和副交感传出系统。在自主神经系统的不同功能子系统中,心血管自主神经系统是最常被检查的,通过易于记录的心血管生物信号如心率和血压来进行检测。尽管应用不如心血管自主神经系统广泛,但发汗功能测试是心血管自主神经评估的有益补充,因为神经源性出汗受损是各种自主神经病变以及神经退行性疾病最早的临床症状之一,并且会显著降低生活质量。临床上,首先通过详细询问临床自主神经功能病史和进行全面的临床检查来评估自主神经系统。由于许多混杂因素会影响自主神经测试,所以应以标准化方式让受试者做好充分准备。自主神经测试通常是通过记录自主神经系统对明确刺激的反应来进行的。由于没有单一的心血管自主神经测试足够可靠,因此建议采用不同方法的组合,即一套自主神经测试组合,包括测量副交感和交感心血管功能的测试(深呼吸测试、瓦尔萨尔瓦动作、倾斜试验或升压试验)。更专业的测试包括颈动脉窦按摩、压力感受器反射功能评估、药理学测试或心脏及局部血流动力学测量。测量发汗运动神经功能完整性的技术包括定量发汗运动轴突反射汗液测试、交感皮肤反应分析以及体温调节汗液测试。除了这些较为成熟的技术外,还引入了一些最新进展以降低技术要求和个体间差异,如定量直接和间接轴突反射测试或汗腺扫描。然而,这些测试的诊断准确性仍有待确定。我们回顾了当前关于现有自主神经心血管和发汗运动测试的文献,重点关注其生理和技术机制以及在科学和临床环境中的诊断价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/040d/6380109/e5c4af016d84/fneur-10-00053-g0001.jpg

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