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冲击振动对周围血管和神经的影响。

The effects of impact vibration on peripheral blood vessels and nerves.

机构信息

Engineering and Controls Technology Branch, National Institutes for Occupational Safety and Health, USA.

出版信息

Ind Health. 2013;51(6):572-80. doi: 10.2486/indhealth.2012-0193. Epub 2013 Sep 27.

Abstract

Research regarding the risk of developing hand-arm vibration syndrome after exposure to impact vibration has produced conflicting results. This study used an established animal model of vibration-induced dysfunction to determine how exposure to impact vibration affects peripheral blood vessels and nerves. The tails of male rats were exposed to a single bout of impact vibration (15 min exposure, at a dominant frequency of 30 Hz and an unweighted acceleration of approximately 345 m/s(2)) generated by a riveting hammer. Responsiveness of the ventral tail artery to adrenoreceptor-mediated vasoconstriction and acetylcholine-mediated re-dilation was measured ex vivo. Ventral tail nerves and nerve endings in the skin were assessed using morphological and immunohistochemical techniques. Impact vibration did not alter vascular responsiveness to any factors or affect trunk nerves. However, 4 days following exposure there was an increase in protein-gene product (PGP) 9.5 staining around hair follicles. A single exposure to impact vibration, with the exposure characteristics described above, affects peripheral nerves but not blood vessels.

摘要

研究表明,接触冲击振动后发生手部手臂振动综合征的风险存在争议。本研究使用已建立的振动功能障碍动物模型,以确定接触冲击振动如何影响外周血管和神经。雄性大鼠的尾巴暴露于单次冲击振动(15 分钟暴露,主频 30Hz,未加权加速度约 345m/s(2)),由铆接机产生。离体测量腹尾动脉对肾上腺素能受体介导的血管收缩和乙酰胆碱介导的再扩张的反应性。使用形态学和免疫组织化学技术评估腹尾神经和皮肤神经末梢。冲击振动不会改变血管对任何因素的反应性,也不会影响躯干神经。然而,暴露后 4 天,毛囊周围的蛋白基因产物(PGP)9.5 染色增加。单次暴露于上述冲击振动特性的冲击振动会影响外周神经,但不会影响血管。

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