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首页> 外文期刊>Neurology: Official Journal of the American Academy of Neurology >Horizontal canal benign paroxysmal positioning vertigo: reversible ipsilateral caloric hypoexcitability caused by canalolithiasis?
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Horizontal canal benign paroxysmal positioning vertigo: reversible ipsilateral caloric hypoexcitability caused by canalolithiasis?

机译:水平管良性阵发性位置眩晕:可逆身体的同侧的热量hypoexcitability canalolithiasis造成的吗?

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摘要

Bithermal caloric stimulation in a patient with a benign paroxysmal positioning vertigo of the horizontal (lateral) semicircular canal (HC-BPPV) revealed a significant hypoexcitability of the affected ear that was reversible when treated by liberatory maneuvers. Both the positional vertigo and caloric hypoexcitability in HC-BPPV are caused by canalolithiasis, a concept strongly supported by the intensity of the positioning nystagmus being maximal when the patient turned his head around the longitudinal z-axis from the left lateral to right lateral position while recumbent (maximum slow-phase velocity [SPV] 176 deg/sec) and being much lower (maximum SPV 55 deg/sec) when he turned his head to the right lateral position while in a supine position (nose up). The dependence of this difference in nystagmus intensity on the initial head position and direction of rotation indirectly proves that the clot moves freely (to and fro) within the segment of the HC diametrically opposite to the ampulla. The reversibility of ipsilateral caloric hypoexcitability is attributed to the clot's (functional) plugging of the HC, which agrees with studies in squirrel monkeys. These data support the view that physiologic caloric responses consist of a major convective and minor nonconvective component.
机译:Bithermal热量刺激病人良性阵发性位置性眩晕的水平(横向)半规管(HC-BPPV)揭示了重要的hypoexcitability当被影响耳朵是可逆的释放的动作。和热量hypoexcitability HC-BPPV由canalolithiasis引起的,一个强烈的概念支持定位的强度眼球震颤最大当病人他的头在纵向的z轴左外侧右侧卧位伏卧(最大慢相速度(SPV) 176度/秒)和低得多(最大SPV 55度/秒)当他转过头侧卧位在仰卧位(鼻子)。眼球震颤头强度的初始位置和旋转方向间接证明血栓内自由移动(来回)段的HC截然相反肝。hypoexcitability归因于血栓(功能)堵塞的HC,表示同意松鼠猴的研究。支持认为生理热量响应包含一个主要的对流和次要的nonconvective组件。

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