Aoki Sachiko, Arai Yasuko, Ide Natsumi, Sugiura Eisaku, Miyajima Keisuke, Tanaka Nobuaki
Department of Otolaryngology, Tokyo Women's Medical University Medical Center East, 2-1-10 Nishiogu, Arakawaku, Tokyo 116-8567, Japan.
Acta Otolaryngol. 2007 Nov;127(11):1142-9. doi: 10.1080/00016480701230902.
Up-beating vertical component recorded in the caloric first phase was attributed mainly to the inhibitory endolymph flow in the anterior canal. Down-beating vertical component recorded in the caloric second phase provoked by a positional change could be explained by a reversed endolymph flow in vertical canal(s).
To investigate the origin of a vertical component in caloric response.
We analyzed electronystagmography (ENG) of caloric responses, which had measurable horizontal component in the caloric first phase in both ears in 200 ears of 100 vertiginous patients. A caloric first phase was provoked by cold water in the supine position with the lateral semicircular canal earth-vertical. A caloric second phase was provoked by re-orienting the lateral canal from the earth-vertical to earth-horizontal after the cessation of the first phase (provoked second phase). The nystagmus of the whole procedure was recorded by two-dimensional ENG.
We recorded the vertical component in 103/200 ears in the caloric first phase, which was directed mostly upward (92/103 ears). We also recorded the vertical component in 91/200 ears in the provoked second phase, which was directed almost exclusively downward (90/91 ears).
冷热试验第一阶段记录到的向上垂直成分主要归因于前半规管内抑制性内淋巴液流动。由体位改变引发的冷热试验第二阶段记录到的向下垂直成分可通过垂直半规管内反向的内淋巴液流动来解释。
研究冷热试验反应中垂直成分的起源。
我们分析了100例眩晕患者200只耳冷热试验反应的眼震电图(ENG),这些耳在冷热试验第一阶段双耳均有可测量的水平成分。冷热试验第一阶段通过在仰卧位向处于地垂直位的外侧半规管灌注冷水诱发。在第一阶段结束后,将外侧半规管从地垂直位重新调整为地水平位(诱发的第二阶段)来诱发冷热试验第二阶段。整个过程的眼震通过二维ENG记录。
我们在冷热试验第一阶段的200只耳中的103只耳记录到了垂直成分,其中大部分向上(103只耳中的92只)。我们在诱发的第二阶段的200只耳中的91只耳也记录到了垂直成分,几乎全部向下(91只耳中的90只)。