Ogawa T, Sugenoya J, Ohnishi N, Natsume K, Imai K, Kandori Y, Ishizuka A, Osada A
Department of Physiology, Aichi Medical University, Nagakute, Japan.
Eur J Appl Physiol Occup Physiol. 1993;67(4):354-9. doi: 10.1007/BF00357635.
We have examined the nonparallel changes in tympanic membrane temperatures (Tty) from the two ears in response to various changes in body and head positions. Upon assuming a lateral recumbent position, the Tty on the lower side increased while that on the upper side decreased. Pressure application over a wide area of the lateral chest only caused inconsistent and obscure asymmetric changes in Tty. A lateral flexion of the head with the subject sitting upright and a rotation of the head to the side in a supine position induced an increase in the Tty on the lower side compared to that on the upper side. The temperature and blood flow of the forehead often decreased on the lower side and increased on the upper side, although such responses were not always concomitant with the asymmetric changes in Tty. A dorsal flexion of the head with the subject in a reclining position caused a slight increase in the Tty, whereas raising the head upright induced a slight decrease in them. Two additional experiments were carried out with single photon emission computed tomography using 99mTc-hexamethylpropyleneamine oxime as tracer, and a slight, relative decrease in counts was noted in the right hemisphere during rotation of the head to the right. These results would strongly suggest that unilateral increases and decreases in Tty could have been caused by one-sided decreases and increases, respectively, in blood flow to the brain and/or the tympanic membrane, induced by a vasomotor reflex involving vestibular stimulation.
我们研究了两耳鼓膜温度(Tty)在身体和头部位置发生各种变化时的非平行变化。当采取侧卧位时,下侧的鼓膜温度升高,而上侧的鼓膜温度降低。在侧胸大面积施加压力只会导致鼓膜温度出现不一致且不明显的不对称变化。受试者直立坐着时头部侧屈以及仰卧位时头部向一侧旋转,会导致下侧的鼓膜温度相比上侧升高。额头的温度和血流量通常在下侧降低,在上侧升高,尽管这种反应并不总是与鼓膜温度的不对称变化同时出现。受试者处于斜躺位置时头部后屈会使鼓膜温度略有升高,而头部直立抬起则会使其略有降低。另外还进行了两项使用99mTc - 六甲基丙烯胺肟作为示踪剂的单光子发射计算机断层扫描实验,在头部向右旋转期间,右半球的计数出现了轻微的相对下降。这些结果强烈表明,鼓膜温度的单侧升高和降低可能分别是由涉及前庭刺激的血管运动反射引起的大脑和/或鼓膜血流量的单侧减少和增加所致。