Sugenoya J, Ogawa T
Jpn J Physiol. 1985;35(5):783-94. doi: 10.2170/jjphysiol.35.783.
Each of six male subjects was exposed during rest to at least ten different thermal environments (Ta, 22-44 degrees C; rh, 40%). Local sweat rates from both forearms were continuously recorded in a steady state of each exposure, using capacitance hygrometry. In the absence of spontaneous sweating, localized sweating was induced by intradermal administration of pilocarpine. Sweat expulsions synchronous at the two test areas were counted and their frequency (Fsw) was calculated. For each of additive and multiplicative combinations of Tcore (Tre, Tty) and Ts, the best combination for estimation of thermal input to the sudomotor center was determined using multiple regression analysis. Approximately 0.75Tre + 0.25Ts or 0.85Tty + 0.15Ts, and (Tre-36.33) (Ts-33.13) or (Tty-36.42) (Ts-32.24) were obtained for the additive and multiplicative combinations, respectively. The correlation coefficient (r) for the relationship of Fsw to the obtained best combination, either additive or multiplicative, and that of Fsw to Tb were almost comparable to each other. It is considered that Tb can be used as an approximation of thermal input and that the characteristics of frequency of sweat expulsion is a useful index for determining whether and how much the central sudomotor mechanism is involved in the change of sweat rate in response to various thermal and non-thermal stresses.
六名男性受试者在休息时分别暴露于至少十种不同的热环境中(空气温度Ta为22 - 44摄氏度;相对湿度rh为40%)。使用电容湿度测定法,在每次暴露的稳定状态下持续记录双侧前臂的局部出汗率。在无自发出汗时,通过皮内注射毛果芸香碱诱导局部出汗。对两个测试区域同步的汗液排出进行计数,并计算其频率(Fsw)。对于核心温度(直肠温度Tre、鼓膜温度Tty)与皮肤温度Ts的相加和相乘组合,使用多元回归分析确定用于估计对汗腺运动中枢热输入的最佳组合。相加组合和相乘组合分别得到约0.75Tre + 0.25Ts或0.85Tty + 0.15Ts,以及(Tre - 36.33)(Ts - 33.13)或(Tty - 36.42)(Ts - 32.24)。Fsw与所获得的相加或相乘最佳组合关系的相关系数(r),以及Fsw与体温Tb关系的相关系数彼此几乎相当。可以认为Tb可作为热输入的近似值,并且汗液排出频率的特征是用于确定中枢汗腺运动机制是否以及在多大程度上参与响应各种热应激和非热应激时出汗率变化的有用指标。