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Developing a new device for continuously recording, in vivo, the excretion rate of sweat (perspiration) in humans

机译:开发一种持续记录的新装置,体内录制人类的汗水(汗水)的排泄率

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Background Some methodologies used for evaluating sweat production and antiperspirants are of a stationary aspect, that is, most often performed under warm (38°C) but resting conditions in a rather short period of time. The aim is to develop an electronic sensor apt at continuously recording sweat excretion, in vivo, during physical exercises, exposure to differently heated environments, or any other stimuli that may provoke sweat excretion. Material and Methods A sensor (20?cm 2 ) is wrapped under a double‐layered textile pad. Fixed onto the armpits, these two arrays of electrodes are connected to electronic system through an analog multiplexer. A microcontroller is used to permanently record changes in the conductance between two electrodes during exposure of subjects to different sweat‐inducing conditions or to assess the efficacy of applied aluminum hydrochloride (ACH)‐based roll‐ons at two concentrations (5% and 15%). Results In vitro calibration, using a NaCl 0.5% solution, allows changes in mV to be related with progressively increased volumes. In vivo, results show that casual physical exercise leads to sweat excretions much higher than in warm environment (37 or 45°C). Only, an exposure to a 50°C environment induced comparable sweat excretion. In this condition, sweat excretions were found similar in both armpits and both genders. Decreased sweat excretions were recorded following applications of ACH, with a dose effect. Conclusion Developing phases of this new approach indicate that usual method or guidelines used to determine sweat excretions in vivo do not reflect true energy expenditure processes. As a consequence, they probably over‐estimate the efficacy of antiperspirant agents or formulae.
机译:背景技术用于评估汗液生产和止汗剂的一些方法是静止方面,即,通常在温热(38°C)下进行,但在相当短的时间内休息条件。目的是在体内持续记录汗水排泄的汗水排泄,在体内运动,暴露于不同加热的环境,或可能引起汗液排泄的任何其他刺激的汗水传感器。材料和方法传感器(20Ωcm2)被包裹在双层纺织垫下。固定在腋窝上,这两个电极阵列通过模拟多路复用器连接到电子系统。微控制器用于在暴露于不同的汗液诱导条件的受试者的暴露期间永久地记录两个电极之间的电导变化,或者评估盐酸铝(ACH)的氯化铝(ACH)的辊的效果(5%和15%) )。结果使用NaCl 0.5%溶液体外校准,允许MV的变化与逐渐增加的体积相关。在体内,结果表明,休闲体育锻炼会导致高于温暖环境(37或45°C)的汗水排泄。仅,暴露于50°C的环境诱导相当的汗水排泄。在这种情况下,在腋窝和双重的家庭中发现了类似的汗水排泄。在ACH的应用后,记录了汗液排泄减少,剂量效应。结论这种新方法的开发阶段表明,用于确定体内汗水排泄的通常方法或指南不反映真正的能源支出流程。因此,它们可能过度估计止汗剂或公式的功效。

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