Sandstrom David J, Offord Bruce W
Department of Biology, University of Maryland College Park, Universities at Shady Grove, Rockville, MD 20850, USA.
Cypress Terrace Research Institute, San Diego, CA 92131, USA.
J Exp Biol. 2022 May 1;225(9). doi: 10.1242/jeb.243966. Epub 2022 Apr 29.
Coulometric respirometry is a highly sensitive method for measuring O2 consumption in small organisms but it is not in widespread use among physiologists. Here, we describe a coulometric microrespirometer based on a digital environmental sensor inside a sealed glass chamber and controlled by an Arduino™ microcontroller. As O2 is consumed, exhaled CO2 is removed, causing pressure to decrease in the chamber. The sensor detects the decreased pressure, and the controller activates electrolytic production of O2, returning pressure to the initial value. O2 consumption is calculated from electrolytic charge transfer. The effects of developmental stage, body mass and temperature on O2 consumption of Tenebrio molitor beetles were easily measured by the apparatus. This straightforward design is a significant innovation in that it provides continuous data regarding environmental conditions inside the experimental chamber, can be fabricated easily, and is adaptable to a wide range of uses.
库仑呼吸测定法是一种用于测量小型生物体氧气消耗量的高灵敏度方法,但在生理学家中并未得到广泛应用。在此,我们描述一种基于密封玻璃室内数字环境传感器并由Arduino™微控制器控制的库仑微量呼吸计。随着氧气被消耗,呼出的二氧化碳被去除,导致室内压力下降。传感器检测到压力下降,控制器启动氧气的电解产生,使压力恢复到初始值。氧气消耗量通过电解电荷转移来计算。该仪器能够轻松测量黄粉虫发育阶段、体重和温度对其氧气消耗的影响。这种简单的设计是一项重大创新,因为它提供了关于实验室内环境条件的连续数据,易于制造,并且适用于广泛的用途。