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首页> 外文期刊>The Journal of Experimental Biology >A simple and affordable calorespirometer for assessing the metabolic rates of fishes
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A simple and affordable calorespirometer for assessing the metabolic rates of fishes

机译:一种简单且价格合理的量热计,用于评估鱼类的代谢率

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摘要

Calorimetry is the measurement of the heat liberated during energy transformations in chemical reactions. When applied to living organisms, it measures the heat released due to the energy transformations associated with metabolism under both aerobic and anaerobic conditions. This is in contrast to the often-used respirometric techniques for assessing energy turnover, which can only be used under fully aerobic conditions. Accordingly, calorimetry is considered the 'gold standard' for quantifying metabolic rate, yet despite this, it remains a seldom-used technique among comparative physiologists. The reasons for this are related to the expense and perceived difficulty of the technique. We have designed and constructed an inexpensive flow-through calorespirometer capable of detecting rates of metabolic heat loss and oxygen consumption ((M) over dot(O2)) in fish under a variety of environmental conditions over long-term experiments. The metabolic heat of the fish is detected as a voltage by a collection of Peltier units wired in series, while oxygen optodes placed on the inflowing and outflowing water lines are used for the calculation of (M) over dot(O2). The apparatus is constructed in a differential fashion to account for ambient temperature fluctuations. This paper describes the design and construction of the calorespirometer for similar to$1300 CDN. Using the goldfish (Carassius auratus auratus), we show that the calorespirometer is sensitive to changes in metabolic rate brought about by pharmacological manipulation and severe hypoxia exposures.
机译:量热法是对化学反应中能量转化过程中释放的热量的测量。当应用于有生命的有机体时,它可以测量在有氧和无氧条件下由于与代谢相关的能量转换而释放的热量。这与通常用于评估能量转换的常用呼吸测定技术相反,后者只能在完全有氧条件下使用。因此,量热法被认为是量化代谢率的“黄金标准”,尽管如此,它仍然是比较生理学家中很少使用的技术。造成这种情况的原因与该技术的费用和感知难度有关。我们设计并制造了一种廉价的流通式肺量热计,能够在各种环境条件下通过长期实验检测鱼类的代谢热损失率和氧消耗率(M值超过O2值)。鱼的代谢热被一系列串联的珀耳帖单元检测为电压,而放置在流入和流出水管线上的氧光电二极管用于计算点(O2)上的(M)。该设备以差分方式构造以解决环境温度波动。本文介绍了类似于$ 1300 CDN的量热计的设计和构造。使用金鱼(Carassius auratus auratus),我们显示出量热计对药理操作和严重缺氧暴露所引起的代谢率变化敏感。

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