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Thermoregulatory Capabilities of the Leatherback Turtle, Dermochelys Coriacea

Thermoregulatory Capabilities of the Leatherback Turtle, Dermochelys Coriacea
棱皮龟 (Dermochelys Coriacea) 的体温调节能力
批准号:
9019780
负责人:
James Spotila
金额:
$10.5万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
1991
资助国家:
美国
项目状态:
已结题
起止时间:
1991-02-15 至 1993-07-31

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中文摘要
翻译
本研究的目的是确定棱皮龟巨温行为的细胞、生理和生物物理基础。以下假设将被检验:1。棱皮龟肌肉组织代谢率高于绿龟,介于绿龟和哺乳动物之间。2. 有氧代谢是筑巢活动和其他运动的主要能量来源。3. 在温暖(热带)和寒冷(北温带)水域活动和休息时,棱皮龟都能保持恒定的体温升高。4. 在陆地上和在温暖(热带)水域运动时,皮肤和周围的血流量增加,而在寒冷(北温带)水域运动时则减少。这些假设将通过完成以下实验来验证:1。使用Gilson呼吸计测量棱皮龟和绿龟在5至35摄氏度温度下的胸肌组织代谢率。2. 测量成年棱皮龟在热带和北温带陆地上休息和活动时的有氧和无氧代谢率。3. 使用多通道声波发射器测量在温水和冷水中休息和活动的海龟的体温。4. 使用133氙冲洗技术测量皮肤血流量。最后,这些数据将用于测试一个数学模型,该模型可以预测体型和新陈代谢率对陆地和水中棱皮龟的传热和体温的影响
英文摘要
The objective of this research is to determine the cellular, physiological, and biophysical basis for gigantothermy in the leatherback sea turtle. The following hypotheses will be tested: 1. The tissue metabolic rate of leatherback muscle is elevated above that of green turtles and intermediate between that of green turtles and mammals. 2. Aerobic metabolism is the primary source of energy for activity of nesting, and other exercise. 3. Leatherbacks maintain constant elevated body temperatures while active and at rest in both warm (tropical) and cold (north temperate) waters. 4. Blood flow to the skin and periphery is increased when on land, and while exercising in warm (tropical) waters, and reduced when in cold (north temperate) water. These hypotheses will be tested by completing the following experiments: 1. Measure the tissue metabolic rate of the pectoral muscles of leatherbacks and green turtles at temperatures from 5 to 35oC using a Gilson respirometer. 2. Measure the aerobic and anaerobic metabolic rates of adult leatherbacks while they are resting and active on land in the tropics and north temperate region. 3. Use multichannel sonic transmitters to measure the body temperature of resting and active turtles in warm and cold waters. 4. Measure skin blood flow using the 133xenon washout technique. Finally these data will be used to test a mathematical model that predicts the effects of body size and metabolic rate on heat transfer and body temperatures of leatherbacks on land and in the water.//
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