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The use of sucrose gap experiments with molluscan cardiac rhythmicity for undergraduate education in biomedical engineering

机译:蔗糖差距试验在生物医学工程中与软体动物扫描软体术治疗本科教育

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The ability to make measurements on and interpret data from living systems is important for undergraduate education in biomedical engineering. Traditional engineering laboratory courses are usually conducted In a time frame shorter than what is necessary for preparing living tissues and conducting biological experiments. This study reports the experience with an undergraduate engineering design course that combines neurophysiology and neuroengineering. Specifically, one of the experiments is to obtain simultaneously recordings of the electrical activity and the contractility of a muscle specimen. The entire heart of the Aplysia californica (oceanic mollusk) is used in a sucrose gap preparation. Neurotransmitters such as 5-hydroxytryptamine (5-HT) and acetylcholine (ACh) are used to modulate the cardiac rhythmicity. The sucrose gap preparation prove to be an effective means to provide hand-on experience in neuroromuscular physiology for undergraduate biomedical engineering students.
机译:对生物医学工程的本科教育来说,对生活系统进行测量和解释数据的能力。传统的工程实验室课程通常在时间范围内进行,而不是制备活组织和进行生物实验所需的时间。本研究报告了与本科工程设计课程的经验结合了神经生理和神经工程。具体地,其中一个实验是同时记录电活性和肌肉样本的收缩性。 Aplysia Californica(海洋软体动物)的整个心脏用于蔗糖间隙制剂。诸如5-羟基 - 羟基胺(5-HT)和乙酰胆碱(ACH)的神经递质用于调节心脏节律性。蔗糖差距制剂证明是为本科生物医学工程学生的神经肌肉生理学提供手工体验的有效手段。

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