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Teaching neurophysiology, neuropharmacology, and experimental design using animal models of psychiatric and neurological disorders

机译:使用精神疾病和神经疾病的动物模型教授神经生理学,神经药理学和实验设计

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Morsink MC, Dukers DF. Teaching neurophysiology, neuropharmacology, and experimental design using animal models of psychiatric and neurological disorders. Adv Physiol Educ 33: 46-52, 2009; doi:10.1152/advan.90179.2008.-Animal models have been widely used for studying the physiology and pharmacology of psychiatric and neurological diseases. The concepts of face, construct, and predictive validity are used as indicators to estimate the extent to which the animal model mimics the disease. Currently, we used these three concepts to design a theoretical assignment to integrate the teaching of neurophysiology, neuropharmacology, and experimental design. For this purpose, seven case studies were developed in which animal models for several psychiatric and neurological diseases were descibed and in which neuroactive drugs used to treat or study these diseases were introduced. Groups of undergraduate students were assigned to one of these case studies and asked to give a classroom presentation in which 1) the disease and underlying pathophysiology are described, 2) face and construct validity of the animal model are discussed, and 3) a pharmacological experiment with the associated neuroactive drug to assess predictive validity is presented. After evaluation of the presentations, we found that the students had gained considerable insight into disease phenomenology, its underlying neurophysiology, and the mechanism of action of the neuroactive drug. Moreover, the assignment was very useful in the teaching of experimental design, allowing an indepth discussion of experimental control groups and the prediction of outcomes in these groups if the animal model were to display predictive validity. Finally, the highly positive responses in the student evaluation forms indicated that the assignment was of great interest to the students. Hence, the currently developed case studies constitute a very useful tool for teaching neurophysiology, neuropharmacology, and experimental design.
机译:Morsink MC,Dukers DF。使用精神疾病和神经疾病的动物模型教授神经生理学,神经药理学和实验设计。 Adv Physiol Educ 33:46-52,2009; doi:10.1152 / advan.90179.2008.-动物模型已被广泛用于研究精神疾病和神经疾病的生理学和药理学。面部,结构和预测有效性的概念用作评估动物模型模仿疾病程度的指标。当前,我们使用这三个概念来设计理论作业,以整合神经生理学,神经药理学和实验设计的教学。为此目的,开发了七个案例研究,其中描述了几种精神和神经疾病的动物模型,并介绍了用于治疗或研究这些疾病的神经活性药物。将一组本科生分配给这些案例研究之一,并要求他们进行课堂演示,其中1)描述了疾病和潜在的病理生理; 2)讨论了动物模型的面孔和结构有效性; 3)药理实验与相关的神经活性药物一起评估预测有效性。在对演示文稿进行评估之后,我们发现学生已经对疾病现象学,其潜在的神经生理学以及神经活性药物的作用机理有了相当深入的了解。此外,该任务在实验设计的教学中非常有用,如果动物模型显示出预测有效性,则可以深入讨论实验对照组和这些组的结果预测。最后,学生评价表中的高度积极反应表明,作业对学生很感兴趣。因此,当前开发的案例研究构成了一个非常有用的工具,可用于教授神经生理学,神经药理学和实验设计。

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