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Operant-based instrumental learning for analysis of genetically modified models of Huntington's disease

机译:基于操作员的工具学习,用于分析亨廷顿氏病的基因改造模型

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摘要

Huntington's disease is the result of an expanded CAG repeat in the gene that codes for the protein huntingtin and results in a progressive sequelae of motor, cognitive and psychiatric symptoms. The development of genetically modified rodent models of Huntington's disease has led to the need for sensitive behavioural phenotyping. Operant tests for rodents have been developed that can determine the functional deficits in these genetically modified models, from motor, cognitive and emotional domains. The current review discusses tests that employ operant equipment, an automated and highly flexible method for testing rodents. Different operant paradigms are examined in relation to their relevance to Huntington's disease symptomology, as well as summarising research to date on genetic models with these tests.
机译:亨廷顿氏病是编码该蛋白质亨廷顿蛋白的基因中CAG重复序列扩大的结果,并导致运动,认知和精神症状的进行性后遗症。亨廷顿氏病的转基因啮齿动物模型的发展导致需要敏感的行为表型。已经开发了用于啮齿动物的操作测试,可以从运动,认知和情感领域确定这些转基因模型中的功能缺陷。当前的评论讨论了使用操作设备的测试,这是一种自动化且高度灵活的啮齿动物测试方法。研究了不同的操作范例与它们与亨廷顿舞蹈病症状的相关性,并总结了迄今为止通过这些测试对遗传模型的研究。

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