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The Vermicelli Handling Test: A Simple Quantitative Measure of Dexterous Forepaw Function in Rats

机译:细面条处理测试:大鼠灵巧前爪功能的简单量化方法

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摘要

Loss of function in the hands occurs with many brain disorders, but there are few measures of skillful forepaw use in rats available to model these impairments that are both sensitive and simple to administer. previously described the dexterous manner in which rats manipulate food items with their paws, including thin pieces of pasta. We set out to develop a measure of this food handling behavior that would be quantitative, easy to administer, sensitive to the effects of damage to sensory and motor systems of the CNS and useful for identifying the side of lateralized impairments. When rats handle 7 cm lengths of vermicelli, they manipulate the pasta by repeatedly adjusting the forepaw hold on the pasta piece. As operationally defined, these adjustments can be easily identified and counted by an experimenter without specialized equipment. After unilateral sensorimotor cortex (SMC) lesions, transient middle cerebral artery occlusion (MCAO) and striatal dopamine depleting (6-hydroxydopamine, 6-OHDA) lesions in adult rats, there were enduring reductions in adjustments made with the contralateral forepaw. Additional pasta handling characteristics distinguished between the lesion types. MCAO and 6-OHDA lesions increased the frequency of several identified atypical handling patterns. Severe dopamine depletion increased eating time and adjustments made with the ipsilateral forepaw. However, contralateral forepaw adjustment number most sensitively detected enduring impairments across lesion types. Because of its ease of administration and sensitivity to lateralized impairments in skilled forepaw use, this measure may be useful in rat models of upper extremity impairment.
机译:在许多脑部疾病中,会发生手部功能丧失的现象,但是在大鼠中,很少有熟练的前爪测量方法可以用来模拟这些既敏感又易于管理的损伤。前面曾描述过一种灵巧的方式,即老鼠用爪子操纵食物,包括面食薄片。我们着手开发一种食品处理行为的措施,该措施应定量,易于管理,对中枢神经系统的感觉和运动系统受损的影响敏感,并有助于识别偏侧性损伤的一面。当老鼠处理7厘米长的细面条时,他们会通过反复调整在面食上的前爪握持来操纵面食。根据操作定义,无需专业设备,实验人员即可轻松识别和计算这些调整。成年大鼠单侧感觉运动皮层(SMC)损伤,短暂性大脑中动脉闭塞(MCAO)和纹状体多巴胺耗竭(6-羟基多巴胺,6-OHDA)损伤后,对侧前爪的调节作用持续降低。附加的面食处理特征在病变类型之间有所区别。 MCAO和6-OHDA病变增加了几种已确定的非典型处理模式的频率。严重消耗多巴胺会增加进食时间,并需要用同侧前爪进行调整。但是,对侧前爪调整数最敏感地检测出了不同病变类型的持久损伤。由于其易于给药并且对熟练的前爪使用对侧向性损伤敏感,因此该措施可能在上肢损伤的大鼠模型中有用。

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