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An experimental evaluation of a new designed apparatus (NDA) for the rapid measurement of impaired motor function in rats

机译:一种新设计的装置(NDA)在大鼠中快速测量的新设计装置(NDA)的实验评价

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Background: Assessment of the ability of rat to balance by rotarod apparatus (ROTA) is frequently used as a measure of impaired motor system function. Most of these methods have some disadvantages, such as failing to sense motor coordination rather than endurance and as the sensitivity of the method is low, more animals are needed to obtain statistically significant results. New method: We have designed and tested a new designed apparatus (NDA) to measure motor system function in rats. Our system consists of a glass box containing 4 beams which placed with 1 cm distance between them, two electrical motors for rotating the beams, and a camera to record the movements of the rats. The RPM of the beams is adjustable digitally between 0 and 50 rounds per minute. Results: We evaluated experimentally the capability of the NDA for the rapid measurement of impaired motor function in rats. Also we demonstrated that the sensitivity of the NDA increases by faster rotation speeds and may be more sensitive than ROTA for evaluating of impaired motor system function. Comparison with existing methods: Compared to a previous version of this task, our NDA provides a more efficient method to test rodents for studies of motor system function after impaired motor nervous system. Conclusions: In summary, our NDA will allow high efficient monitoring of rat motor system function and may be more sensitive than ROTA for evaluating of impaired motor system function in rats.
机译:背景技术:旋流设备(rota)的大鼠能力的评估经常用作电动机系统功能受损的量度。这些方法中的大多数具有一些缺点,例如未能感测电动机协调而不是耐久性并且随着方法的灵敏度低,需要更多的动物来获得统计学显着的结果。新方法:我们设计并测试了新的设计设备(NDA)以测量大鼠的电机系统功能。我们的系统由包含4个光束的玻璃盒组成,它们在它们之间具有1cm的距离,两个电动机用于旋转光束,以及相机以记录大鼠的运动。梁的RPM可在每分钟0到50轮之间以数字上的。结果:我们通过实验评估了NDA在大鼠中快速测量的NDA能力。此外,我们还证明了NDA的灵敏度通过更快的旋转速度增加,并且比Rota更敏感,用于评估电动机系统功能受损。与现有方法的比较:与以前版本的此任务相比,我们的NDA提供了一种更有效的方法来测试啮齿动物,以便在受损电机神经系统后的电机系统功能研究。结论:总结,我们的NDA将允许高效监测大鼠电机系统功能,并且可能比Rota更敏感,以评估大鼠的电动机系统功能受损。

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