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Low-cost, open-source, variable speed and incline treadmill for studying impacts of neonatal locomotion

机译:用于研究新生儿运动影响的低成本,开源,变速和倾斜跑步机

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There is a need for a small-scale, laboratory treadmill to investigate impacts of neonatal locomotion on neuromuscular and musculoskeletal development in small animal models. Adult mice and rats are routinely assessed using commercially available treadmills, but these treadmills can be relatively expensive and they may lack features needed to evaluate developing animals. Therefore, to overcome these limitations, a new treadmill was designed, built and calibrated. This open-source treadmill was designed specifically for neonatal and postnatal mice and rats, and it fits within a neonatal incubator. By using predominantly off-the-shelf and 3D printed components, and a microcontroller, this treadmill was low cost and easy to reproduce. The design also included variable incline, and a transparent belt and enclosures for video and gait analysis. A touchscreen interface provided user-friendly control over belt speed and run time. Moreover, validation experiments showed high accuracy in belt speed control, allowing for tightly regulated experimental conditions. Overall, this new low-cost, open-source, variable speed and incline treadmill can be used to advance understanding of neonatal locomotion, and neuromuscular and musculoskeletal development.
机译:需要小规模的实验室跑步机来调查新生儿运动对小动物模型中神经肌肉和肌肉骨骼发育的影响。成年小鼠和大鼠经常使用市售的跑步机进行评估,但这些跑步机可以相对昂贵,并且可能缺乏评估培养动物所需的特征。因此,为了克服这些限制,设计了一个新的跑步机,设计,构建和校准。这种开源跑步机专为新生儿和后幼儿老鼠和大鼠而设计,它适合新生儿培养箱。通过主要使用现成和3D印刷部件和微控制器,这种跑步机成本低,易于复制。该设计还包括可变倾斜,以及用于视频和步态分析的透明带和外壳。触摸屏界面提供了通过皮带速度和运行时间的用户友好控制。此外,验证实验在皮带速度控制方面表现出高精度,允许严格调节的实验条件。总体而言,这种新的低成本,开源,变速和倾斜跑步机可用于推进新生儿运动和神经肌肉和肌肉骨骼发育的理解。

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