Terstege Dylan J, Epp Jonathan R
Department of Cell Biology and Anatomy, Hotchkiss Brain Institute, Cumming School of Medicine, University of Calgary, 3330 Hospital Drive NW, Calgary, Alberta T2N 4N1, Canada.
HardwareX. 2023 Dec 12;17:e00499. doi: 10.1016/j.ohx.2023.e00499. eCollection 2024 Mar.
Voluntary wheel running is a common measure of general activity in many rodent models across neuroscience and physiology. However, current commercial wheel monitoring systems can be cost-prohibitive to many investigators, with many of these systems requiring investments of thousands of dollars. In recent years, several open-source alternatives have been developed, and while these tools are much more cost effective than commercial system, they often lack the flexibility to be applied to a wide variety of projects. Here, we have developed PAW, a 3D Printable Arduino-based Wheel logger. PAW is wireless, fully self-contained, easy to assemble, and all components necessary for its production can be obtained for only $75 CAD. Furthermore, with its compact internal electronics, the 3D printed casing can be easily modified to be used with a wide variety of running wheel designs for a wide variety of rodent species. Data recorded with the PAW system shows circadian patterns of activity which is expected from mice and is consistent with results found in the literature. Altogether, PAW is a flexible, low-cost system that can be beneficial to a broad range of researchers who study rodent models.
在神经科学和生理学领域的许多啮齿动物模型中,自愿性轮转运动是衡量一般活动的常用指标。然而,目前的商业轮转监测系统对许多研究人员来说成本过高,其中许多系统需要数千美元的投资。近年来,已经开发了几种开源替代方案,虽然这些工具比商业系统更具成本效益,但它们往往缺乏应用于各种项目的灵活性。在此,我们开发了PAW,一种基于3D打印的、以Arduino为基础的轮转记录器。PAW是无线的、完全独立的、易于组装的,其生产所需的所有组件只需75加元即可获得。此外,由于其紧凑的内部电子设备,3D打印外壳可以很容易地进行修改,以与各种用于不同啮齿动物物种的转轮设计配合使用。用PAW系统记录的数据显示出昼夜活动模式,这在小鼠中是预期的,并且与文献中的结果一致。总之,PAW是一个灵活、低成本的系统,对广泛研究啮齿动物模型的研究人员可能有益。