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基于被黑客攻击的厨房秤的系统,用于定量测量啮齿动物的握力。

A hacked kitchen scale-based system for quantification of grip strength in rodents.

机构信息

Department of Pharmacology, University of Zagreb School of Medicine, Zagreb, Croatia; Croatian Institute for Brain Research, University of Zagreb School of Medicine, Zagreb, Croatia.

Department of Pharmacology, University of Zagreb School of Medicine, Zagreb, Croatia; Croatian Institute for Brain Research, University of Zagreb School of Medicine, Zagreb, Croatia.

出版信息

Comput Biol Med. 2022 May;144:105391. doi: 10.1016/j.compbiomed.2022.105391. Epub 2022 Mar 10.

Abstract

BACKGROUND

Assessment of neuromuscular function is critical for understanding pathophysiological changes related to motor system dysfunction in many rodent disease models. Among methods used for quantification of grip performance in rodents, gauge-based grip strength meters provide the most reliable results, however, such instruments are unaffordable by many laboratories. The present aim was to demonstrate how to build a rodent grip strength apparatus from scratch using a digital kitchen scale, an empty cage, and a microcontroller, with both hardware and software being completely open-source to enable maximal modularity and flexibility of the instrument in concordance with the principles of open-source bioinstrumentation.

METHODS

NodeMCU ESP-32S was connected to a hacked digital kitchen scale-based platform and load cell data were acquired using custom open-source scripts. Data were analyzed in R using semi-automatic analysis algorithms implemented in the ratPASTA package. griPASTA system was tested by quantifying muscular rigidity in the rat model of Parkinson's disease (PD) induced by bilateral intrastriatal administration of 6-hydroxydopamine (6-OHDA).

RESULTS

In contrast to commercial instruments, the flexibility and modularity of the proposed platform enable collecting raw data and controlling for potential confounding effects on the grip strength. Muscular rigidity is significantly increased in the rat model of PD regardless of the dose used or reboxetine pretreatment. Neither trial speed nor animal weight was recognized as an important confounder.

CONCLUSIONS

griPASTA provides a cheap, easy, precise, and reliable way to measure grip strength in rodents using widely available equipment and open-source software.

摘要

背景

评估神经肌肉功能对于理解许多啮齿动物疾病模型中与运动系统功能障碍相关的病理生理变化至关重要。在用于量化啮齿动物抓握性能的方法中,基于量表的握力计提供了最可靠的结果,但是,许多实验室都无法承担这种仪器的费用。本研究旨在展示如何使用数字厨房秤、空笼和微控制器从头开始构建啮齿动物握力装置,硬件和软件都是完全开源的,以确保仪器具有最大的模块化和灵活性,符合开源生物仪器的原则。

方法

NodeMCU ESP-32S 与经过黑客攻击的基于数字厨房秤的平台相连,并使用自定义开源脚本获取负载单元数据。使用在 ratPASTA 包中实现的半自动分析算法在 R 中分析数据。griPASTA 系统通过量化双侧纹状体注射 6-羟多巴胺(6-OHDA)诱导的帕金森病(PD)大鼠模型中的肌肉僵硬来进行测试。

结果

与商业仪器相比,所提出的平台的灵活性和模块化能够收集原始数据,并控制对握力产生潜在影响的混杂因素。无论使用的剂量或雷氯必利预处理如何,PD 大鼠模型中的肌肉僵硬都显著增加。试验速度和动物体重都不是重要的混杂因素。

结论

griPASTA 提供了一种使用广泛可用的设备和开源软件测量啮齿动物握力的廉价、简单、精确和可靠的方法。

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