University of Florida, J. Crayton Pruitt Family Department of Biomedical Engineering, Gainesville, 32611, USA.
Washington University in St. Louis, School of Engineering and Applied Science, St. Louis, 63130, USA.
Sci Rep. 2018 Jun 28;8(1):9797. doi: 10.1038/s41598-018-28134-1.
Locomotive changes are often associated with disease or injury, and these changes can be quantified through gait analysis. Gait analysis has been applied to preclinical studies, providing quantitative behavioural assessment with a reasonable clinical analogue. However, available gait analysis technology for small animals is somewhat limited. Furthermore, technological and analytical challenges can limit the effectiveness of preclinical gait analysis. The Gait Analysis Instrumentation and Technology Optimized for Rodents (GAITOR) Suite is designed to increase the accessibility of preclinical gait analysis to researchers, facilitating hardware and software customization for broad applications. Here, the GAITOR Suite's utility is demonstrated in 4 models: a monoiodoacetate (MIA) injection model of joint pain, a sciatic nerve injury model, an elbow joint contracture model, and a spinal cord injury model. The GAITOR Suite identified unique compensatory gait patterns in each model, demonstrating the software's utility for detecting gait changes in rodent models of highly disparate injuries and diseases. Robust gait analysis may improve preclinical model selection, disease sequelae assessment, and evaluation of potential therapeutics. Our group has provided the GAITOR Suite as an open resource to the research community at www.GAITOR.org , aiming to promote and improve the implementation of gait analysis in preclinical rodent models.
运动方式的改变通常与疾病或损伤有关,这些改变可以通过步态分析来量化。步态分析已应用于临床前研究,为具有合理临床类比的定量行为评估提供了依据。然而,现有的小动物步态分析技术有些受限。此外,技术和分析方面的挑战可能会限制临床前步态分析的效果。为啮齿动物优化的步态分析仪器和技术套件(GAITOR)旨在增加临床前步态分析对研究人员的可及性,促进硬件和软件定制以实现广泛的应用。在这里,GAITOR 套件在 4 种模型中的应用得到了证明:关节疼痛的单碘乙酸(MIA)注射模型、坐骨神经损伤模型、肘关节挛缩模型和脊髓损伤模型。GAITOR 套件在每种模型中都识别出了独特的代偿性步态模式,证明了该软件在检测高度不同的损伤和疾病的啮齿动物模型中的步态变化方面的实用性。稳健的步态分析可能会改善临床前模型选择、疾病后遗症评估和潜在治疗方法的评估。我们的小组已经将 GATOR 套件作为一个开放资源提供给了研究社区,网址是 www.GAITOR.org ,旨在促进和改进临床前啮齿动物模型中的步态分析的实施。