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化疗诱导周围神经毒性的啮齿动物模型中的步态分析。

Gait analysis in chemotherapy-induced peripheral neurotoxicity rodent models.

机构信息

Biomedical Group (BIO277), Department of Physiotherapy, Faculty of Health Sciences, University of Granada, Granada, Spain; A02-Cuídate, Instituto de Investigación Biosanitaria Ibs, GRANADA, Granada, Spain; Unit of Excellence On Exercise and Health (UCEES), University of Granada, Granada, Spain; Sport and Health Research Center (IMUDs), Granada, Spain.

Experimental Neurology Unit, School of Medicine and Surgery, Monza, Italy; NeuroMI (Milan Center for neuroscience), Milan, Italy.

出版信息

Brain Res Bull. 2023 Oct 15;203:110769. doi: 10.1016/j.brainresbull.2023.110769. Epub 2023 Sep 24.

Abstract

Gait analysis could be used in animal models as an indicator of sensory ataxia due to chemotherapy-induced peripheral neurotoxicity (CIPN). Over the years, gait analysis in in vivo studies has evolved from simple observations carried out by a trained operator to computerised systems with machine learning that allow the quantification of any variable of interest and the establishment of algorithms for behavioural classification. However, there is not a consensus on gait analysis use in CIPN animal models; therefore, we carried out a systematic review. Of 987 potentially relevant studies, 14 were included, in which different methods were analysed (observation, footprint and CatWalk™). We presented the state-of-the-art of possible approaches to analyse sensory ataxia in rodent models, addressing advantages and disadvantages of different methods available. Semi-automated methods may be of interest when preventive or therapeutic strategies are evaluated, also considering their methodological simplicity and automaticity; up to now, only CatWalk™ analysis has been tested. Future studies should expect that CIPN-affected animals tend to reduce hind paw support due to pain, allodynia or loss of sensation, and an increase in swing phase could or should be observed. Few available studies documented these impairments at the last time point, and only appeared later on respect to other earlier signs of CIPN (such as altered neurophysiological findings). For that reason, gait impairment could be interpreted as late repercussions of loss of sensory.

摘要

步态分析可用于动物模型中,作为化疗引起的周围神经毒性 (CIPN) 导致感觉性共济失调的指标。多年来,体内研究中的步态分析已经从由经过训练的操作人员进行的简单观察演变为具有机器学习的计算机化系统,这些系统允许对任何感兴趣的变量进行量化,并建立行为分类算法。然而,在 CIPN 动物模型中使用步态分析尚未达成共识;因此,我们进行了系统评价。在 987 项潜在相关研究中,有 14 项被纳入,其中分析了不同的方法(观察、足迹和 CatWalk™)。我们介绍了分析啮齿动物模型感觉性共济失调的可能方法的最新进展,讨论了现有不同方法的优缺点。在评估预防或治疗策略时,半自动方法可能会很有趣,同时也要考虑到它们的方法简单性和自动化;到目前为止,只有 CatWalk™ 分析已经过测试。未来的研究应该预期,由于疼痛、感觉过敏或感觉丧失,CIPN 影响的动物往往会减少后爪支撑,并且摆动相可能会增加或应该观察到增加。少数可用的研究在最后一个时间点记录了这些损伤,并且仅在其他 CIPN 早期迹象(例如改变的神经生理学发现)之后出现。因此,步态损伤可以被解释为感觉丧失的迟发影响。

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