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旋钮旋后任务:一种评估大鼠前肢功能的半自动方法。

The Knob Supination Task: A Semi-automated Method for Assessing Forelimb Function in Rats.

作者信息

Butensky Samuel D, Bethea Thelma, Santos Joshua, Sindhurakar Anil, Meyers Eric, Sloan Andrew M, Rennaker Robert L, Carmel Jason B

机构信息

Burke Medical Research Institute.

Texas Biomedical Center, The University of Texas at Dallas; Erik Jonsson School of Engineering and Computer Science, The University of Texas at Dallas.

出版信息

J Vis Exp. 2017 Sep 28(127):56341. doi: 10.3791/56341.

Abstract

Tasks that accurately measure dexterity in animal models are critical to understand hand function. Current rat behavioral tasks that measure dexterity largely use video analysis of reaching or food manipulation. While these tasks are easy to implement and are robust across disease models, they are subjective and laborious for the experimenter. Automating traditional tasks or creating new automated tasks can make the tasks more efficient, objective, and quantitative. Since rats are less dexterous than primates, central nervous system (CNS) injury produces more subtle deficits in dexterity, however, supination is highly affected in rodents and crucial to hand function in primates. Therefore, we designed a semi-automated task that measures forelimb supination in rats. Rats are trained to reach and grasp a knob-shaped manipulandum and turn the manipulandum in supination to receive a reward. Rats can acquire the skill within 20 ± 5 days. While the early part of training is highly supervised, much of the training is done without direct supervision. The task reliably and reproducibly captures subtle deficits after injury and shows functional recovery that accurately reflects clinical recovery curves. Analysis of data is performed by specialized software through a graphical user interface that is designed to be intuitive. We also give solutions to common problems encountered during training, and show that minor corrections to behavior early in training produce reliable acquisition of supination. Thus, the knob supination task provides efficient and quantitative evaluation of a critical movement for dexterity in rats.

摘要

在动物模型中准确测量灵活性的任务对于理解手部功能至关重要。当前测量大鼠灵活性的行为任务主要采用对抓握或食物操作的视频分析。虽然这些任务易于实施且在各种疾病模型中都很稳定,但对实验者来说具有主观性且耗时费力。将传统任务自动化或创建新的自动化任务可以使这些任务更高效、客观和定量。由于大鼠的灵活性不如灵长类动物,中枢神经系统(CNS)损伤会导致更细微的灵活性缺陷,然而,旋后动作在啮齿动物中受到的影响很大,并且对灵长类动物的手部功能至关重要。因此,我们设计了一项半自动化任务来测量大鼠的前肢旋后动作。训练大鼠去够取并抓住一个旋钮状的操作手柄,并将操作手柄旋后以获得奖励。大鼠能够在20±5天内掌握这项技能。虽然训练初期受到高度监督,但大部分训练是在没有直接监督的情况下完成的。该任务能够可靠且可重复地捕捉损伤后的细微缺陷,并显示出准确反映临床恢复曲线的功能恢复情况。数据通过专门软件通过设计直观的图形用户界面进行分析。我们还给出了训练过程中常见问题的解决方案,并表明在训练早期对行为进行小的纠正就能可靠地掌握旋后动作。因此,旋钮旋后任务为大鼠灵活性的关键动作提供了高效且定量的评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bce/5752340/781f8d8391e1/jove-127-56341-0.jpg

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