低成本、便携式、易于使用的信息亭,方便非人灵长类动物在家中进行基于视觉的行为任务测试。

IF 2.1 3区 医学 Q3 NEUROSCIENCES Journal of neurophysiology Pub Date : 2024-09-01 Epub Date: 2024-07-17 DOI:10.1152/jn.00397.2023
Hamidreza Ramezanpour, Christopher Giverin, Kohitij Kar
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引用次数: 0

摘要

非人类灵长类动物(NHPs),尤其是猕猴,极大地促进了我们对人类视觉基础神经计算的理解。除了这些物种之间视觉脑区的同源性以及我们在多个尺度上探究猴子详细神经机制的能力之外,非人灵长类动物能够做出类似人类的视觉行为,这使它们成为人类视觉的极具吸引力的动物模型。传统上,此类行为研究都是在受控实验室环境中进行的,实验人员可以对亮度、眼球运动和听觉干扰等变量进行严格控制。然而,实验室内实验有几个限制因素,包括实验时间有限、需要专门的人类实验人员、额外的实验室空间要求、植入头柱的侵入性手术,以及椅子和头枕的额外时间和培训。为了克服这些局限性,我们建议采用家庭笼子对 NHP 进行行为训练和测试,这样就可以同时对多只猴子执行多项基于视觉的行为任务,减少了对人员的要求,无需对 NHP 的头部进行束缚,而且猴子可以不受限制地参与实验。在这篇文章中,我们介绍了一种便携式、低成本、易使用的信息亭系统,该系统是为在家庭笼子中对 NHPs 进行基于视觉的行为任务而开发的。我们提供了该系统的操作和构建细节,以促进该技术的开源开发。此外,我们还介绍了在实验室和 NHP 家笼中进行的行为测量的验证结果,证明了该系统的可靠性以及提高 NHP 行为研究的效率和灵活性的潜力。
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Low-cost, portable, easy-to-use kiosks to facilitate home-cage testing of nonhuman primates during vision-based behavioral tasks.

Nonhuman primates (NHPs), especially rhesus macaques, have significantly contributed to our understanding of the neural computations underlying human vision. Besides the established homologies in the visual brain areas between these species and our ability to probe detailed neural mechanisms in monkeys at multiple scales, NHPs' ability to perform human-like visual behavior makes them an extremely appealing animal model of human vision. Traditionally, such behavioral studies have been conducted in controlled laboratory settings, offering experimenters tight control over variables like luminance, eye movements, and auditory interference. However, in-lab experiments have several constraints, including limited experimental time, the need for dedicated human experimenters, additional lab space requirements, invasive surgeries for headpost implants, and extra time and training for chairing and head restraints. To overcome these limitations, we propose adopting home-cage behavioral training and testing of NHPs, enabling the administration of many vision-based behavioral tasks simultaneously across multiple monkeys with reduced human personnel requirements, no NHP head restraint, and monkeys' unrestricted access to experiments. In this article, we present a portable, low-cost, easy-to-use kiosk system developed to conduct home-cage vision-based behavioral tasks in NHPs. We provide details of its operation and build to enable more open-source development of this technology. Furthermore, we present validation results using behavioral measurements performed in the lab and in NHP home cages, demonstrating the system's reliability and potential to enhance the efficiency and flexibility of NHP behavioral research.NEW & NOTEWORTHY Training nonhuman primates (NHPs) for vision-based behavioral tasks in a laboratory setting is a time-consuming process and comes with many limitations. To overcome these challenges, we have developed an affordable, open-source, wireless, touchscreen training system that can be placed in the NHPs' housing environment. This system enables NHPs to work at their own pace. It provides a platform to implement continuous behavioral training protocols without major experimenter intervention and eliminates the need for other standard practices like NHP chair training, collar placement, and head restraints. Hence, these kiosks ultimately contribute to animal welfare and therefore better-quality neuroscience in the long run. In addition, NHPs quickly learn complex behavioral tasks using this system, making it a promising tool for wireless electrophysiological research in naturalistic, unrestricted environments to probe the relation between brain and behavior.

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来源期刊
Journal of neurophysiology
Journal of neurophysiology 医学-神经科学
CiteScore
4.80
自引率
8.00%
发文量
255
审稿时长
2-3 weeks
期刊介绍: The Journal of Neurophysiology publishes original articles on the function of the nervous system. All levels of function are included, from the membrane and cell to systems and behavior. Experimental approaches include molecular neurobiology, cell culture and slice preparations, membrane physiology, developmental neurobiology, functional neuroanatomy, neurochemistry, neuropharmacology, systems electrophysiology, imaging and mapping techniques, and behavioral analysis. Experimental preparations may be invertebrate or vertebrate species, including humans. Theoretical studies are acceptable if they are tied closely to the interpretation of experimental data and elucidate principles of broad interest.
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