Biopsychology, Institute of Cognitive Neuroscience, Department of Psychology, Ruhr University Bochum, Bochum, Germany.
Department of Genetics, Faculty of Veterinary Medicine, Ankara University, Ankara, Turkey.
Laterality. 2024 May;29(3):246-282. doi: 10.1080/1357650X.2024.2341459. Epub 2024 Apr 26.
Studying behavioural lateralization in animals holds great potential for answering important questions in laterality research and clinical neuroscience. However, comparative research encounters challenges in reliability and validity, requiring new approaches and innovative designs to overcome. Although validated tests exist for some species, there is yet no standard test to compare lateralized manual behaviours between individuals, populations, and animal species. One of the main reasons is that different fine-motor abilities and postures must be considered for each species. Given that pawedness/handedness is a universal marker for behavioural lateralization across species, this article focuses on three commonly investigated species in laterality research: dogs, cats, and rats. We will present six apparatuses (two for dogs, three for cats, and one for rats) that enable an accurate assessment of paw preference. Design requirements and specifications such as zoometric fit for different body sizes and ages, reliability, robustness of the material, maintenance during and after testing, and animal welfare are extremely important when designing a new apparatus. Given that the study of behavioural lateralization yields crucial insights into animal welfare, laterality research, and clinical neuroscience, we aim to provide a solution to these challenges by presenting design requirements and innovations in methodology across species.
研究动物的行为侧化在回答侧化研究和临床神经科学中的重要问题方面具有很大的潜力。然而,比较研究在可靠性和有效性方面存在挑战,需要新的方法和创新的设计来克服。尽管一些物种有经过验证的测试,但仍然没有标准的测试来比较个体、种群和动物物种之间的偏侧化手动行为。其中一个主要原因是,必须考虑每种物种的不同精细运动能力和姿势。鉴于爪偏好/手偏好是跨物种行为侧化的普遍标志,本文重点介绍了侧化研究中三种常见的物种:狗、猫和老鼠。我们将介绍六个可用于准确评估爪偏好的设备(两个用于狗,三个用于猫,一个用于老鼠)。在设计新设备时,设计要求和规格(如不同体型和年龄的动物的尺寸适配、可靠性、材料的坚固性、测试期间和之后的维护以及动物福利)非常重要。鉴于行为侧化的研究为动物福利、侧化研究和临床神经科学提供了重要的见解,我们旨在通过跨物种介绍设计要求和方法学创新来解决这些挑战。