Differential mastication kinematics of the rabbit in response to food and water: implications for conditioned movement.

Keith D Huff, Yukiko Asaka, Amy L Griffin, William P Berg, Matthew A Seager, Stephen D Berry
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引用次数: 4

Abstract

Analysis of naturalistic chewing patterns may provide insight into mapping the neural substrates of jaw movement control systems, including their adaptive modification during the classically conditioned jaw movement (CJM) paradigm. Here, New Zealand White rabbits were administered food and water stimuli orally to evaluate the influence of stimulus consistency on masticatory pattern. Chewing patterns were recorded via video camera and movements were analyzed by computerized image analysis. The mandibular kinematics, specifically the extent of dorsal/ventral, medial/lateral, and rostral/caudal movement, were significantly larger in food-evoked than water-evoked chewing. Water-evoked chewing frequency, however, was significantly higher than that of food-evoked movements. In light of known cortical mastication modulatory centers, our findings implicate different neural substrates for the responses to food and water stimuli in the rabbit. A detailed delineation of jaw movement patterns and circuitry is essential to characterize the neural substrates of CJM.

兔对食物和水的不同咀嚼运动学反应:条件运动的含义。
自然咀嚼模式的分析可以为绘制颌骨运动控制系统的神经基质提供见解,包括它们在经典条件颌骨运动(CJM)范式中的适应性修改。本研究以新西兰大白兔为研究对象,分别口服食物和水刺激,观察刺激一致性对咀嚼模式的影响。通过摄像机记录咀嚼模式,并通过计算机图像分析分析运动。在食物诱发的咀嚼中,下颌运动学,特别是背/腹侧、内侧/外侧和吻侧/尾侧运动的程度明显大于水诱发的咀嚼。然而,水诱发的咀嚼频率明显高于食物诱发的运动。根据已知的皮质咀嚼调节中心,我们的发现暗示了兔对食物和水刺激反应的不同神经基质。颌骨运动模式和电路的详细描述是表征CJM的神经基质所必需的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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