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An Experimental Swallow Evoked Potential Protocol to Investigate the Neural Substrates of Swallowing

机译:实验性吞咽诱发电位协议以研究吞咽的神经基质

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摘要

Advancement in dysphagia intervention is hindered by our lack of understanding of the neural mechanisms of swallowing in health and disease. Evoking and understanding neural activity in response to normal and disordered swallowing is essential to bridge this knowledge gap. Building on sensory evoked potential methodology, we developed a minimally invasive approach to generate swallow evoked potentials (SwEPs) in response to repetitive swallowing induced by citric acid stimulation of the oropharynx in lightly anesthetized healthy adult rats. The SwEP waveform consisted of 8 replicable peaks within 10 milliseconds immediately preceding the onset of electromyographic swallowing activity. Methodology refinement is underway with healthy rats to establish normative SwEP waveform morphology before proceeding to models of advanced aging and age-related neurodegenerative diseases. Ultimately, we envision that this experimental protocol may unmask the pathologic neural substrates contributing to dysphagia to accelerate the discovery of targeted therapeutics.
机译:吞咽困难干预的进展由于我们对吞咽健康和疾病的神经机制缺乏了解而受到阻碍。唤起和理解对正常和无序吞咽反应的神经活动对于弥合这一知识鸿沟至关重要。在感觉诱发电位方法的基础上,我们开发了一种微创方法来产生吞咽诱发电位(SwEPs),以响应柠檬酸刺激口咽中麻醉的健康成年大鼠反复吞咽所产生的吞咽诱发电位。 SwEP波形由紧邻肌电图吞咽活动开始的10毫秒内的8个可复制峰组成。在进行高级衰老和与年龄相关的神经退行性疾病模型之前,正在对健康大鼠进行方法学改进,以建立标准的SwEP波形形态。最终,我们设想该实验方案可能会掩盖导致吞咽困难的病理神经底物,从而加快靶向治疗的发现。

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