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与年龄相关的吞咽生物力学变化。

Age-related alterations in swallowing biomechanics.

机构信息

Division of Otolaryngology-Head and Neck Cancer, Department of Surgery, University of Wisconsin School of Medicine and Public Health, United States of America; Department of Biomedical Engineering, University of Wisconsin-Madison, United States of America.

Division of Otolaryngology-Head and Neck Cancer, Department of Surgery, University of Wisconsin School of Medicine and Public Health, United States of America.

出版信息

Exp Gerontol. 2019 Apr;118:45-50. doi: 10.1016/j.exger.2019.01.006. Epub 2019 Jan 8.

Abstract

BACKGROUND

Aging rodent models allow for the discovery of underlying mechanisms of cranial muscle dysfunction. Methods are needed to allow quantification of complex, multivariate biomechanical movements during swallowing. Videofluoroscopic swallow studies (VSS) are the standard of care in assessment of swallowing disorders in patients and validated quantitative, kinematic, and morphometric analysis methods have been developed. Our purpose was to adapt validated morphometric techniques to the rodent to computationally analyze swallowing dysfunction in the aging rodent.

METHODS

VSS, quantitative analyses (bolus area, bolus velocity, mastication rate) and a rodent specific multivariate, morphometric computational analysis of swallowing biomechanics were performed on 20 swallows from 5 young adult and 5 old Fischer 344/Brown Norway rats. Eight anatomical landmarks were used to track the relative change in position of skeletal levers (cranial base, vertebral column, mandible) and soft tissue landmarks (upper esophageal sphincter, base of tongue).

RESULTS

Bolus area significantly increased and mastication rate significantly decreased with age. Aging accounted for 77.1% of the variance in swallow biomechanics, and 18.7% of the variance was associated with swallow phase (oral vs pharyngeal). Post hoc analyses identified age-related alterations in tongue base retraction, mastication, and head posture during the swallow.

CONCLUSION

Geometric morphometric analysis of rodent swallows suggests that swallow biomechanics are altered with age. When used in combination with biological assays of age-related adaptations in neuromuscular systems, this multivariate analysis may increase our understanding of underlying musculoskeletal dysfunction that contributes to swallowing disorders with aging.

摘要

背景

衰老啮齿动物模型可发现颅面肌肉功能障碍的潜在机制。需要有方法可以量化吞咽过程中的复杂、多变量生物力学运动。视频透视吞咽研究(VSS)是评估患者吞咽障碍的标准方法,并且已经开发出了验证的定量、运动学和形态计量分析方法。我们的目的是将经过验证的形态计量技术应用于啮齿动物,以计算分析衰老啮齿动物的吞咽功能障碍。

方法

对 5 只年轻成年和 5 只老年 Fischer 344/ Brown Norway 大鼠的 20 次吞咽进行 VSS、定量分析(食团面积、食团速度、咀嚼速度)和特定于啮齿动物的吞咽生物力学多变量形态计量计算分析。使用 8 个解剖学标志来跟踪骨骼杠杆(颅底、脊柱、下颌)和软组织标志(食管上括约肌、舌根)的相对位置变化。

结果

食团面积随年龄显著增加,咀嚼速度随年龄显著降低。衰老解释了吞咽生物力学的 77.1%变化,与吞咽阶段(口腔期与咽期)相关的 18.7%变化。事后分析确定了与年龄相关的舌骨后缩、咀嚼和吞咽过程中头部姿势的改变。

结论

对啮齿动物吞咽的几何形态计量分析表明,吞咽生物力学随年龄而改变。当与衰老相关的神经肌肉系统的生物测定结合使用时,这种多变量分析可能会增加我们对导致衰老相关吞咽障碍的骨骼肌肉功能障碍的理解。

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