在模型口腔喉吞过程中对玻尿酸碎片的实验和计算分析
Steven McFarland1, Dana M Leichter2,3, Nicole Stark1
1Department of Mechanical Engineering, Widener University, Chester, PA, USA.
Dysphagia
|November 19, 2025
概括
吞液体玻尿酸碎片,受体积和速度的影响,增加吸入风险. 粘度降低了碎片化,影响吞时的气道安全.
科学领域:
- 生物力学 生物力学
- 生理学 生理学 生理学
- 流体动力学 流体动力学
背景情况:
- 吞涉及复杂的生物机械过程.
- 在吞过程中液体玻尿酸的碎片化会增加吸入风险.
- 了解控制玻尿素行为的物理力量对于评估吞安全性至关重要.
研究的目的:
- 在模拟吞过程中开发液体玻尿酸碎片的实验和计算模型.
- 为了研究物理力量对球体凝聚力的影响.
- 量化螺栓特性与碎片化之间的关系.
主要方法:
- 创建了口腔和舌头的3D打印物理模型.
- 模拟螺旋推进使用滑轮系统来施加线性力.
- 测量了螺旋体碎片化和移位速度.
- 开发了一个计算模型来分析碎片化动态.
主要成果:
- 随着玻尿体体积和速度的增加,玻尿体碎片化增加.
- 玻尿酸碎片化随着玻尿酸粘度的增加而减少.
- 观察到碎片化是应用线性力的一个典型结果.
结论:
- 液体玻璃碎片受体积,速度和粘度的影响.
- 这些物理性质,加上喉关闭和喉周静止,有助于吸引脆弱性.
- 开发的模型提供了关于吞和吸入风险的机制的见解.
相关概念视频
Deglutition
5.2K
Swallowing, otherwise known as deglutition, facilitates the transport of food from the mouth to the stomach. It is a multifaceted process that involves both the tongue and the muscles of the throat and esophagus. Saliva and mucus aid in this process, which takes approximately 4 to 8 seconds for semi-solid or solid food and around 1 second for liquids or very soft food.
Swallowing can be divided into three stages: the voluntary phase, the pharyngeal phase, and the esophageal phase. Although the...
Swallowing can be divided into three stages: the voluntary phase, the pharyngeal phase, and the esophageal phase. Although the...
5.2K
Two-Compartment Open Model: IV Bolus Administration
1.1K
The two-compartment model for intravenous (IV) bolus administration illustrates drug distribution in the body, subdividing it into central and peripheral compartments. This model operates on the concept of two-compartment kinetics. The drug's plasma concentration shows a bi-exponential decline following IV bolus administration, signaling the presence of two disposition processes: distribution and elimination.
The disparity between drug input and the sum of drug transfer rates between...
The disparity between drug input and the sum of drug transfer rates between...
1.1K
Suctioning the Oropharyngeal Airway
763
In preparing for oropharyngeal airway suctioning, a nurse must gather all necessary equipment, including a suction unit with tubing, a prepackaged suction kit, sterile gloves, water or saline for irrigation, a water-soluble lubricant, and additional personal protective equipment (such as a gown, mask, and goggles) to control infections.
After assembling the equipment, the nurse should practice hand hygiene and don appropriate PPE according to infection control guidelines to avoid the...
After assembling the equipment, the nurse should practice hand hygiene and don appropriate PPE according to infection control guidelines to avoid the...
763
One-Compartment Open Model for IV Bolus Administration: Estimation of Clearance
329
Clearance is a key pharmacokinetic parameter that quantifies the volume of body fluid from which a drug is entirely removed within a specific time frame. It is crucial in assessing how a drug is eliminated from the body and has critical clinical applications.
In the one-compartment open model for intravenous (IV) bolus administration, clearance is estimated by dividing the elimination rate by the plasma drug concentration. This equation leverages the elimination rate constant and the apparent...
In the one-compartment open model for intravenous (IV) bolus administration, clearance is estimated by dividing the elimination rate by the plasma drug concentration. This equation leverages the elimination rate constant and the apparent...
329
One-Compartment Open Model for IV Bolus Administration: General Considerations
658
The one-compartment model is a pharmacokinetic tool that models the body as a single, uniform compartment, facilitating the understanding of drug distribution and elimination. This model is particularly beneficial for intravenous (IV) bolus administration, where the drug rapidly circulates throughout the body.
The drug's presence in the body is defined by an equation representing the difference between the rates of drug entry and exit. Key parameters—elimination rate constant,...
The drug's presence in the body is defined by an equation representing the difference between the rates of drug entry and exit. Key parameters—elimination rate constant,...
658
Physiology of the Gastrointestinal System I: Ingestion and Propulsion
1.7K
The physiology of the gastrointestinal system begins with ingestion as food enters the mouth.
1.7K


