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相关概念视频

Respiratory Volumes01:15

Respiratory Volumes

1.7K
Respiratory volumes are crucial metrics, meticulously measured to quantify the air exchanged in and out of the lungs during various phases of the breathing cycle. These precise measurements are vital for assessing lung function, diagnosing respiratory conditions, and monitoring overall respiratory health. Each parameter provides specific insights into the mechanics of breathing and the functional capacity of the lungs.
Tidal Volume (TV) Tidal volume (TV) is the air inhaled or exhaled in a...
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Respiratory Volumes and Capacities01:22

Respiratory Volumes and Capacities

2.7K
The respiratory system is responsible for the intake of oxygen and the expulsion of carbon dioxide from the body. Respiratory volumes describe the volume of air in the lungs at different phases of the respiratory cycle. Tidal volume is the air breathed in and out during normal, quiet breathing. Inspiratory reserve volume is the air that can be forcefully inspired beyond the tidal volume. In contrast, expiratory reserve volume refers to the air that can be expelled from the lungs after a normal...
2.7K
Respiratory Volumes and Capacities I01:26

Respiratory Volumes and Capacities I

1.2K
Assessing the respiratory rate and rhythm for a complete minute is crucial for evaluating the breathing pattern. Even a minor increase in the patient's average respiratory rate, by as little as three to five breaths per minute, is an early and vital indicator of respiratory distress. Patients with a respiratory rate exceeding twenty-four breaths per minute require close monitoring to determine the physiological alterations. This careful observation is essential for prompt recognition and...
1.2K
Laminar Flow: Problem Solving01:24

Laminar Flow: Problem Solving

261
Laminar flow occurs when a fluid moves smoothly in parallel layers with minimal mixing and turbulence. In fluid mechanics, ensuring laminar flow within a pipe is essential for precise control of flow characteristics, especially in engineering applications. The key factor in determining whether flow remains laminar is the Reynolds number, a dimensionless quantity that depends on the fluid's velocity, density, viscosity, and the pipe's diameter. A Reynolds number of 2100 or lower...
261
Neural Control of Respiration01:18

Neural Control of Respiration

3.0K
The neural regulation of respiration is a meticulously coordinated process primarily controlled by the respiratory centers located within the brainstem. These centers, composed of specialized neurons, transmit nerve impulses that control the contraction and relaxation of our respiratory muscles.
Respiratory Centers in the Brainstem
Two primary areas comprise the respiratory center: the medullary respiratory center in the medulla oblongata and the pontine respiratory group in the pons. The...
3.0K
Pulmonary Ventilation: Inhalation01:24

Pulmonary Ventilation: Inhalation

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Pulmonary ventilation is a vital process that ensures the exchange of oxygen and carbon dioxide in the lungs. It refers to the movement of air into and out of the lungs, enabling the body to obtain oxygen and remove waste carbon dioxide. In this article, we will explore the intricacies of pulmonary ventilation, including its underlying principles, mechanisms, and the interplay of pressures within the respiratory system.
Boyle's law becomes particularly pertinent when examining respiratory...
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相关实验视频

Updated: Sep 16, 2025

A Microfluidic Model of Biomimetically Breathing Pulmonary Acinar Airways
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A Microfluidic Model of Biomimetically Breathing Pulmonary Acinar Airways

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呼吸系统空气流的前向计算建模.

Emmanuel A Akor1, Bing Han2,3, Mingchao Cai2

  • 1Roy J. Carver Department of Biomedical Engineering, University of Iowa, Iowa City, IA 52242, USA.

Applied sciences (Basel, Switzerland)
|July 7, 2025
PubMed
概括

计算流体动力学 (CFD) 模拟支气管树以分析空气流,粒子沉积和肺功能. 本综述涵盖了CFD技术,患者特异型模型和个性化医疗的模拟结果.

关键词:
空气流是指空气的流动.气道树是一种气道树.计算流体动力学的流体动力学.计算机断层扫描 (CT) 是一种计算机断层扫描.流体结构 相互作用 相互作用

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Evaluating Regional Pulmonary Deposition using Patient-Specific 3D Printed Lung Models
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Evaluating Regional Pulmonary Deposition using Patient-Specific 3D Printed Lung Models

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Modeling and Simulations of Olfactory Drug Delivery with Passive and Active Controls of Nasally Inhaled Pharmaceutical Aerosols
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Modeling and Simulations of Olfactory Drug Delivery with Passive and Active Controls of Nasally Inhaled Pharmaceutical Aerosols

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相关实验视频

Last Updated: Sep 16, 2025

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Evaluating Regional Pulmonary Deposition using Patient-Specific 3D Printed Lung Models
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科学领域:

  • 呼吸系统的机械学
  • 生物医学工程 生物医学工程
  • 计算生物学是一种计算生物学.

背景情况:

  • 计算流体动力学 (CFD) 对于研究支气管树中的气体流动至关重要.
  • CFD 允许在体中进行测试,减少了对潜在有害实验的需求.
  • 它有助于理解肺部结构功能关系和疾病进展.

研究的目的:

  • 审查生成现实的3D气道树模型的技术.
  • 要总结CFD在肺部空气流模拟的方法.
  • 讨论CFD模型的局限性和结果.

主要方法:

  • 生成气道树的数学和基于图像的几何模型.
  • 将各种边界条件应用于这些模型.
  • 执行CFD模拟来分析空气流动模式.

主要成果:

  • 差价合约模拟提供了对气体流动力学和粒子沉积的详细见解.
  • 具体患者模型为治疗规划提供个性化数据.
  • 模拟显示与人类肺部实际空气流的相似之处.

结论:

  • CFD是分析呼吸系统动态的强大工具.
  • 基于图像的,针对患者的模型增强了肺部模拟的个性化.
  • 进一步的研究可以改进CFD模型以改善临床应用.