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関連する概念動画

Pulmonary Cycle: Exhalation01:17

Pulmonary Cycle: Exhalation

In terms of human respiration, the act of expelling air, known as exhalation (or expiration), operates on the principle of pressure gradients. During expiration, the pressure within the lungs exceeds that of the surrounding atmosphere. Under normal conditions, quiet breathing involves passive exhalation and is free of muscular contractions. This is because the exhalation process is driven by the natural elastic recoil of the lungs and chest wall, both of which have an inherent tendency to...
Flail Chest-II01:26

Flail Chest-II

Managing flail chest, a condition characterized by a segment of the chest wall moving independently from the rest of the thoracic cage, requires a comprehensive approach. It includes a thorough assessment of the patient's condition, a diagnostic evaluation to determine the extent of the injury, and the implementation of appropriate medical interventions tailored to the individual's needs.
Assessment:
1. Clinical Evaluation:
History:
Pneumothorax-I01:26

Pneumothorax-I

A pneumothorax is a condition where air builds up in the space between the lung and the chest wall, causing the lung to collapse. This condition arises when air enters the space between the parietal and visceral pleura, disrupting the negative pressure essential for lung inflation. This can lead to a partial or complete collapse of the lung.
Pneumothorax can be even further classified as spontaneous, traumatic, and tension pneumothorax.
Pneumothorax-II01:27

Pneumothorax-II

Pneumothorax is a medical condition defined by the buildup of air in the pleural space between the lungs and the chest wall. This accumulation of air can lead to partial or complete lung collapse, resulting in a range of clinical manifestations. Understanding the clinical presentation and effective management strategies is crucial for healthcare professionals in providing timely and appropriate care to individuals with pneumothorax.
Clinical Manifestations:
Cardiopulmonary Resuscitation II: ACLS Airway Management01:22

Cardiopulmonary Resuscitation II: ACLS Airway Management

Airway management is a key skill in emergency and critical care settings, as maintaining a clear airway is essential for adequate oxygenation and ventilation.Head Tilt-Chin Lift TechniqueThe head tilt-chin lift maneuver is an essential technique primarily used in patients without suspected cervical spine injuries. To perform this maneuver, one hand is placed on the patient’s forehead, and gentle pressure is applied backward to tilt the head. The fingertips of the other hand are positioned under...
Atelectasis II: Pathophysiology01:10

Atelectasis II: Pathophysiology

Atelectasis develops when alveoli lose their air and collapse inward. Because lung tissue is naturally elastic, these air sacs shrink rather than remaining open. Collapsed alveoli are no longer ventilated, reducing their role in gas exchange. Blood flow may continue in these regions, creating a ventilation–perfusion mismatch. Clinical findings include decreased breath sounds, dullness to percussion, reduced chest expansion, and decreased tactile fremitus as sound transmission through collapsed...

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関連する実験動画

Updated: Jul 6, 2026

Mouse Pneumonectomy Model of Compensatory Lung Growth
09:22

Mouse Pneumonectomy Model of Compensatory Lung Growth

Published on: December 17, 2014

呼吸器に関連した肺損傷

Liao Pinhu1, Thomas Whitehead, Timothy Evans

  • 1Unit of Critical Care and National Heart and Lung Institute, London, UK.

Lancet (London, England)
|February 1, 2003
PubMed
まとめ

機械呼吸器は重症患者の治療に役立ちますが,肺損傷を引き起こす可能性があります. 呼吸器関連肺損傷 (VALI) を最小限に抑えると,急性呼吸器障害症候群 (ARDS) の生存率が向上します.

科学分野:

  • クリティカルケア医療は,重症治療薬です.
  • 肺医学は肺を治療する薬です.
  • バイオメディカルエンジニアリング

背景:

  • 呼吸器不全の患者には,機械呼吸が不可欠です.
  • 肺炎,心臓病,鎮静療法などのリスクが伴う.
  • プラスまたはネガティブな圧力は,呼吸器関連肺損傷 (VALI) に繋がる可能性があります.

研究 の 目的:

  • 損傷した肺に対する機械呼吸器の効果を概説する.
  • 呼吸器関連肺損傷 (VALI) の根本的なメカニズムを探求する.
  • VALIを最小限に抑えることで,急性呼吸困難症候群 (ARDS) のアウトカムが改善される方法を強調します.

主な方法:

  • 機械呼吸器と肺損傷に関する既存の文献のレビュー.
  • 陽圧換気と負圧換気による生理学的効果の分析.
  • 呼吸器関連肺損傷 (VALI) に寄与するメカニズムの議論.

主要な成果:

  • 機械呼吸は,命を救う一方で,肺損傷 (VALI) を誘発または悪化させる可能性があります.
  • VALIは,急性呼吸器障害症候群 (ARDS) の患者において重大な懸念事項である.

さらに関連する動画

Induction of Mouse Lung Injury by Endotracheal Injection of Bleomycin
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Induction of Mouse Lung Injury by Endotracheal Injection of Bleomycin

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3D Cine Magnetic Resonance Imaging of Respiratory Motion in Mechanically Ventilated Mice and Rats
08:22

3D Cine Magnetic Resonance Imaging of Respiratory Motion in Mechanically Ventilated Mice and Rats

Published on: September 19, 2025

関連する実験動画

Last Updated: Jul 6, 2026

Mouse Pneumonectomy Model of Compensatory Lung Growth
09:22

Mouse Pneumonectomy Model of Compensatory Lung Growth

Published on: December 17, 2014

Induction of Mouse Lung Injury by Endotracheal Injection of Bleomycin
06:52

Induction of Mouse Lung Injury by Endotracheal Injection of Bleomycin

Published on: April 30, 2019

3D Cine Magnetic Resonance Imaging of Respiratory Motion in Mechanically Ventilated Mice and Rats
08:22

3D Cine Magnetic Resonance Imaging of Respiratory Motion in Mechanically Ventilated Mice and Rats

Published on: September 19, 2025

  • VALIを最小限に抑えるための戦略は,患者の生存率を改善するために不可欠です.
  • 結論:

    • VALIの仕組みを理解することは,機械的な換気を最適化するための鍵です.
    • 呼吸器誘発性肺損傷を減らすことは,ARDSにおける患者のアウトカムを大幅に改善することができます.
    • 肺を保護する換気戦略に関するさらなる研究が必要である.