関連する実験動画
Updated: Sep 9, 2025

06:31
Transuterine Fetal Tracheal Occlusion Model in Mice
Published on: February 5, 2021
3.2K
生まれながらの気管不全: 症例報告
Kostadin Ketev1, Ivanka Karavelikova1, Daniela Milanova-Ilieva2
1Medical University of Plovdiv, Plovdiv, Bulgaria.
Folia medica
|August 30, 2025
まとめ
生まれながらの気管縮症は 珍しい疾患で 子供の肺感染症が再発する可能性があります 画像診断による早期診断は 効果的な治療と呼吸器の健康改善に不可欠です
科学分野:
- 小児肺科
- 医療用イメージング
- 生まれつきの異常
背景:
- 生まれながらの気管不全は 稀な呼吸器の発達異常です
- 肺感染症の再発と胸痛の持続は,罹患した子供の一般的な症状です.
- 標準的な抗生物質治療は 根本的な先天的な原因には効果がないかもしれません
研究 の 目的:
- 生まれながらの気管不全の 診断上の課題を強調するためです
- 小児の呼吸器疾患の先天性異常を考慮する重要性を強調する.
- 早期認識と介入の必要性を強調する
主な方法:
- 呼吸器系症状が続く 12歳の男の子の事例です
- コンピュータートモグラフィー (CT) を含む臨床経過と診断画像のレビュー
- 広範囲の抗生物質に対する治療反応の評価
主要な成果:
- コンピュータートモグラフィーで 支障管の縮が 根本的な原因であることが確認されました
- 症状は抗生物質治療の1ヶ月後も持続し,非感染症の原因を示しています.
- このケースは,先天的な呼吸道異常に対する 従来の治療の限界を示しています.
結論:
- 耐性肺症状の小児患者では,先天性支氣管不全を考慮する必要があります.
- 画像を用いた早期発見は 治療への介入の鍵となります
- 迅速な治療は合併症を予防し,長期的な呼吸結果を改善します.
関連する概念動画
Pulmonary Cycle: Exhalation
1.8K
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...
1.8K
The Bronchial Tree
3.6K
The human bronchi and bronchial tree play a crucial role in the respiratory system, facilitating the exchange of oxygen and carbon dioxide. Let's delve into the intricate structure and functions of these respiratory components.
The trachea, commonly known as the windpipe, is a tube that connects the larynx (voice box) to the bronchi. At a point called the carina, it bifurcates into two primary bronchi. The right primary bronchus is wider, shorter, and more vertical than the left primary...
The trachea, commonly known as the windpipe, is a tube that connects the larynx (voice box) to the bronchi. At a point called the carina, it bifurcates into two primary bronchi. The right primary bronchus is wider, shorter, and more vertical than the left primary...
3.6K
Pneumothorax-I
340
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 can be even further classified as spontaneous, traumatic, and tension pneumothorax.
340
Pneumothorax-II
352
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:
Clinical Manifestations:
352
Trachea
2.7K
The trachea, commonly known as the windpipe, is a vital part of the human respiratory system. It serves as a passageway for air to travel between the larynx and the bronchi, allowing oxygen to reach the lungs. Let's explore its anatomical features, dimensions, layers of the tracheal wall, associated muscles, and the functions of its parts.
Anatomical Features:
Location: About half of the trachea is situated in the neck, anterior to the esophagus, and extends from the larynx (at the level of...
Anatomical Features:
Location: About half of the trachea is situated in the neck, anterior to the esophagus, and extends from the larynx (at the level of...
2.7K
Acute Respiratory Failure-II
357
Type I Respiratory Failure, or hypoxemic respiratory failure, occurs when the partial pressure of oxygen (PaO2) in arterial blood falls below 60 mmHg while breathing room air without a corresponding increase in arterial carbon dioxide levels (PaCO2). This condition highlights a significant impairment in the lungs' capacity to oxygenate the blood.
The underlying physiological abnormalities that contribute to hypoxemic respiratory failure include:
The underlying physiological abnormalities that contribute to hypoxemic respiratory failure include:
357

