Pulmonary Hemorrhage

Pulmonary hemorrhage is bleeding into the airways or alveoli of the lungs, where it can disrupt gas exchange and threaten respiratory function. It occurs when pulmonary blood vessels are damaged by inflammation, infection, trauma, autoimmune disease, or impaired coagulation, allowing blood to enter the air spaces and interfere with oxygen diffusion. The condition may cause coughing of blood, breathlessness, and reduced blood oxygen levels, while repeated episodes can lead to iron accumulation in alveolar macrophages and tissue injury. Studying pulmonary hemorrhage helps biologists understand lung vascular integrity, immune-mediated disease, respiratory failure, and the cellular responses that support diagnosis and treatment.

Pulmonary Hemorrhage - Related Videos

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JoVE Journal - Medicine

Transplantation of Pulmonary Valve Using a Mouse Model of Heterotopic Heart Transplantation

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Cited by 7 •

2014

In order to understand the cellular and molecular mechanisms underlying neotissue formation and stenosis development in tissue engineered heart valves, a murine model of heterotopic heart valve transplantation was developed. A pulmonary heart valve was transplanted to recipient using the heterotopic heart transplantation technique.

Modeling Drug-Induced Hemorrhage in Zebrafish Larva

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2025

In this video, fertilized zebrafish embryos are dechorionated under a stereo microscope and then exposed to a cholesterol synthesis inhibitor, leading to the development of blood vessel ruptures and brain hemorrhages in the larvae. Hemorrhagic larvae, identifiable by distinct red spots, are subsequently separated under a microscope for further analysis.

Murine Echocardiography of Left Atrium, Aorta, and Pulmonary Artery

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Cited by 8 •

2017

The following protocol describes the methodology for the acquisition and analysis of echocardiographic images used to obtain the Left Atrial Volume (LAV), Aorta (Ao) diameter, and Pulmonary Artery (PA) diameter in mice. This technique is a non-invasive, non-terminal procedure that allows assessment of the cardiopulmonary function.

Integrated Compensatory Responses in a Human Model of Hemorrhage

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Cited by 11 •

2016

The purpose of this protocol is to demonstrate the techniques for measuring compensatory responses to reduced central blood volume using lower body negative pressure as a noninvasive experimental model of human hemorrhage which can be used to quantify the total integration of compensatory mechanisms to blood volume deficit in humans.

Research

JoVE Journal - Medicine
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Fixed Volume or Fixed Pressure: A Murine Model of Hemorrhagic Shock

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Cited by 24 •

2011

The Hemorrhagic Shock model has been a reliable and reproducible resource facilitating the identification and understanding of signaling cascades associated with inflammation and end-organ damage after trauma. This article provides a step-by-step description of surgical and mechanical aspects associated with the Hemorrhagic Shock experimental procedure in mice.

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