Paper Details 
Original Abstract of the Article :
The effect of the cyclooxygenase inhibitors ibuprofen and meclofenamate were studied to assess the role of prostaglandin release in mediating the hemodynamic response to acute pulmonary microembolism in awake rabbits. In Group I (n = 10), a control group receiving only saline infusion, there was no ...See full text at original site
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引用元:
https://doi.org/10.3109/01902148709062844

データ提供:米国国立医学図書館(NLM)

Prostaglandins and Pulmonary Microembolism: Unveiling the Complexities of the Cardiovascular System

The cardiovascular system is a complex and intricate network responsible for delivering oxygen and nutrients throughout the body. This study explores the role of prostaglandins, a class of lipid compounds, in mediating the hemodynamic response to pulmonary microembolism, a condition where tiny blood clots lodge in the lungs.

Prostaglandins: Key Players in Pulmonary Microembolism

The research demonstrates that prostaglandins play a significant role in the hemodynamic response to pulmonary microembolism. The study found that cyclooxygenase inhibitors, which block the production of prostaglandins, effectively reduced the negative effects of microembolism on cardiac output and stroke volume. These findings highlight the importance of prostaglandins in regulating vascular tone and myocardial function in response to this critical event.

Navigating the Desert of Cardiovascular Health

This study offers valuable insights into the intricate mechanisms governing cardiovascular function. The research highlights the crucial role of prostaglandins in mediating the response to pulmonary microembolism. Understanding these mechanisms can lead to the development of more targeted and effective treatments for cardiovascular conditions, ultimately improving patient outcomes.

Dr.Camel's Conclusion

This research unveils a fascinating facet of the cardiovascular system, highlighting the critical role of prostaglandins in mediating the response to pulmonary microembolism. Understanding these complex mechanisms is like navigating a vast desert landscape, uncovering hidden pathways and gaining a deeper appreciation for the intricate balance governing our bodies. This knowledge can lead to the development of more effective treatments for cardiovascular conditions, ultimately paving the way for a healthier and more sustainable future for patients.

Date :
  1. Date Completed 1987-07-14
  2. Date Revised 2019-10-22
Further Info :

Pubmed ID

3582284

DOI: Digital Object Identifier

10.3109/01902148709062844

Related Literature

SNS
PICO Info
in preparation
Languages

English

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