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Microcirculation in chronic venous insufficiency
1Department of Medical Angiology, Vienna General Hospital, University of Vienna, Austria. michael.gschwandtner@akh-wien.ac.at
Vascular Medicine (London, England)
|January 16, 2002
Summary
This review details venous system pathophysiology, exploring causes of venous microangiopathy like red blood cell deoxygenation and fibrin cuffs. It outlines microlymphatic, neurologic, and hemorheologic disturbances contributing to venous ulcers.
Area of Science:
- Vascular Biology
- Dermatology
- Pathophysiology
Background:
- The venous system's anatomy and physiology are fundamental to understanding venous diseases.
- Venous microangiopathy is a complex condition with multifactorial causes.
- Disturbances in microcirculation significantly impact the development and healing of venous ulcers.
Purpose of the Study:
- To review the pathophysiology of the venous system.
- To summarize theories on the causes of venous microangiopathy.
- To outline associated microlymphatic, neurologic, and hemorheologic disturbances.
Main Methods:
- Review of existing literature on venous pathophysiology and microangiopathy.
- Synthesis of theories including red blood cell deoxygenation, arteriovenous shunts, fibrin cuffs, and growth factor/white blood cell trapping.
- Analysis of findings from histology, capillary microscopy, microlymphography, laser Doppler fluxmetry, and transcutaneous oxygen measurements.
Main Results:
- The review details various theories contributing to venous microangiopathy.
- Associated microlymphatic, neurologic, and hemorheologic disturbances are outlined.
- Specific findings from diagnostic methods in venous microangiopathy are presented.
- A novel pattern of microcirculation perfusion in venous ulcers is discussed.
Conclusions:
- Venous microangiopathy arises from a combination of factors affecting the venous system's microcirculation.
- Understanding these disturbances is crucial for managing venous diseases and ulcers.
- Further research into microcirculation patterns may improve therapeutic strategies for venous ulcers.