Hemodynamic Principles in Free Tissue Transfer: Vascular Changes at the Anastomosis Siteopen accessHemodynamic Principles in Free Tissue Transfer: Vascular Changes at the Anastomosis Site
- Other Titles
- Hemodynamic Principles in Free Tissue Transfer: Vascular Changes at the Anastomosis Site
- Authors
- GyeongHyeon Doh; 김범식; DongYun Lee; 윤정수; SooA Lim; 한예식; SuRak Eo
- Issue Date
- Dec-2021
- Publisher
- 대한수부외과학회
- Keywords
- Hemodynamics; Free tissue flaps; Surgical anastomosis; Blood flow velocity; Blood flow pressure
- Citation
- Archives of Hand and Microsurgery, v.26, no.4, pp 285 - 292
- Pages
- 8
- Indexed
- KCI
- Journal Title
- Archives of Hand and Microsurgery
- Volume
- 26
- Number
- 4
- Start Page
- 285
- End Page
- 292
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/3954
- DOI
- 10.12790/ahm.21.0118
- ISSN
- 2586-3290
- Abstract
- Purpose: Various factors such as blood velocity, turbulent flow,and intimal injury are the most basic elements in free tissue transfers. However, how blood flow is reestablished, maintained, and changed after vascular anastomosis has rarely been studied. Methods: A 54-year-old male sustained an unreplantable severe crushing injury to his right hand. The middle finger was transferred to the thumb as an ectopic replantation using an anastomosis between the radial and digital arteries. However, secondary reconstruction for the first web space defect was inevitable and an anteromedial thigh free flap procedure was performed 2 months later using the previously anastomosed vessels. During the procedures, we noted morphologic changes in the microvessels and tried to explain those phenomena by applying the principles of hemodynamics. Results: Due to the discrepancy in vascular size between the radial and digital arteries, the velocity of the blood flow in the post-anastomotic site, which was the digital artery, must have been increased by Poiseuille’s law. Supposing that the velocity through the post-anastomotic site of the digital artery was increased, the pressure exerted by that flow decreased, resulting in more shrinkage of the vessel lumen of the digital artery by Bernoulli’s principle. Pascal’s law could also be applied in confined spaces with a static flow; where there is a constant pressure, as the radius of the post-anastomotic digital artery diminishes, the tension within the digital artery’s wall also simultaneously decreases. By Laplace’s law, the post-anastomotic digital artery’s wall thickens as less tension is exerted on the wall. Conclusion: Understanding these simple flow mechanics will enable microsurgeons to better avoid the risk factors causing thrombosis, which is related to flap failure.
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Collections - Graduate School > Department of Medicine > 1. Journal Articles

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