Flap Repositioning

Flap repositioning is a surgical technique in which a section of living tissue is moved and secured in a new position to cover a defect, protect underlying structures, or restore anatomy. After the flap is carefully elevated while preserving its blood supply, the surgeon advances, rotates, or returns it as needed, then uses sutures or other fixation to maintain contact during healing. In medicine, this approach supports wound closure, tissue reconstruction, and coverage of exposed structures. Accurate positioning can improve healing, preserve tissue, restore function, and enhance the final appearance of the treated area.

Flap Repositioning - Related Videos

Research

JoVE Journal - Bioengineering

Engineered Vascularized Muscle Flap

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Cited by 6 •

2016

To date, thick tissue defects are typically reconstructed by applying autologous tissue flaps or engineered tissues. In this protocol, we present a new method for engineering vascularized tissue flap bearing an autologous pedicle, to serve as a substitute to autologous flaps.

An Experimental Human DIEP Flap Model to Investigate Preservation Strategies for Vascularized Composite Allografts and Free Flaps

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2025

This protocol describes the surgical technique for harvesting a human perforator flap model based on the deep inferior epigastric artery pedicle, intended for experimental research.

Research

JoVE Journal - Medicine
Free Sample

A Model of Free Tissue Transfer: The Rat Epigastric Free Flap

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Cited by 23 •

2017

This paper describes the steps required to raise a fasciocutaneous epigastric free flap and transfer it to the neck in the rat.

Education

JoVE Science Education - Engineering

Clark Y-14 Wing Performance: Deployment of High-lift Devices (Flaps and Slats)

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2023

Source: David Guo, College of Engineering, Technology, and Aeronautics (CETA), Southern New Hampshire University (SNHU), Manchester, New Hampshire A wing is the major lift-generating apparatus in an airplane. Wing performance can be further enhanced by deploying high-lift devices, such as flaps (at the trailing edge) and slats (at the leading edge) during takeoff or landing. In this experiment, a wind tunnel is utilized to generate certain airspeeds, and a Clark Y-14 wing with a flap and slat...

Coronoid-Temporalis Pedicled Flap for Orbital Floor Defect Reconstruction

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2025

This protocol presents a novel coronoid-temporalis pedicled flap (CTPF) technique for reconstructing small-to-medium orbital floor defects. CTPF avoids microvascular risks while maintaining biomechanical stability. Clinical cases demonstrate effective structural restoration, reduced complications, and preserved facial symmetry, offering a viable alternative to traditional grafts or alloplastic materials.

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