Related Experiment Video
Updated: Apr 10, 2026

An Experimental Human DIEP Flap Model to Investigate Preservation Strategies for Vascularized Composite Allografts and Free Flaps
Published on: December 5, 2025
Freestyle Multiperforator Island Flap for Reconstruction of Extensive Thoracoabdominal Defects: A Case Report
Frank Andrés Álvarez Vásquez1, Yasser Farid2, Iván Enrique Rodríguez Mantilla3
1Department of Plastic Surgery, Clínica Los Nogales, Physician, School of Medicine, Universidad del Rosario, Bogotá, Colombia.
Background:
Extensive thoracoabdominal defects after oncologic resection pose a major reconstructive challenge, particularly when durable soft-tissue coverage must be achieved over prosthetic chest wall reconstruction. Conventional pedicled flaps and free microvascular options may be constrained by donor-site morbidity, prolonged operative times, or anatomic unsuitability.
Methods:
We describe the reconstruction of a large thoracoabdominal defect using a Freestyle Multiperforator Island Flap (FMIF) based on deep inferior epigastric artery perforators, after wide excision of recurrent breast carcinoma and partial chest wall resection. The flap was intentionally designed with a reduced pedicular area, enabling direct advancement based on intraoperatively identified perforators to maximize mobility while preserving vascular reliability. Free autologous reconstruction with a deep inferior epigastric artery perforator (DIEP) flap was not feasible due to insufficient abdominal adipose panniculus.
Results:
The FMIF provided immediate, stable, and well-vascularized coverage of the thoracic defect, including exposed prosthetic mesh and osteosynthesis materials, with complete flap survival and no perioperative complications. At 12-month follow-up, the reconstruction demonstrated durable coverage, satisfactory thoracic contour, and preserved function.
Conclusions:
A Freestyle Multiperforator Island Flap designed for direct advancement with a reduced pedicular area represents a reliable and efficient reconstructive solution for extensive thoracoabdominal defects, expanding the applicability of perforator-based local flaps and offering a valuable alternative when free-flap reconstruction is not feasible or when operative efficiency and resource optimization are essential.

