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Endoscopic Bilateral Nipple-sparing Mastectomy via a Single Axillary Incision with Immediate Pre-pectoral Implant-based Breast Reconstruction
Published on: May 17, 2024
Beyond the Classic Latissimus Dorsi Flap: A Decision-Making Algorithm for Technique Selection in Complex Breast
Federico Lo Torto1, Lorenzo Santarelli2, Donato Casella3
1Plastic Surgery Unit, Santo Spirito Hospital, Department of Medical, Oral and Biotechnological Sciences, "G. d'Annunzio" University of Chieti-Pescara, 66100 Chieti, Italy.
Abstract:
Background: The latissimus dorsi (LD) flap remains a reliable option for breast reconstruction in irradiated, salvage, and non-microsurgical candidates. Despite the availability of multiple LD-based variants, practical guidance for technique selection remains limited. Methods: We retrospectively analyzed 40 consecutive LD-based breast reconstructions performed over 5 years at two Italian centers. Cases were categorized as classic LD, hybrid LD, extended LD, V-FALD, or KISS flap. Clinical variables, reconstructive setting, complications, and reoperations were described, and a decision-making algorithm was derived from institutional practice and literature integration. Results: The cohort was characterized by a high-complexity profile, with 36/40 patients (90%) exposed to radiotherapy and 22/40 (55%) treated in a salvage setting. Hybrid LD was the most frequently used technique, accounting for 23/40 cases (57.5%), followed by KISS flap in 6/40 (15%), extended LD in 5/40 (12.5%), V-FALD in 4/40 (10%), and classic LD alone in 2/40 (5%). Technique selection was primarily driven by skin-envelope adequacy, breast volume requirement, and the feasibility of a fully autologous reconstruction. Major complications occurred in 2/40 patients (5%), revision surgery occurred in 3/40 (7.5%), and no total flap necrosis was observed. Donor-site morbidity occurred in 10/40 (25%) of cases and was managed conservatively. Conclusions: LD-based breast reconstruction should be viewed as a versatile reconstructive platform rather than a single technique. A pragmatic algorithm may support surgical planning and help tailor the most appropriate LD variant to defect characteristics and reconstructive goals.