The evolution of perforator flaps and the future of microsurgery.

JPRAS open 2025 Vol.47() p. 33-42

Hong JP, Kwon JG, Suh HP, Pak CJ, Kim HB, Han HH, Noh H, Hur JY, Brown E

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Abstract

Perforator flaps have transformed reconstructive microsurgery by enabling tissue-specific reconstruction while preserving muscle, fascia, and nerves, minimizing donor site morbidity. Modern techniques-including superthin, ultrathin, and pure skin flaps-enhance flap precision, safety, and versatility. Imaging tools such as CT angiography and high-resolution ultrasound allow accurate mapping of perforator anatomy, improving flap design and outcomes. Challenges like short pedicle length and flap thickness are addressed through perforator-to-perforator supermicrosurgery, enabling anastomosis of submillimeter vessels with minimal disruption. Advances in high-magnification microscopes, ultrafine microsutures, robotic platforms, and digital exoscopes further expand surgical capabilities, improve ergonomics, and shorten the learning curve. Looking ahead, artificial intelligence and augmented reality promise to automate microsurgical tasks, enhance visualization, and optimize functional and aesthetic results. Collectively, these innovations are pushing reconstructive microsurgery toward the "reconstructive elevator" ideal, achieving safer, more efficient, and highly customized outcomes for patients.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
시술 microsurgery 미세수술 dict 3
시술 flap 피판재건술 dict 3
해부 muscle scispacy 1
해부 fascia scispacy 1
해부 nerves scispacy 1
해부 skin scispacy 1
해부 pedicle scispacy 1
해부 vessels scispacy 1
합병증 perforator flaps scispacy 1
합병증 perforator-to-perforator supermicrosurgery scispacy 1
약물 ultrafine C0077801
ultrafine
scispacy 1
기타 perforator scispacy 1
기타 patients scispacy 1

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