Extended Reality Technologies for Visualization in DIEP Flap Breast Reconstruction: A Systematic Review

被引:0
作者
Ozmen, Berk B. [1 ]
Foroutan, Ali [1 ]
Quick, Joseph D. [2 ]
Siska, Robert [1 ]
Albabish, William [3 ]
Schwarz, Graham S. [1 ]
机构
[1] Cleveland Clin, Dept Plast Surg, 9500 Euclid Ave A60, Cleveland, OH 44195 USA
[2] Cleveland Clin, Lerner Coll Med, Cleveland, OH USA
[3] Cleveland Clin, Educ Inst, Cleveland, OH USA
关键词
extended reality; virtual reality; mixed reality; augmented reality; spacial computing; DIEP; free flap; microsurgery; perforator mapping; virtual surgical planning; surgical visualization; simulation; ANGIOGRAPHY; NAVIGATION; OUTCOMES; VIRSSPA;
D O I
10.1177/15533506251328473
中图分类号
R61 [外科手术学];
学科分类号
摘要
Background Deep inferior epigastric artery perforator (DIEP) flap breast reconstruction is the gold standard for autologous breast reconstruction but is complex due to variable vascular anatomy. Traditional imaging modalities like computed tomography angiography (CTA) provide two-dimensional visualization, which can limit spatial understanding. Extended reality (XR) technologies, including virtual reality (VR), augmented reality (AR), and mixed reality (MR) offer immersive three-dimensional visualization that may enhance surgical planning and intraoperative guidance. This systematic review synthesizes current evidence regarding XR applications in DIEP flap breast reconstruction.Methods A systematic review was conducted following PRISMA 2020 guidelines. PubMed, Embase, and Scopus were searched for original research articles reporting clinical use of XR technologies in DIEP flap breast reconstruction. Data on study characteristics, XR technologies used, outcomes, and key findings were extracted and analyzed.Results Thirteen studies involving 265 patients met inclusion criteria. Seven studies utilized AR, six used VR, and none focused on MR. XR technologies were associated with improved accuracy in perforator identification, reduced operating times, and enhanced surgical planning. Identified limitations included soft tissue deformation affecting intraoperative application, ergonomic issues with headsets, and technological constraints such as processing power and network.Conclusion XR technologies show significant potential in improving preoperative planning and intraoperative guidance in DIEP flap breast reconstruction. While preliminary results are promising, further large-scale studies are needed to establish efficacy, address limitations, and facilitate integration into clinical practice.
引用
收藏
页数:7
相关论文
共 22 条
[1]   Color Doppler ultrasound versus CT angiography for DIEP flap planning: A randomized controlled trial [J].
Bajus, Adam ;
Streit, Libor ;
Kubek, Tomas ;
Novak, Adam ;
Vanicek, Jiri ;
Sedivy, Ondrej ;
Berkes, Andrej ;
Bayezid, K. Can ;
Kunovsky, Lukas ;
Drazan, Lubos .
JOURNAL OF PLASTIC RECONSTRUCTIVE AND AESTHETIC SURGERY, 2023, 86 :48-57
[2]   Comparison of 2-Year Complication Rates Among Common Techniques for Postmastectomy Breast Reconstruction [J].
Bennett, Katelyn G. ;
Qi, Ji ;
Kim, Hyungjin M. ;
Hamill, Jennifer B. ;
Pusic, Andrea L. ;
Wilkins, Edwin G. .
JAMA SURGERY, 2018, 153 (10) :901-908
[3]   Identification of perforating vessels by augmented reality: Application for the deep inferior epigastric perforator flap [J].
Bosc, R. ;
Fitoussi, A. ;
Pigneur, F. ;
Tacher, V. ;
Hersant, B. ;
Meningaud, J. -P. .
ANNALES DE CHIRURGIE PLASTIQUE ESTHETIQUE, 2017, 62 (04) :336-339
[4]   Building Complex Autologous Breast Reconstruction Program: A Preliminary Experience [J].
Cho, Min-Jeong ;
Slater, Christopher A. ;
Skoracki, Roman J. ;
Chao, Albert H. .
JOURNAL OF CLINICAL MEDICINE, 2023, 12 (21)
[5]   Spatial Fidelity of Microvascular Perforating Vessels as Perceived by Augmented Reality Virtual Projections [J].
Cholok, David J. ;
Fischer, Marc J. ;
Leuze, Christoph W. ;
Januszyk, Michael ;
Daniel, Bruce L. ;
Momeni, Arash .
PLASTIC AND RECONSTRUCTIVE SURGERY, 2024, 153 (02) :524-534
[6]   Augmented reality-assisted deep inferior epigastric artery perforator flap harvesting [J].
Fitoussi, Alexandre ;
Tacher, Vania ;
Pigneur, Frederic ;
Heranney, Julie ;
Sawan, Dana ;
Dao, Thu Ha ;
Hersant, Barbara ;
Meningaud, Jean-Paul ;
Bosc, Romain .
JOURNAL OF PLASTIC RECONSTRUCTIVE AND AESTHETIC SURGERY, 2021, 74 (08) :1955-1957
[7]   Using Virtual Reality for Deep Inferior Epigastric Perforator Flap Preoperative Planning [J].
Freidin, Dor ;
Singolda, Roei ;
Tejman-Yarden, Shai ;
Parmat, Yisrael ;
Liran, Alon ;
Ofir, Hagit ;
Saukhat, Olga ;
Haik, Josef ;
Barnea, Yoav ;
Tessone, Ariel .
PLASTIC AND RECONSTRUCTIVE SURGERY-GLOBAL OPEN, 2023, 11 (01) :E4773
[8]   Use of a Three-Dimensional Virtual Reality Model for Preoperative Imaging in DIEP Flap Breast Reconstruction [J].
Gacto-Sanchez, Purificacion ;
Sicilia-Castro, Domingo ;
Gomez-Cia, Tomas ;
Lagares, Araceli ;
Collell, Teresa ;
Suarez, Cristina ;
Parra, Carlos ;
Infante-Cossio, Pedro ;
Maria De La Higuera, Jose .
JOURNAL OF SURGICAL RESEARCH, 2010, 162 (01) :140-147
[9]   Computed Tomographic Angiography with VirSSPA Three-Dimensional Software for Perforator Navigation Improves Perioperative Outcomes in DIEP Flap Breast Reconstruction [J].
Gacto-Sanchez, Purificacion ;
Sicilia-Castro, Domingo ;
Gomez-Cia, Tomas ;
Lagares, Araceli ;
Collell, Teresa ;
Suarez, Cristina ;
Parra, Carlos ;
Leal, Sandra ;
Infante-Cossio, Pedro ;
Maria De La Higuera, Jose .
PLASTIC AND RECONSTRUCTIVE SURGERY, 2010, 125 (01) :24-31
[10]   The virtual reality tool VirSSPA in planning DIEP microsurgical breast reconstruction [J].
Gomez-Cia, T. ;
Gacto-Sanchez, P. ;
Sicilia, D. ;
Suarez, C. ;
Acha, B. ;
Serrano, C. ;
Parra, C. ;
De La Higuera, J. .
INTERNATIONAL JOURNAL OF COMPUTER ASSISTED RADIOLOGY AND SURGERY, 2009, 4 (04) :375-382