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Research Article Open access CC BY 4.0

Integrating Artificial Intelligence, Augmented Reality, and Virtual Reality in Maxillofacial Soft Tissue Reconstruction: Toward Precision Surgical Informatics

G. V. Reddy, G. S. Prasad Reddy, M. R. Haranadha Reddy, Rehana Sultana, Godvine, Sarah Fatima

Journal of Advances in Medicine and Medical Research · pp. 27–45 · Published 27 Jun 2026

10.9734/jammr/2026/v38i76157

Abstract

Maxillofacial soft tissue reconstruction presents some of the most technically and conceptually demanding challenges in surgical practice, combining requirements of anatomical precision, functional preservation, and aesthetic restoration within a region of profound psychosocial significance. The emergence of artificial intelligence (AI), augmented reality (AR), and virtual reality (VR) has begun to redefine each phase of the reconstructive process, from preoperative analysis and simulation to intraoperative navigation and postoperative outcome assessment. This critical review examines the current evidence for the individual and integrated application of these technologies in maxillofacial soft tissue reconstruction, with particular attention to their translational readiness and clinical implications. A comprehensive search of peer-reviewed literature published between January 2007 and February 2026, supplemented by foundational methodological studies, was undertaken across multiple indexing databases. The review evaluates machine learning approaches to soft tissue deformation prediction, deep learning frameworks for anatomical segmentation and cephalometric landmarking, AR-based intraoperative navigation systems, and VR platforms for surgical training, preoperative planning, and patient communication. The evidence demonstrates that while individual applications—particularly AI-driven preoperative planning and VR simulation training—have achieved a meaningful clinical foothold, fully integrated multimodal systems remain largely confined to research environments. Persistent barriers include the absence of standardised data pipelines, insufficient multicentre validation, evolving regulatory frameworks, and concerns regarding algorithmic bias and inequitable access in lower-resource clinical settings. This review contends that realising the transformative potential of precision surgical informatics in maxillofacial reconstruction requires sustained interdisciplinary collaboration, prospective multicentre validation, and a design philosophy that prioritises generalisability, equity, and real-world implementability. The convergence of AI, AR, and VR represents a genuinely consequential development in reconstructive surgery, but its translation to routine clinical benefit demands rigorous, evidence-grounded progress.

Maxillofacial surgery soft tissue reconstruction artificial intelligence augmented reality virtual reality surgical planning precision surgery surgical informatics deep learning surgical navigation free flap reconstruction

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