Digital Mirrors: Virtual and Augmented Reality for Phantom Limb Pain
DOI :
https://doi.org/10.25759/spmfr.562Mots-clés :
Phantom Limb, Virtual Reality, AmputeesRésumé
Introduction: Phantom limb pain (PLP) affects 50 - 85 % of individuals following amputation and remains refractory to many conventional therapies. Virtual reality (VR) and augmented reality (AR)- based interventions have emerged as promising alternatives by engaging sensorimotor cortical circuits and providing enriched visual feedback. This systematic review evaluates current evidence on the efficacy of VR/AR treatments for PLP in post- amputation populations.
Methods: We searched PubMed and Scopus databases for studies that evaluated nonimmersive or immersive VR/AR therapies in adults with PLP. The research was performed in January 2025, and seventeen studies (five randomized controlled trials and twelve prospective studies) met inclusion criteria. Data on intervention type, control modality, pain outcomes and secondary measures (quality of life, usability) were extracted and synthesized.
Results: Among 17 studies, six used non- immersive VR/AR, while eleven applied immersive systems. Various VR/AR implementations were used, including creation of a virtual limb from a mirror image of an intact limb, control of a virtual limb via electromagnetic sensors, creation of a braincomputer interface, and use of a tablet- based virtual treatment. All the non- immersive AR/VR interventions yielded reductions in phantom- limb pain intensity, irrespective of the specific technology or delivery format. Eleven studies reported decreased PLP after AR/VR immersive treatments, of which seven reported significant reductions. The studies documented uniformly high ratings of realism, immersion, and overall satisfaction with the VR/AR experience.
Discussion: The strongest evidence for clinically relevant PLP relief (≥ 30 % pain reduction) comes from EMG- driven phantom- motor execution and fully immersive VR protocols. Mirror- style VR and tablet- based AR yield smaller but still positive effects. Methodological heterogeneity across studies- treatment dose, outcome instruments, follow- up duration- precludes direct comparisons. The decreasing cost of head- mounted displays (HMDs) is lowering barriers to clinical adoption.
Conclusion: VR/AR- based therapies can produce meaningful analgesia for PLP, particularly when they combine active motor execution, multisensory feedback, and immersive environments. Future large- scale RCTs with standardized protocols and direct comparisons between nonimmersive and immersive formats are needed to optimize treatment strategies.
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Références
Barbin J, Seetha V, Casillas JM, Paysant J, Perennou D. The effects of mirror therapy on pain and motor control of phantom limb in amputees: a systematic review. Ann Phys Rehabil Med. 2016;59(4):270-275. doi:10.1016/j.rehab.2016.04.001.
Flor H. Maladaptive plasticity, memory for pain and phantom limb pain: review and suggestions for new therapies. Expert Rev Neurother. 2008;8(5):809-818. doi:10.1586/14737175.8.5.809.
Flor H, Elbert T, Knecht S, Wienbruch C, Pantev C, Birbaumer N, et al. Phantom-limb pain as a perceptual correlate of cortical reorganization following arm amputation. Nature. 1995;375(6531):482-484. doi:10.1038/375482a0.
Collins KL, Russell HG, Schumacher PJ, Robinson-Freeman KE, O'Connor EC, Gibney KD, et al. A review of current theories and treatments for phantom limb pain. J Clin Invest. 2018;128(6):2168-2176. doi:10.1172/JCI94003.
Hasanzadeh Kiabi F, Habibi MR, Soleimani A, Emami Zeydi A. Mirror therapy as an alternative treatment for phantom limb pain: a short literature review. Korean J Pain. 2013;26(3):309-311. doi:10.3344/kjp.2013.26.3.309.
Urts I, Seifert D, Seats A, Giacomazzi S, Kipp M, Orhurhu V, et al. Treatment strategies and effective management of phantom limb-associated pain. Curr Pain Headache Rep. 2019;23(9):64. doi:10.1007/s11916-019-0802-0.
Rothgangel A, Braun S, Winkens B, Beurskens A, Smeets R. Traditional and augmented reality mirror therapy for patients with chronic phantom limb pain (PACT study): results of a three-group, multicentre single-blind randomized controlled trial. Clin Rehabil. 2018;32(4):422-434. doi:10.1177/026 921551 8785948.
Abbas R, Cooreman D, Al Sultan H, et al. Effect of adding virtual reality training to a traditional exercise program on pain, mental status and psychological status in unilateral traumatic lower limb amputees: a randomized controlled trial. Pain Res Manag. 2024;2024:8765432. doi:10.1155/2024/8765432.
Lendaro E, van der Sluis CK, Hermansson LM, et al. Extended reality used in the treatment of phantom limb pain: a multicenter, double-blind, randomized controlled trial. Pain. Published online 2024. doi:10.1097/j.pain.0000000000003384.
Steckel BM, Schwertner R, Bucker J, et al. Immersive virtual reality applied to the rehabilitation of patients with lower limb amputation: a small randomized controlled trial for feasibility study. Virtual Real. 2024;28:115. doi:10.1007/s10055-024-01015-x.
Osumi M, Inomata K, Inoue Y, Otake Y, Morioka S, Sumitani M. Characteristics of phantom limb pain alleviated with virtual reality rehabilitation. Pain Med. 2019;20(9):1038-1046. doi:10.1093/pm/pny269.
Rutledge T, Velez D, Depp C, et al. A virtual reality intervention for the treatment of phantom limb pain: development and feasibility results. Pain Med. 2019. doi:10.1093/pm/pnz121.
Kulkarni J, Pettifer S, Turner S, Richardson C. An investigation into the effects of a virtual reality system on phantom limb pain: a pilot study. Br J Pain. 2020;14(2):92-97. doi:10.1177/2049463719859913.
Cole J, Crowle S, Austwick G, Henderson Slater D. Exploratory findings with virtual reality for phantom limb pain: from stump motion to agency and analgesia. Disabil Rehabil. 2009;31(10):846-854. doi:10.1080/09 638280802355197.
Ortiz-Catalan M, Guðmundsdóttir RA, Kristoffersen MB, et al. Phantom motor execution facilitated by machine learning and augmented reality as treatment for phantom limb pain: a clinical trial in patients with chronic intractable phantom limb pain. Lancet. 2016. doi:10.1016/S0140-6736(16)31598-7.
Thogersen M, Andoh J, Milde C, et al. Individualized augmented reality training reduces phantom pain and cortical reorganization in amputees: a proof-of-concept study. J Pain. 2020;21(11-12):1257-1269. doi:10.1016 /j.pain.2020.06.002.
Perry BN, Alphonso AL, Tsao JW, et al. Clinical trial of the Virtual Integration Environment to treat phantom limb pain with upper extremity amputation. Front Neurol. 2018;9:770. doi:10.3389/fneur.2018.00770.
Ambron EJ, Buxbaum LJ, Miller A, et al. Virtual reality treatment displaying the missing leg improves phantom limb pain: a small clinical trial. Neurorehabil Neural Repair. 2021;35(12):1100-1111. doi:10.1177/15459 683211054164.
Annapureddy D, Annaswamy TM, Raval G, Chung YY, Prabhakaran B. A novel mixed reality system to manage phantom pain in-home: results of a pilot clinical trial. Front Pain Res (Lausanne). 2023;4:1183954. doi:10.3389/fpain.2023.1183954.
Prahm C, Eckstein K, Bressler M, et al. PhantomAR: gamified mixed reality system for alleviating phantom limb pain in upper limb amputees—design, implementation, and clinical usability evaluation. J Neuroeng Rehabil. 2025;22:21. doi:10.1186/s12984-025-01554-7.
Perry BN, Armiger RS, Tsao JW, et al. A Virtual Integrated Environment for phantom limb pain treatment and modular prosthetic limb training. Conf Proc IEEE Eng Med Biol Soc. 2013;2013:5238-5241. doi:10.1109/EMBC. 2013.6610827.
Murray CD, Pettifer S, Patchick E, Howard T, Pettifer S. Immersive virtual reality as a rehabilitative technology for phantom limb experience: proof of principle. Disabil Rehabil. 2006;28(15):1117-1124. doi:10.1080/096382806 00555232.
Keesom E, Lidström-Holmqvist K, Ortiz-Catalan M, et al. Reducing phantom limb pain using phantom motor execution enabled by augmented and virtual reality: participants' perspectives on an innovative treatment. Disabil Rehabil. Published online 2024. doi:10.1080/09638288.2024.2413179.
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