REFERENCES
1. Armstrong TW, Williamson MLC, Elliott TR, Jackson WT, Kearns NT, Ryan T. Psychological distress among persons with upper extremity limb loss. Br J Health Psychol 2019;24:746-63.
2. Trent L, Intintoli M, Prigge P, et al. A narrative review: current upper limb prosthetic options and design. Disabil Rehabil Assist Technol 2020;15:604-13.
3. Cowley J, Resnik L, Wilken J, Smurr Walters L, Gates D. Movement quality of conventional prostheses and the DEKA Arm during everyday tasks. Prosthet Orthot Int 2017;41:33-40.
4. Schultz AE, Kuiken TA. Neural interfaces for control of upper limb prostheses: the state of the art and future possibilities. PM R 2011;3:55-67.
5. Kung TA, Bueno RA, Alkhalefah GK, Langhals NB, Urbanchek MG, Cederna PS. Innovations in prosthetic interfaces for the upper extremity. Plast Reconstr Surg 2013;132:1515-23.
6. Irwin ZT, Schroeder KE, Vu PP, et al. Chronic recording of hand prosthesis control signals via a regenerative peripheral nerve interface in a rhesus macaque. J Neural Eng 2016;13:046007.
7. Vu PP, Irwin ZT, Bullard AJ, et al. Closed-loop continuous hand control via chronic recording of regenerative peripheral nerve interfaces. IEEE Trans Neural Syst Rehabil Eng 2018;26:515-26.
8. Ursu DC, Urbanchek MG, Nedic A, Cederna PS, Gillespie RB. In vivo characterization of regenerative peripheral nerve interface function. J Neural Eng 2016;13:026012.
9. Vu PP, Vaskov AK, Irwin ZT, et al. A regenerative peripheral nerve interface allows real-time control of an artificial hand in upper limb amputees. Sci Transl Med 2020;12:eaay2857.
10. Svientek SR, Ursu DC, Cederna PS, Kemp SWP. Fabrication of the composite regenerative peripheral nerve interface (C-RPNI) in the adult rat. J Vis Exp 2020; doi: 10.3791/60841.
11. Frost CM, Ursu DC, Flattery SM, et al. Regenerative peripheral nerve interfaces for real-time, proportional control of a Neuroprosthetic hand. J Neuroeng Rehabil 2018;15:108.
12. Urbanchek MG, Kung TA, Frost CM, et al. Development of a regenerative peripheral nerve interface for control of a neuroprosthetic limb. Biomed Res Int 2016;2016:5726730.
13. Kung TA, Langhals NB, Martin DC, Johnson PJ, Cederna PS, Urbanchek MG. Regenerative peripheral nerve interface viability and signal transduction with an implanted electrode. Plast Reconstr Surg 2014;133:1380-94.
14. Woo SL, Urbanchek MG, Cederna PS, Langhals NB. Revisiting nonvascularized partial muscle grafts: a novel use for prosthetic control. Plast Reconstr Surg 2014;134:344e-6e.
15. Kumar N, Kung TA, Cederna PS. Regenerative peripheral nerve interfaces for advanced control of upper extremity prosthetic devices. Hand Clin 2021;37:425-33.
16. Vu PP, Lu CW, Vaskov AK, et al. Restoration of proprioceptive and cutaneous sensation using regenerative peripheral nerve interfaces (RPNIs) in humans with upper-limb amputations. Plast Reconstr Surg 2022;149:1149e-1154e.
17. Kubiak CA, Adidharma W, Kung TA, Kemp SWP, Cederna PS, Vemuri C. “Decreasing postamputation pain with the regenerative peripheral nerve interface (RPNI)”. Ann Vasc Surg 2022;79:421-6.
18. Langhals NB, Woo SL, Moon JD, et al. Electrically stimulated signals from a long-term regenerative peripheral nerve interface. Annu Int Conf IEEE Eng Med Biol Soc 2014;2014:1989-92.
19. Scheme E, Englehart K. Electromyogram pattern recognition for control of powered upper-limb prostheses: state of the art and challenges for clinical use. J Rehabil Res Dev 2011;48:643-59.
20. Fluit R, Prinsen EC, Wang S, van der Kooij H. A comparison of control strategies in commercial and research knee prostheses. IEEE Trans Biomed Eng 2020;67:277-90.
21. Iturrate I, Chavarriaga R, Millán JDR. General principles of machine learning for brain-computer interfacing. Handb Clin Neurol 2020;168:311-28.
22. Antelis JM, Montesano L, Ramos-Murguialday A, Birbaumer N, Minguez J. On the usage of linear regression models to reconstruct limb kinematics from low frequency EEG signals. PLoS One 2013;8:e61976.
23. Chavarriaga R, Millan Jdel R. Learning from EEG error-related potentials in noninvasive brain-computer interfaces. IEEE Trans Neural Syst Rehabil Eng 2010;18:381-8.
24. Childress DS. Historical aspects of powered limb prostheses. Clinical Prosthetics & Orthotics 1985;9:2-13. Available from: http://www.oandplibrary.org/cpo/1985_01_002.asp [Last accessed on 11 Aug 2022]
25. Tan DW, Schiefer MA, Keith MW, Anderson JR, Tyler J, Tyler DJ. A neural interface provides long-term stable natural touch perception. Sci Transl Med 2014;6:257ra138.
26. Nghiem BT, Sando IC, Gillespie RB, et al. Providing a sense of touch to prosthetic hands. Plast Reconstr Surg 2015;135:1652-63.
27. Davis TS, Wark HA, Hutchinson DT, et al. Restoring motor control and sensory feedback in people with upper extremity amputations using arrays of 96 microelectrodes implanted in the median and ulnar nerves. J Neural Eng 2016;13:036001.
28. Hanley MA, Ehde DM, Jensen M, Czerniecki J, Smith DG, Robinson LR. Chronic pain associated with upper-limb loss. Am J Phys Med Rehabil 2009;88:742-51; quiz 752, 779.
29. Sinha R, van den Heuvel WJ, Arokiasamy P. Factors affecting quality of life in lower limb amputees. Prosthet Orthot Int 2011;35:90-6.
30. Kooijman CM, Dijkstra PU, Geertzen JH, Elzinga A, van der Schans CP. Phantom pain and phantom sensations in upper limb amputees: an epidemiological study. Pain 2000;87:33-41.
31. Singh RK, Prasad G. Long-term mortality after lower-limb amputation. Prosthet Orthot Int 2016;40:545-51.
32. Morgan SJ, Friedly JL, Amtmann D, Salem R, Hafner BJ. Cross-sectional assessment of factors related to pain intensity and pain interference in lower limb prosthesis users. Arch Phys Med Rehabil 2017;98:105-13.
33. Woo SL, Kung TA, Brown DL, Leonard JA, Kelly BM, Cederna PS. Regenerative peripheral nerve interfaces for the treatment of postamputation neuroma pain: a pilot study. Plast Reconstr Surg Glob Open 2016;4:e1038.
34. Prantl L, Schreml S, Heine N, Eisenmann-Klein M, Angele P. Surgical treatment of chronic phantom limb sensation and limb pain after lower limb amputation. Plast Reconstr Surg 2006;118:1562-72.
35. Economides JM, DeFazio MV, Attinger CE, Barbour JR. Prevention of painful neuroma and phantom limb pain after transfemoral amputations through concomitant nerve coaptation and collagen nerve wrapping. Neurosurgery 2016;79:508-13.
36. Cravioto H, Battista A. Clinical and ultrastructural study of painful neuroma. Neurosurgery 1981;8:181-90.
37. Ives GC, Kung TA, Nghiem BT, et al. Current state of the surgical treatment of terminal neuromas. Neurosurgery 2018;83:354-64.
38. Eberlin KR, Ducic I. Surgical algorithm for neuroma management: a changing treatment paradigm. Plast Reconstr Surg Glob Open 2018;6:e1952.
39. Mackinnon SE. Evaluation and treatment of the painful neuroma. Tech Hand Up Extrem Surg 1997;1:195-212.
40. Santosa KB, Oliver JD, Cederna PS, Kung TA. Regenerative peripheral nerve interfaces for prevention and management of neuromas. Clin Plast Surg 2020;47:311-21.
41. Kubiak CA, Kemp SWP, Cederna PS. Regenerative peripheral nerve interface for management of postamputation neuroma. JAMA Surg 2018;153:681-2.
42. Hooper RC, Cederna PS, Brown DL, et al. Regenerative peripheral nerve interfaces for the management of symptomatic hand and digital neuromas. Plast Reconstr Surg Glob Open 2020;8:e2792.