Page 42 - Read Online
P. 42

Lin et al. Plast Aesthet Res 2024;11:8  https://dx.doi.org/10.20517/2347-9264.2023.57  Page 11 of 12

               33.      Fox IK, Novak CB, Kahn LC, Mackinnon SE, Ruvinskaya R, Juknis N. Using nerve transfer to restore prehension and grasp 12 years
                   following spinal cord injury: a case report. Spinal Cord Ser Cases 2018;4:37.  DOI  PubMed  PMC
               34.      Dibble CF, Khalifeh JM, VanVoorhis A, Rich JT, Ray WZ. Novel nerve transfers for motor and sensory restoration in high cervical
                   spinal cord injury. World Neurosurg 2019;128:611-615.e1.  DOI  PubMed
               35.      Biondi M, Zucchini M, Bigazzi P, Falcone G, Pfanner S, Del Popolo G. Combined nerve and tendon transfer to restore elbow
                   extension in tetraplegic patients: surgical technique and case report. Spinal Cord Ser Cases 2020;6:31.  DOI  PubMed  PMC
               36.      van Zyl N, Galea MP, Cooper C, Hahn J, Hill B. Transfer of the supinator nerve to the posterior interosseous nerve for hand opening in
                   tetraplegia through an anterior approach. J Hand Surg Eur Vol 2021;46:717-24.  DOI
               37.      Waris E, Anttila T, Palmgren-Soppela T. Transfer of the supinator nerve to the extensor carpi radialis brevis nerve for wrist extension
                   in high tetraplegia. J Hand Surg Eur Vol 2021;46:894-6.  DOI
               38.      Paternostro-Sluga T, Grim-Stieger M, Posch M, et al. Reliability and validity of the medical research council (MRC) scale and a
                   modified scale for testing muscle strength in patients with radial palsy. J Rehabil Med 2008;40:665-71.  DOI
               39.      Aids to the Examination of the Peripheral Nervous System. Available from: https://www.ukri.org/wp-content/uploads/2021/12/MRC-
                   011221-AidsToTheExaminationOfThePeripheralNervousSystem.pdf [Last accessed on 20 Feb 2024].
               40.      Polkey CE. Book Reviews. British Medical Bulletin 1977;33:182.  DOI
               41.      Stark T, Walker B, Phillips JK, Fejer R, Beck R. Hand-held dynamometry correlation with the gold standard isokinetic dynamometry:
                   a systematic review. PM R 2011;3:472-9.  DOI  PubMed
               42.      Herbison GJ, Isaac Z, Cohen ME, Ditunno JF Jr. Strength post-spinal cord injury: myometer vs manual muscle test. Spinal Cord
                   1996;34:543-8.  DOI  PubMed
               43.      Waris E, Palmgren-Soppela T, Sommarhem A. Nerve transfer of brachialis branch to anterior interosseus nerve using in situ lateral
                   antebrachial cutaneous nerve graft in tetraplegia. J Hand Surg Am 2022;47:390.e1-7.  DOI  PubMed
               44.      Sollerman C, Ejeskär A. Sollerman hand function test. A standardised method and its use in tetraplegic patients. Scand J Plast
                   Reconstr Surg Hand Surg 1995;29:167-76.  DOI  PubMed
               45.      Kalsi-Ryan S, Beaton D, Curt A, et al. The graded redefined assessment of strength sensibility and prehension: reliability and validity.
                   J Neurotrauma 2012;29:905-14.  DOI
               46.      Wuolle KS, Van Doren CL, Thrope GB, Keith MW, Peckham PH. Development of a quantitative hand grasp and release test for
                   patients with tetraplegia using a hand neuroprosthesis. J Hand Surg Am 1994;19:209-18.  DOI
               47.      Javeed S, Dibble CF, Greenberg JK, et al. Upper limb nerve transfer surgery in patients with tetraplegia. JAMA Netw Open
                   2022;5:e2243890.  DOI  PubMed  PMC
               48.      Lyle RC. A performance test for assessment of upper limb function in physical rehabilitation treatment and research. Int J Rehabil Res
                   1981;4:483-92.  DOI  PubMed
               49.      Velstra IM, Bolliger M, Tanadini LG, et al. Prediction and stratification of upper limb function and self-care in acute cervical spinal
                   cord injury with the graded redefined assessment of strength, sensibility, and prehension (GRASSP). Neurorehabil Neural Repair
                   2014;28:632-42.  DOI
               50.      Sacco C, Olivi S, Visani J, et al. Functional outcome after transfer of brachialis on anterior interosseous and supinator on posterior
                   interosseous nerves: a preliminary report. Microsurgery 2022;42:577-85.  DOI
               51.      Mulcahey MJ, Smith BT, Betz RR. Psychometric rigor of the grasp and release test for measuring functional limitation of persons with
                   tetraplegia: a preliminary analysis. J Spinal Cord Med 2004;27:41-6.  PubMed
               52.      Fitzpatrick R, Davey C, Buxton MJ, Jones DR. Evaluating patient-based outcome measures for use in clinical trials. Health Technol
                   Assess 1998;2:1-74.  PubMed
               53.      Ware JE Jr, Gandek B. Overview of the SF-36 health survey and the international quality of life assessment (IQOLA) project. J Clin
                   Epidemiol 1998;51:903-12.  DOI  PubMed
               54.      Lins L, Carvalho FM. SF-36 total score as a single measure of health-related quality of life: Scoping review. SAGE Open Med
                   2016;4:2050312116671725.  DOI  PubMed  PMC
               55.      Lee BB, Simpson JM, King MT, Haran MJ, Marial O. The SF-36 walk-wheel: a simple modification of the SF-36 physical domain
                   improves its responsiveness for measuring health status change in spinal cord injury. Spinal Cord 2009;47:50-5.  DOI  PubMed
               56.      Chung KC, Pillsbury MS, Walters MR, Hayward RA. Reliability and validity testing of the michigan hand outcomes questionnaire. J
                   Hand Surg Am 1998;23:575-87.  DOI  PubMed
               57.      Shauver MJ, Chung KC. The Michigan hand outcomes questionnaire after 15 years of field trial. Plast Reconstr Surg 2013;131:779e-
                   87e.  DOI  PubMed  PMC
               58.      Hudak PL, Amadio PC, Bombardier C, et al. Development of an upper extremity outcome measure: the DASH (disabilities of the arm,
                   shoulder, and head). Am J Ind Med 1996;29:602-8.  DOI
               59.      Anderson KD, Acuff ME, Arp BG, et al. United States (US) multi-center study to assess the validity and reliability of the Spinal Cord
                   Independence Measure (SCIM III). Spinal Cord 2011;49:880-5.  DOI
               60.      Catz A, Itzkovich M. Spinal cord independence measure: comprehensive ability rating scale for the spinal cord lesion patient. J
                   Rehabil Res Dev 2007;44:65-8.  PubMed
               61.      Rudhe C, van Hedel HJ. Upper extremity function in persons with tetraplegia: relationships between strength, capacity, and the spinal
                   cord independence measure. Neurorehabil Neural Repair 2009;23:413-21.  DOI  PubMed
               62.      Law M, Baptiste S, McColl M, Opzoomer A, Polatajko H, Pollock N. The Canadian occupational performance measure: an outcome
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