- Department of Orthopedics, Joint Surgery and Sports Medicine, First Affiliated Hospital of China Medical University, Shenyang Sports Medicine Clinical Medical Research Center, Shenyang Liaoning, 110001, P. R.China;
Copyright © the editorial department of Chinese Journal of Reparative and Reconstructive Surgery of West China Medical Publisher. All rights reserved
1. | Lai VJ, Reynolds AW, Kindya M, et al. The use of suture augmentation for graft protection in ACL reconstruction: A biomechanical study in porcine knees. Arthrosc Sports Med Rehabil, 2020, 3(1): e57-e63. |
2. | Simon D, Mascarenhas R, Saltzman BM, et al. The relationship between anterior cruciate ligament injury and osteoarthritis of the knee. Adv Orthop, 2015, 2015: 928301. doi: 10.1155/2015/928301. |
3. | Carey JL, Dunn WR, Dahm DL, et al. A systematic review of anterior cruciate ligament reconstruction with autograft compared with allograft. J Bone Joint Surg (Am), 2009, 91(9): 2242-2250. |
4. | Alkhalaf FNA, Hanna S, Alkhaldi MSH, et al. Autograft diameter in ACL reconstruction: size does matter. SICOT J, 2021, 7: 16. doi: 10.1051/sicotj/2021018. |
5. | Kurtoğlu A, Başar B, Başar G, et al. Small size autograft versus large size allograft in anterior cruciate ligament reconstruction. Clin Orthop Surg, 2021, 13(1): 47-52. |
6. | Tang SP, Wan KH, Lee RH, et al. Influence of hamstring autograft diameter on graft failure rate in Chinese population after anterior cruciate ligament reconstruction. Asia Pac J Sports Med Arthrosc Rehabil Technol, 2020, 22: 45-48. |
7. | Mariscalco MW, Flanigan DC, Mitchell J, et al. The influence of hamstring autograft size on patient-reported outcomes and risk of revision after anterior cruciate ligament reconstruction: a Multicenter Orthopaedic Outcomes Network (MOON) Cohort Study. Arthroscopy, 2013, 29(12): 1948-1953. |
8. | van Eck CF, Schkrohowsky JG, Working ZM, et al. Prospective analysis of failure rate and predictors of failure after anatomic anterior cruciate ligament reconstruction with allograft. Am J Sports Med, 2012, 40(4): 800-807. |
9. | Conte EJ, Hyatt AE, Gatt CJ, et al. Hamstring autograft size can be predicted and is a potential risk factor for anterior cruciate ligament reconstruction failure. Arthroscopy, 2014, 30(7): 882-890. |
10. | Mueller MM, Rilk S, von Rehlingen-Prinz F, et al. Editorial commentary: Anterior cruciate ligament reconstruction or repair with suture augmentation allows early rehabilitation: collagen co-braid sutures may improve biological integration. Arthroscopy, 2024. doi: 10.1016/j.arthro.2024.10.022. |
11. | Wilson WT, Kennedy MJ, MacLeod D, et al. Outcomes of anterior cruciate ligament reconstruction with independently tensioned suture tape augmentation at 5-year follow-up. Am J Sports Med, 2023, 51(14): 3658-3664. |
12. | Alexeev SO, Buckley SE, Hewitt MA, et al. Publication trends in ligament augmentation techniques: current concepts. J ISAKOS, 2023, 8(4): 232-238. |
13. | Smith PA, Bley JA. Allograft anterior cruciate ligament reconstruction utilizing internal brace augmentation. Arthrosc Tech, 2016, 5(5): e1143-e1147. |
14. | McGee R, Daggett M, Jacks A, et al. Patellar tendon graft anterior cruciate ligament reconstruction technique with suture tape augmentation. Arthrosc Tech, 2019, 8(4): e355-e361. |
15. | Daniel AV, Smith PA. Primary all-soft tissue quadriceps tendon autograft anterior cruciate ligament reconstruction with suture tape augmentation resulted in satisfactory patient outcomes and a low graft failure rate in high school and collegiate athletes. Arthroscopy, 2025, 41(1): 95-105. |
16. | Smith PA, Bradley JP, Konicek J, et al. Independent suture tape internal brace reinforcement of bone-patellar tendon-bone allografts: biomechanical assessment in a full-ACL reconstruction laboratory model. J Knee Surg, 2020, 33(10): 1047-1054. |
17. | Daniel AV, Smith PA. Risk for revision ACLR after primary all-inside quadrupled semitendinosus hamstring tendon autograft ACLR with independent suture tape augmentation: a retrospective cohort study. Orthop J Sports Med, 2024, 12(9): 23259671241270308. doi: 10.1177/23259671241270308. |
18. | van Eck CF, Limpisvasti O, ElAttrache NS. Is there a role for internal bracing and repair of the anterior cruciate ligament? A systematic literature review. Am J Sports Med, 2018, 46(9): 2291-2298. |
19. | Smith JO, Yasen SK, Palmer HC, et al. Paediatric ACL repair reinforced with temporary internal bracing. Knee Surg Sports Traumatol Arthrosc, 2016, 24(6): 1845-1851. |
20. | Aboalata M, Elazab A, Halawa A, et al. Internal suture augmentation technique to protect the anterior cruciate ligament reconstruction graft. Arthrosc Tech, 2017, 6(5): e1633-e1638. |
21. | Beynnon BD, Johnson RJ, Fleming BC, et al. Anterior cruciate ligament replacement: comparison of bone-patellar tendon-bone grafts with two-strand hamstring grafts. A prospective, randomized study. J Bone Joint Surg (Am), 2002, 84(9): 1503-1513. |
22. | Grindem H, Engebretsen L, Axe M, et al. Activity and functional readiness, not age, are the critical factors for second anterior cruciate ligament injury-the Delaware-Oslo ACL cohort study. Br J Sports Med, 2020, 54(18): 1099-1102. |
23. | Raja BS, Arora M, Gowda AKS, et al. Augmentation with fibertape leads to biomechanically superior but similar clinical outcomes in ACL surgeries: systematic review and meta-analysis. Indian J Orthop, 2023, 57(5): 722-747. |
24. | Matava MJ, Koscso J, Melara L, et al. Suture tape augmentation improves the biomechanical performance of bone-patellar tendon-bone grafts used for anterior cruciate ligament reconstruction. Arthroscopy, 2021, 37(11): 3335-3343. |
25. | Wicks ED, Stack J, Rezaie N, et al. Biomechanical evaluation of suture tape internal brace reinforcement of soft tissue allografts for ACL reconstruction using a porcine model. Orthop J Sports Med, 2022, 10(5): 23259671221091252. doi: 10.1177/23259671221091252. |
26. | Wallace GJ, Thompson JD, Diekfuss JA, et al. Suture augmentation of a four-strand semitendinosus graft improves time-zero biomechanical properties. Arthroscopy, 2024, 40(1): 124-132. |
27. | Soreide E, Denbeigh JM, Lewallen EA, et al. In vivo assessment of high-molecular-weight polyethylene core suture tape for intra-articular ligament reconstruction: an animal study. Bone Joint J, 2019, 101-B(10): 1238-1247. |
28. | Lamplot JD, Smith BL, Slone HS, et al. Tape-reinforced graft suturing and retensioning of adjustable-loop cortical buttons improve quadriceps tendon autograft biomechanics in anterior cruciate ligament reconstruction: a cadaveric study. Arthroscopy, 2024, 40(1): 136-145. |
29. | Bachmaier S, Smith PA, Bley J, et al. Independent suture tape reinforcement of small and standard diameter grafts for anterior cruciate ligament reconstruction: a biomechanical full construct model. Arthroscopy, 2018, 34(2): 490-499. |
30. | Noonan BC, Bachmaier S, Wijdicks CA, et al. Independent suture tape reinforcement of tripled smaller-diameter and quadrupled grafts for anterior cruciate ligament reconstruction with tibial screw fixation: a biomechanical full construct model. Arthroscopy, 2020, 36(2): 481-489. |
31. | Murray MM, Fleming BC. Biology of anterior cruciate ligament injury and repair: Kappa delta ann doner vaughn award paper 2013. J Orthop Res, 2013, 31(10): 1501-1506. |
32. | Athiviraham A, Lee CS, Smith PA, et al. Self-tensioning feature of knotless suture anchor provides reproducible knotless fixation independent of initial tension. Orthop J Sports Med, 2021, 9(3): 2325967121991593. doi: 10.1177/2325967121991593. |
33. | Bodendorfer BM. Editorial commentary: the suture-augmented anterior cruciate ligament reconstruction requires independent tensioning to achieve load sharing. Arthroscopy, 2023, 39(4): 1025-1027. |
34. | Mackay GM, Wilson WT, Hopper GP. Editorial commentary: anterior cruciate ligament repair or reconstruction with internal bracing, for properly indicated patients, is safe, biocompatible, and biomimetic. Arthroscopy, 2024, 40(9): 2504-2506. |
35. | Smith PA. Editorial commentary: Anterior cruciate ligament graft reinforcement: a new era supported by science. Arthroscopy, 2019, 35(7): 2123-2126. |
36. | Claes S, Verdonk P, Forsyth R, et al. The "ligamentization" process in anterior cruciate ligament reconstruction: what happens to the human graft? A systematic review of the literature. Am J Sports Med, 2011, 39(11): 2476-2483. |
37. | Szakiel PM, Aksu NE, Kirloskar KM, et al. Rehabilitation and functional outcomes in internally braced and standard ACL reconstructions. J Orthop, 2022, 33: 95-99. |
38. | Amiel D, Kleiner JB, Roux RD, et al. The phenomenon of "ligamentization": anterior cruciate ligament reconstruction with autogenous patellar tendon. J Orthop Res, 1986, 4(2): 162-172. |
39. | Shino K, Inoue M, Horibe S, et al. Maturation of allograft tendons transplanted into the knee. An arthroscopic and histological study. J Bone Joint Surg (Br), 1988, 70(4): 556-560. |
40. | Arnoczky SP, Tarvin GB, Marshall JL. Anterior cruciate ligament replacement using patellar tendon. An evaluation of graft revascularization in the dog. J Bone Joint Surg (Am), 1982, 64(2): 217-224. |
41. | Bodendorfer BM, Michaelson EM, Shu HT, et al. Suture augmented versus standard anterior cruciate ligament reconstruction: a matched comparative analysis. Arthroscopy, 2019, 35(7): 2114-2122. |
42. | Smith PA, Stannard JP, Bozynski CC, et al. Patellar bone-tendon-bone autografts versus quadriceps tendon allograft with synthetic augmentation in a canine model. J Knee Surg, 2020, 33(12): 1256-1266. |
43. | Iwaasa T, Takahashi T, Tensho K, et al. Suture augmentation does not change biomechanical properties and histological remodeling of tendon graft in anterior cruciate ligament reconstruction: a study in a porcine model. Arthroscopy, 2023, 39(4): 1014-1024. |
44. | Nguyen DM, Murawski CD, Fu FH, et al. Stress shielding of ligaments using nonabsorbable suture augmentation may influence the biology of ligament healing. J Hand Surg (Am), 2022, 47(3): 275-278. |
45. | Yamamoto E, Hayashi K, Yamamoto N. Effects of stress shielding on the transverse mechanical properties of rabbit patellar tendons. J Biomech Eng, 2000, 122(6): 608-614. |
46. | Laitinen O, Pohjonen T, Törmälä P, et al. Mechanical properties of biodegradable poly-L-lactide ligament augmentation device in experimental anterior cruciate ligament reconstruction. Arch Orthop Trauma Surg, 1993, 112(6): 270-274. |
47. | Anitua E, Sánchez M, Orive G, et al. The potential impact of the preparation rich in growth factors (PRGF) in different medical fields. Biomaterials, 2007, 28(31): 4551-4560. |
48. | Yu C, Chen R, Chen J, et al. Enhancing tendon-bone integration and healing with advanced multi-layer nanofiber-reinforced 3D scaffolds for acellular tendon complexes. Mater Today Bio, 2024, 26: 101099. doi: 10.1016/j.mtbio.2024.101099. |
49. | Joshi SM, Mastrangelo AN, Magarian EM, et al. Collagen-platelet composite enhances biomechanical and histologic healing of the porcine anterior cruciate ligament. Am J Sports Med, 2009, 37(12): 2401-2410. |
50. | Figueroa D, Espinosa M, Calvo R, et al. Anterior cruciate ligament regeneration using mesenchymal stem cells and collagen type I scaffold in a rabbit model. Knee Surg Sports Traumatol Arthrosc, 2014, 22(5): 1196-1202. |
51. | Crispim JF, Fu SC, Lee YW, et al. Bioactive tape with BMP-2 binding peptides captures endogenous growth factors and accelerates healing after anterior cruciate ligament reconstruction. Am J Sports Med, 2018, 46(12): 2905-2914. |
52. | Lavender CD, Schaver AL, Taylor S, et al. Anterior cruciate ligament reconstruction augmentation with bone marrow aspirate concentrate, demineralized bone matrix, and suture tape shows no difference in outcomes-but faster functional recovery-versus non-augmented anterior cruciate ligament reconstruction. Arthroscopy, 2024. doi: 10.1016/j.arthro.2024.06.042. |
53. | Soon MY, Hassan A, Hui JH, et al. An analysis of soft tissue allograft anterior cruciate ligament reconstruction in a rabbit model: a short-term study of the use of mesenchymal stem cells to enhance tendon osteointegration. Am J Sports Med, 2007, 35(6): 962-971. |
54. | Lui PP, Wong OT, Lee YW. Application of tendon-derived stem cell sheet for the promotion of graft healing in anterior cruciate ligament reconstruction. Am J Sports Med, 2014, 42(3): 681-689. |
55. | Thuresson P, Sandberg R, Johansson O, et al. Anterior cruciate ligament reconstruction with the patellar tendon--augmentation or not? A 2-year follow-up of 82 patients. Scand J Med Sci Sports, 1996, 6(4): 247-254. |
56. | Drogset JO, Grøntvedt T. Anterior cruciate ligament reconstruction with and without a ligament augmentation device: results at 8-Year follow-up. Am J Sports Med, 2002, 30(6): 851-856. |
57. | Barrett GR, Field LD. Comparison of patella tendon versus patella tendon/Kennedy ligament augmentation device for anterior cruciate ligament reconstruction: study of results, morbidity, and complications. Arthroscopy, 1993, 9(6): 624-632. |
58. | Cook JL, Smith P, Stannard JP, et al. A canine arthroscopic anterior cruciate ligament reconstruction model for study of synthetic augmentation of tendon allografts. J Knee Surg, 2017, 30(7): 704-711. |
59. | Smith PA, Bozynski CC, Kuroki K, et al. Intra-articular biocompatibility of multistranded, long-chain polyethylene suture tape in a canine acl model. J Knee Surg, 2019, 32(6): 525-531. |
60. | Marks Benson E, Pyrz K, Wood A, et al. Anterior cruciate ligament reconstruction using bone-tendon-bone allograft: surgical technique using augmentation with bio-composite scaffold. Arthrosc Tech, 2024, 13(3): 102877. doi: 10.1016/j.eats.2023.11.005. |
61. | Savić L, Augustyniak EM, Kastensson A, et al. Early development of a polycaprolactone electrospun augment for anterior cruciate ligament reconstruction. Mater Sci Eng C Mater Biol Appl, 2021, 129: 112414. doi: 10.1016/j.msec.2021.112414. |
62. | Dürselen L, Dauner M, Hierlemann H, et al. Resorbable polymer fibers for ligament augmentation. J Biomed Mater Res, 2001, 58(6): 666-672. |
63. | Buma P, Kok HJ, Blankevoort L, et al. Augmentation in anterior cruciate ligament reconstruction-a histological and biomechanical study on goats. Int Orthop, 2004, 28(2): 91-96. |
64. | Salmon LJ, Heath E, Akrawi H, et al. 20-year outcomes of anterior cruciate ligament reconstruction with hamstring tendon autograft: the catastrophic effect of age and posterior tibial slope. Am J Sports Med, 2018, 46(3): 531-543. |
65. | Gao Y, Shi W, Zhang Z, et al. Association of suture augmentation with graft failure and clinical outcomes following anterior cruciate ligament reconstruction: A systematic review and meta-analysis of comparative studies with a minimum 2-year follow-up. Knee Surg Sports Traumatol Arthrosc, 2024. doi: 10.1002/ksa.12537. |
66. | Daniel AV, Sheth CD, Shubert DJ, et al. Primary anterior cruciate ligament reconstruction with suture tape augmentation: a case series of 252 patients. J Knee Surg, 2024, 37(5): 381-390. |
67. | Daniel AV, Wijdicks CA, Smith PA. Reduced incidence of revision anterior cruciate ligament reconstruction with internal brace augmentation. Orthop J Sports Med, 2023, 11(7): 23259671231178026. doi: 10.1177/23259671231178026. |
68. | Parkes CW, Leland DP, Levy BA, et al. Hamstring autograft anterior cruciate ligament reconstruction using an all-inside technique with and without independent suture tape reinforcement. Arthroscopy, 2021, 37(2): 609-616. |
69. | Smith PA, Daniel AV, Stensby JD, et al. Quadriceps tendon autograft ACL reconstruction with suture tape augmentation: safe results based on minimum 2-year follow-up MRI. Orthop J Sports Med, 2024, 12(4): 23259671241239275. doi: 10.1177/23259671241239275. |
70. | Allom RJ, Wood JA, Chen DB, et al. The addition of suture tape to the hamstring graft construct does not reduce instrumented knee laxity following ACL reconstruction. Arthrosc Sports Med Rehabil, 2021, 4(2): e545-e551. |
71. | Tensho K, Iwaasa T, Koyama S, et al. No difference in graft signal intensity on magnetic resonance imaging or clinical outcome between anterior cruciate ligament reconstruction with and without suture augmentation. Arthroscopy, 2024. doi: 10.1016/j.arthro.2024.07.034. |
72. | Meng Q, Dai R, Wang C, et al. Additional suture augmentation to anterior cruciate ligament reconstruction with hamstring autografts bring no benefits to clinical results, graft maturation and graft-bone interface healing. BMC Musculoskelet Disord, 2024, 25(1): 301. doi: 10.1186/s12891-024-07426-w. |
73. | Jackson GR, Opara O, Tuthill T, et al. Suture augmentation in orthopaedic surgery offers improved time-zero biomechanics and promising short-term clinical outcomes. Arthroscopy, 2023, 39(5): 1357-1365. |
74. | Daniel AV, Smith PA. Less subsequent revision anterior cruciate ligament reconstruction following primary bone-patellar tendon-bone anterior cruciate ligament reconstruction with suture tape augmentation-a retrospective comparative therapeutic trial with 5-year follow-up. Arthroscopy, 2024, 40(9): 2455-2464. |
75. | Tavakoli Darestani R, Afzal S, Pourmojarab A, et al. A comparative analysis of suture-augmented and standard hamstring autograft single-bundle ACL reconstruction outcomes: short-term functional benefits without long-term impact. BMC Musculoskelet Disord, 2023, 24(1): 971. doi: 10.1186/s12891-023-07100-7. |
76. | von Essen C, Sarakatsianos V, Cristiani R, et al. Suture tape reinforcement of hamstring tendon graft reduces postoperative knee laxity after primary ACL reconstruction. J Exp Orthop, 2022, 9(1): 20. doi: 10.1186/s40634-022-00454-2. |
77. | Ebert JR, Edwards P, Annear PT. Good clinical scores, no evidence of excessive anterior tibial translation, a high return to sport rate and a low re-injury rate is observed following anterior cruciate ligament reconstruction using autologous hamstrings augmented with suture tape. Arch Orthop Trauma Surg, 2023, 143(8): 5207-5220. |
78. | Groves J, Keefer JM, Peterson J, et al. Countermovement jump and vertical hop demonstrate braking/deceleration and performance alterations after ACL reconstruction with BMA, DBM, and suture tape augmentation. J Orthop, 2024, 60: 96-104. |
79. | Bora M, Deshmukh P. Clinical and patient-reported functional outcome of semitendinosus autograft anterior cruciate ligament reconstruction with FiberTape® InternalBraceTM all-inside technique: a prospective study. Cureus, 2023, 15(9): e44700. doi: 10.7759/cureus.44700. |
80. | Heusdens CHW, Zazulia K, Roelant E, et al. Study protocol: a single-blind, multi-center, randomized controlled trial comparing dynamic intraligamentary stabilization, internal brace ligament augmentation and reconstruction in individuals with an acute anterior cruciate ligament rupture: LIBRE study. BMC Musculoskelet Disord, 2019, 20(1): 547. doi: 10.1186/s12891-019-2926-0. |
81. | Liu HW, Ni M, Zhang GQ, et al. Kinematic analysis of anterior cruciate ligament reconstruction in total knee arthroplasty. Am J Transl Res, 2016, 8(5): 2275-2283. |
- 1. Lai VJ, Reynolds AW, Kindya M, et al. The use of suture augmentation for graft protection in ACL reconstruction: A biomechanical study in porcine knees. Arthrosc Sports Med Rehabil, 2020, 3(1): e57-e63.
- 2. Simon D, Mascarenhas R, Saltzman BM, et al. The relationship between anterior cruciate ligament injury and osteoarthritis of the knee. Adv Orthop, 2015, 2015: 928301. doi: 10.1155/2015/928301.
- 3. Carey JL, Dunn WR, Dahm DL, et al. A systematic review of anterior cruciate ligament reconstruction with autograft compared with allograft. J Bone Joint Surg (Am), 2009, 91(9): 2242-2250.
- 4. Alkhalaf FNA, Hanna S, Alkhaldi MSH, et al. Autograft diameter in ACL reconstruction: size does matter. SICOT J, 2021, 7: 16. doi: 10.1051/sicotj/2021018.
- 5. Kurtoğlu A, Başar B, Başar G, et al. Small size autograft versus large size allograft in anterior cruciate ligament reconstruction. Clin Orthop Surg, 2021, 13(1): 47-52.
- 6. Tang SP, Wan KH, Lee RH, et al. Influence of hamstring autograft diameter on graft failure rate in Chinese population after anterior cruciate ligament reconstruction. Asia Pac J Sports Med Arthrosc Rehabil Technol, 2020, 22: 45-48.
- 7. Mariscalco MW, Flanigan DC, Mitchell J, et al. The influence of hamstring autograft size on patient-reported outcomes and risk of revision after anterior cruciate ligament reconstruction: a Multicenter Orthopaedic Outcomes Network (MOON) Cohort Study. Arthroscopy, 2013, 29(12): 1948-1953.
- 8. van Eck CF, Schkrohowsky JG, Working ZM, et al. Prospective analysis of failure rate and predictors of failure after anatomic anterior cruciate ligament reconstruction with allograft. Am J Sports Med, 2012, 40(4): 800-807.
- 9. Conte EJ, Hyatt AE, Gatt CJ, et al. Hamstring autograft size can be predicted and is a potential risk factor for anterior cruciate ligament reconstruction failure. Arthroscopy, 2014, 30(7): 882-890.
- 10. Mueller MM, Rilk S, von Rehlingen-Prinz F, et al. Editorial commentary: Anterior cruciate ligament reconstruction or repair with suture augmentation allows early rehabilitation: collagen co-braid sutures may improve biological integration. Arthroscopy, 2024. doi: 10.1016/j.arthro.2024.10.022.
- 11. Wilson WT, Kennedy MJ, MacLeod D, et al. Outcomes of anterior cruciate ligament reconstruction with independently tensioned suture tape augmentation at 5-year follow-up. Am J Sports Med, 2023, 51(14): 3658-3664.
- 12. Alexeev SO, Buckley SE, Hewitt MA, et al. Publication trends in ligament augmentation techniques: current concepts. J ISAKOS, 2023, 8(4): 232-238.
- 13. Smith PA, Bley JA. Allograft anterior cruciate ligament reconstruction utilizing internal brace augmentation. Arthrosc Tech, 2016, 5(5): e1143-e1147.
- 14. McGee R, Daggett M, Jacks A, et al. Patellar tendon graft anterior cruciate ligament reconstruction technique with suture tape augmentation. Arthrosc Tech, 2019, 8(4): e355-e361.
- 15. Daniel AV, Smith PA. Primary all-soft tissue quadriceps tendon autograft anterior cruciate ligament reconstruction with suture tape augmentation resulted in satisfactory patient outcomes and a low graft failure rate in high school and collegiate athletes. Arthroscopy, 2025, 41(1): 95-105.
- 16. Smith PA, Bradley JP, Konicek J, et al. Independent suture tape internal brace reinforcement of bone-patellar tendon-bone allografts: biomechanical assessment in a full-ACL reconstruction laboratory model. J Knee Surg, 2020, 33(10): 1047-1054.
- 17. Daniel AV, Smith PA. Risk for revision ACLR after primary all-inside quadrupled semitendinosus hamstring tendon autograft ACLR with independent suture tape augmentation: a retrospective cohort study. Orthop J Sports Med, 2024, 12(9): 23259671241270308. doi: 10.1177/23259671241270308.
- 18. van Eck CF, Limpisvasti O, ElAttrache NS. Is there a role for internal bracing and repair of the anterior cruciate ligament? A systematic literature review. Am J Sports Med, 2018, 46(9): 2291-2298.
- 19. Smith JO, Yasen SK, Palmer HC, et al. Paediatric ACL repair reinforced with temporary internal bracing. Knee Surg Sports Traumatol Arthrosc, 2016, 24(6): 1845-1851.
- 20. Aboalata M, Elazab A, Halawa A, et al. Internal suture augmentation technique to protect the anterior cruciate ligament reconstruction graft. Arthrosc Tech, 2017, 6(5): e1633-e1638.
- 21. Beynnon BD, Johnson RJ, Fleming BC, et al. Anterior cruciate ligament replacement: comparison of bone-patellar tendon-bone grafts with two-strand hamstring grafts. A prospective, randomized study. J Bone Joint Surg (Am), 2002, 84(9): 1503-1513.
- 22. Grindem H, Engebretsen L, Axe M, et al. Activity and functional readiness, not age, are the critical factors for second anterior cruciate ligament injury-the Delaware-Oslo ACL cohort study. Br J Sports Med, 2020, 54(18): 1099-1102.
- 23. Raja BS, Arora M, Gowda AKS, et al. Augmentation with fibertape leads to biomechanically superior but similar clinical outcomes in ACL surgeries: systematic review and meta-analysis. Indian J Orthop, 2023, 57(5): 722-747.
- 24. Matava MJ, Koscso J, Melara L, et al. Suture tape augmentation improves the biomechanical performance of bone-patellar tendon-bone grafts used for anterior cruciate ligament reconstruction. Arthroscopy, 2021, 37(11): 3335-3343.
- 25. Wicks ED, Stack J, Rezaie N, et al. Biomechanical evaluation of suture tape internal brace reinforcement of soft tissue allografts for ACL reconstruction using a porcine model. Orthop J Sports Med, 2022, 10(5): 23259671221091252. doi: 10.1177/23259671221091252.
- 26. Wallace GJ, Thompson JD, Diekfuss JA, et al. Suture augmentation of a four-strand semitendinosus graft improves time-zero biomechanical properties. Arthroscopy, 2024, 40(1): 124-132.
- 27. Soreide E, Denbeigh JM, Lewallen EA, et al. In vivo assessment of high-molecular-weight polyethylene core suture tape for intra-articular ligament reconstruction: an animal study. Bone Joint J, 2019, 101-B(10): 1238-1247.
- 28. Lamplot JD, Smith BL, Slone HS, et al. Tape-reinforced graft suturing and retensioning of adjustable-loop cortical buttons improve quadriceps tendon autograft biomechanics in anterior cruciate ligament reconstruction: a cadaveric study. Arthroscopy, 2024, 40(1): 136-145.
- 29. Bachmaier S, Smith PA, Bley J, et al. Independent suture tape reinforcement of small and standard diameter grafts for anterior cruciate ligament reconstruction: a biomechanical full construct model. Arthroscopy, 2018, 34(2): 490-499.
- 30. Noonan BC, Bachmaier S, Wijdicks CA, et al. Independent suture tape reinforcement of tripled smaller-diameter and quadrupled grafts for anterior cruciate ligament reconstruction with tibial screw fixation: a biomechanical full construct model. Arthroscopy, 2020, 36(2): 481-489.
- 31. Murray MM, Fleming BC. Biology of anterior cruciate ligament injury and repair: Kappa delta ann doner vaughn award paper 2013. J Orthop Res, 2013, 31(10): 1501-1506.
- 32. Athiviraham A, Lee CS, Smith PA, et al. Self-tensioning feature of knotless suture anchor provides reproducible knotless fixation independent of initial tension. Orthop J Sports Med, 2021, 9(3): 2325967121991593. doi: 10.1177/2325967121991593.
- 33. Bodendorfer BM. Editorial commentary: the suture-augmented anterior cruciate ligament reconstruction requires independent tensioning to achieve load sharing. Arthroscopy, 2023, 39(4): 1025-1027.
- 34. Mackay GM, Wilson WT, Hopper GP. Editorial commentary: anterior cruciate ligament repair or reconstruction with internal bracing, for properly indicated patients, is safe, biocompatible, and biomimetic. Arthroscopy, 2024, 40(9): 2504-2506.
- 35. Smith PA. Editorial commentary: Anterior cruciate ligament graft reinforcement: a new era supported by science. Arthroscopy, 2019, 35(7): 2123-2126.
- 36. Claes S, Verdonk P, Forsyth R, et al. The "ligamentization" process in anterior cruciate ligament reconstruction: what happens to the human graft? A systematic review of the literature. Am J Sports Med, 2011, 39(11): 2476-2483.
- 37. Szakiel PM, Aksu NE, Kirloskar KM, et al. Rehabilitation and functional outcomes in internally braced and standard ACL reconstructions. J Orthop, 2022, 33: 95-99.
- 38. Amiel D, Kleiner JB, Roux RD, et al. The phenomenon of "ligamentization": anterior cruciate ligament reconstruction with autogenous patellar tendon. J Orthop Res, 1986, 4(2): 162-172.
- 39. Shino K, Inoue M, Horibe S, et al. Maturation of allograft tendons transplanted into the knee. An arthroscopic and histological study. J Bone Joint Surg (Br), 1988, 70(4): 556-560.
- 40. Arnoczky SP, Tarvin GB, Marshall JL. Anterior cruciate ligament replacement using patellar tendon. An evaluation of graft revascularization in the dog. J Bone Joint Surg (Am), 1982, 64(2): 217-224.
- 41. Bodendorfer BM, Michaelson EM, Shu HT, et al. Suture augmented versus standard anterior cruciate ligament reconstruction: a matched comparative analysis. Arthroscopy, 2019, 35(7): 2114-2122.
- 42. Smith PA, Stannard JP, Bozynski CC, et al. Patellar bone-tendon-bone autografts versus quadriceps tendon allograft with synthetic augmentation in a canine model. J Knee Surg, 2020, 33(12): 1256-1266.
- 43. Iwaasa T, Takahashi T, Tensho K, et al. Suture augmentation does not change biomechanical properties and histological remodeling of tendon graft in anterior cruciate ligament reconstruction: a study in a porcine model. Arthroscopy, 2023, 39(4): 1014-1024.
- 44. Nguyen DM, Murawski CD, Fu FH, et al. Stress shielding of ligaments using nonabsorbable suture augmentation may influence the biology of ligament healing. J Hand Surg (Am), 2022, 47(3): 275-278.
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