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中华肩肘外科电子杂志 ›› 2021, Vol. 09 ›› Issue (01) : 88 -92. doi: 10.3877/cma.j.issn.2095-5790.2021.01.013

所属专题: 文献

综述

桡骨干骨折的治疗进展
秦艳龙1, 王建忠1,()   
  1. 1. 010030 呼和浩特,内蒙古医科大学第二附属医院创伤Ⅰ科
  • 收稿日期:2020-06-16 出版日期:2021-02-05
  • 通信作者: 王建忠

Progress in the treatment of radial shaft fractures

Yanlong Qin1, Jianzhong Wang1()   

  • Received:2020-06-16 Published:2021-02-05
  • Corresponding author: Jianzhong Wang
引用本文:

秦艳龙, 王建忠. 桡骨干骨折的治疗进展[J]. 中华肩肘外科电子杂志, 2021, 09(01): 88-92.

Yanlong Qin, Jianzhong Wang. Progress in the treatment of radial shaft fractures[J]. Chinese Journal of Shoulder and Elbow(Electronic Edition), 2021, 09(01): 88-92.

[1]
Köse A, Aydın A, Ezirmik N, et al. Intramedullary nailing of adult isolated diaphyseal radius fractures[J]. Ulus Travma Acil Cerrahi Derg, 2016 ,22(2):184-191.
[2]
Imao K, Miwa H, Watanabe K, et al. A case report of an isolated fracture through the radial bicipital tuberosity[J]. Int J Surg Case Rep,2017,41:230-233.
[3]
Bartolotta RJ, Daniels SP, Verret CI,et al. Current Fixation Options for Elbow, Forearm, Wrist, and Hand Fractures[J]. Semin Musculoskelet Radiol, 2019,23(2):109-125.
[4]
Bair MM, Zafar Gondal A. Anatomy, Shoulder and Upper Limb, Forearm Radius[J]. Stat Pearls, 2020, 10:31356039.
[5]
Patel M, Varacallo M. Anatomy, Shoulder and Upper Limb, Forearm Bones[J]. Stat Pearls, 2020, 15: 31424844.
[6]
Dittmer AJ, Molina D 4th, Jacobs CA, et al. Pediatric Forearm Fractures Are Effectively Immobilized With a Sugar-Tong Splint Following Closed Reduction[J]. J Pediatr Orthop,2019,39(4):e245-e247.
[7]
Alajmi T. Galeazzi Fracture Dislocations: An Illustrated Review[J]. Cureus, 2020,12(7):e9367.
[8]
Franklin CC, Wren T, Ferkel E, et al. Predictors of conversion from conservative to operative treatment of pediatric forearm fractures[J]. J Pediatr Orthop B, 2014,23(2):150-154.
[9]
Wacker EM, Denning JR, Mehlman CT. Pediatric Proximal Radial Shaft Fractures Treated Nonoperatively Fail to Maintain Acceptable Reduction up to 70% of the Time[J]. J Orthop Trauma,2019,33(10):e378-e384.
[10]
Mahecha-Toro M, Vergara-Amador E, González Ramírez M. Forearm diaphyseal fractures in children: intramedullary Kirschner's wire fixation treatment[J]. Rev Esp Cir Ortop Traumatol,2018,62(1):71-79.
[11]
Jozsa G, Devecseri G, Vajda P,et al.Distance of the fracture from the radiocarpal surface in childhood: does it determine surgical technique? A retrospective clinical study: A STROBE compliant observational study[J]. Medicine (Baltimore),2020 ,99(7):e17763.
[12]
Fernández-Marín MR, Hidalgo-Pérez M, Arias-Rodríguez G,et al.Diaphyseal forearm fractures, 20 years after surgical treatment. Is there still an indication for percutaneous fixation?[J]. Rev Esp Cir Ortop Traumato,2018,62(2):112-120.
[13]
Ficke B, Ransom EF, Hess MC,et al.Outcomes of Staged Treatment for Complex Distal Radius Fractures[J]. Cureu,2018,10(9):e3273.
[14]
Trigo L, Sarasquete J, Noguera L,et al.Radial nerve injury following elbow external fixator: report of three cases and literature review[J]. Arch Orthop Trauma Surg,2017,137(7):953-957.
[15]
Wang JP, Chiu FY, Chen CM,et al.Surgical treatment of open diaphyseal fractures of both the radius and ulna[J]. J Chin Med Assoc,2005,68(8):379-382.
[16]
Kedous MA, Msakni A, Chebbi W,et al.An uncommon variant of the Essex-Lopresti injury[J]. Skeletal Radiol,2018,47(3):397-400.
[17]
Azboy I, Demirtas A, Uçar BY,et al.Effectiveness of locking versus dynamic compression plates for diaphyseal forearm fractures[J]. Orthopedics,2013 ,36(7):e917-922.
[18]
Xiong Y, Zhao YF, Xing SX,et al.Comparison of interface contact profiles of a new minimum contact locking compression plate and the limited contact dynamic compression plate[J]. Int Orthop,2010,34(5):715-718.
[19]
Saikia K, Bhuyan S, Bhattacharya T,et al.Internal fixation of fractures of both bones forearm: Comparison of locked compression and limited contact dynamic compression plate[J]. Indian J Orthop,2011,45(5):417-421.
[20]
Holweg P, Hohenberger GM, Schwarz AM,et al.Comparison of volar and dorsal plate osteosynthesis for radial shaft fractures: an anatomical pilot study[J]. Injury, 2017,5:S38-S40.
[21]
Haseeb M, Muzafar K, Ghani A,et al.A fresh look at radial shaft fracture fixation: The lateral approach to the radius[J]. J Orthop Surg (Hong Kong),2018 ,26(2):2309499018780871.
[22]
Overturf SJ, Morris RP, Gugala Z,et al.Biomechanical comparison of bicortical locking versus unicortical far-cortex-abutting locking screw-plate fixation for comminuted radial shaft fractures[J]. J Hand Surg Am,2014,39(10):1907-1913.
[23]
Roberts JW, Grindel SI, Rebholz B,et al.Biomechanical evaluation of locking plate radial shaft fixation: unicortical locking fixation versus mixed bicortical and unicortical fixation in a sawbone model[J]. J Hand Surg Am,2007,32(7):971-975.
[24]
Toogood P, Huang A, Siebuhr K,et al.Minimally invasive plate osteosynthesis versus conventional open insertion techniques for osteosynthesis[J]. Injury,2018 ,1:S19-S23.
[25]
Matsuura Y, Rokkaku T, Suzuki T,et al.Evaluation of Bone Atrophy After Treatment of Forearm Fracture Using Nonlinear Finite Element Analysis: A Comparative Study of Locking Plates and Conventional Plates[J]. J Hand Surg Am,2017 ,42(8):659.
[26]
Xue Z, Xu H, Ding H,et al.Comparison of the effect on bone healing process of different implants used in minimally invasive plate osteosynthesis: limited contact dynamic compression plate versus locking compression plate[J]. Sci Rep,2016,6:37902.
[27]
Xiong M, Hu W, Lou Q,et al.Efficacy of nickel-titanium memory alloy in the treatment of multiple rib fracture combined with sternal fracture[J]. Exp Ther Med, 2019,18(1):537-542.
[28]
Kibar B, Kurtulmuş T. Comparison of new design locked intramedullary nails and plate osteosynthesis in adult isolated diaphyseal radius fractures[J]. Eur J Trauma Emerg Surg, 2020, 45(6):1429-1435.
[29]
Azboy I, Demirtaş A, Alemdar C,et al.A Newly Designed Intramedullary Nail for the Treatment of Diaphyseal Forearm Fractures in Adults[J]. Indian J Orthop,2017 ,51(6):697-703.
[30]
Hopf JC, Mehler D, Nowak TE,et al.Nailing of diaphyseal ulna fractures in adults-biomechanical evaluation of a novel implant in comparison with locked plating[J]. J Orthop Surg Res,2020,15(1):158.
[31]
Çalbıyık M, Ipek D. Use of Volar Locking Plate Versus Intramedullary Nailing for Fixation of Distal Radius Fractures: A Retrospective Analysis of Clinical and Radiographic Outcomes[J]. Med Sci Monit,2018,24:602-613.
[32]
He HY, Zhang JZ, Wang XW,et al.Acumed intramedullary nail for the treatment of adult diaphyseal both-bone forearm fractures[J]. Zhongguo Gu Shang,2018,31(9):803-807.
[33]
Zhang J, Chen L, Li Z,et al.A comparative study of titanium elastic intramedullary nail internal fixation and bone plate internal fixation in the treatment of adult Galeazzi fracture[J]. Zhongguo Xiu Fu Chong Jian Wai Ke Za Zhi, 2018 ,32(4):406-411.
[34]
Varga M, Gáti N, Kassai T,et al.Intraoperative sonography may reduce the risk of extensor pollicis longus tendon injury during dorsal entry elastic intramedullary nailing of the radius in children[J]. Medicine (Baltimore),2018,97(24):e11167.
[35]
Nørgaard SL, Riber SS, Danielsson FB,et al.Surgical approach for elastic stable intramedullary nail in pediatric radius shaft fracture: a systematic review[J]. J Pediatr Orthop B,2018,27(4):309-314.
[36]
Huang YC, Renn JH, Tarng YW. The titanium elastic nail serves as an alternative treatment for adult proximal radial shaft fractures: a cohort study[J]. J Orthop Surg Res,2018,13(1):10.
[37]
Köse A, Aydın A, Ezirmik N,et al.A comparison of the treatment results of dpen reduction internal fixation and intramedullary nailing in adult forearm diaphyseal fractures[J]. Ulus Travma Acil Cerrahi Derg,2017,23(3):235-244.
[38]
Mauler F, Langguth C, Schweizer A,et al.Prediction of normal bone anatomy for the planning of corrective osteotomies of malunited forearm bones using a three-dimensional statistical shape model[J]. J Orthop Res,2017 ,35(12):2630-2636.
[39]
Hamada Y, Gotani H, Sasaki K,et al.Corrective Osteotomy of Malunited Diaphyseal Fractures of the Forearm Simplified Using 3-Dimensional CT Data: Proposal of Our Simple Strategy Through Case Presentation[J]. Hand (N Y),2017,12(5):NP95-NP98.
[40]
Bauer DE, Zimmermann S, Aichmair A,et al.Conventional Versus Computer-Assisted Corrective Osteotomy of the Forearm: a Retrospective Analysis of 56 Consecutive Cases[J]. J Hand Surg Am,2017,42(6):447-455.
[41]
Guan J, Ruan H, Yin J,et al.Bifocal osteosynthesis to treat radial shortening deformity with dislocation of the inferior radioulnar joint[J]. BMC Musculoskelet Disord,2019,20(1):440.
[42]
Michielsen M, Van Haver A, Vanhees M,et al.Use of three-dimensional technology for complications of upper limb fracture treatment[J]. Efort Open Rev,2019,4(6):302-312.
[43]
Vlček M, Streck M, Čižmář I,et al.Indikace resekcí hlavic radia v traumatologii [Indication for Radial Head Resection in Traumatology][J]. Acta Chir Orthop Traumatol Cech,2018,85(3):186-193.
[44]
Goto K, Naito K, Sugiyama Y,et al.Corrective Osteotomy with Autogenous Bone Graft with Callus after Malunion of Distal Radius Fracture[J]. J Hand Surg Asian Pac Vol,2018,23(4):571-576.
[45]
Perna F, Pilla F, Nanni M,et al.Two-stage surgical treatment for septic non-union of the forearm[J]. World J Orthop,2017,8(6):471-477.
[46]
Kasilingam V, Patel R, Othieno-P'otonya K,et al.Challenges Faced in the Management of Radial Shaft Nonunion and Implant Failure on a Background of Distal Radius Malunion[J]. J Hand Microsurg,2018,10(3):180-181.
[47]
Boussakri H, Elibrahimi A, Bachiri M,et al.Nonunion of Fractures of the Ulna and Radius Diaphyses: Clinical and Radiological Results of Surgical Treatment[J]. Malays Orthop J,2016,10(2):27-34.
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