[1] Briffa N, Pearce R, Hill A M, et al. Outcomes of acetabular fracture fixation with ten years'follow-up[J]. J Bone Joint Surg Br, 2011, 93(2): 229-236.
[2] 中华医学会骨科学分会创伤骨科学组, 中华医学会骨科学分会外固定与肢体重建学组, 中华医学会创伤学分会, 等. 中国骨盆骨折微创手术治疗指南(2021)[J]. 中华创伤骨科杂志, 2021, 23(1): 4-14.
[3] 王钢. 骨盆骨折的诊治现状与进展[J]. 中华创伤骨科杂志, 2020, 22(6): 473-474.
[4] Schweitzer D, Zylberberg A, Cordova M, et al. Closed reduction and iliosacral percutaneous fixation of unstable pelvic ring fractures[J]. Injury, 2008, 39(8): 869-874.
[5] 曹奇勇, 赵春鹏, 肖鸿鹄, 等. 手术治疗老年骨盆骨折的效果分析[J]. 中华创伤骨科杂志, 2024, 26(3): 222-227.
[6] Halawi M J. Pelvic ring injuries: emergency assessment and management[J]. J Clin Orthop Trauma, 2015, 6(4): 252-258.
[7] 陈栋, 朱峰, 龚杰, 等. 改良Stoppa术治疗骨盆髋臼骨折围术期指标及术后血清应激指标观察[J]. 实用临床医药杂志, 2021, 25 (8): 92-95,100.
[8] 贺杰, 赵晶鑫, 曹文豪, 等. 骨盆骨折微创复位技术的研究进展[J]. 中华创伤骨科杂志, 2025, 27(3): 270-276.
[9] Wu Y, Chen H, Zhou X F, et al. Lateral compression type 2 pelvic fractures-a clinical study of fracture displacement measurement and closed reduction[J]. Orthop Surg, 2022, 14(10): 2545-2552.
[10] 何立, 陈华, 易成腊. 骨盆解锁复位架联合智能可视化系统辅助复位与固定治疗Tile C1型骨盆骨折[J]. 中华骨科杂志, 2023, 43(19): 1308-1315.
[11] Zhang J Z, Zhang L C, Li C B, et al. Clinical guidelines for the diagnosis and treatment of fragility fractures of the pelvis[J]. Orthop Surg, 2023, 15(9): 2195-2212.
[12] 曹奇勇, 赵春鹏, 卑明健, 等. 智能化骨盆骨折复位手术导航定位系统在骨盆骨折治疗中的初步应用[J]. 中华骨科杂志, 2023, 43(19): 1293-1299.
[13] 唐佩福. 骨盆骨折手术机器人研究的现状、挑战与展望[J]. 中华骨科杂志, 2023, 43(19): 1257-1260.
[14] 郭月超, 安文, 张玉舰, 等. 不同入路切开复位内固定术对髋臼骨折愈合及预后的影响[J]. 实用骨科杂志, 2024, 30(6): 536-538.
[15] Tannast M, Keel M J B, Siebenrock K A, et al. Open reduction and internal fixation of acetabular fractures using the modified Stoppa approach[J]. JBJS Essent Surg Tech, 2019, 9(1): e3.
[16] Felix B, Kalatar S B, Moatz B, et al. Augmented reality spine surgery navigation: increasing pedicle screw insertion accuracy for both open and minimally invasive spine surgeries[J]. Spine, 2022, 47(12): 865-872.
[17] Gurses M E, Gökalp E, Spatz J, et al. Augmented reality in cranial surgery: surgical planning and maximal safety in resection of brain tumors via head-mounted fiber tractography[J]. Clin Neurol Neurosurg, 2025, 251: 108820.
[18] Milgram P, Kishino F. A taxonomy of mixed reality visual displays[J]. IEICE Trans Inf Syst, 1994, 12(12): 1321-1329.
[19] Calem D B, Lubiatowski P, Trenhaile S, et al. Mixed reality applications in upper extremity surgery: the future is now[J]. EFORT Open Rev, 2024, 9(11): 1034-1046.
[20] Nicola S, Stoicu-Tivadar L. Mixed reality supporting modern medical education[J]. Stud Health Technol Inform, 2018, 255: 242-246.
[21] Smith R T, Clarke T J, Mayer W, et al. Mixed reality interaction and presentation techniques for medical visualisations[J]. Adv Exp Med Biol, 2020, 1260: 123-139.
[22] 段伟东, 董家鸿. 精准外科理念的哲学思考[J]. 医学与哲学, 2016, 37(8A): 19-22.
[23] Martin-Gomez A, Li H W, Song T Y, et al. STTAR: surgical Tool tracking using off-the-shelf augmented reality head-mounted displays[J]. IEEE Trans Vis Comput Graph, 2024, 30(7): 3578-3593.
[24] Li H W, Yang Y X, Ji Y Q, et al. 3D slicer-AR-bridge: 3D slicer AR connection for medical image visualization and interaction with AR-HMD[C]//2023 IEEE International Symposium on Mixed and Augmented Reality Adjunct (ISMAR-Adjunct), Sydney: IEEE, 2023: 399-404.
[25] Li H W, Yan W Q, Liu D, et al. EVD surgical guidance with retro-reflective tool tracking and spatial reconstruction using head-mounted augmented reality device[J]. IEEE Trans Vis Comput Graph, 2025, 31(9): 6497-6511.[26] Thomas G W, Johns B D, Kho J Y, et al. The validity and reliability of a hybrid reality simulator for wire navigation in orthopedic surgery[J]. IEEE Trans Hum Mach Syst, 2015, 45(1): 119-125.
[27] Tu P X, Qin C X, Guo Y, et al. Ultrasound image guided and mixed reality-based surgical system with real-time soft tissue deformation computing for robotic cervical pedicle screw placement[J]. IEEE Trans Biomed Eng, 2022, 69(8): 2593-2603.
[28] Jurgas A, Trojak M, Stanuch M, et al. Markerless registration and visualization of volumetric medical data for enhanced surgical precision using head-mounted displays[C]//2025 IEEE Conference on Virtual Reality and 3D User Interfaces Abstracts and Workshops (VRW), Saint Malo: IEEE, 2025: 925-930. |