医学文献参考格式整理:期刊、作者、题名、卷期、页码

本文提供医学文献参考格式整理方法,包括期刊、作者、题名、卷期、页码等信息,并提供示例,方便读者进行文献整理。

格式:

(期刊)作者.题名(英文第1个单词首字母大写,其余小写)[J].刊名(实词首字母大写),年,卷(期):起止页码.

示例:

Hao Lina,Xie Qiang,Li Lanting,et al. Catalytical preparation of mesoporous coal-based activated carbon by nitrate copper and nitrate manganese[J]. Carbon Techniques,2008,27(4):26-29(in Chinese) .

整理后的参考文献:

  1. Gautschi O, Schatlo B, Schaller K, et al. Clinically relevant complications related to pedicle screw placement in thoracolumbar surgery and their management: a literature review of 35,630 pedicle screws[J]. Focus, 2011, 31(4): E8. https://doi.org/10.3171/2011.7.FOCUS11168

  2. Elmi-Terander A, Burstrom G, Nachabe R, et al. Pedicle Screw Placement Using Augmented Reality Surgical Navigation With Intraoperative 3D Imaging: A First In-Human Prospective Cohort Study[J]. Spine (Phila Pa 1976), 2019, 44: 517-525. https://doi.org/10.1097/BRS.0000000000002876

  3. Dibble CF, Molina CA. Device profile of the XVision-spine (XVS) augmented-reality surgical navigation system: overview of its safety and efficacy[J]. Expert Review of Medical Devices, 2020, 1-7. https://doi.org/10.1080/17434440.2021.1865795

  4. Burstrom G, Nachabe R, Persson O, et al. Augmented and Virtual Reality Instrument Tracking for Minimally Invasive Spine Surgery: A Feasibility and Accuracy Study[J]. Spine (Phila Pa 1976), 2019, 44: 1097-1104. https://doi.org/10.1097/BRS.0000000000003006

  5. Heinrich F, Schwenderling L, Joeres F, et al. Comparison of Augmented Reality Display Techniques to Support Medical Needle Insertion[J]. IEEE Transactions on Visualization and Computer Graphics, 2020, 26: 3568-3575. https://doi.org/10.1109/TVCG.2020.3023637

  6. Mahvash M, Besharati Tabrizi L. A novel augmented reality system of image projection for image-guided neurosurgery[J]. Acta Neurochirurgica, 2013, 155: 943-947. https://doi.org/10.1007/s00701-013-1668-2

  7. Xu B, Yang Z, Jiang S, et al. Design and Validation of a Spinal Surgical Navigation System Based on Spatial Augmented Reality[J]. Spine (Phila Pa 1976), 2020, 45: E1627-E1633. https://doi.org/10.1097/BRS.0000000000003666

  8. Liao H, Inomata T, Sakuma I, et al. 3-D augmented reality for MRI-guided surgery using integral videography autostereoscopic image overlay[J]. IEEE Transactions on Biomedical Engineering, 2010, 57: 1476-1486. https://doi.org/10.1109/TBME.2010.2040278

  9. Liao H, Hata N, Nakajima S, et al. Surgical navigation by autostereoscopic image overlay of integral videography[J]. IEEE Transactions on Information Technology in Biomedicine, 2004, 8: 114-121. https://doi.org/10.1109/titb.2004.826734

  10. Silva SLAd, Tommaselli AMG, Artero AO. Utilização De Alvos Codificados Do Tipo Aruco Na Automação Do Processo De Calibração De Câmaras[J]. Boletim de Ciências Geodésicas, 2014, 20: 626-646. https://doi.org/10.1590/s1982-21702014000300036

  11. Bacik J, Durovsky F, Fedor P, et al. Autonomous flying with quadrocopter using fuzzy control and ArUco markers[J]. Intelligent Service Robotics, 2017, 10: 185-194. https://doi.org/10.1007/s11370-017-0219-8

  12. Chui H, Rangarajan A. A new point matching algorithm for non-rigid registration[J]. Computer Vision and Image Understanding, 2003, 89: 114-141. https://doi.org/10.1016/s1077-3142(03)00009-2

医学文献参考格式整理:期刊、作者、题名、卷期、页码

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