1. |
邵兵, 郑晶晶, 李思阳. 达芬奇机器人联合西门子 Artis Zeego“一站式” Hybrid 手术在肺磨玻璃样病变术前定位中临床应用及效果. 创伤与急危重病医学, 2018, 6(1): 18-24.
|
2. |
Saito H, Minamiya Y, Matsuzaki I, et al. Indication for reoperative localization of small peripheral pulmonary nodules in thoracoscopic surgery. J Thorac Cardiovasc Sur, 2002, 124(6): 1198-1202.
|
3. |
何锋, 林铿强, 许德新. 医用 ZT 胶在肺部结节病灶胸腔镜术前定位的应用. 临床肺科杂志, 2014, 19(10): 1880-1882.
|
4. |
Yun S, Kang H, Park S, et al. Diagnostic accuracy and complications of CT-guided core needle lung biopsy of solid and part-solid lesions. Br J Radiol, 2018, 91(1088): 20170946.
|
5. |
Sakatani T, Amano Y, Sato J, et al. Air embolism after CT-guided percutaneous lung biopsy. Jpn J Clin Oncol, 2018, 48(7): 699-700.
|
6. |
Monnin-Bares V, Chassagnon G, Vernhet-Kovacsik H, et al. Systemic air embolism depicted on systematic whole thoracic CT acquisition after percutaneous lung biopsy: Incidence and risk factors. Eur J Radiol, 2019, 117: 26-32.
|
7. |
Su TH, Fan YF, Jin L, et al. CT-guided localization of small pulmonary nodules using adjacent microcoil implantation prior to video-assisted thoracoscopic surgical resection. Eur Radiol, 2015, 25(9): 2627-2633.
|
8. |
Velasquez R, Martin A, Abu Hishmeh M, et al. Placement of markers to assist minimally invasive resection of peripheral lung lesions. Ann Transl Med, 2019, 7(15): 360.
|
9. |
张瑞杰, 付向宁. 肺部磨玻璃结节单孔胸腔镜术前 CT 引导下贝朗胶联合亚甲蓝定位技术的应用. 中国内镜杂志, 2018, 24(11): 93-96.
|
10. |
Sato M, Omasa M, Chen F, et al. Use of virtual assisted lung mapping (VAL-MAP), a bronchoscopic multispot dye-marking technique using virtual images, for precise navigation of thoracoscopic sublobar lung resection. J Thorac Cardiovasc Surg, 2014, 147(6): 1813-1819.
|
11. |
Awais O, Reidy MR, Mehta K, et al. Electromagnetic navigation bronchoscopy-guided dye marking for thoracoscopic resection of pulmonary nodules. Ann Thorac Surg, 2016, 102(1): 223-229.
|
12. |
Arias S, Lee H, Semaan R, et al. Use of electromagnetic navigational transthoracic needle aspiration (E-TTNA) for sampling of lung nodules. J Vis Exp, 2015, (99): e52723.
|
13. |
van't Westeinde SC, de Koning HJ, Xu DM, et al. How to deal with incidentally detected pulmonary nodules less than 10mm in size on CT in a healthy person. Lung Cancer, 2008, 60(2): 151-159.
|
14. |
单立群, 胡坚, 李明东, 等. 胸腔镜在肺部微小结节诊治中的应用. 中国肺癌杂志, 2013, 16(7): 369-372.
|
15. |
Shan L, Hu J, Li M, et al. Applications of video-assisted thoracic surgery for the diagnosis and treatment of patients with small pulmonary nodules. Zhongguo Fei Ai Za Zhi, 2013, 16(7): 369-372.
|
16. |
Migliore M, Fornito M, Palazzolo M, et al. Ground glass opacities management in the lung cancer screening era. Ann Transl Med, 2018, 6(5): 90.
|
17. |
Siu ICH, Li Z, Ng CSH. Latest technology in minimally invasive thoracic surgery. Ann Transl Med, 2019, 7(2): 35.
|
18. |
Zheng R, Devin CL, O'Malley T, et al. Surgical management of growing teratoma syndrome: robotic-assisted thoracoscopic resection of mediastinal teratoma. Surg Endosc, 2019. doi: 10.1007/s00464-019-07177-z. [Epub ahead of print].
|
19. |
Ilonen IK, Räsänen JV, Knuuttila A, et al. Anatomic thoracoscopic lung resection for non-small cell lung cancer in stageⅠis associated with less morbidity and shorter hospitalization than thoracotomy. Acta Oncol, 2011, 50(7): 1126-1132.
|
20. |
Odaka M, Noda Y, Tsukamoto Y, et al. Impact of the introduction of thoracoscopic lobectomy for non-small cell lung cancer: a propensity score-matched analysis. J Thorac Dis, 2018, 10(8): 4985-4993.
|
21. |
Laursen LØ, Petersen RH, Hansen HJ, et al. Video-assisted thoracoscopic surgery lobectomy for lung cancer is associated with a lower 30-day morbidity compared with lobectomy by thoracotomy. Eur J Cardiothorac Surg, 2016, 49(3): 870-875.
|