1 |
Nicholas N. Being digital[M]. New York: Random House, 1996.
|
2 |
Slack WV. Cybermedicine: how computing empowers doctors and patients for better health care[M]. San Francisco:Jossey-Bass Inc. Publishers, 1997.
|
3 |
Goldsmith JC. Digital medicine: implications for healthcare leaders[M]. Chicago:Health Administration Press, 2003.
|
4 |
Topol E. The creative destruction of medicine: how the digital revolution will create better health care[M]. New York: Basic Books, 2012.
|
5 |
Lasser MS, Doscher M, Keehn A, et al. Virtual surgical planning: a novel aid to robot-assisted laparoscopic partial nephrectomy[J]. J Endourol,2012, 26(10):1372-1379.
|
6 |
Ukimura O, Gill IS. Imaging-assisted endoscopic surgery: cleveland clinic experience[J]. J Endourol, 2008, 22(4):803-810.
|
7 |
Ukimura O, Nakamoto M, Gill IS. Three-dimensional reconstruction of renovascular-tumor anatomy to facilitate zero-ischemia partial nephrectomy[J]. Eur Urol, 2012, 61(1):211-217.
|
8 |
Xu H, Li X, Zhang Z, et al. Visualization of the left extraperitoneal space and spatial relationships to its related spaces by the visible human project[J]. PLoS ONE,2011,6(11): 27166-27166.
|
9 |
Wu Y, Zhang SX, Luo N, et al. Creation of the digital three-dimensional model of the prostate and its adjacent structures based on Chinese visible human[J]. Surg Radiol Anat,2010,32(7):629-635.
|
10 |
Uhl JF, Park JS, Chung MS, et al. Three-dimensional reconstruction of urogenital tract from visible korean human[J]. Anatomical Record, 2010, 288(8):893-899.
|
11 |
Simmons MN, Fergany AF, Campbell SC. Effect of parenchymal volume preservation on kidney function after partial nephrectomy[J]. J Urol,2011,186(2): 405-410.
|
12 |
Gorbatiy V, Iremashvili V, Castro A, et al. Renal volumetric analysis: a new paradigm in renal mass treatment assessment[J]. J Endourol,2013, 27(3): 361-365.
|
13 |
Scott L, Andre L, Castro A, et al. Renal tumor contact surface area: a novel CT-parameter for predicting peri-operative outcomes using advanced image-processing software[J]. J Urol,2013,189(4):258-260.
|
14 |
Durso TA, Carnell J, Turk TT, et al. Three-dimensional reconstruction volume: a novel method for volume measurement in kidney cancer[J]. Journal of Endourology, 2014, 28(6):745-750.
|
15 |
Ng CK, Gill IS, Patil MB, et al. Anatomic renal artery branch microdissection to facilitate zero-ischemia partial nephrectomy[J].Eur Urol,2012,61(1):67-74.
|
16 |
Ukimura O, Gill IS. Image-fusion, augmented reality, and predictive surgical navigation[J]. Urol Clin North Am,2009,36(2):115-123.
|
17 |
Teber D, Guven S, Simpfendörfer T, et al. Augmented reality: a new tool to improve surgical accuracy during laparoscopic partial nephrectomy? preliminary in vitro and in vivo results[J]. European Urology, 2009, 56(2):332-338.
|
18 |
Lasser MS, Doscher M, Keehn A, et al. Virtual surgical planning: a novel aid to robot-assisted laparoscopic partial nephrectomy[J]. J Endourol,2012,26(10):1372-1379.
|
19 |
Ukimura O, Aron M, Nakamoto M, et al. Three-dimensional surgical navigation model with Tile-pro diaplay during robotic radical prostatectomy[J]. J Endourol. 2014, 28(6):625-630.
|
20 |
DW Wang, B Zhang, XB Yuan, et al. Preoperative planning and real-time assisted navigation by three-dimensional individual digital model in partial nephrectomy with three-dimensional laparoscopic system[J]. International Journal of Computer Assisted Radiology and Surgery, 2015, 10(9):1461-1468.
|
21 |
王东文,张彬,原小斌,等. 基于个体化三维仿真模型的手术规划导引技术在后腹腔镜肾上腺嗜铬细胞瘤切除术中的应用[J]. 中国医学影像技术,2015, 31(4):581-585.
|
22 |
罗靖,王东文,汤元杰,等. 肾脏肿瘤CT三维重建体积与病理体积的差异研究[J]. 现代泌尿外科杂志,2015,20(7):457-459.
|
23 |
张旭辉,张彬,王东文. 虚拟现实技术在泌尿外科内镜诊疗中的应用现状[J]. 中国内镜杂志,2015,21(9):966-970.
|
24 |
王东文,张彬. "读片时代"向"阅图时代"变革的新起点——腹膜后腔三维数字模型的建立及应用[J/CD].中华腔镜泌尿外科杂志(电子版),2014,8(1):1-4.
|
25 |
刘晨,王东文,原小斌,等. 个体化三维数字模型在单纯多发性肾囊肿手术治疗中的应用体会[J/CD]. 中华临床医师杂志(电子版), 2014,8(12):9-12.
|
26 |
张彬,王东文. 腹膜后及盆腔三维数字化模型的构建与应用[J]. 微创泌尿外科杂志,2012,1(1):46-49.
|
27 |
张彬,王东文. 基于CT的腹膜后腔个体化三维数字模型建立初探[J]. 中国当代医药,2012,19(9):15-17.
|
28 |
王东文,张彬,张旭辉,等. 基于CT胶片的个体化腹膜后腔3D数字模型的建立及临床应用研究[J]. 中华泌尿外科杂志,2012,33(11):810-813.
|
29 |
Robb RA. Virtual endoscopy:development and evaluation using the visible human datasets[J]. Compute Med Imaging Graph, 2000, 24(3):133-151.
|
30 |
Stenzl A, Frank R, Eder R, et al. 3-Dimensional computerized tomography and virtual reality endoscopy of the reconstructed lower urinary tract[J]. The Journal of Urology, 1998, 159(3):741-746.
|
31 |
Takebayashi S, Hosaka M, Kubota K, el al. Computerized tomography nephroscopic images of renal pelvic carcinoma[J]. The Journal of Urology, 1999, 162(2):315-318.
|
32 |
Takebayashi S, Hosaka M, Kubota Y, et al. Computerized tomographic ureteroscopy for diagnosing ureteral tumors[J]. The Journal of Urology, 2000, 163(1):42-46.
|
33 |
Liatsikos EN, Siablis D, Kagadis GC, et al. Virtual endoscopy: navigation within pelvicaliceal system[J]. J Endourol, 2005, 19(1):37-40.
|
34 |
Dalela D, Gupta A, Ahmed S, et al. Three-dimensional synchronized multidirectional renal pyelo-angiography: a new imaging concept to facilitate percutaneous nephrolithotomy in technically challenging cases[J]. J Endourol,2009, 23(12):1937-1939.
|
35 |
Patel U, Walkden RM, Ghani KR, et al. Three-dimensional CT pyelography for planning of percutaneous nephrostolithotomy: accuracy of stone measurement, stone depiction and pelvicalyceal reconstruction[J]. European radiology, 2009, 19(5):1280-1288.
|
36 |
Rassweiler JJ, Michael Müller, Fangerau M, et al. iPad-assisted percutaneous access to the kidney using marker-based navigation: initial clinical experience[J]. European Urology, 2012, 61(3):628-631.
|
37 |
LuschAchim, Bucurphilip L, Menhadjiashleigh D, et al. Evaluation of the impact of three-dimensional vision on laparoscopic performance[J]. Journal of Endourology, 2014, 28(2):261-266.
|
38 |
Cicione A, Autorino R, Breda A, et al. Three-dimensional vs standard laparoscopy: comparative assessment using a validated program for laparoscopic urologic skills[J]. Urology, 2013, 82(6):1444-1450.
|
39 |
Buchs NC, Volonte F, Pugin F, et al. Three-dimensional laparoscopy: a step toward advanced surgical navigation[J]. Surgical Endoscopy, 2013, 27(2):692-693.
|
40 |
Niikura T, Sugimoto M, Lee SY, et al. Tactile surgical navigation system for complex acetabular fracture surgery[J]. Orthopedics,2014,37(4):237-242.
|
41 |
Pálháazi P, Nemes B, Swennen G, et al. Three-dimensional simulation of the nasoalveolar cleft defect[J]. Cleft Palate Craniofac J,2014,51(5):593-596.
|
42 |
Silberstein JL, Maddox MM, Dorsey P, et al. Physical models of renal malignancies using standard cross-sectional imaging and 3-dimensional printers: a pilot study[J]. Urology,2014,84(2):268-272.
|
43 |
Zhang Y, Ge HW, Li NC, et al. Evaluation of three-dimensional printing for laparoscopic partial nephrectomy of renal tumors: a preliminary report[J]. World J Urol,2015,34(4):533-537.
|
44 |
Komai Y, Sugimoto M, Gotohda N, et al. Patient-specific 3-dimensional printed kidney designed for " 4d" surgical navigation: a novel aid to facilitate minimally invasive off-clamp partial nephrectomy in complex tumor cases[J]. Urology,2016,91(2):226-233.
|