1. |
Zheng R, Zhang S, Zeng H, et al. Cancer incidence and mortality in China, 2016. Journal of the National Cancer Center, 2022, 2(1): 1-9.
|
2. |
Xia C, Dong X, Li H, et al. Cancer statistics in China and United States, 2022: profiles, trends, and determinants. Chin Med J (Engl), 2022, 135(5): 584-590.
|
3. |
Blay JY, Kang YK, Nishida T, et al. Gastrointestinal stromal tumours. Nat Rev Dis Primers, 2021, 7(1): 22.
|
4. |
Guillou PJ, Quirke P, Thorpe H, et al. Short-term endpoints of conventional versus laparoscopic-assisted surgery in patients with colorectal cancer (MRC CLASICC trial): multicentre, randomised controlled trial. Lancet, 2005, 365(9472): 1718-1726.
|
5. |
Franks PJ, Bosanquet N, Thorpe H, et al. Short-term costs of conventional vs laparoscopic assisted surgery in patients with colorectal cancer (MRC CLASICC trial). Br J Cancer, 2006, 95(1): 6-12.
|
6. |
Jayne DG, Thorpe HC, Copeland J, et al. Five-year follow-up of the medical research council CLASICC trial of laparoscopically assisted versus open surgery for colorectal cancer. Br J Surg, 2010, 97(11): 1638-1645.
|
7. |
Green BL, Marshall HC, Collinson F, et al. Long-term follow-up of the medical research council CLASICC trial of conventional versus laparoscopically assisted resection in colorectal cancer. Br J Surg, 2013, 100(1): 75-82.
|
8. |
Reibetanz J, Germer CT. Laparoscopic vs open surgery in colorectal cancer: the 10-year results of the CLASICC trial. Chirurg, 2013, 84(3): 234.
|
9. |
Lee HJ, Hyung WJ, Yang HK, et al. Short-term Outcomes of a multicenter randomized controlled trial comparing laparoscopic distal gastrectomy with D2 lymphadenectomy to open distal gastrectomy for locally advanced gastric cancer (KLASS-02-RCT). Ann Surg, 2019, 270(6): 983-991.
|
10. |
Wong J. Effect of laparoscopic vs. open distal gastrectomy on 3-year disease free survival in patients with locally advanced gastric cancer: commentary on the class-01 randomized clinical trial. Transl Gastroenterol Hepatol, 2019, 4: 78.
|
11. |
Yu J, Huang C, Sun Y, et al. Effect of laparoscopic vs open distal gastrectomy on 3-year disease-free survival in patients with locally advanced gastric cancer: The CLASS-01 randomized clinical trial. JAMA, 2019, 321(20): 1983-1992.
|
12. |
Hyung WJ, Yang HK, Park YK, et al. Long-term outcomes of laparoscopic distal gastrectomy for locally advanced gastric cancer: The KLASS-02-RCT randomized clinical trial. J Clin Oncol, 2020, 8(28): 3304-3313.
|
13. |
Park JW, Kang SB, Hao J, et al. Open versus laparoscopic surgery for mid or low rectal cancer after neoadjuvant chemoradiotherapy (COREAN trial): 10-year follow-up of an open-label, non-inferiority, randomised controlled trial. Lancet Gastroenterol Hepatol, 2021, 6(7): 569-577.
|
14. |
Huang C, Liu H, Hu Y, et al. Laparoscopic vs open distal gastrectomy for locally advanced gastric cancer: five-year outcomes from the CLASS-01 randomized clinical trial. JAMA Surg, 2022, 157(1): 9-17.
|
15. |
Son SY, Hur H, Hyung WJ, et al. Laparoscopic vs open distal gastrectomy for locally advanced gastric cancer: 5-year outcomes of the KLASS-02 randomized clinical trial. JAMA Surg, 2022, 157(10): 879-886.
|
16. |
Jun KH. Preoperative and intraoperative gastric tumor localization. J Minim Invasive Surg, 2021, 24(2): 66-67.
|
17. |
Nasseri Y, Langenfeld SJ. Imaging for colorectal cancer. Surg Clin North Am, 2017, 97(3): 503-513.
|
18. |
Wang Y, Zhang L, Yang Y, et al. Progress of gastric cancer surgery in the era of precision medicine. Int J Biol Sci, 2021, 17(4): 1041-1049.
|
19. |
焦文云, 曹新广, 刘靓, 等. 多层螺旋CT与超声胃镜在贲门部及胃底部间质瘤诊断中的比较. 实用肿瘤杂志, 2022, 37(3): 258-262.
|
20. |
Kanazawa H, Utano K, Kijima S, et al. Combined assessment using optical colonoscopy and computed tomographic colonography improves the determination of tumor location and invasion depth. Asian J Endosc Surg, 2017, 10(1): 28-34.
|
21. |
Borggreve AS, Goense L, Brenkman HJF, et al. Imaging strategies in the management of gastric cancer: current role and future potential of MRI. Br J Radiol, 2019, 92(1097): 20181044.
|
22. |
Renzulli M, Clemente A, Spinelli D, et al. Gastric cancer staging: is it time for magnetic resonance imaging? Cancers (Basel), 2020, 12(6): 1402.
|
23. |
Horvat N, Rocha CCT, Oliveira BO, et al. MRI of rectal cancer: tumor staging, imaging techniques, and management. Radiographics, 2019, 39(2): 367-387.
|
24. |
Krdzalic J, Beets-Tan RGH, Engelen SME, et al. MRI predicts increased eligibility for sphincter preservation after CRT in low rectal cancer. Radiother Oncol, 2020, 145: 223-228.
|
25. |
Mocellin S, Pasquali S. Diagnostic accuracy of endoscopic ultrasonography (EUS) for the preoperative locoregional staging of primary gastric cancer. Cochrane Database Syst Rev, 2015, 2015(2): CD009944.
|
26. |
Yao K, Uedo N, Kamada T, et al. Guidelines for endoscopic diagnosis of early gastric cancer. Dig Endosc, 2020, 32(5): 663-698.
|
27. |
Kuroki K, Oka S, Tanaka S, et al. Clinical significance of endoscopic ultrasonography in diagnosing invasion depth of early gastric cancer prior to endoscopic submucosal dissection. Gastric Cancer, 2021, 24(1): 145-155.
|
28. |
Acuna SA, Elmi M, Shah PS, et al. Preoperative localization of colorectal cancer: a systematic review and meta-analysis. Surg Endosc, 2017, 31(6): 2366-2379.
|
29. |
Hershorn O, Park J, Singh H, et al. Rates and predictors of repeat preoperative endoscopy for elective colorectal resections: how can we avoid repeated procedures? Surg Endosc, 2022, 36(6): 4115-4123.
|
30. |
Saleh F, Abbasi TA, Cleghorn M, et al. Preoperative endoscopy localization error rate in patients with colorectal cancer. Surgical Endoscopy, 2015, 29(9): 2569-2575.
|
31. |
张红, 樊超强, 叶少松, 等. 单气囊小肠镜及小肠CT造影诊断小肠间质瘤的价值对比. 西部医学, 2022, 34(7): 991-995.
|
32. |
马栋, 汪红红, 周永宁. 超声内镜诊断胃间质瘤与术后病理的一致性观察及其诊断准确率的影响因素分析. 中国内镜杂志, 2021, 27(10): 40-45.
|
33. |
Jeong SH, Seo KW, Min JS. Intraoperative tumor localization of early gastric cancers. J Gastric Cancer, 2021, 21(1): 4-15.
|
34. |
Barberio M, Pizzicannella M, Spota A, et al. Preoperative endoscopic marking of the gastrointestinal tract using fluorescence imaging: submucosal indocyanine green tattooing versus a novel fluorescent over-the-scope clip in a survival experimental study. Surg Endosc, 2021, 35(9): 5115-5123.
|
35. |
Narihiro S, Yoshida M, Ohdaira H, et al. Effectiveness and safety of tumor site marking with near-infrared fluorescent clips in colorectal laparoscopic surgery: A case series study. Int J Surg, 2020, 80: 74-78.
|
36. |
Lee DW, Sohn DK, Han KS, et al. Promising novel technique for tumor localization in laparoscopic colorectal surgery using indocyanine green-coated endoscopic clips. Dis Colon Rectum, 2021, 4(1): e9-e13. e9-e13.
|
37. |
Kitagawa T, Ryu S, Goto K, et al. Preoperative fluorescent clip marking vs. India ink tattooing for tumor identification during colorectal surgery. Int J Colorectal Dis, 2023, 38(1): 204.
|
38. |
Kim SH, Keum B, Jeen YT, et al. Efficacy of the magnetic marking clip method for preoperative localization of GI tumor. Gastrointestinal Endoscopy, 2016, 83(2): 468-469.
|
39. |
吝怡, 樊茜, 马佳, 等. 基于磁示踪技术标记定位结直肠肿瘤的实验研究. 中华消化内镜杂志, 2020, 37(7): 499-502.
|
40. |
任牡丹, 马锋, 孙学军, 等. 胃肠道病变磁体预标记辅助腹腔镜定位术初探. 中华消化内镜杂志, 2019, 36(11): 821-825.
|
41. |
杨松, 郝朗松, 李红灵, 等. 内镜下钕铁硼磁环预标记结直肠肿瘤辅助腹腔镜定位的应用价值(含视频). 中华消化内镜杂志, 2023, 40(4): 276-280.
|
42. |
Yamazaki Y, Kanaji S, Takiguchi G, et al. Preoperative endoscopic tattooing using India ink to determine the resection margins during totally laparoscopic distal gastrectomy for gastric cancer. Surgery Today, 2021, 51(1): 111-117.
|
43. |
Tokuhara T, Nakata E, Tenjo T, et al. A novel option for preoperative endoscopic marking with India ink in totally laparoscopic distal gastrectomy for gastric cancer: A useful technique considering the morphological characteristics of the stomach. Mol Clin Oncol, 2017, 6(4): 483-486.
|
44. |
Matsuda T, Iwasaki T, Hirata K, et al. Simple and reliable method for tumor localization during totally laparoscopic gastrectomy: intraoperative laparoscopic ultrasonography combined with tattooing. Gastric Cancer, 2017, 20(3): 548-552.
|
45. |
Ponsky JL, King JF. Endoscopic marking of colonic lesions. Gastrointest Endosc, 1975, 22(1): 42-43.
|
46. |
Park JW, Sohn DK, Hong CW, et al. The usefulness of preoperative colonoscopic tattooing using a saline test injection method with prepackaged sterile India ink for localization in laparoscopic colorectal surgery. Surg Endosc, 2008, 22(2): 501-505.
|
47. |
陈鸿源, 王亚楠, 薛芳沁, 等. 腹腔镜下静脉输液针注射法纳米碳淋巴示踪技术在胃癌根治术中的应用. 中华胃肠外科杂志, 2014(5): 457-460.
|
48. |
彭亦凡, 姚云峰, 王林, 等. 纳米碳示踪剂标记前哨淋巴结在结肠癌根治术中的应用. 中华普通外科杂志, 2013, 28(6): 409-412.
|
49. |
Wang Q, Zhang C, Shen G, et al. Fluorescent carbon dots as an efficient siRNA nanocarrier for its interference therapy in gastric cancer cells. J Nanobiotechnology, 2014, 2: 58.
|
50. |
余仙, 谭镇宗, 孙浩, 等. 纳米碳在腹腔镜胃癌根治术淋巴结示踪中的应用. 重庆医学, 2022, 51(8): 1371-1374.
|
51. |
蔡耀庆, 梁月祥, 余书勇, 等. 胃癌术中纳米碳分区示踪对提高淋巴结分拣数的临床价值. 中华胃肠外科杂志, 2020, 23(10): 984-989.
|
52. |
Liu P, Tan J, Tan Q, et al. Application of carbon nanoparticles in tracing lymph nodes and locating tumors in colorectal cancer: A Concise review. Int J Nanomedicine, 2020, 15: 9671-9681.
|
53. |
Wang A, Bian C, Zhang P, et al. Nano-carbon guided robotic local resection for colonic laterally spreading tumour—A video vignette. Colorectal Dis, 2023, 25(8): 1724-1725.
|
54. |
Lee SJ, Sohn DK, Han KS, et al. Preoperative tattooing using indocyanine green in laparoscopic colorectal surgery. Ann Coloproctol, 2018, 34(4): 206-211.
|
55. |
Ushimaru Y, Omori T, Fujiwara Y, et al. The feasibility and safety of preoperative fluorescence marking with indocyanine green (ICG) in laparoscopic gastrectomy for gastric cancer. J Gastrointest Surg, 2019, 23(3): 468-476.
|
56. |
Lee SH, Kim DY, Oh SY, et al. Preoperative localization of early colorectal cancer or a malignant polyp by using the patient’s own blood. Ann Coloproctol, 2014, 30(3): 115-117.
|
57. |
蔡平, 戴晓宇, 李坚炯. 自体血标记定位法在腹腔镜结直肠手术中的应用效果. 中国内镜杂志, 2020, 26(3): 73-76.
|
58. |
Nguyen NH, Nguyen TH, Nguyen CL, et al. Autologous blood for preoperative colorectal Tumor’s localization: A Vietnamese preliminary experience. Ann Med Surg (Lond), 2022, 75: 103345.
|
59. |
张海斌, 张顺, 蒋小华, 等. 术前内镜下自体血标记定位应用于腹腔镜结直肠肿瘤手术的临床效果分析. 中华消化内镜杂志, 2022, 39(11): 925-927.
|
60. |
Ris F, Liot E, Buchs NC, et al. Multicentre phaseⅡ trial of near-infrared imaging in elective colorectal surgery. Br J Surg, 2018, 105(10): 1359-1367.
|
61. |
中华医学会外科学分会结直肠外科学组, 吲哚菁绿近红外光成像在腹腔镜结直肠癌手术中应用中国专家共识(2021版). 中国实用外科杂志, 2021. 41(10): 1098-1103, 1110.
|
62. |
中华医学会外科学分会胃肠外科学组, 吲哚菁绿近红外光成像在腹腔镜胃癌根治术中应用中国专家共识(2019版). 中国实用外科杂志, 2020. 40(2): 139-144.
|
63. |
Achterberg FB, Sibinga Mulder BG, Meijer RPJ, et al. Real-time surgical margin assessment using ICG-fluorescence during laparoscopic and robot-assisted resections of colorectal liver metastases. Ann Transl Med, 2020, 8(21): 1448.
|
64. |
Li H, Kim Y, Jung H, et al. Near-infrared (NIR) fluorescence-emitting small organic molecules for cancer imaging and therapy. Chemical Society Reviews, 2022, 51(21): 8957-9008.
|
65. |
Shao J, Zheng X, Feng L, et al. Targeting fluorescence imaging of RGD-modified indocyanine green micelles on gastric cancer. Front Bioeng Biotechnol, 2020, 8: 575365.
|
66. |
Galema HA, Meijer RPJ, Lauwerends LJ, et al. Fluorescence-guided surgery in colorectal cancer; A review on clinical results and future perspectives. Eur J Surg Oncol, 2022, 48(4): 810-821.
|
67. |
Shang W, Xia X, Lu N, et al. Colourful fluorescence-based carbon dots for tumour imaging-guided nanosurgery. Nanomedicine, 2022, 45: 102583.
|
68. |
Cousins A, Krishnan S, Krishnan G, et al. Preclinical evaluation of sentinel node localization in the stomach via mannose-labelled magnetic nanoparticles and indocyanine green. Surg Endosc, 2023, 37(8): 6185-6196.
|
69. |
Lee J, Grubac V, Baxter N, et al. Digital rectal examination in palpable rectal cancer: expert panel consensus on key elements and analysis of a case series. Br J Surg, 2021, 108(8): e264-e265.
|