索引超出了数组界限。 文章摘要
|本期目录/Table of Contents|

[1]王苏豫 张鹏 杨洁 王志农.微创冠状动脉旁路移植术的进展[J].国际心血管病杂志,2018,06:337-340.
点击复制

微创冠状动脉旁路移植术的进展(PDF)

《国际心血管病杂志》[ISSN:1006-6977/CN:61-1281/TN]

期数:
2018年06期
页码:
337-340
栏目:
综述
出版日期:
2019-02-01

文章信息/Info

Title:
-
作者:
王苏豫 张鹏 杨洁 王志农
Author(s):
-
关键词:
微创冠状动脉旁路移植术 胸腔镜 机器人 杂交冠状动脉血运重建
Keywords:
-
分类号:
-
DOI:
10.3969/j.issn.1673-6583.2018.06.005
文献标识码:
-
摘要:
传统的冠状动脉旁路移植术(CABG)手术创伤大,近年来微创CABG发展较快,该文介绍了微创直视下CABG、胸腔镜下CABG、机器人辅助下CABG以及杂交冠状动脉血运重建的进展,并对微创CABG研究方向进行展望。
Abstract:
-

参考文献/References


[1] Reser D, Holubec T, Caliskan E, et al. Left anterior small thoracotomy for minimally invasive coronary artery bypass grafting[J]. Multimed Man Cardiothorac Surg, 2015, 2015.
[2] Calafiore AM, Angelini GD, Bergsland J, et al. Minimally invasive coronary artery bypass grafting[J]. Ann Thorac Surg, 1996, 62(5):1545-1548.
[3] Raffa GM, Malvindi PG, Ornaghi D, et al. Minimally invasive direct coronary artery bypass in the era of percutaneous coronary intervention[J]. J Cardiovasc Med(Hagerstown), 2015, 16(2):118-124.
[4] Martinovic I, Lindemann S, Irqsusi M, et al. Minimally invasive direct coronary bypass surgery via distal mini-sternotomy: promising clinical results with anaortic, multivessel, all-arterial technique[J]. Herz, 2018, Apr 10.[Epub ahead of print]
[5] Piatek J, Kedziora A, Konstanty-kalandyk J, et al. Minimally invasive coronary artery bypass as a safe method of surgical revascularization. The step towards hybrid procedures[J]. Postepy Kardiol Interwencyjnej, 2017, 13(4):320-325.
[6] Aubin H, Akhyari P, Lichtenberg A, et al. Additional right-sided upper "Half-Mini-Thoracotomy" for aortocoronary bypass grafting during minimally invasive multivessel revascularization[J]. J Cardiothorac Surg, 2015, 10:130.
[7] Head SJ, Milojevic M, Taggart DP, et al. Current practice of state-of-the-art surgical coronary revascularization[J]. Circulation, 2017, 136(14):1331-1345.
[8] Holzhey DM, Cornely JP, Rastan AJ, et al. Review of a 13-year single-center experience with minimally invasive direct coronary artery bypass as the primary surgical treatment of coronary artery disease[J]. Heart Surg Forum, 2012, 15(2):e61-e68.
[9] Raja SG, Benedetto U, Alkizwini E, et al. Propensity score adjusted comparison of MIDCAB versus full sternotomy left anterior descending artery revascularization[J]. Innovations(Phila), 2015, 10(3):174-178.
[10] Trehan N, Malhotra R, Mishra Y, et al. Comparison of ministernotomy with minithoracotomy regarding postoperative pain and internal mammary artery characteristics[J]. Heart Surg Forum, 2000, 3(4): 300-306.
[11] Blazek S, Rossbach C, Borger MA, et al. Comparison of sirolimus-eluting stenting with minimally invasive bypass surgery for stenosis of the left anterior descending coronary artery: 7-year follow-up of a randomized trial[J]. JACC Cardiovasc Interv, 2015, 8(1 Pt A):30-38.
[12] Kopjar T, Ivankovic S, Lima ML, et al. Endoscopic or no-touch vein harvesting for CABG: what is best for the patient?[J]. Braz J Cardiovasc Surg, 2016, 31(6):461-464.
[13] Bakaeen F. CABG: a continuing evolution[J]. Cleve Clin J Med, 2017, 84(12 Suppl 4):e15-e19.
[14] 陈海生, 刘盛华, 吴丽映, 等. 胸腔镜辅助冠状动脉旁路移植术的应用[J]. 岭南现代临床外科, 2015, 15(2):191-193.
[15] Moscarelli M, Harling L, Ashrafian H, et al. Challenges facing totally endoscopic robotic coronary artery bypass grafting[J]. Int J Med Robot, 2015, 11(1):18-29.
[16] 陈海生, 刘盛华, 吴丽映, 等. 全胸腔镜非体外循环下冠状动脉旁路移植术的动物实验研究[J]. 现代医院, 2014, 14(9):29-30.
[17] Gorki H, Liu J, Poelzing F, et al. On-pump nonrobotic total endoscopic coronary artery bypass grafting: an animal study[J]. Thorac Cardiovasc Surg, 2016, 64(3):230-235.
[18] Halkos ME, Liberman HA, Devireddy C, et al. Early clinical and angiographic outcomes after robotic-assisted coronary artery bypass surgery[J]. J Thorac Cardiovasc Surg, 2014, 147(1):179-185.
[19] Halkos ME, Vassiliades TA, Myung RJ, et al. Sternotomy versus nonsternotomy LIMA-LAD grafting for single-vessel disease[J]. Ann Thorac Surg, 2012, 94(5):1469-1477.
[20] Yang M, Wu Y, Wang G, et al. Robotic total arterial off-pump coronary artery bypass grafting: seven-year single-center experience and long-term follow-up of graft patency[J]. Ann Thorac Surg, 2015, 100(4):1367-1373.
[21] Currie ME, Romsa J, Fox SA, et al. Long-term angiographic follow-up of robotic-assisted coronary artery revascularization[J]. Ann Thorac Surg, 2012, 93(5): 1426-1431.
[22] Canale LS, Mick S, Mihaljevic T, et al. Robotically assisted totally endoscopic coronary artery bypass surgery[J]. J Thorac Dis, 2013, 5(Suppl 6):S641-649.
[23] Ejiofor JI, Leacche M, Byrne JG. Robotic CABG and hybrid approaches: the current landscape[J]. Prog Cardiovasc Dis, 2015, 58(3):356-364.
[24] Argenziano M, Katz M, Bonatti J, et al. Results of the prospective multicenter trial of robotically assisted totally endoscopic coronary artery bypass grafting[J]. Ann Thorac Surg, 2006, 81(5):1666-1674.
[25] Bonatti J, Schachner T, Bonaros N, et al. Robotically assisted totally endoscopic coronary bypass surgery[J]. Circulation, 2011, 124(2):236-244.
[26] Voudris K, Avgerinos DV, Feldman D, et al. Hybrid coronary revascularization: present indications and future perspective[J]. Curr Treat Options Cardiovasc Med, 2015, 17(3):364.
[27] Leyvi G, Schechter CB, Sehgal S, et al. Comparison of index hospitalization costs between robotic CABG and conventional CABG: implications for hybrid coronary revascularization[J]. J Cardiothorac Vasc Anesth, 2016, 30(1):12-18.
[28] Panoulas VF, Colombo A, Margonato A, et al. Hybrid coronary revascularization: promising, but yet to take off[J]. J Am Coll Cardiol, 2015, 65(1):85-97.
[29] Angelini GD, Wilde P, Salerno TA, et al. Integrated left small thoracotomy and angioplasty for multivessel coronary artery revascularisation[J]. Lancet, 1996, 347(9003): 757-758.
[30] Hillis LD, Smith PK, Anderson JL, et al. 2011 ACCF/AHA guideline for coronary artery bypass graft surgery: a report of the American College of Cardiology Foundation/American Heart Association Task Force on Practice Guidelines[J]. Circulation, 2011, 124(23):e652-e735.
[31] Harskamp RE, Bonatti JO, Zhao DX, et al. Standardizing definitions for hybrid coronary revascularization[J]. J Thorac Cardiovasc Surg, 2014, 147(2):556-560.
[32] Harskamo RE, Brennan JM, Xian Y, et al. Practice patterns and clinical outcomes after hybrid coronary revascularization in the United States: an analysis from the society of thoracic surgeons adult cardiac database[J]. Circulation, 2014, 130(11):872-879.
[33] 姜明泽, 曹建军, 陈浩, 等. 分站式杂交技术在多支冠状动脉血运重建中的应用[J]. 海南医学, 2017, 28(4):634-636.
[34] Gasior M, Zembala MO, Tajstra M, et al. Hybrid revascularization for multivessel coronary artery disease[J]. JACC Cardiovasc Interv, 2014, 7(11):1277-1283.
[35] Puskas JD, Halkos ME, Derose JJ, et al. Hybrid coronary revascularization for the treatment of multivessel coronary artery disease: a multicenter observational study[J]. J Am Coll Cardiol, 2016, 68(4):356-365.
[36] Shen L, Hu S, Wang H, et al. One-stop hybrid coronary revascularization versus coronary artery bypass grafting and percutaneous coronary intervention for the treatment of multivessel coronary artery disease: 3-year follow-up results from a single institution[J]. J Am Coll Cardiol, 2013, 61(25):2525-2533.
[37] Wu S, Ling Y, Fu Y, et al. Mid-term follow-up outcomes of 2-staged hybrid coronary revascularization compared with off-pump coronary artery bypass for patients with multivessel coronary artery disease[J]. Wideochir Inne Tech Maloinwazyjne, 2017, 12(2):178-185.
[38] Foik J, Brzek A, Gierlotka MJ, et al. Effect of hybrid treatment on rehabilitation and clinical condition of patients with multivessel coronary artery disease[J]. Pol Arch Intern Med, 2018, 128(2):77-88.

备注/Memo

备注/Memo:
基金项目:2015年上海领军人才项目(沪人社2015044)
作者单位:200003 上海,第二军医大学附属长征医院胸心外科
通信作者:王志农,Email:wangzn007@smmu.edu.cn
更新日期/Last Update: 2018-11-30