切换至 "中华医学电子期刊资源库"

中华介入放射学电子杂志 ›› 2022, Vol. 10 ›› Issue (03) : 296 -300. doi: 10.3877/cma.j.issn.2095-5782.2022.03.013

综述

下腔静脉滤器使用安全性的研究进展
程郡1, 顾建平1,(), 孔杰1   
  1. 1. 210006 江苏南京,南京医科大学附属南京医院介入科
  • 收稿日期:2021-08-12 出版日期:2022-08-25
  • 通信作者: 顾建平

Research progress on safe use of inferior vena cava filter

Jun Cheng1, Jianping Gu1,(), Jie Kong1   

  1. 1. Department of Interventional Radiology, Affiliated Nanjing Hospital of Nanjing Medical University, Jiangsu Nanjing 210006, China
  • Received:2021-08-12 Published:2022-08-25
  • Corresponding author: Jianping Gu
引用本文:

程郡, 顾建平, 孔杰. 下腔静脉滤器使用安全性的研究进展[J/OL]. 中华介入放射学电子杂志, 2022, 10(03): 296-300.

Jun Cheng, Jianping Gu, Jie Kong. Research progress on safe use of inferior vena cava filter[J/OL]. Chinese Journal of Interventional Radiology(Electronic Edition), 2022, 10(03): 296-300.

近几十年来,下腔静脉滤器(IVCF)一直作为静脉血栓栓塞症(VTE)治疗方案的重要组成部分。随着滤器使用量的逐年增加,并发症的报道也随之增多,安全性方面也得到关注。文章通过回顾有关滤器的文献,进一步总结滤器的发展演变、并发症以及预防措施、滤器未来发展方向等方面,以期提高滤器使用安全性。

In recent decades, the inferior vena cava filter (IVCF) has been an important part of the treatment plan for venous thromboembolism. As the use of filters increases year by year, the report of complications also increases, and safety should be paid attention to. This review improves the safety of the use of filters by reviewing the literature on filters, summarizing the development and evolution of filters, complications and preventive measures, and the future development direction of filters.

[1]
Ha CP, Rectenwald JE. Inferior vena cava filters: current indications, techniques, and recommendations[J]. Surg Clin North Am, 2018, 98(2): 293-319.
[2]
Kearon C, Akl EA, Ornelas J, et al. Antithrombotic therapy for vte disease: chest guideline and expert panel report[J]. Chest, 2016, 149(2): 315-352.
[3]
Deso SE, Idakoji IA, Kuo WT. Evidence-based evaluation of inferior vena cava filter complications based on filter type[J]. Semin Intervent Radiol, 2016, 33(2): 93-100.
[4]
Ahmed O, Patel K, Patel MV, et al. Declining national annual ivc filter utilization: an analysis on the impact of societal and governmental communications[J]. Chest, 2017, 151(6): 1402-1404.
[5]
Mobin-Uddin K, Callard GM, Bolooki H, et al. Transvenous caval interruption with umbrella filter[J]. N Engl J Med, 1972, 286(2): 55-58.
[6]
Greenfield LJ, McCurdy JR, Brown PP, et al. A new intracaval filter permitting continued flow and resolution of emboli[J]. Surgery, 1973, 73(4): 599-606.
[7]
陈永辉, 戴向晨. 下腔静脉滤器置入适应证、并发症及其防治的研究进展[J]. 血管与腔内血管外科杂志, 2020, 6(5): 442-449.
[8]
Greenfield LJ, Michna BA. Twelve-year clinical experience with the greenfield vena caval filter[J]. Surgery, 1988, 104(4): 706-712.
[9]
Greenfield LJ, Proctor MC. Twenty-year clinical experience with the greenfield filter[J]. Cardiovasc Surg, 1995, 3(2): 199-205.
[10]
Ray CJ, Mitchell E, Zipser S, et al. Outcomes with retrievable inferior vena cava filters: a multicenter study[J]. J Vasc Interv Radiol, 2006, 17(10): 1595-1604.
[11]
Molvar C. Inferior vena cava filtration in the management of venous thromboembolism: filtering the data[J]. Semin Intervent Radiol, 2012, 29(3): 204-217.
[12]
Jia Z, Fuller TA, McKinney JM, et al. Utility of retrievable inferior vena cava filters: a systematic literature review and analysis of the reasons for nonretrieval of filters with temporary indications[J]. Cardiovasc Intervent Radiol, 2018, 41(5): 675-682.
[13]
崔淑君, 赵清华, 刘青, 等. 腔静脉滤器产品综述[J]. 中国医疗器械杂志, 2016, 40(3): 191-197.
[14]
Bikdeli B, Wang Y, Minges KE, et al. Vena caval filter utilization and outcomes in pulmonary embolism: medicare hospitalizations from 1999 to 2010[J]. J Am Coll Cardiol, 2016, 67(9): 1027-1035.
[15]
Marron RM, Rali P, Hountras P, et al. Inferior vena cava filters: past, present, and future[J]. Chest, 2020, 158(6): 2579-2589.
[16]
下腔静脉滤器置入术和取出术规范的专家共识(第2版)[J]. 中华医学杂志, 2020, 100(27): 2092-2101.
[17]
Doe C, Ryu RK. Anatomic and technical considerations: inferior vena cava filter placement[J]. Semin Intervent Radiol, 2016, 33(2): 88-92.
[18]
Caplin DM, Nikolic B, Kalva SP, et al. Quality improvement guidelines for the performance of inferior vena cava filter placement for the prevention of pulmonary embolism[J]. J Vasc Interv Radiol, 2011, 22(11): 1499-1506.
[19]
Poletti PA, Becker CD, Prina L, et al. Long-term results of the simon nitinol inferior vena cava filter[J]. Eur Radiol, 1998, 8(2): 289-294.
[20]
Mohan CR, Hoballah JJ, Sharp WJ, et al. Comparative efficacy and complications of vena caval filters[J]. J Vasc Surg, 1995, 21(2): 235-245.
[21]
Simon M, Athanasoulis CA, Kim D, et al. Simon nitinol inferior vena cava filter: initial clinical experience[J]. Radiology, 1989, 172(1): 99-103.
[22]
Angel LF, Tapson V, Galgon RE, et al. Systematic review of the use of retrievable inferior vena cava filters[J]. J Vasc Interv Radiol, 2011, 22(11): 1522-1530.
[23]
Desai KR, Pandhi MB, Seedial SM, et al. Retrievable ivc filters: comprehensive review of device-related complications and advanced retrieval techniques[J]. Radiographics, 2017, 37(4): 1236-1245.
[24]
Tam MD, Spain J, Lieber M, et al. Fracture and distant migration of the bard recovery filter: a retrospective review of 363 implantations for potentially life-threatening complications[J]. J Vasc Interv Radiol, 2012, 23(2): 199-205.
[25]
Stavropoulos SW, Sing RF, Elmasri F, et al. The denali trial: an interim analysis of a prospective, multicenter study of the denali retrievable inferior vena cava filter[J]. J Vasc Interv Radiol, 2014, 25(10): 1497-1505.
[26]
McLoney ED, Krishnasamy VP, Castle JC, et al. Complications of celect, günther tulip, and greenfield inferior vena cava filters on ct follow-up: a single-institution experience[J]. J Vasc Interv Radiol, 2013, 24(11): 1723-1729.
[27]
An T, Moon E, Bullen J, et al. Prevalence and clinical consequences of fracture and fragment migration of the bard g2 filter: imaging and clinical follow-up in 684 implantations[J].J Vasc Interv Radiol, 2014, 25(6): 941-948.
[28]
Rogers FB, Strindberg G, Shackford SR, et al. Five-year follow-up of prophylactic vena cava filters in high-risk trauma patients[J]. Arch Surg, 1998, 133(4): 406-411.
[29]
Semaan D, Esq MR, Burgin A, et al. Abstract no. 391–inferior vena cava filter tilt and its future clinical implications: a community based practices experience[J]. Journal of Vascular & Interventional Radiology, 2013, 24(4): 166.
[30]
Avgerinos ED, Bath J, Stevens J, et al. Technical and patient-related characteristics associated with challenging retrieval of inferior vena cava filters[J]. Eur J Vasc Endovasc Surg, 2013, 46(3): 353-359.
[31]
Al-Hakim R, Kee ST, Olinger K, et al. Inferior vena cava filter retrieval: effectiveness and complications of routine and advanced techniques[J]. J Vasc Interv Radiol, 2014, 25(6): 933-939.
[32]
Oh JC, Trerotola SO, Dagli M, et al. Removal of retrievable inferior vena cava filters with computed tomography findings indicating tenting or penetration of the inferior vena cava wall[J]. J Vasc Interv Radiol, 2011, 22(1): 70-74.
[33]
Durack JC, Westphalen AC, Kekulawela S, et al. Perforation of the ivc: rule rather than exception after longer indwelling times for the günther tulip and celect retrievable filters[J]. Cardiovasc Intervent Radiol, 2012, 35(2): 299-308.
[34]
Zhou D, Moon E, Bullen J, et al. Penetration of celect inferior vena cava filters: retrospective review of ct scans in 265 patients[J]. AJR Am J Roentgenol, 2014, 202(3): 643-647.
[35]
Jia Z, Wu A, Tam M, et al. Caval penetration by inferior vena cava filters: a systematic literature review of clinical significance and management[J]. Circulation, 2015, 132(10): 944-952.
[36]
Ayad MT, Gillespie DL. Long-term complications of inferior vena cava filters[J]. J Vasc Surg Venous Lymphat Disord, 2019, 7(1): 139-144.
[37]
Laborda A, Kuo WT, Ioakeim I, et al. Respiratory-induced haemodynamic changes: a contributing factor to ivc filter penetration[J]. Cardiovasc Intervent Radiol, 2015, 38(5): 1192-1197.
[38]
Imberti D, Bianchi M, Farina A, et al. Clinical experience with retrievable vena cava filters: results of a prospective observational multicenter study[J]. J Thromb Haemost, 2005, 3(7): 1370-1375.
[39]
Leask RL, Johnston KW, Ojha M. In vitro hemodynamic evaluation of a simon nitinol vena cava filter: possible explanation of ivc occlusion[J]. J Vasc Interv Radiol, 2001, 12(5): 613-618.
[40]
Wang SL, Singer MA. Toward an optimal position for inferior vena cava filters: computational modeling of the impact of renal vein inflow with celect and trapease filters[J]. J Vasc Interv Radiol, 2010, 21(3): 367-374.
[41]
Decousus H, Leizorovicz A, Parent F, et al. A clinical trial of vena caval filters in the prevention of pulmonary embolism in patients with proximal deep-vein thrombosis. prévention du risque d'embolie pulmonaire par interruption cave study group[J]. N Engl J Med, 1998, 338(7): 409-415.
[42]
Ahmed O, Sheikh S, Tran P, et al. Inferior vena cava filter evaluation and management for the diagnostic radiologist: a comprehensive review including inferior vena cava filter-related complications and preserve trial filters[J]. Can Assoc Radiol J, 2019, 70(4):367-382.
[43]
Sobieszczyk P. Factors to consider regarding the need for inferior vena cava filters[J]. Prog Cardiovasc Dis, 2018, 60(6): 622-628.
[44]
Morales JP, Li X, Irony TZ, et al. Decision analysis of retrievable inferior vena cava filters in patients without pulmonary embolism[J]. J Vasc Surg Venous Lymphat Disord, 2013, 1(4): 376-384.
[1] 李刘庆, 陈小翔, 吕成余. 全腹腔镜与腹腔镜辅助远端胃癌根治术治疗进展期胃癌的近中期随访比较[J/OL]. 中华普外科手术学杂志(电子版), 2025, 19(01): 23-26.
[2] 刘世君, 马杰, 师鲁静. 胃癌完整系膜切除术+标准D2根治术治疗进展期胃癌的近中期随访研究[J/OL]. 中华普外科手术学杂志(电子版), 2025, 19(01): 27-30.
[3] 赵丽霞, 王春霞, 陈一锋, 胡东平, 张维胜, 王涛, 张洪来. 内脏型肥胖对腹腔镜直肠癌根治术后早期并发症的影响[J/OL]. 中华普外科手术学杂志(电子版), 2025, 19(01): 35-39.
[4] 李华志, 曹广, 刘殿刚, 张雅静. 不同入路下行肝切除术治疗原发性肝细胞癌的临床对比[J/OL]. 中华普外科手术学杂志(电子版), 2025, 19(01): 52-55.
[5] 常小伟, 蔡瑜, 赵志勇, 张伟. 高强度聚焦超声消融术联合肝动脉化疗栓塞术治疗原发性肝细胞癌的效果及安全性分析[J/OL]. 中华普外科手术学杂志(电子版), 2025, 19(01): 56-59.
[6] 徐逸男. 不同术式治疗梗阻性左半结直肠癌的疗效观察[J/OL]. 中华普外科手术学杂志(电子版), 2025, 19(01): 72-75.
[7] 王露, 周丽君. 全腹腔镜下远端胃大部切除不同吻合方式对胃癌患者胃功能恢复、并发症发生率的影响[J/OL]. 中华普外科手术学杂志(电子版), 2025, 19(01): 92-95.
[8] 刘柏隆, 周祥福. 女性尿失禁吊带手术并发症处理的经验分享[J/OL]. 中华腔镜泌尿外科杂志(电子版), 2025, 19(01): 127-127.
[9] 嵇振岭, 陈杰, 唐健雄. 重视复杂腹壁疝手术并发症的预防和处理[J/OL]. 中华疝和腹壁外科杂志(电子版), 2024, 18(06): 601-606.
[10] 江志鹏, 钟克力, 陈双. 复杂腹壁疝手术后腹腔高压与腹腔间室综合征的预防和处理[J/OL]. 中华疝和腹壁外科杂志(电子版), 2024, 18(06): 612-615.
[11] 王学虎, 赵渝. 复杂腹壁疝手术中血管损伤并发症的预防和处理[J/OL]. 中华疝和腹壁外科杂志(电子版), 2024, 18(06): 616-619.
[12] 马东扬, 李斌, 陆安清, 王光华, 雷文章, 宋应寒. Gilbert 与单层补片腹膜前疝修补术疗效的随机对照研究[J/OL]. 中华疝和腹壁外科杂志(电子版), 2024, 18(06): 629-633.
[13] 王浩源, 汪海洋, 孙建明, 陈以宽, 祁小桐, 唐博. 腹腔镜与开放修补对肝硬化腹外疝患者肝功能及凝血的影响[J/OL]. 中华疝和腹壁外科杂志(电子版), 2024, 18(06): 654-659.
[14] 宋俊锋, 张珍珍. 单侧初发性腹股沟斜疝老年患者经腹腹膜前疝修补术中残余疝囊腹直肌下缘固定效果评估[J/OL]. 中华疝和腹壁外科杂志(电子版), 2024, 18(06): 670-674.
[15] 石阳, 于剑锋, 曹可, 翟志伟, 叶春祥, 王振军, 韩加刚. 可扩张金属支架置入联合新辅助化疗治疗完全梗阻性左半结肠癌围手术期并发症分析[J/OL]. 中华结直肠疾病电子杂志, 2024, 13(06): 464-471.
阅读次数
全文


摘要


AI


AI小编
你好!我是《中华医学电子期刊资源库》AI小编,有什么可以帮您的吗?