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中华普通外科学文献(电子版) ›› 2015, Vol. 09 ›› Issue (03) : 238 -241. doi: 10.3877/cma.j.issn.1674-0793.2015.03.016

所属专题: 文献

综述

射频消融技术在甲状腺疾病中的临床进展
刘池拽1,(), 邓建伟1, 师天雄1   
  1. 1. 528400 中山市人民医院普外二科
  • 收稿日期:2013-12-04 出版日期:2015-06-01
  • 通信作者: 刘池拽

Clinical progress of radiofrequency ablation for thyroid disease

Chizhuai Liu1(), Jianwei Deng1, Tianxiong Shi1   

  1. 1. The Second Department of General Surgery, the People’s Hospital of Zhongshan City, Zhongshan 528400, China
  • Received:2013-12-04 Published:2015-06-01
  • Corresponding author: Chizhuai Liu
引用本文:

刘池拽, 邓建伟, 师天雄. 射频消融技术在甲状腺疾病中的临床进展[J]. 中华普通外科学文献(电子版), 2015, 09(03): 238-241.

Chizhuai Liu, Jianwei Deng, Tianxiong Shi. Clinical progress of radiofrequency ablation for thyroid disease[J]. Chinese Archives of General Surgery(Electronic Edition), 2015, 09(03): 238-241.

射频消融技术是一种安全、有效、微创治疗实体肿瘤的新方法,现广泛用于治疗肝脏、骨骼、肾、乳腺等部位的肿瘤。目前,射频消融技术也应用到甲状腺疾病的治疗,并取得一定的疗效。本文综述了射频消融的原理、在甲状腺实验研究和临床应用的现状及并发症。

Radiofrequency ablation(RFA), a new, safe, effective and minimally invasive treatment for solid tissue tumors, has extensively been applied to neoplasms of liver, bone, kidney and breast. Now RFA also has been used to treat thyroid disease, and has showed certain benefits. This article comprehends the mechanism of RFA, current status of experimental study and clinical application and complications.

[1]
Weiss RE, Lado-Abeal J. Thyroid nodules: diagnosis and therapy[J]. Curr Opin Oncol, 2002, 14(1): 46-52.
[2]
Tan GH, Gharib H. Thyroid incidentalomas: management approaches to nonpalpable nodules discovered incidentally on thyroid imaging[J]. Ann Intern Med, 1997, 126(3): 226-231.
[3]
Lima N, Knobel M, Cavaliere H, et al. Levothyroxine suppressive therapy is partially effective in treating patients with benign, solid thyroid nodules and multinodular goiters[J]. Thyroid, 1997, 7(5): 691-697.
[4]
Tsai CC, Pei D, Hung YJ, et al. The effect of thyroxine-suppressive therapy in patients with solitary nontoxic thyroid nodules—a randomised, double-blind, placebo-controlled study[J]. Int J Clin Pract, 2006, 60(1): 23-26.
[5]
Lee SJ, Ahn IM. Effectiveness of percutaneous ethanol injection therapy in benign nodular and cystic thyroid diseases: long-term follow-up experience[J]. Endocr J, 2005, 52(4): 455-462.
[6]
Amabile G, Rotondi M, Chiara GD et al. Low-energy interstitial laser photocoagulation for treatment of nonfunctioning thyroid nodules: therapeutic outcome in relation to pretreatment and treatment parameters[J]. Thyroid, 2006, 16(8): 749-755.
[7]
Nahum Goldberg S, Dupuy DE. Image-guided radiofrequency tumor ablation: challenges and opportunities—part I[J]. J Vasc lnterv Radiol, 2001, 12(9): 1021-1032.
[8]
李亚松,曹建彪,姜胜莹.原发性肝癌射频消融治疗研究进展[J].北京医学, 2013, 35(9): 796-798.
[9]
Hanly EJ, Langley R, Bernet V, et al. Safety profile of ultrasound-guided radiofrequency ablation in the thyroid gland[J]. J Stag Res, 2004, 121 (2): 340.
[10]
彭彩碧,文重远,李竞,等.射频消融猪甲状腺毁损灶形成的实验研究及意义初探[J].实用医学杂志, 2005, 21(23): 2604-2605.
[11]
Holmer C, Lehmann KS, Knappe V, et al. Bipolar radiofrequency ablation for nodular thyroid disease—ex vivo and in vivo evaluation of a dose-response relationship[J]. J Surg Res, 2010, 169(2): 234-240.
[12]
Ritz JP, Lehmann KS, Zurbuchen U, et al. Ex vivo and in vivo evaluation of laser-induced thermotherapy for nodular thyroid disease[J]. Lasers Surg Med, 2009, 41(7): 479-486.
[13]
Mallery KF, Pollard RE, Nelson RW, et al. Percutaneous ultrasound-guided radiofrequency heat ablation for treatment of hyperthyroidism in cats[J]. J Am Vet Med Assoc, 2003, 223(11): 1602-1607.
[14]
Baek JH, Moon WJ, Kim YS, et al. Radiofrequency ablation for the treatment of autonomously functioning thyroid nodules[J]. World J Surg, 2009, 33(9): 1971-1977.
[15]
Jeong WK, Baek JH, Rhim H, et al. Radiofrequency ablation of benign thyroid nodules: safety and imaging follow-up in 236 patients[J]. Eur Radiol, 2008, 18(6): 1244-1250.
[16]
Kim YS, Rhim H, Tae K, et al. Radiofrequency ablation of benign cold thyroid nodules: initial clinical experience[J]. Thyroid, 2006, 16(4): 361-367.
[17]
Dupuy DE, Monchik JM, Decrea C, et al. Radiofrequency ablation of regional recurrence from well-differentiated thyroid malignancy[J]. Surgery, 2001, 130(6): 971-977.
[18]
Jain SK, Dupuy DE, Jackson I, et al. Radiofrequency ablation for skeletal metastasis of papillary carcinoma of the thyroid Conjunct treatment with radioablative iodine[J]. Endocrinologist, 2004, 14(1): 5-11.
[19]
Wertenbroek MW, Links TP, Prins TR, et al. Radiofrequency ablation of hepatic metastases from thyroid carcinoma[J]. Thyroid, 2008, 18(10): 1105-1110.
[20]
习羽,牛建华,袁明,等.射频毁损甲状腺实质性病变的临床初步研究[J].农垦医学, 2009, 31(4): 294-297.
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