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中华医学超声杂志(电子版) ›› 2020, Vol. 17 ›› Issue (06) : 583 -586. doi: 10.3877/cma.j.issn.1672-6448.2020.06.018

所属专题: 文献

综述

甲状腺结节射频消融疗效影响因素的研究进展
阎琳1, 罗渝昆2,()   
  1. 1. 100853 北京,解放军总医院第一医学中心超声诊断科;116023 大连医科大学附属第二医院健康管理中心
    2. 100853 北京,解放军总医院第一医学中心超声诊断科
  • 收稿日期:2019-08-08 出版日期:2020-06-01
  • 通信作者: 罗渝昆

Progress in understainding factors influencing efficacy of radiofrequency ablation of thyroid nodules

Lin Yan1, Yukun Luo2()   

  • Received:2019-08-08 Published:2020-06-01
  • Corresponding author: Yukun Luo
引用本文:

阎琳, 罗渝昆. 甲状腺结节射频消融疗效影响因素的研究进展[J]. 中华医学超声杂志(电子版), 2020, 17(06): 583-586.

Lin Yan, Yukun Luo. Progress in understainding factors influencing efficacy of radiofrequency ablation of thyroid nodules[J]. Chinese Journal of Medical Ultrasound (Electronic Edition), 2020, 17(06): 583-586.

1
Baek JH, Lee JH, ValcaviR, et al. Thermal ablation for benign thyroid nodules: radiofrequency and laser [J]. Korean J Radiol, 2011, 12(5): 525-540.
2
Na DG, Lee JH, Jung SL, et al. Radiofrequency Ablation of Benign Thyroid Nodules and Recurrent Thyroid Cancers: Consensus Statement and Recommendations [J]. Korean J Radiol, 2012, 13(2): 117-125.
3
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.
4
Shin JH, Baek JH, Chung J, et al. Ultrasonography diagnosis and imaging-based management of thyroid nodules: Revised Korean Society of Thyroid Radiology consensus statement and recommendations [J]. Korean J Radiol, 2016, 17: 370-395.
5
Gharib H, Papini E, Garber JR, et al. American Association of Clinical Endocrinologists, American College of Endocrinology, and Associazione Medici Endocrinologi medical guidelines for clinical practice for the diagnosis and management of thyroid nodules-2016 update [J]. Endocr Pract, 2016, 22: 622-639.
6
Zhang M, Luo Y, Zhang Y, et al. Efficacy and Safety of Ultrasound-Guided Radiofrequency Ablation for Treating Low-Risk Papillary Thyroid Microcarcinoma: A Prospective Study [J]. Thyroid, 2016, 26(11): 1581-1587.
7
Kim JH, Baek JH, Lim HK, et al. 2017 Thyroid Radiofrequency Ablation Guideline: Korean Society of Thyroid Radiology [J]. Korean J Radiol, 2018, 19(4): 632-655.
8
Andrioli M, Valcavi R. The peculiar ultrasonographic and elastographic features of thyroid nodules after treatment with laser or radiofrequency: similarities and differences [J]. Endocrine, 2014, 47(3): 967-968.
9
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: 1244-1250.
10
Sung JY, Baek JH, Jung SL, et al. Radiofrequency Ablation for Autonomously Functioning Thyroid Nodules: A Multicenter Study [J]. Thyroid, 2015, 25(1): 112-117.
11
Sung JY, Kim YS, Choi H, et al. Optimum first-line treatment technique for benign cystic thyroid nodules: ethanol ablation or radiofrequency ablation? [J]. AJR, 2011, 196: W210-W214.
12
Dobrinja C, Bernardi S, Fabris B, et al. Surgical and Pathological Changes after Radiofrequency Ablation of Thyroid Nodules [J]. Int J Endocrinol, 2015, 2015: 576.
13
Spiezia S, Garberoglio R, Milone F, et al. Thyroid nodules and related symptoms are stably controlled two years after radiofrequency thermal ablation [J]. Thyroid, 2009, 19: 219-225.
14
Radzina M, Cantisani V, Rauda M, et al. Update on the role of ultrasound guided radiofrequency ablation for thyroid nodule treatment [J]. Int J Surg, 2017, 41(Suppl)1: S82-S93.
15
Deandrea M, Limone P, Basso E, et al. US-guided percutaneous radiofrequency thermal ablation for the treatment of solid benign hyperfunctioning or compressive thyroid nodules [J]. Ultrasound Med Biol, 2008, 34: 784-791.
16
Lim HK, Lee JH, Ha EJ, et al. Radiofrequency ablation of benign non-functioning thyroid nodules: 4-year follow-up results for 111 patients [J]. Eur Radiol, 2013, 23: 1044-1049.
17
Rhim H, Goldberg SN, Dodd GD, et al. Essential techniques for successful radio-frequency thermal ablation of malignant hepatic tumors [J]. Radiographics, 2001, 21: S17-S35.
18
Goldberg SN, Gazelle GS, Mueller PR. Thermal ablation therapy for focal malignancy: a unified approach to underlying principles, techniques, and diagnostic imaging guidance [J]. AJR, 2000, 174(2): 323-331.
19
Kim HS, Choi BH, Park JR, et a1. Delayed surgery for parathyroid adenoma misdiagnosed as a thyroid nodule and treated with radiofrequency ablation [J]. Endocrinol Metab(Seoul), 2013, 28(3): 231-235.
20
Baek JH, Kim YS, Lee D, et al. Benign predominantly solid thyroid nodules: prospective study of efficacy of sonographically guided radiofrequency ablation versus control condition [J]. AJR, 2010, 194: 1137-1142.
21
Sim JS, Baek JH, Cho W. Initial Ablation Ratio: Quantitative Value Predicting the Therapeutic Success of Thyroid Radiofrequency Ablation [J]. Thyroid, 2018, 18: 1443-1449.
22
Park HS, Baek JH, Choi YJ, et al. Innovative Techniques for Image-Guided Ablation of Benign Thyroid Nodules: Combined Ethanol and Radiofrequency Ablation [J]. Korean J Radiol, 2017, 18(3): 461-469.
23
Huh JY, Baek JH, Choi H, et al. Symptomatic benign thyroid nodules: efficacy of additional radiofrequency ablation treatment session: prospective randomized study [J]. Radiology, 2012, 263: 909-916.
24
Sim JS, Baek JH, Lee J, et al. Radiofrequency ablation of benign thyroid nodules: depicting early sign of regrowth by calculating vital volume [J]. Int J Hyperthermia, 2017, 33: 905-910.
25
Haugen BR, Alexander EK, Bible KC, et al. 2015 American Thyroid Association Management Guidelines for Adult patients with thyroid nodules and differentiated thyroid cancer: The American Thyroid Association Guidelines Task Force on Thyroid Nodules and Differentiated Thyroid Cancer [J]. Thyroid, 2016, 26(1): 1-133.
26
Kim YS, Rhim H, Tae K, et al. Radiofrequency ablation of benign cold thyroid nodules: initial clinical experience [J]. Thyroid, 2006, 16: 361-367.
27
Kim JH, Lee HK, Lee JH, et al. Efficacy of sonographically guided percutaneous ethanol injection for treatment of thyroid cysts versus solid thyroid nodules [J]. AJR, 2003, 180(6): 1723-1726.
28
Baek JH, Ha EJ, Choi YJ, et al. Radiofrequency versus ethanolablation for treating predominantly cystic thyroid nodules: arandomized clinical trial [J]. Korean J Radiol, 2015, 16(6): 1332-1340.
29
Jang SW, Baek JH, Kim JK, et al. How to manage the patients with unsatisfactory results after ethanol ablation for thyroid nodules: role of radiofrequency ablation [J]. Eur J Radiol, 2012, 81(5): 905-910.
30
Sung JY, Baek JH, Kim KS, et al. Single-session treatment of benign cystic thyroid nodules with ethanol versus radiofrequency ablation: a prospective randomized Study [J]. Radiology, 2013, 269(1): 293-300.
31
Lee JH, Kim YS, Lee D, et al. Radiofrequency ablation (RFA) of benign thyroid nodules in patients with incompletely resolved clinical problems after ethanol ablation (EA) [J]. World J Surq, 2010, 34(7): 1488-1493.
32
Del Prete S, Caraglia M, Russo D, et al. Percutaneous ethanol injection efficacy in the treatment of large symptomatic thyroid cystic nodules: ten-year follow-up of a large series [J]. Thyroid, 2002, 12(9): 815-821.
33
Bennedbaek FN, Hegedus L. Treatment of recurrent thyroid cysts with ethanol: a randomized double-blind controlled trial [J]. J Clin Endocrinology Metab, 2003, 88(12): 5773-5777.
34
Ahn HS, Kim SJ, Park SH, et al. Radiofrequency ablation of benign thyroid nodules: evaluation of the treatment efficacy using ultrasonography [J]. Ultrasonography, 2016, 35(3): 244-252.
35
孔月,梁萍. 甲状腺病变的热消融治疗多中心研究及相关流行病学调查 [D]. 解放军医学院, 2014.
36
Zhao CK, Xu HX, Lu F, et al. Factors associated with initial incomplete ablation for benign thyroid nodules after radiofrequency ablation: First results of CEUS evaluation [J]. Clin Hemorheol Microcirc, 2017, 65(4): 393-405.
37
Brunese L, Romeo A, Iorio S, et al. Thyroid B-flow twinkling sign: a new feature of papillary cancer [J]. Eur J Endocrinol, 2008, 159: 447-451.
38
Gharib H, Papini E, Paschke R, et al. American Association of clinical endocrinologists, associazione medici endocrinologi, and European Thyroid association medical guidelines for clinical practice for the diagnosis and management of thyroid nodules [J]. J Endocr Invest, 2010, 33(5 Suppl): 1-50.
39
Meloni MF, Andreano A, Zimbaro F, et a1. Contrast enhanced ultrasound: Roles in immediate post-procedural and 24-h evaluation of the effectiveness of thermal ablation of liver tumors [J]. J Ultrasound, 2012, 15(4): 207-214.
40
Ha EJ, Baek JH, Lee JH. The efficacy and complications of radiofrequency ablation of thyroid nodules [J]. Current Opinion in Endocrinology Diabetes Obesity, 2011, 18(5): 310-314.
41
Baek JH, Moon WJ, Kim YS, et al. Radiofrequency ablation for the treatment of autonomously functioning thyroid nodules [J]. World J Surg, 2009, 33: 1971-1977.
42
Sandrock D, Olbricht T, Emrich D, et al. Long-term follow-up in patients with autonomous thyroid adenoma [J]. Acta Endocrinol (Copenh), 1993, 128(1): 51-55.
43
张颖,罗渝昆,广旸, 等. 经皮射频消融治疗甲状腺良性结节的疗效及影响因素 [J/CD].中华医学超声杂志(电子版), 2018, 15(4): 287-293.
44
冯晶,车颖,王丽娜, 等. 超声引导下经皮射频消融甲状腺良性结节的初步临床研究 [J]. 中华超声影像学杂志, 2013, 22(2): 178-180.
45
朱林,周全. 超声弹性成像对甲状腺肿块的诊断进展 [J]. 临床超声医学杂志, 2012, 14(7): 474-475.
46
纪莉,吴凤林,娄雪峰, 等. 超声弹性成像评估甲状腺良性结节射频消融效果的价值探讨 [J]. 中国超声医学杂志, 2014, 30(12): 1071-1073.
47
王丽娜,车颖. 实时超声弹性成像评价甲状腺射频消融效果的初步研究 [D]. 大连医科大学, 2013.
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