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[1]胥 韦,刘 敏,钟樟华,等.EBUS-TBNA联合X线透视下经支气管肺活检术在肺门及纵隔病变中的诊断意义[J].中华肺部疾病杂志,2024,(05):680-684.[doi:10.3877/cma.j.issn.1674-6902.2024.05.002]
 Xu Wei,Liu Min,Zhong Zhanghua,et al.Diagnostic value of endobronchial ultrasound-guided transbronchial needle aspiration combine X-ray guided tranbronchial lung biopsy in hilar and mediastinal diseases[J].,2024,(05):680-684.[doi:10.3877/cma.j.issn.1674-6902.2024.05.002]
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EBUS-TBNA联合X线透视下经支气管肺活检术在肺门及纵隔病变中的诊断意义(PDF)

《中华肺部疾病杂志》[ISSN:1006-6977/CN:61-1281/TN]

卷:
期数:
2024年05期
页码:
680-684
栏目:
论著
出版日期:
2024-10-25

文章信息/Info

Title:
Diagnostic value of endobronchial ultrasound-guided transbronchial needle aspiration combine X-ray guided tranbronchial lung biopsy in hilar and mediastinal diseases
作者:
胥 韦刘 敏钟樟华裴艳丽荣 磊
518053 深圳,香港大学深圳医院呼吸内科
Author(s):
Xu Wei Liu Min Zhong Zhanghua Pei Yanli Rong Lei.
Department of Respiratory Medicine, The University of Hongkong-Shenzhen Hospital, Shenzhen, 518053, China
关键词:
超声支气管镜 针吸活检术 经支气管镜肺活检术 肺门病变 纵隔病变
Keywords:
Endobronchial bronchial ultrasound-guided transbronchial needle aspiration Transbronchial needle aspiration Tranbronchial lung biopsy Hilar adenopathy Mediastinal adenopathy
分类号:
R563
DOI:
10.3877/cma.j.issn.1674-6902.2024.05.002
摘要:
目的 分析超声引导下经支气管针吸活检术(endobronchial bronchial ultrasound- guided transbronchial needle aspiration, EBUS-TBNA)联合经支气管镜肺活检术(tranbronchial lung biopsy, TBLB)在肺门及纵隔病变中的诊断意义。方法 选择2020年8月至2021年11月我院收治的89例因肺门及纵隔病变行透视下TBLB和/或超声引导下EBUS-TBNA患者。统计分析EBUS-TBNA联合TBLB检查在肺门及纵隔病变中的诊断阳性率。结果 经X线透视下TBLB和/或EBUS-TBNA行肺门和纵隔病变组织活检89例中病理诊断阳性80例(89.89%),其中肺癌69例,肺结核5例,肺结节病2例,肺真菌病1例,肺脓肿1例,机化性肺炎1例,肺放线菌病1例。89例EBUS-TBNA总活检阳性55例(61.80%),64例X线透视下TBLB总活检阳性43例(67.19%)。EBUS-TBNA联合TBLB检查64例中病理阳性诊断 53例(82.81%),EBUS-TBNA检查25例中病理阳性诊断16例(64.00%),EBUS-TBNA联合TBLB检查阳性率与单独EBUS-TBNA检查阳性率差异有统计学意义(P<0.05)。结论 EBUS-TBNA联合X线透视下TBLB可提高肺门及纵隔病变的病理诊断阳性率,对判断肺门及纵隔病变具有临床意义。
Abstract:
Objective To investigate the diagnostic value of endobronchial bronchial ultrasound-guided Transbronchial Needle Aspiration combine X-ray guided tranbronchial lung biopsy in hilar and mediastinal diseases. Methods Retrospectively analyzed the clinical data of 89 patients with hilar and mediastinum diseases who underwent X-ray guided tranbronchial lung biopsy(TBLB)and/or endobronchial bronchial ultrasound-guided Transbronchial Needle Aspiration(EBUS-TBNA)in Hongkong University-Shenzhen hospital from August 2020 to November 2021. The diagnostic yield of EBUS-TBNA combined with TBLB in hilar and mediastinum diseases was analyzed. Results 89 patients with hilar and mediastinal diseases were underwent transbronchial TBLB and/or EBUS-TBNA biopsy. 80 patients were pathologically positive(89.89%), 69 cases of lung carcinoma, 5 cases of pulmonary tuberculosis, 2 cases of pulmonary sarcoidosis, one case of pulmonary mycosis, one case of pulmonary abscess, one case of organizing pneumonia and one case of pulmonary actinomycosis were diagnosed. The total biopsy positive rate of EBUS-TBNA was 61.80%(55/89), and TBLB was 67.19%(43/64). 64 patients who underwent EBUS-TBNA combined with TBLB, 53(82.81%)had a positive pathological diagnosis. 25 patients who underwent EBUS-TBNA only, 16(64.0%)had a positive pathological diagnosis. The positive rate of EBUS-TBNA combined with TBLB was statistically significantly higher than that of EBUS-TBNA alone(P<0.05). Conclusion Combination of EBUS-TBNA and X-ray guided TBLB can significantly improve the pathological diagnosis yield in hilar and mediastinal diseases.

参考文献/References:

1 Hürter T, Hanrath P. Endobronchial sonography: Feasibility and preliminary results[J]. Thorax, 1992, 47(7): 565-567.
2 Steinfort DP, Evison M, Witt A, et al. WABIP Taskforce on Quality Indicators in EBUS Bronchoscopy. Proposed quality indicators and recommended standard reporting items in performance of EBUS bronchoscopy: An official World Association for Bronchology and Interventional Pulmonology Expert Panel consensus statement[J]. Respirology, 2023, 28(8): 722-743.
3 朱斯悦, 张晓莹, 严玉茹, 等. 介入支气管镜在肺部疾病诊断和治疗中的应用[J/CD]. 中华肺部疾病杂志(电子版), 2024, 17(1): 148-151.
4 Jaliawala HA, Farooqui SM, Harris K, et al. Endobronchial ultrasound-guided transbronchial needle aspiration(EBUS-TBNA): Technical updates and pathological yield [J]. Diagnostics(Basel), 2021, 11(12): 2331.
5 成人诊断性可弯曲支气管镜检查术应用指南(2019年版)[J]. 中华结核和呼吸杂志, 2019, 42(8): 573-590.
6 Maconachie R, Mercer T, Navani N, et al. Guideline C. Lung cancer:diagnosis and management: summary of updated NICE guidance[J]. BMJ, 2019, 364: 11049.
7 Annema JT, van Meerbeeck JP, Rintoul RC, et al. Mediastinoscopy vs endosonography for mediastinal nodal staging of lung cancer: A randomized trial[J]. JAMA, 2010, 304: 2245-2252.
8 Verdial FC, Berfield KS, Wood DE, et al. Safety and costs of endobronchial ultrasound-guided nodal aspiration and mediastinoscopy [J]. Chest, 2020, 157(3): 686-693.
9 Vaidya PJ, Munavvar M, Leuppi JD, et al. Endobronchial ultrasound-guided transbronchial needle aspiration: Safe as it sounds[J]. Respirology, 2017, 22(6): 1093-1101.
10 Jaliawala HA, Farooqui SM, Harris K, et al. Endobronchial ultrasound-guided transbronchial needle aspiration(EBUS-TBNA): Technical updates and pathological yield [J]. Diagnostics(Basel), 2021, 11(12): 2331.
11 Marcoux M, Ost DE. What's new in endobronchial ultrasound for mediastinal staging? [J]. Curr Opin Pulm Med, 2020, 26(4): 346-358.
12 Tsaknis G, Naeem M, Rathinam S, et al. Utilization of high-pressure suction for EBUS-TBNA sampling in suspected lung cancer[J]. J Bronchology Interv Pulmonol, 2022, 29(2): 115-124.
13 Divisi D, Di LG, Venturino M, et al. Endobronchial ultrasound/transbronchial needle aspiration-biopsy for systematic mediastinal lymph node staging of non-small cell lung cancer in patients eligible for surgery: A prospective multicenter study[J]. Cancers(Basel), 2023, 15(16): 4029.
14 Trisolini R, Cancellieri A, Tinelli C et al. Randomized trial of endobronchial ultrasound-guided transbronchial needle aspiration with and without rapid on-site evaluation for lung cancer genotyping[J]. Chest, 2015, 148(6): 1430-1437.
15 Kunimasa K, Matsumoto S, Honma K, et al. Utility of needle biopsy in centrally located lung cancer for genome analysis: a retrospective cohort study[J]. BMC Pulm Med, 2023, 23(1): 484.
16 Sakairi Y, Nakajima T, Yoshino I. Role of endobronchial ultrasound-guided transbronchial needle aspiration in lung cancer management[J]. Expert Rev Respir Med, 2019, 13(9): 863-870.
17 Casal RF, Lazarus DR, Kuhl K, et al. Randomized trial of endobronchial ultrasound-guided transbronchial needle aspiration under general anesthesia versus moderate sedation[J]. Am J Respir Crit Care Med, 2015, 191(7): 796-803.
18 Khemasuwan D, Teerapuncharoen K, Griffin DC. Diagnostic yield and safety of bronchoscopist-directed moderate sedation with a bolus dose administration of propofol during endobronchial ultrasound bronchoscopy[J]. J Bronchol Interv Pulmonol, 2018, 25(3): 181-188.
19 Chaddha U, Ronaghi R, Elatre W, et al. Comparison of sample adequacy and diagnostic yield of 19-and 22-G EBUS-TBNA needles[J]. J Bronchol Interv Pulmonol, 2018, 25(4): 264-268.
20 Dooms C, Vander Borght S, et al. A randomized clinical trial of flex 19G needles versus 22G needles for endobronchial ultrasonography in suspected lung cancer[J]. Respiration, 2018, 96(3): 275-282.
21 Pickering EM, Holden VK, Heath JE, et al. Tissue acquisition during EBUS-TBNA: Comparison of cell blocks obtained from a 19G Versus 21G Needle[J]. J Bronchol Interv Pulmonol, 2019, 26(4): 237-244.
22 Wolters C, Darwiche K, Franzen D, et al. A prospective, randomized trial for the comparison of 19-G and 22-G endobronchial ultrasound-guided transbronchial aspiration needles; Introducing a novel end point of sample weight corrected for blood content [J]. Clin Lung Cancer, 2019, 20(3): e265-e273.
23 Kramer T, Kuijvenhoven JC, von der Thüsen J, et al. Endobronchial ultrasound in diagnosing and staging of lung cancer by Acquire 22G TBNB versus regular 22G TBNA needles: A randomized clinical trial[J]. Lung Cancer, 2023, 185: 107362.
24 Bang JY, Magee SH, Ramesh J, et al. Randomized trial comparing fanning with standard technique for endoscopic ultrasound-guided fine-needle aspiration of solid pancreatic mass lesions[J]. Endoscopy, 2013, 45(6): 445-450.
25 Agrawal A, Ghori U, Chaddha U, et al. Combined EBUS-IFB and EBUS-TBNA vs EBUS-TBNA alone for intrathoracic adenopathy: A Meta-analysis [J]. Ann Thorac Surg, 2022, 114(1): 340-348.
26 Gonuguntla HK, Shah M, Gupta N, et al. Endobronchial ultrasound-guided transbronchial cryo-nodal biopsy: a novel approach for mediastinal lymph node sampling[J]. Respirol Case Rep, 2021, 9(8): e00808.
27 Zhang J, Guo JR, Huang ZS, et al. Transbronchial mediastinal cryobiopsy in the diagnosis of mediastinal lesions: a randomised trial[J]. Eur Respir J, 2021, 58(6): 2100055.
28 Guberina M, Herrmann K, Pöttgen C, et al. Prediction of malignant lymph nodes in NSCLC by machine-learning classifiers using EBUS-TBNA and PET/CT[J]. Sci Rep, 2022, 12(1): 17511.
29 Guberina M, Darwiche K, Hautzel H, et al. Impact of EBUS-TBNA in addition to 18FFDG-PET/CT imaging on target volume definition for radiochemotherapy in stage Ⅲ NSCLC[J]. Eur J Nucl Med Mol Imag, 2021, 48(9): 2894-2903.
30 Ugurlu E, Metin M, Cetin N, et al. Evaluation of hypermetabolic mediastinal-hilar lymph nodes determined by PET/CT with EBUS-TBNA and calculation of SUVmax cutoff values in differentiation of malignancy[J]. Medicine(Baltimore), 2023, 102(35): e34928.
31 Demirkol B, Tanriverdi E, Gül Ş, et al. The role of endobronchial ultrasonography elastography in the diagnosis of hilar and mediastinal lymph nodes[J]. Turk J Med Sci, 2023, 53(3): 712-720.
32 Madan K, Madan M, Iyer H, et al. Utility of elastography for differentiating malignant and benign lymph nodes during EBUS-TBNA: A systematic review and Meta-analysis[J]. J Bronchology Interv Pulmonol, 2022, 29(1): 18-33.

备注/Memo

备注/Memo:
基金项目: 广东省自然科学基金面上项目(2024A1515012336)
通信作者: 荣 磊, Email:ronglei@hku-szh.org
更新日期/Last Update: 2024-10-25