切换至 "中华医学电子期刊资源库"

中华肺部疾病杂志(电子版) ›› 2019, Vol. 12 ›› Issue (06) : 772 -775. doi: 10.3877/cma.j.issn.1674-6902.2019.06.025

综述

支气管哮喘患者的高分辨率CT的常见表现
王彦1, 吴奎2, 王长征1, 毕玉田2,()   
  1. 1. 400037 重庆,陆军军医大学(第三军医大学)第二附属医院呼吸科
    2. 401120 重庆,重庆医科大学附属第三医院呼吸疾病中心
  • 收稿日期:2019-04-19 出版日期:2019-12-20
  • 通信作者: 毕玉田
  • 基金资助:
    国家自然科学基金面上项目(31371013); 国家自然科学青年基金(30900657)

Manifestations of high resolution CT in patients with bronchial asthma

Yan Wang1, Kui Wu2, Changzheng Wang1   

  • Received:2019-04-19 Published:2019-12-20
引用本文:

王彦, 吴奎, 王长征, 毕玉田. 支气管哮喘患者的高分辨率CT的常见表现[J]. 中华肺部疾病杂志(电子版), 2019, 12(06): 772-775.

Yan Wang, Kui Wu, Changzheng Wang. Manifestations of high resolution CT in patients with bronchial asthma[J]. Chinese Journal of Lung Diseases(Electronic Edition), 2019, 12(06): 772-775.

1
Wang D, Luo J, Du W, et al. A morphologic study of the airway structure abnormalities in patients with asthma by high-resolution computed tomography[J]. J Thorac Dis, 2016, 8(10): 2697-2708.
2
Gupta S, Siddiqui S, Haldar P, et al. Qualitative analysis of high-resolution CT scans in severe asthma[J]. Chest, 2009, 136(6): 1521-1528.
3
Paganin F, Trussard V, Seneterre C, et al. Chest radiography and high resolution computed tomography of the lungs in asthma[J]. Am Rev Respir Dis, 1992, 146(4): 1084-1087.
4
Harmanci E, Kebapci M, Metintas M, et al. High-resolution computed tomography fndings are correlated with disease severity in asthma[J]. Respiration, 2002, 69(5): 420-426.
5
Niimi A, Matsumoto H, Amitani R, et al. Airway wall thickness in asthma assessed by computed tomography. Relation to clinical indices[J]. Am J Respir Crit Care Med, 2000, 162(4 Pt 1): 1518-1523.
6
Awadh N, Muller NL, Park CS, et al. Airway wall thickness in patients with near fatal asthma and control groups: assessment with high resolution computed tomographic scanning[J]. Thorax, 1998, 53(4): 248-253.
7
Asker S, Asker M, Ozbay B. Evaluation of airway wall thickness via high resolution computerized tomography (HRCT) in mild intermittent asthma[J]. Respir Care, 2014, 59(4): 550-556.
8
Okazawa M, Müller N, McNamara AE, et al. Human airway narrowing measured using high resolution computed tomography[J]. Am J Respir Crit Care Med, 1996, 154(5): 1557-1562.
9
Gupta S, Siddiqui S, Haldar P, et al. Quantitative analysis of high-resolution computed tomography scans in severe asthma subphenotypes[J]. Thorax, 2010, 65(9): 775-781.
10
Niimi A, Matsumoto H, Amitani R, et al. Effect of short-term treatment with inhaled corticosteroid on airway wall thickening in asthma[J]. Am J Med, 2004, 116(11): 725-731.
11
Lee YM, Park JS, Hwang JH, et al. High-resolution CT findings in patients with near-fatal asthma: comparison of patients with mild-to-severe asthma and normal control subjects and changes in airway abnormalities following steroid treatment[J].Chest, 2004, 126(6): 1840-1848.
12
Kurt E, Ozkan R, Orman A, et al. Irreversiblity of remodeled features on high-resolution computerized tomography scans of asthmatic patients on conventional therapy: a 6-year longitudinal study[J]. J Asthma, 2009, 46(3): 300-307.
13
Oguzulgen IK, Kervan F, Ozis T, et al. The impact of bronchiectasis in clinical presentation of asthma[J]. South Med J, 2007,100(5): 468-471.
14
Carr DH, Hibon S, Rubens M, et al. Peripheral airways obstruction on high-resolution computed tomography in chronic severe asthma[J]. Respir Med, 1998, 92(3): 448-453.
15
Thurlbeck WM. Aspects of chronic airflow obstruction[J]. Chest, 1977, 72(3): 341-349.
16
Dunnill MS. The pathology of asthma, with special reference to changes in the bronchial mucosa[J]. J Clin Pathol, 1960, 13: 27-33.
17
Paganin F, Trussard V, Seneterre E, et al. Chest radiographyand high resolution computed tomography of the lungs in asthma[J]. Am Rev Resp Dis, 1992, 146(4): 1084-1087.
18
Dimakou K, Gousiou A, Toumbis M, et al. Investigation of bronchiectasis in severe uncontrolled asthma[J]. Clin Respir J, 2018, 12(3): 1212-1218.
19
Takemura M, Niimi A, Minakuchi M, et al. Bronchial dilatation in asthma: relation to clinical and sputum indices[J].Chest, 2004, 125(4): 1352-1358.
20
Paganin F, Séneterre E, Chanez P, et al. Computed tomography of the lungs in asthma: influence of disease severity and etiology[J]. Am J Respir Crit Care Med, 1996, 153: 110-114.
21
Walker C, Gupta S, Hartley R, et al. Computed tomography scans in severe asthma: utility and clinical implications[J]. Curr Opin Pulm Med, 2012, 18: 42-47.
22
Park CS, Müller NL, Worthy SA, et al. Airway obstruction in asthmatic and healthy individuals: inspiratory and expiratory thin-section CT fndings[J]. Radiology, 1997, 203: 361-367.
23
Lynch DA, Newell JD, Tschomper BA, et al. Uncomplicated asthma in adults: comparison of CT appearance of the lungs in asthmatic and healthy subjects[J]. Radiology, 1993, 188: 829-833.
24
Cukier A, Stelmach R, Kavakama JI, et al. Persistent asthma in adults: comparison of high resolution computed tomography of the lungs after one year of follow-up[J].Rev Hosp Clin Fac Med Sao Paulo, 2001, 56(3): 63-68.
25
Khadadah M, Jayakrishnan B, Muquim A, et al. High resolution computed tomography in asthma[J].Oman Med J, 2012, 27(2): 145-150.
26
Yilmaz S, Ekici A, Ekici M, et al. High-resolution computed tomography fndings in elderly patients with asthma[J]. Eur J Radiol, 2006, 59: 238-243.
27
Jensen SP, Lynch DA, Brown KK, et al. High-resolution CT features of severe asthma and bronchiolitis obliterans[J]. Clin Radiol, 2002, 57: 1078-1085.
28
Bommart S, Marin G, Bourdin A, et al. Relationship between CT air trapping criteria and lung function in small airway impairment quantification[J].BMC Pulm Med, 2014, 14: 29.
29
Gupta S, Hartley R, Khan UT, et al. Quantitative computed tomography-derived clusters: redefining airway remodeling in asthmatic patients[J]. J Allergy Clin Immunol, 2014, 133(3): 729-738.
30
Tunon-de-Lara JM, Laurent F, Giraud V, et al. Air trapping in mild and moderate asthma: effect of inhaled corticosteroids[J]. J Allergy Clin Immunol, 2007, 119(3): 583-590.
31
Grenier P, Mourey-Gerosa I, Benali K, et al. Abnormalities of the airways and lung parenchyma in asthmatics: CT observations in 50 patients and inter-and intraobserver variability[J]. Eur Radiol, 1996, 6(2): 199-206.
32
Laurent F, Latrabe V, Raherison C, et al. Functional significance of air trapping detected in moderate asthma[J]. Eur Radiol, 2000, 10(9): 1404-1410.
33
Hartley RA, Barker BL, Newby C, et al. Relationship between lung function and quantitative computed tomographic parameters of airway remodeling, air trapping, and emphysema in patients with asthma and chronic obstructive pulmonary disease: A single-center study[J]. J Allergy Clin Immunol, 2016, 137(5): 1413-1422.
34
Simpson JL, Milne DG, Gibson PG. Neutrophilic asthma has different radiographic features to COPD and smokers[J]. Respir Med, 2009, 103: 881-887.
35
Park SW, Park JS, Jeong SH, et al. Air trapping is a major determinant of persistent airway obstruction in asthmatics[J]. Respir Med, 2012, 106(6): 786-793.
36
Mikos M, Grzanka P, Sladek K, et al. High-resolution computed tomography evaluation of peripheral airways in asthma patients: comparison of focal and diffuse air trapping[J]. Respiration, 2009, 77(4): 381-388.
37
Suwatanapongched T, Thongprasert C, Lertpongpiroon S, et al. Expiratory air trapping during asthma exacerbation: Relationships with clinical indices and proximal airway morphology[J]. Eur J Radiol, 2015, 84(12): 2671-2678.
38
Ueda T, Niimi A, Matsumoto H, et al. Role of small airways in asthma: investigation using high-resolution computed tomography[J]. J Allergy Clin Immunol, 2006, 118(5): 1019-1125.
39
Ito R, Yokoyama A, Hamada H, et al. Effect of inhaled bronchodilators on air trapping in patients with stable asthma[J]. J Asthma, 2006, 43(2): 125-129.
40
Zeidler MR, Kleerup EC, Goldin JG, et al. Montelukast improves regional air-trapping due to small airways obstruction in asthma[J]. Eur Respir J, 2006, 27(2): 307-315.
41
Park JW, Hong YK, Kim CW, et al. High-resolution computed tomography in patients with bronchial asthma: correlation with clinical features, pulmonary functions and bronchial hyperresponsiveness[J]. J Investig Allergol Clin Immunol, 1997, 7(3): 186-192.
42
Hong KY, Lee JH, Park SW, et al. Evaluation of emphysema in patients with asthma using high-resolution CT[J]. Korean J Intern Med, 2002, 17(1): 24-30.
43
Kurashima K, Fukuda C, Nakamoto K, et al. CT-diagnosed emphysema and prognosis of chronic airflow obstruction: a retrospective study[J]. BMJ Open, 2013, 3(11): e003541.
[1] 葛卫卫, 李伟, 李荣兴, 成亚会, 李青松. MSCT与HRCT在不同病理类型肺磨玻璃结节中的临床应用[J]. 中华肺部疾病杂志(电子版), 2023, 16(04): 572-574.
[2] 路东明, 陈建华, 艾月琴. 布地格福吸入气雾剂治疗支气管哮喘的临床分析[J]. 中华肺部疾病杂志(电子版), 2023, 16(03): 361-363.
[3] 谭玲芳, 周克兵. 基于生物信息学整合鉴定与支气管哮喘相关的潜在诊断生物标志物[J]. 中华肺部疾病杂志(电子版), 2023, 16(03): 329-334.
[4] 刘汶睿, 高丽娜, 于书娴, 周建刚. 支气管哮喘患者血清IL-27与IFN-γ及肺功能相关性分析[J]. 中华肺部疾病杂志(电子版), 2023, 16(02): 224-226.
[5] 刘娜, 赵然然. 支气管哮喘微量元素水平与免疫功能的相关性分析[J]. 中华肺部疾病杂志(电子版), 2023, 16(01): 74-76.
[6] 李德莲, 杨鹏, 王琳. FeNO联合总IgE、CXCL13检测对儿童支气管炎继发哮喘的意义[J]. 中华肺部疾病杂志(电子版), 2022, 15(06): 838-840.
[7] 张志华, 肖晓晨, 梅少奇. 维生素D3辅助治疗哮喘合并呼吸道感染对气道重塑及免疫功能影响[J]. 中华肺部疾病杂志(电子版), 2022, 15(03): 355-357.
[8] 张超, 岳小哲. EOS、总IgE与儿童哮喘严重程度和肺功能的相关性[J]. 中华肺部疾病杂志(电子版), 2022, 15(02): 183-186.
[9] 李江华, 李力, 何勇. 呼出气一氧化氮的研究进展[J]. 中华肺部疾病杂志(电子版), 2022, 15(01): 119-122.
[10] 谢心怡, 胡宇翔, 席凡捷. 普仑司特联合丙酸氟替卡松治疗小儿哮喘的临床意义[J]. 中华肺部疾病杂志(电子版), 2022, 15(01): 100-102.
[11] 尹莉莉, 李伟, 殷爱云, 张永燕. 孟鲁司特钠联合细菌溶解产物对哮喘患儿IL-33、sST2受体、EOS、ECP的影响[J]. 中华肺部疾病杂志(电子版), 2021, 14(06): 803-805.
[12] 韩林华, 王婧, 周翔. 定喘汤穴位贴敷对哮喘急性发作EOS、总IgE及肺功能的影响[J]. 中华肺部疾病杂志(电子版), 2021, 14(05): 647-649.
[13] 罗妍妍, 陈青. 益生菌辅治小儿哮喘及对S100β蛋白、TLR4与炎性免疫因子的影响[J]. 中华肺部疾病杂志(电子版), 2021, 14(05): 608-610.
[14] 蔡辉, 胡航, 曹亚. 中性粒细胞胞外诱捕网水平联合肺功能对哮喘急性发作预测意义[J]. 中华肺部疾病杂志(电子版), 2021, 14(05): 599-601.
[15] 顾艳利, 宋勇, 张方. 姜黄素在肺部炎症性疾病中的免疫调节作用[J]. 中华肺部疾病杂志(电子版), 2021, 14(04): 539-542.
阅读次数
全文


摘要