Journal of Tuberculosis and Lung Disease ›› 2025, Vol. 6 ›› Issue (2): 121-124.doi: 10.19983/j.issn.2096-8493.20250004
• Special Topic • Previous Articles Next Articles
Liu Jingyi1, Hou Yue1,2, Wu Jianlin1()
Received:
2024-12-30
Online:
2025-04-20
Published:
2025-04-11
Contact:
Wu Jianlin, Email: CLC Number:
Liu Jingyi, Hou Yue, Wu Jianlin. A brief discussion on the origin and current status of pulmonary ground glass nodules from the perspective of imaging[J]. Journal of Tuberculosis and Lung Disease , 2025, 6(2): 121-124. doi: 10.19983/j.issn.2096-8493.20250004
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.jtbld.cn/EN/10.19983/j.issn.2096-8493.20250004
[1] |
Austin JH, Müller NL, Friedman PJ, et al. Glossary of terms for CT of the lungs: recommendations of the Nomenclature Committee of the Fleischner Society. Radiology, 1996, 200(2): 327-331. doi:10.1148/radiology.200.2.8685321.
pmid: 8685321 |
[2] | 陈亮, 方文涛. 肺叶切除及肺段切除治疗早期非小细胞疗效对比研究进展. 中国肺癌杂志, 2019, 22(8):526-531. doi:10.3779/j.issn.1009-3419.2019.08.08. |
[3] | 侯姝, 王颖. 低剂量CT对肺结节与肺癌筛查情况及疾病易感因素分析. 生命科学仪器, 2022, 20(z1):49-50. doi:10.11967/202200649. |
[4] | Yang T, Chen R, Gu X, et al. Association of fine particulate matter air pollution and its constituents with lung function: The China Pulmonary Health study. Environ Int, 2021, 156: 106707. doi:10.1016/j.envint.2021.106707. |
[5] | Hill W, Lim EL, Weeden CE, et al. Lung adenocarcinoma promotion by air pollutants. Nature, 2023, 616(7955): 159-167. doi:10.1038/s41586-023-05874-3. |
[6] |
Klein J, Gamsu G. High resolution computed tomography of diffuse lung disease. Invest Radiol, 1989, 24(10): 805-812. doi:10.1097/00004424-198910000-00015.
pmid: 2793393 |
[7] | Guhl L. High-resolution computerized tomography in interstitial lung diseases: experiences with over 100 patients. Bildgebung, 1991, 58(2): 51-55. |
[8] |
Jaakkola J, Partanen K, Terho EO, et al. Radiographic grading of extrinsic allergic alveolitis: a comparison between a modified ILO classification and a descriptive method. Acta Radiol, 1991, 32(6): 461-466. doi:10.3109/02841859109177607.
pmid: 1742127 |
[9] | Remy-Jardin M, Remy J, Giraud F, et al. Computed tomography assessment of ground-glass opacity: semiology and significance. J Thorac Imaging, 1993, 8(4): 249-264. doi:10.1097/00005382-199323000-00001. |
[10] | Engeler CE, Tashjian JH, Trenkner SW, et al. Ground-glass opacity of the lung parenchyma: a guide to analysis with high-resolution CT. AJR Am J Roentgenol, 1993, 160(2): 249-251. doi:10.2214/ajr.160.2.8424326. |
[11] | Noguchi M, Morikawa A, Kawasaki M, et al. Small adenocarcinoma of the lung. Histologic characteristics and prognosis. Cancer, 1995, 75(12):2844-2852. doi:10.1002/1097-0142(19950615)75:12. |
[12] |
Jang HJ, Lee KS, Kwon OJ, et al. Bronchioloalveolar carcinoma: focal area of ground-glass attenuation at thin-section CT as an early sign. Radiology, 1996, 199(2):485-488. doi:10.1148/radiology.199.2.8668800.
pmid: 8668800 |
[13] |
Yang Z, Sone S, Takashima S, et al. Small peripheral carcinomas of the lung: thin-section CT and pathologic correlation. Eur Radiol, 1999, 9(9): 1819-1825. doi:10.1007/s003300050929.
pmid: 10602957 |
[14] | Yang ZG, Sone S, Takashima S, et al. High-resolution CT analysis of small peripheral lung adenocarcinomas revealed on screening helical CT. AJR Am J Roentgenol, 2001, 176(6): 1399-1407. doi:10.2214/ajr.176.6.1761399. |
[15] | 吴晓璐, 徐秋贞, 陈文达, 等. 基于影像组学的肺亚实性结节侵袭性预测模型建立及分析. 中华医学杂志, 2022, 102(3): 209-215. doi:10.3760/cma.j.cn112137-20210829-01965. |
[16] |
Qi L, Lu W, Yang L, et al. Qualitative and quantitative imaging features of pulmonary subsolid nodules: differentiating invasive adenocarcinoma from minimally invasive adenocarcinoma and preinvasive lesions. J Thorac Dis, 2019, 11(11): 4835-4846. doi:10.21037/jtd.2019.11.35.
pmid: 31903274 |
[17] | 李辉. 肺结节临床研究任重道远. 中华医学杂志, 2021, 101(33):2569-2570. doi:10.3760/cma.j.cn112137-20210708-01530. |
[18] | Felix L, Serra-Tosio G, Lantuejoul S, et al. CT characteristics of resolving ground-glass opacities in a lung cancer screening programme. Eur J Radiol, 2011, 77(3): 410-416. doi:10.1016/j.ejrad.2009.09.008. |
[19] | Lim HJ, Ahn S, Lee KS, et al. Persistent pure ground-glass opacity lung nodules ≥10 mm in diameter at CT scan: histopathologic comparisons and prognostic implications. Chest, 2013, 144(4): 1291-1299. doi:10.1378/chest.12-2987. |
[20] |
Chang B, Hwang JH, Choi YH, et al. Natural history of pure ground-glass opacity lung nodules detected by low-dose CT scan. Chest, 2013, 143(1): 172-178. doi:10.1378/chest.11-2501.
pmid: 22797081 |
[21] | Brodersen J, Voss T, Martiny F, et al. Overdiagnosis of lung cancer with low-dose computed tomography screening: meta-analysis of the randomised clinical trials. Breathe (Sheff), 2020, 16(1):200013. doi:10.1183/20734735.0013-2020. |
[22] | 刘士远. 重视肺结节临床处理中的过度诊疗问题. 中华放射学杂志, 2021, 55(11):1113-1116. doi:10.3760/cma.j.cn112149-20201123-01256. |
[23] | Sawada S, Yamashita N, Sugimoto R, et al. Long-term outcomes of patients with ground-glass opacities detected using CT scanning. Chest, 2017, 151(2): 308-315. doi:10.1016/j.chest.2016.07.007. |
[24] | Mayne NR, Elser H, Lin BK, et al. The impact of extended delayed surgery for indolent lung cancer or part-solid ground glass nodules. Ann Thorac Surg, 2022, 113(6): 1827-1834. doi:10.1016/j.athoracsur.2021.05.099. |
[25] |
Lee HW, Jin KN, Lee JK, et al. Long-term follow-up of ground-glass nodules after 5 years of stability. J Thorac Oncol, 2019, 14(8): 1370-1377. doi:10.1016/j.jtho.2019.05.005.
pmid: 31085340 |
[26] |
Chen K, Chen W, Cai J, et al. Favorable prognosis and high discrepancy of genetic features in surgical patients with multiple primary lung cancers. J Thorac Cardiovasc Surg, 2018, 155(1): 371-379. e1. doi:10.1016/j.jtcvs.2017.08.141.
pmid: 29092754 |
[27] |
Lee JH, Lim WH, Hong JH, et al. Growth and clinical impact of 6-mm or larger subsolid nodules after 5 years of stability at chest CT. Radiology, 2020, 295(2): 448-455. doi:10.1148/radiol.2020191921.
pmid: 32181731 |
[28] |
Madariaga ML, Lennes IT, Best T, et al. Multidisciplinary selection of pulmonary nodules for surgical resection: diagnostic results and long-term outcomes. J Thorac Cardiovasc Surg, 2020, 159(4): 1558-1566. e3. doi:10.1016/j.jtcvs.2019.09.030.
pmid: 31669016 |
[29] | Yang K, Liu J, Tang W, et al. Identification of benign and malignant pulmonary nodules on chest CT using improved 3D U-Net deep learning framework. Eur J Radiol, 2020, 129: 109013. doi:10.1016/j.ejrad.2020.109013. |
[30] | 韩欣洁, 孙军平, 张明月, 等. 肺磨玻璃结节的胸部CT影像特征及其对结节良恶性的诊断价值. 现代肿瘤医学, 2020, 28(13): 2286-2290. doi:10.3969/j.issn.1672-4992.2020.13.023. |
[31] | 姜阁阁, 梁媛, 都丽娜, 等. CT圆度测量评估磨玻璃结节样肺腺癌浸润程度研究进展. 结核与肺部疾病杂志, 2022, 3(2): 158-161. doi:10.19983/j.issn.2096-8493.20210154. |
[32] | Lee G, Park H, Lee HY, et al. Tumor margin contains prognostic information: radiomic margin characteristics analysis in lung adenocarcinoma patients. Cancers (Basel), 2021, 13(7): 1676. doi:10.3390/cancers13071676. |
[33] | Altorki N, Wang X, Kozono D, et al. Lobar or sublobar resection for peripheral stage IA non-small-cell lung cancer. N Engl J Med, 2023, 388(6): 489-498. doi:10.1056/NEJMoa2212083. |
[34] | 柯明耀, 褚淑媛, 雍雅智, 等. 经皮介入消融治疗周围型肺癌的研究进展. 国际呼吸杂志, 2023, 43(3): 302-309. doi:10.3760/cma.j.cn131368-20221111-01014. |
[35] | 于瀚博, 吴江宇, 田文鑫, 等. 肺结节的手术治疗策略. 中华全科医师杂志, 2024, 23(11): 1150-1154. doi:10.3760/cma.j.cn114798-20240225-00108. |
[36] | Qu R, Tu D, Hu S, et al. Electromagnetic navigation bronchoscopy-guided microwave ablation combined with uniportal video-assisted thoracoscopic surgery for multiple ground glass opacities. Ann Thorac Surg, 2022, 113(4): 1307-1315. doi:10.1016/j.athoracsur.2021.04.061. |
[37] | 钟宏源, 李文涛. 肺结节外科治疗进展. 中国综合临床, 2024, 40(1):41-48. doi:10.3760/cma.j.cn101721-20231019-00108. |
[1] | Jiang Qi, Ma Yiming, Chen Yan. Review of the 2025 Global Initiative for Chronic Obstructive Lung Disease (GOLD) updates: focusing on personalized treatment, comorbidity management, and vaccination [J]. Journal of Tuberculosis and Lung Disease, 2025, 6(2): 125-127. |
[2] | Qian Mengni, Lu Nihong, Du Yingrong. Research progress on the risk of type Ⅱ diabetes complicated with severe pulmonary tuberculosis [J]. Journal of Tuberculosis and Lung Disease, 2025, 6(2): 225-233. |
[3] | Yang Shuqi, Li Feng. Advances in PD1/PD-L1 inhibitors in tuberculosis research [J]. Journal of Tuberculosis and Lung Disease, 2025, 6(1): 94-101. |
[4] | Liu Fang, Ma Jintong, Liu Yongmei, Luo Peipei, Feng Yang, Liu Zhenlong, Wang Yuhong. Analysis of risk factors of chronic obstructive pulmonary disease complicated with pulmonary tuberculosis with tendency score matching method and construction of a prediction model [J]. Journal of Tuberculosis and Lung Disease, 2024, 5(6): 511-516. |
[5] | Fan Weifang, Huang Jinpeng, Yao Liwei. Advances in pulmonary rehabilitation nursing for patients with post-tuberculosis lung Disease [J]. Journal of Tuberculosis and Lung Disease, 2024, 5(6): 560-566. |
[6] | Zhu Yixing, Chang De. Current status and prospects of management of chronic respiratory diseases [J]. Journal of Tuberculosis and Lung Disease, 2024, 5(6): 567-572. |
[7] | Meng Ting, Chen Jingfang, Deng Guofang, Lin Yi, Ruan Shujin, Liu Linlin, Li Mengjun. Research progress on mental vulnerability and anxiety-depression status in tuberculosis patients [J]. Journal of Tuberculosis and Lung Disease, 2024, 5(6): 583-589. |
[8] | Yang Hongyu, Liu Qiaolin, Kang Xiong, Yang Xiaoli. Research progress on prognostic factors and integrated prevention and control strategies of tuberculosis and AIDS [J]. Journal of Tuberculosis and Lung Disease, 2024, 5(6): 590-596. |
[9] | Zhao Fei, Zhan Lu. Research progress on the regulation of TLR4 signaling pathway by miR-451a in the pathogenesis of tuberculosis [J]. Journal of Tuberculosis and Lung Disease, 2024, 5(5): 484-488. |
[10] | He Fanyi, Lu Nihong, Du Yingrong. Research progress on the interaction between tuberculosis and COVID-19 [J]. Journal of Tuberculosis and Lung Disease, 2024, 5(4): 345-351. |
[11] | Zhao Jun, Yang Hongyu, Kang Xiong. Research progress on influencing factors and intervention strategies of stigma in patients with pulmonary tuberculosis [J]. Journal of Tuberculosis and Lung Disease, 2024, 5(4): 364-369. |
[12] | Qu Chunjin, Peng Jiayi, Liu Xinyi, Xiao Guanchen, Gu Fen, Li Nannan. Research progress on continuous nursing of patients with chronic obstructive pulmonary disease [J]. Journal of Tuberculosis and Lung Disease, 2024, 5(3): 254-259. |
[13] | Yan Yanfeng, Qi Wenxia, Cui Yonghui, Wei Caihong. Progress in the expression of long-stranded noncoding RNA and their role in chronic obstructive pulmonary disease [J]. Journal of Tuberculosis and Lung Disease, 2024, 5(2): 172-178. |
[14] | Peng Maocuo, Xie Jungang. Research progress on immune cells in chronic obstructive pulmonary disease complicated with cardiovascular disease [J]. Journal of Tuberculosis and Lung Disease, 2024, 5(2): 179-185. |
[15] | Cao Hong, Qian Bing, Wu Jinju. Current situation of tuberculosis epidemic in schools and research progress in prevention and control [J]. Journal of Tuberculosis and Lung Disease, 2024, 5(1): 88-92. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||