Nodule characterization: subsolid nodules.
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Maria Shiau | James Suh | D. Naidich | J. Ko | M. Shiau | J. Suh | David P Naidich | Jane P Ko | R. Raad | Saul E Harari | Roy A Raad | Saul Harari
[1] Makoto Tanaka,et al. Curative wedge resection for non-invasive bronchioloalveolar carcinoma. , 2009, The Tohoku journal of experimental medicine.
[2] K. Mori,et al. Proportion of ground-glass opacity on high-resolution computed tomography in clinical T1 N0 M0 adenocarcinoma of the lung: A predictor of lymph node metastasis. , 2002, The Journal of thoracic and cardiovascular surgery.
[3] M. Tsuboi,et al. A phase III randomized trial of lobectomy versus limited resection for small-sized peripheral non-small cell lung cancer (JCOG0802/WJOG4607L). , 2010, Japanese journal of clinical oncology.
[4] David F Yankelevitz,et al. Solitary and multiple resected adenocarcinomas after CT screening for lung cancer: histopathologic features and their prognostic implications. , 2009, Lung cancer.
[5] S Sone,et al. High-resolution CT analysis of small peripheral lung adenocarcinomas revealed on screening helical CT. , 2001, AJR. American journal of roentgenology.
[6] Mathias Prokop,et al. Pulmonary ground-glass nodules: increase in mass as an early indicator of growth. , 2010, Radiology.
[7] J. Price,et al. Focal organizing pneumonia mimicking small peripheral lung adenocarcinoma on CT scans. , 1998, Australasian radiology.
[8] H. Kato,et al. Percutaneous CT-guided fine needle aspiration for lung cancer smaller than 2 cm and revealed by ground-glass opacity at CT. , 2006, Lung cancer.
[9] Tae Jung Kim,et al. Is there a role for FDG PET in the management of lung cancer manifesting predominantly as ground-glass opacity? , 2012, AJR. American journal of roentgenology.
[10] R. Wahl,et al. Diagnosis and Differentiation of Bronchioloalveolar Carcinoma from Adenocarcinoma with Bronchioloalveolar Components with Metabolic and Anatomic Characteristics Using PET/CT , 2008, Journal of Nuclear Medicine.
[11] A. Nicholson,et al. Bronchioloalveolar Carcinoma and Lung Adenocarcinoma: The Clinical Importance and Research Relevance of the 2004 World Health Organization Pathologic Criteria , 2006, Journal of thoracic oncology : official publication of the International Association for the Study of Lung Cancer.
[12] Hironobu Nakamura,et al. Pulmonary adenocarcinomas with ground-glass attenuation on thin-section CT: quantification by three-dimensional image analyzing method. , 2008, European journal of radiology.
[13] V. Seshan,et al. Antibiotic use in the management of pulmonary nodules. , 2010, Chest.
[14] M. Godoy,et al. Reversed halo sign: high-resolution CT scan findings in 79 patients. , 2012, Chest.
[15] Arnold M. R. Schilham,et al. Iterative reconstruction techniques for computed tomography Part 1: Technical principles , 2013, European Radiology.
[16] H. Kato,et al. A clinicopathological study of resected adenocarcinoma 2 cm or less in diameter. , 2004, The Annals of thoracic surgery.
[17] D. Naidich,et al. Evaluation of individuals with pulmonary nodules: when is it lung cancer? Diagnosis and management of lung cancer, 3rd ed: American College of Chest Physicians evidence-based clinical practice guidelines. , 2013, Chest.
[18] D. Kontoyiannis,et al. The diagnostic value of halo and reversed halo signs for invasive mold infections in compromised hosts. , 2011, Clinical infectious diseases : an official publication of the Infectious Diseases Society of America.
[19] S. Kido,et al. Prognostic value of bronchiolo-alveolar carcinoma component of small lung adenocarcinoma. , 1999, The Annals of thoracic surgery.
[20] Etsuo Miyaoka,et al. Pulmonary Ground-Glass Opacity (GGO) Lesions–Large Size and a History of Lung Cancer are Risk Factors for Growth , 2008, Journal of thoracic oncology : official publication of the International Association for the Study of Lung Cancer.
[21] K. Doi,et al. Malignant versus benign nodules at CT screening for lung cancer: comparison of thin-section CT findings. , 2004, Radiology.
[22] M Fujita,et al. Prevalence of air bronchograms in small peripheral carcinomas of the lung on thin-section CT: comparison with benign tumors. , 1991, AJR. American journal of roentgenology.
[23] H. Nakamura,et al. Survival following lobectomy vs limited resection for stage I lung cancer: a meta-analysis , 2005, British Journal of Cancer.
[24] Yozo Sato,et al. Focal fibrosis as a cause of localized ground glass attenuation (GGA)--CT and MR findings. , 2002, Radiation medicine.
[25] M. Phelps,et al. FDG-PET imaging in lung cancer: how sensitive is it for bronchioloalveolar carcinoma? , 2002, European Journal of Nuclear Medicine and Molecular Imaging.
[26] Seijiro Sato,et al. Limited resection for noninvasive bronchioloalveolar carcinoma diagnosed by intraoperative pathologic examination. , 2009, The Annals of thoracic surgery.
[27] Kenji Suzuki,et al. The proportion of consolidation to ground-glass opacity on high resolution CT is a good predictor for distinguishing the population of non-invasive peripheral adenocarcinoma. , 2003, Lung cancer.
[28] Kenji Eguchi,et al. Focal ground-glass opacity detected by low-dose helical CT. , 2002, Chest.
[29] K. Yasumoto,et al. Peripheral lung adenocarcinoma: correlation of thin-section CT findings with histologic prognostic factors and survival. , 2001, Radiology.
[30] K. S. Lee,et al. Focal organizing pneumonia: CT and pathologic findings. , 2001, Journal of Korean medical science.
[31] S. Hirohashi,et al. Mutations of the epidermal growth factor receptor gene in atypical adenomatous hyperplasia and bronchioloalveolar carcinoma of the lung. , 2005, Lung cancer.
[32] R. Miller. Alveolar atypical hyperplasia in association with primary pulmonary adenocarcinoma: a clinicopathological study of 10 cases. , 1993, Thorax.
[33] Noriyuki Tomiyama,et al. Automated assessment of malignant degree of small peripheral adenocarcinomas using volumetric CT data: correlation with pathologic prognostic factors. , 2010, Lung cancer.
[34] O. Miettinen,et al. Screening for lung cancer : Lung Cancer , 2000 .
[35] B. Franc,et al. Tumor fluoro-2-deoxy-D-glucose avidity on positron emission tomographic scan predicts mortality in patients with early-stage pure and mixed bronchioloalveolar carcinoma. , 2006, The Journal of thoracic and cardiovascular surgery.
[36] M. Gaeta,et al. Air-space pattern in lung metastasis from adenocarcinoma of the GI tract. , 1996, Journal of computer assisted tomography.
[37] Y. Yamashita,et al. Volume-doubling time of pulmonary nodules with ground glass opacity at multidetector CT: Assessment with computer-aided three-dimensional volumetry. , 2011, Academic radiology.
[38] S. Braman,et al. Cryptogenic and secondary organizing pneumonia: clinical presentation, radiographic findings, treatment response, and prognosis. , 2011, Chest.
[39] J. Goo,et al. Volumetric measurement of synthetic lung nodules with multi-detector row CT: effect of various image reconstruction parameters and segmentation thresholds on measurement accuracy. , 2005, Radiology.
[40] Hironobu Nakamura,et al. Solitary pulmonary metastases from renal cell carcinoma: comparison of high-resolution CT with pathological findings , 2006, Radiation Medicine.
[41] G. McVey,et al. Screening for lung cancer using low dose CT scanning: results of 2 year follow up , 2005, Thorax.
[42] Ken Kodama,et al. Radical sublobar resection for small-sized non-small cell lung cancer: a multicenter study. , 2006, The Journal of thoracic and cardiovascular surgery.
[43] Jin Mo Goo,et al. Predictive CT findings of malignancy in ground-glass nodules on thin-section chest CT: the effects on radiologist performance , 2008, European Radiology.
[44] H. Honda,et al. Detection of ground-glass opacities by use of hybrid iterative reconstruction (iDose) and low-dose 256-section computed tomography: a phantom study , 2013, Radiological Physics and Technology.
[45] F. Minutoli,et al. Computed tomography halo sign in pulmonary nodules: frequency and diagnostic value. , 1999, Journal of thoracic imaging.
[46] M. Koyama,et al. Treatment strategy for patients with small peripheral lung lesion(s): intermediate-term results of prospective study. , 2008, European journal of cardio-thoracic surgery : official journal of the European Association for Cardio-thoracic Surgery.
[47] E. Patz,et al. PET imaging in patients with bronchioloalveolar cell carcinoma. , 2002, Lung cancer.
[48] A. Blandino,et al. Radiolucencies and cavitation in bronchioloalveolar carcinoma: CT-pathologic correlation , 1999, European Radiology.
[49] O. Honda,et al. One-dimensional quantitative evaluation of peripheral lung adenocarcinoma with or without ground-glass opacity on thin-section CT images using profile curves. , 2009, The British journal of radiology.
[50] M. Mascalchi,et al. Lung Cancer Associated With Cystic Airspaces , 2015, Journal of computer assisted tomography.
[51] M. L. R. D. Christenson,et al. Guidelines for Management of Small Pulmonary Nodules Detected on CT Scans: A Statement From the Fleischner Society , 2006 .
[52] Y. Yatabe,et al. Disproportionate representation of KRAS gene mutation in atypical adenomatous hyperplasia, but even distribution of EGFR gene mutation from preinvasive to invasive adenocarcinomas , 2007, The Journal of pathology.
[53] Jonathan H. Chung,et al. "Reversed halo sign". , 2011, Journal of thoracic imaging.
[54] H. Asamura. Minimally invasive approach to early, peripheral adenocarcinoma with ground-glass opacity appearance. , 2008, The Annals of thoracic surgery.
[55] L. Tanoue,et al. Subsolid Pulmonary Nodules and the Spectrum of Peripheral Adenocarcinomas of the Lung: Recommended Interim Guidelines for Assessment and Management , 2011 .
[56] M. Revel,et al. Are two-dimensional CT measurements of small noncalcified pulmonary nodules reliable? , 2004, Radiology.
[57] J. Goo,et al. Ground-glass nodules found in two patients with malignant melanomas: different growth rate and different histology. , 2010, Clinical imaging.
[58] T. Kohno,et al. Safe and effective minimally invasive approaches for small ground glass opacity. , 2010, The Annals of thoracic surgery.
[59] J. Goo,et al. Differentiation between malignancy and inflammation in pulmonary ground-glass nodules: The feasibility of integrated (18)F-FDG PET/CT. , 2009, Lung cancer.
[60] H. Uno,et al. Prediction of lung adenocarcinoma without vessel invasion: a CT scan volumetric analysis. , 2005, Chest.
[61] Y. Shimizu,et al. Positron Emission Tomography in Relation to Noguchi’s Classification for Diagnosis of Peripheral Non-Small-Cell Lung Cancer 2 cm or Less in Size , 2007, World Journal of Surgery.
[62] D. Naidich,et al. Overview and Strategic Management of Subsolid Pulmonary Nodules , 2012, Journal of thoracic imaging.
[63] H. Ohmatsu,et al. Limited resection trial for pulmonary ground-glass opacity nodules: fifty-case experience. , 2005, The Journal of thoracic and cardiovascular surgery.
[64] G. McVey,et al. Screening for lung cancer using low dose CT scanning: results of 2 year follow up , 2005, Thorax.
[65] S. Sone,et al. CT findings and progression of small peripheral lung neoplasms having a replacement growth pattern. , 2003, AJR. American journal of roentgenology.
[66] O. Miettinen,et al. CT screening for lung cancer: frequency and significance of part-solid and nonsolid nodules. , 2002, AJR. American journal of roentgenology.
[67] Y. Shim,et al. Persistent pulmonary nodular ground-glass opacity at thin-section CT: histopathologic comparisons. , 2007, Radiology.
[68] Y. Satoh,et al. Multiple atypical adenomatous hyperplasia of type II pneumonocytes and bronchiolo‐alveolar carcinoma , 1990, Histopathology.
[69] Rebecca M. Lindell,et al. 5-year lung cancer screening experience: growth curves of 18 lung cancers compared to histologic type, CT attenuation, stage, survival, and size. , 2009, Chest.
[70] Kyung Soo Lee,et al. Natural history of pure ground-glass opacity lung nodules detected by low-dose CT scan. , 2013, Chest.
[71] Akihiko Yoshizawa,et al. A Grading System of Lung Adenocarcinomas Based on Histologic Pattern is Predictive of Disease Recurrence in Stage I Tumors , 2010, The American journal of surgical pathology.
[72] S. Sone,et al. Atypical adenomatous hyperplasia of the lung: correlation between high-resolution CT findings and histopathologic features , 2001, European Radiology.
[73] Y. Nishiwaki,et al. Atypical adenomatous hyperplasia of the lung: a clinicopathological study of 118 cases including cases with multiple atypical adenomatous hyperplasia , 2001, Thorax.
[74] G. Chatellier,et al. Pulmonary nodules: preliminary experience with three-dimensional evaluation. , 2004, Radiology.
[75] Kyung Soo Lee,et al. Lung Cancer Screening with Low-Dose Helical CT in Korea: Experiences at the Samsung Medical Center , 2005, Journal of Korean medical science.
[76] H. Asamura,et al. Clinicopathologic Analysis of Multiple (Five or More) Atypical Adenomatous Hyperplasias (AAHs) of the Lung: Evidence for the AAH-Adenocarcinoma Sequence , 2010, Journal of thoracic oncology : official publication of the International Association for the Study of Lung Cancer.
[77] E. Marchiori,et al. The reversed halo sign on high-resolution CT in infectious and noninfectious pulmonary diseases. , 2011, AJR. American journal of roentgenology.
[78] Young Cheol Yoon,et al. Reversed halo sign on high-resolution CT of cryptogenic organizing pneumonia: diagnostic implications. , 2003, AJR. American journal of roentgenology.
[79] S Sone,et al. Growth rate of small lung cancers detected on mass CT screening. , 2000, The British journal of radiology.
[80] D. Hansell,et al. Organizing pneumonia: perilobular pattern at thin-section CT. , 2004, Radiology.
[81] Norihiro Kikuchi,et al. Prognostic value of tumor disappearance rate on computed tomography in advanced-stage lung adenocarcinoma. , 2007, Clinical lung cancer.
[82] M. Godoy,et al. Reversed Halo Sign on Computed Tomography: State-of-the-Art Review , 2012, Lung.
[83] Masao Nakata,et al. Objective radiologic analysis of ground-glass opacity aimed at curative limited resection for small peripheral non-small cell lung cancer. , 2005, The Journal of thoracic and cardiovascular surgery.
[84] M. L. Rosado de Christenson,et al. Ground-Glass Opacities on Thin-Section Helical CT: Differentiation Between Bronchioloalveolar Carcinoma and Atypical Adenomatous Hyperplasia , 2009 .
[85] Kenji Suzuki,et al. Radiologic classification of small adenocarcinoma of the lung: radiologic-pathologic correlation and its prognostic impact. , 2006, The Annals of thoracic surgery.
[86] Kevin P. Banks,et al. Limitations of dual time point PET in the assessment of lung nodules with low FDG avidity. , 2010, Lung cancer.
[87] Tae Jung Kim,et al. Pulmonary nodular ground-glass opacities in patients with extrapulmonary cancers: what is their clinical significance and how can we determine whether they are malignant or benign lesions? , 2008, Chest.
[88] R. Okita,et al. Multiple ground-glass opacity in metastasis of malignant melanoma diagnosed by lung biopsy. , 2005, The Annals of thoracic surgery.
[89] S. Bölükbas,et al. Management of lung nodules detected by volume CT scanning. , 2010, The New England journal of medicine.
[90] Akihiko Yoshizawa,et al. Impact of proposed IASLC/ATS/ERS classification of lung adenocarcinoma: prognostic subgroups and implications for further revision of staging based on analysis of 514 stage I cases , 2011, Modern Pathology.
[91] K. Ashizawa,et al. Long term follow-up for small pure ground-glass nodules: implications of determining an optimum follow-up period and high-resolution CT findings to predict the growth of nodules , 2012, Japanese Journal of Radiology.
[92] Kyung Soo Lee,et al. Stepwise evolution from a focal pure pulmonary ground-glass opacity nodule into an invasive lung adenocarcinoma: an observation for more than 10 years. , 2010, Lung cancer.
[93] E. Marchiori,et al. Pulmonary histoplasmosis presenting with the reversed halo sign on high-resolution CT scan. , 2011, Chest.
[94] Joon-Kee Yoon,et al. Clinical usefulness of the fluorodeoxyglucose (FDG)-PET maximal standardized uptake value (SUV) in combination with CT features for the differentiation of adenocarcinoma with a bronchioloalveolar carcinoma from other subtypes of non-small cell lung cancers. , 2009, Lung cancer.
[95] R. Hruban,et al. K-ras oncogene activation in atypical alveolar hyperplasias of the human lung. , 1996, Cancer research.
[96] A. Mehta,et al. Fleeting alveolar infiltrates and reversed halo sign in patients with breast cancer treated with tangential beam irradiation. , 2011, Chest.
[97] G. Guyatt,et al. Physicians Evidence-Based Clinical Practice Development : American College of Chest Thrombolytic Therapy Guideline Methodology for Antithrombotic and , 2008 .
[98] Henry Rusinek,et al. Pulmonary Nodules: growth rate assessment in patients by using serial CT and three-dimensional volumetry. , 2012, Radiology.
[99] Sang Min Lee,et al. Transient part-solid nodules detected at screening thin-section CT for lung cancer: comparison with persistent part-solid nodules. , 2010, Radiology.
[100] Ho Yun Lee,et al. Mucinous versus nonmucinous solitary pulmonary nodular bronchioloalveolar carcinoma: CT and FDG PET findings and pathologic comparisons. , 2009, Lung cancer.
[101] G. Ferretti,et al. CT characteristics of resolving ground-glass opacities in a lung cancer screening programme. , 2011, European journal of radiology.
[102] O S Miettinen,et al. Early Lung Cancer Action Project , 2001, Cancer.
[103] Ning Wu,et al. CT screening for lung cancer: the value of short-term CT follow-up. , 2006, Chest.
[104] J. Ko,et al. Lung Nodule Detection and Characterization With Multi-Slice CT , 2005, Journal of thoracic imaging.
[105] Anthony P Reeves,et al. Internal growth of nonsolid lung nodules: radiologic-pathologic correlation. , 2012, Radiology.
[106] H. Alkadhi,et al. Automated attenuation-based kilovoltage selection: preliminary observations in patients after endovascular aneurysm repair of the abdominal aorta. , 2012, AJR. American journal of roentgenology.
[107] Tae Jung Kim,et al. Clinical significance of a solitary ground-glass opacity (GGO) lesion of the lung detected by chest CT. , 2007, Lung cancer.
[108] K. Sugimachi,et al. Lung adenocarcinoma with bronchioloalveolar carcinoma component is frequently associated with foci of high-grade atypical adenomatous hyperplasia. , 2002, American journal of clinical pathology.
[109] N. Isowa,et al. The maximum standardized uptake values on positron emission tomography to predict the Noguchi classification and invasiveness in clinical stage IA adenocarcinoma measuring 2 cm or less in size. , 2009, Interactive cardiovascular and thoracic surgery.
[110] 本田 健. Radiographic and pathological analysis of small lung adenocarcinoma using the new IASLC classification , 2012 .
[111] Setsuo Hirohashi,et al. Small adenocarcinoma of the lung. Histologic characteristics and prognosis , 1995 .
[112] Masumi Kadoya,et al. Small solitary pulmonary nodules (< or =1 cm) detected at population-based CT screening for lung cancer: Reliable high-resolution CT features of benign lesions. , 2003, AJR. American journal of roentgenology.
[113] Hironobu Ohmatsu,et al. Progression of Focal Pure Ground-Glass Opacity Detected by Low-Dose Helical Computed Tomography Screening for Lung Cancer , 2004, Journal of computer assisted tomography.
[114] N. Müller,et al. Fleischner Society: glossary of terms for thoracic imaging. , 2008, Radiology.
[115] G. Guyatt,et al. Grading strength of recommendations and quality of evidence in clinical guidelines: report from an american college of chest physicians task force. , 2006, Chest.
[116] R. Mull. Mass estimates by computed tomography: physical density from CT numbers. , 1984, AJR. American journal of roentgenology.
[117] Tae Jung Kim,et al. Diagnostic accuracy of CT-guided core biopsy of ground-glass opacity pulmonary lesions. , 2008, AJR. American journal of roentgenology.
[118] 中西 邦昭. Alveolar epithelial hyperplasia and adenocarcinoma of the lung , 1990 .
[119] M. L. R. D. Christenson,et al. International Association for the Study of Lung Cancer/American Thoracic Society/European Respiratory Society International Multidisciplinary Classification of Lung Adenocarcinoma , 2012 .
[120] Morihito Okada,et al. Multicenter analysis of high-resolution computed tomography and positron emission tomography/computed tomography findings to choose therapeutic strategies for clinical stage IA lung adenocarcinoma. , 2011, The Journal of thoracic and cardiovascular surgery.
[121] Ken Kodama,et al. Natural history of pure ground-glass opacity after long-term follow-up of more than 2 years. , 2002, The Annals of thoracic surgery.
[122] Michael K Gould,et al. Minimally invasive techniques for the diagnosis of peripheral pulmonary nodules , 2008, Current opinion in pulmonary medicine.
[123] K. Mori,et al. Characteristics of subsolid pulmonary nodules showing growth during follow-up with CT scanning. , 2013, Chest.
[124] Y. Korogi,et al. Adenocarcinomas with predominant ground-glass opacity: correlation of morphology and molecular biomarkers. , 2012, Radiology.
[125] Effect of reconstruction algorithm on image quality and identification of ground-glass opacities and partly solid nodules on low-dose thin-section CT: experimental study using chest phantom. , 2010, European journal of radiology.
[126] J. Erasmus,et al. Low-sensitivity FDG-PET studies: less common lung neoplasms. , 2012, Seminars in nuclear medicine.
[127] Ryutaro Kakinuma,et al. Localized Pure Ground-Glass Opacity on High-Resolution CT: Histologic Characteristics , 2002, Journal of computer assisted tomography.
[128] Masumi Kadoya,et al. Indeterminate solitary pulmonary nodules revealed at population-based CT screening of the lung: using first follow-up diagnostic CT to differentiate benign and malignant lesions. , 2003, AJR. American journal of roentgenology.
[129] H. Tonami,et al. FDG PET measurement of the proliferative potential of non-small cell lung cancer. , 2000, Journal of nuclear medicine : official publication, Society of Nuclear Medicine.
[130] Kazuo Awai,et al. Computer-aided volumetry of pulmonary nodules exhibiting ground-glass opacity at MDCT. , 2010, AJR. American journal of roentgenology.
[131] D. Addrizzo-Harris,et al. Executive Summary: Diagnosis and management of lung cancer, 3rd ed: American College of Chest Physicians evidence-based clinical practice guidelines. , 2013, Chest.
[132] U. Motosugi,et al. Localized mucinous bronchioloalveolar carcinoma of the lung: thin-section computed tomography and fluorodeoxyglucose positron emission tomography findings , 2010, Japanese Journal of Radiology.
[133] Kenji Suzuki,et al. "Early" peripheral lung cancer: prognostic significance of ground glass opacity on thin-section computed tomographic scan. , 2002, The Annals of thoracic surgery.
[134] J. Luketich,et al. Outcomes of sublobar resection versus lobectomy for stage I non-small cell lung cancer: a 13-year analysis. , 2006, The Annals of thoracic surgery.
[135] N. Maimon. A 47-year-old female with shortness of breath and “reversed halo sign” , 2010, European Respiratory Review.
[136] A. Nicholson,et al. Evolving concepts in the pathology and computed tomography imaging of lung adenocarcinoma and bronchioloalveolar carcinoma. , 2005, Journal of clinical oncology : official journal of the American Society of Clinical Oncology.
[137] M. L. Rosado de Christenson,et al. Adaptive Statistical Iterative Reconstruction Technique for Radiation Dose Reduction in Chest CT: A Pilot Study , 2012 .
[138] Kyung Soo Lee,et al. Ground-glass Opacity Nodules: Histopathology, Imaging Evaluation, and Clinical Implications , 2011, Journal of thoracic imaging.
[139] Takeshi Nakaura,et al. Detection of Nodules Showing Ground-Glass Opacity in the Lungs at Low-Dose Multidetector Computed Tomography: Phantom and Clinical Study , 2009, Journal of computer assisted tomography.
[140] Rajiv Gupta,et al. Small pulmonary nodules: evaluation with repeat CT--preliminary experience. , 1999, Radiology.
[141] Jin Mo Goo,et al. Nodular ground-glass opacity at thin-section CT: histologic correlation and evaluation of change at follow-up. , 2007, Radiographics : a review publication of the Radiological Society of North America, Inc.
[142] Y. Inayama,et al. Atypical adenomatous hyperplasia and bronchoalveolar lung carcinoma. Analysis by morphometry and the expressions of p53 and carcinoembryonic antigen. , 1996, The American journal of surgical pathology.
[143] Takashi Ohtsuka,et al. Differentiating between atypical adenomatous hyperplasia and bronchioloalveolar carcinoma using the computed tomography number histogram. , 2003, The Annals of thoracic surgery.
[144] Hironobu Ohmatsu,et al. Performance Evaluation of 4 Measuring Methods of Ground-Glass Opacities for Predicting the 5-Year Relapse-Free Survival of Patients With Peripheral Nonsmall Cell Lung Cancer: A Multicenter Study , 2008, Journal of computer assisted tomography.
[145] Tae Hoon Kim,et al. Computed Tomography Findings of Pathologically Confirmed Pulmonary Parenchymal Endometriosis , 2005, Journal of computer assisted tomography.