Quantitative Assessment of Emphysema, Air Trapping, and Airway Thickening on Computed Tomography
Tóm tắt
Từ khóa
Tài liệu tham khảo
American Thoracic Society (1995) Standards for the diagnosis and care of patients with chronic obstructive lung disease. Am J Respir Crit Care Med 52:S77–S83
Bergin C, Müller NL, Nichols DM, Lillington G, Hogg JC, Mullen B, Grymaloski MR, Osborne S, Paré PD (1986) The diagnosis of emphysema: a computed tomographic–pathologic correlation. Am Rev Respir Dis 133:541–546
Müller NL, Staples CA, Miller RR, Abboud RT (1988) “Density mask”: an objective method to quantitate emphysema using computed tomography. Chest 94:782–787
Gevenois PA, de Maertelaer V, De Vuyst P, Zanen J, Yernault JC (1995) Comparison of computed density and macroscopic morphometry in pulmonary emphysema. Am J Respir Crit Care Med 152:653–657
Gevenois PA, De Vuyst P, de Maertelaer V, Zanen J, Jacobovitz D, Cosio MG, Yernault JC (1996) Comparison of computed density and microscopic morphometry in pulmonary emphysema. Am J Respir Crit Care Med 154:187–192
Gevenois PA, De Vuyst P, Sy P, Scillia M, Chaminade L, De Maertelaer V, Zanen J, Yernault JC (1996) Pulmonary emphysema: quantitative CT during expiration. Radiology 199:825–829
Kinsella M, Müller NL, Abboud RT, Morrison NJ, Dy-Buncio A (1990) Quantitation of emphysema by computed tomography using a “density mask” program and correlation with pulmonary function tests. Chest 97:315–321
Nishimura K, Murata K, Yamagishi M, Itoh H, Ikeda A, Tsukino M, Koyama H, Sakai N, Mishima M, Izumi T (1998) Comparison of different computed tomography scanning methods for quantifying emphysema. J Thorac Imaging 13:193–198
Nakano Y, Sakai H, Muro S, Hirai H, Oku Y, Nishimura K, Mishima M (1999) Comparison of low attenuation areas on CT between inner and outer segments of the lung in COPD patients: incidence and contribution to lung function. Thorax 54:384–389
Nakano Y, Muro S, Sakai H, Hirai T, Chin K, Tsukino M, Nishimura K, Itoh H, Pare PD, Hogg JC, Mishima M (2000) Computed tomographic measurements of airway dimensions and emphysema in smokers: correlation with lung function. Am J Respir Crit Care Med 162:1102–1108
Mishima M, Itoh H, Sakai H, Nakano Y, Muro S, Hirai T, Takubo Y, Chin K, Ohi M, Nishimura K, Yamaguchi K, Nakamura T (1999) Optimized scanning conditions of HRCT in the follow-up of pulmonary emphysema. J Comput Assist Tomogr 23:380–384
Klein JS, Gamsu G, Webb WR, Golden JA, Muller NL (1992) High-resolution CT diagnosis of emphysema in symptomatic patients with normal chest radiographs and isolated low diffusing capacity. Radiology 182:817–821
Heremans A, Verschakelen JA, Van Fraeyenhoven L, Demedts M (1992) Measurement of lung density by means of quantitative CT scanning: a study of correlations with pulmonary function tests. Chest 102:805–811
Gould GA, Redpath AT, Ryan M, Warren PM, Best JJ, Flenley DC, MacNee W (1991) Lung CT density correlates with measurements of airflow limitation and the diffusing capacity. Eur Respir J 4:141–146
Camiciottoli G, Bartolucci M, Maluccio NM, Moroni C, Mascalchi M, Giuntini C, Pistolesi M (2006) Spirometrically gated high-resolution CT findings in COPD: lung attenuation vs lung function and dyspnea severity. Chest 129:558–564
Souza AS Jr, Müller NL, Marchiori E, Soares-Souza LV, de Souza Rocha M (2004) Pulmonary abnormalities in ankylosing spondylitis: inspiratory and expiratory high-resolution CT findings in 17 patients. J Thorac Imaging 19:259–263
Lohrmann C, Uhl M, Warnatz K, Ghanem N, Kotter E, Schaefer O, Langer M (2004) High-resolution CT imaging of the lung for patients with primary Sjogren’s syndrome. Eur J Radiol 52:137–143
Kim N, Seo JB, Song KS, Chae EJ, Kang SH Semi-automatic measurement of the airway dimension at computed tomography using the full-width-half-maximum method: study on the measurement accuracy according to CT parameters and size of the airway. Korean J Radiol (in press)
Kim N, Seo JB, Song KS, Chae EJ, Kang SH Semi-automatic measurement of the airway dimension at computed tomography using the full-with-half-maximum method: study on the measurement accuracy according to orientation of an artificial airway. Korean J Radiol (in press)
Amirav I, Kramer SS, Grunstein MM, Hoffman EA (1993) Assessment of methacholine-induced airway constriction by ultrafast high-resolution computed tomography. J Appl Physiol 75:2239–2250
Block M, Liu YH, Harris D, Robb RA, Ritman EL (1984) Quantitative analysis of a vascular tree model with the dynamic spatial reconstructor. J Comput Assist Tomogr 8:390–400
D’Souza ND, Reinhardt JM, Hoffman EA (1996) ASAP: interactive quantification of 2D airway geometry. SPIE Med Imaging 2709:180–196
Wood SA, Zerhouni EA, Hoford JD, Hoffman EA, Mitzner W (1995) Measurement of three-dimensional lung tree structures by using computed tomography. J Appl Physiol 79:1687–1697
American Thoracic Society (1995) Standardization of Spirometry, 1994 Update. Am J Respir Crit Care Med 152:1107–1136
Quanjer PH, Tammeling GJ, Cotes JE, Pedersen OF, Peslin R, Yernault JC (1993) Lung volumes and forced ventilatory flows. Report of the Working Party on the Standardization of Lung Function Tests, European Community for Steel and Coal. Official Statement of the European Respiratory Society. Eur Respir J Suppl 16:5–40
American Thoracic Society (1995) Single-breath carbon monoxide diffusing capacity (transfer factor). Recommendations for a standard technique: 1995 update. Am J Respir Crit Care Med 152:2185–2198
Fujimoto K, Matsuzawa Y, Yamaguchi S, Koizumi T, Kubo K (2002) Benefits of oxygen on exercise performance and pulmonary hemodynamics in patients with COPD with mild hypoxemia. Chest 122:457–463
ATS Committee on Proficiency Standards for Clinical Pulmonary Function Laboratories (2002) ATS statement: guidelines for the six-minute walk test. Am J Respir Crit Care Med 166:111–117
Schols AM, Slangen J, Volovics L, Wouters EF (1998) Weight loss is a reversible factor in the prognosis of chronic obstructive pulmonary disease. Am J Respir Crit Care Med 157:1791–1797
Landbo C, Prescott E, Lange P, Vestbo J, Almdal TP (1999) Prognostic value of nutritional status in chronic obstructive pulmonary disease. Am J Respir Crit Care Med 160:1856–1861
Celli BR, Cote CG, Marin JM, Casanova C, Montes de Oca M, Mendez RA, Pinto Plata V, Cabral HJ (2004) The body-mass index, airflow obstruction, dyspnea, and exercise capacity index in chronic obstructive pulmonary disease. N Engl J Med 350:1005–1012
Fujimoto K, Kitaguchi Y, Kubo K, Honda T (2006) Clinical analysis of chronic obstructive pulmonary disease phenotypes classified using high-resolution computed tomography. Respirology 11:731–740
Wisser W, Klepetko W, Kontrus M, Bankier A, Senbaklavaci O, Kaider A, Wanke T, Tschemko E, Wolner E (1998) Morphologic grading of the emphysematous lung and its relation to improvement after lung volume reduction surgery. Ann Thorac Surg 65:793–799
Nakano Y, Coxson HO, Bosan S, Rogers RM, Sciurba FC, Keenan RJ, Walley KR, Pare PD, Hogg JC (2001) Core to rind distribution of severe emphysema predicts outcome of lung volume reduction surgery. Am J Respir Crit Care Med 164:2195–2199
Weder W, Thurnheer R, Stammberger U, Burge M, Russi EW, Bloch KE (1997) Radiologic emphysema morphology is associated with outcome after surgical lung volume reduction. Ann Thorac Surg 64:313–319
Gierada DS, Yusen RD, Villanueva IA, Pilgram TK, Slone RM, Lefrak SS, Cooper JD (2000) Patient selection for lung volume reduction surgery: an objective model based on prior clinical decisions and quantitative CT analysis. Chest 117:991–998
Aziz ZA, Wells AU, Desai SR, Ellis SM, Walker AE, MacDonald S, Hansell DM (2005). Functional impairment in emphysema: contribution of airway abnormalities and distribution of parenchymal disease. AJR Am J Roentgenol 185:1509–1515
Cosio MG, Snider GL (2001) Chest computed tomography: is it ready for major studies of chronic obstructive pulmonary disease? Eur Respir J 17:1062–1064
Orlandi I, Moroni C, Camiciottoli G, Bartolucci M, Belli G, Villari N, Mascalchi M (2004) Spirometric-gated computed tomography quantitative evaluation of lung emphysema in chronic obstructive pulmonary disease: a comparison of 3 techniques. J Comput Assist Tomogr 28:437–442
Martinez FJ, Foster G, Curtis JL, Criner G, Weinmann G, Fishman A, DeCamp MM, Benditt J, Sciurba F, Make B, Mohsenifar Z, Diaz P, Hoffman E, Wise R, NETT Research Group (2006) Predictors of mortality in patients with emphysema and severe airflow obstruction. Am J Respir Crit Care Med 173:1326–1334
Hironi M, Yasuyuki N, Katsura N, Yoko I, Masaru H, Tomoko B, Yuya O, Nobuyuki H, Masaharu N, the Hokkaido COPD Cohort Study Group (2007) Characterisation of phenotypes based on severity of emphysema in chronic obstructive pulmonary disease. Thorax 62:932-937
Boschetto P, Quintavalle S, Zeni E, Leprotti S, Potena A, Ballerin L, Papi A, Palladini G, Luisetti M, Annovazzi L, Iadarola P, De Rosa E, Fabbri LM, Mapp CE (2006) Association between markers of emphysema and more severe chronic obstructive pulmonary disease. Thorax 61:1037–1042
Gelb AF, Hogg JC, Muller NL, Schein MJ, Kuei J, Tashkin DP, Epstein JD, Kollin J, Green RH, Zamel N, Elliott WM, Hadjiaghai L (1996) Contribution of emphysema and small airways in COPD. Chest 109:353–359
Gelb AF, Zamel N, Hogg JC, Muller NL, Schein MJ (1998) Pseudophysiologic emphysema resulting from severe small-airways disease. Am J Respir Crit Care Med 158:815–819
Nakano Y, Müller NL, King GG, Niimi A, Kalloger SE, Mishima M, Pare PD (2002) Quantitative assessment of airway remodeling using high-resolution CT. Chest 122:271S–275S
Orlandi I, Moroni C, Camiciottoli G, Bartolucci M, Pistolesi M, Villari N, Mascalchi M (2005) Chronic obstructive pulmonary disease: thin-section CT measurement of airway wall thickness and lung attenuation. Radiology 234:604–610
Hogg JC, Chu F, Utokaparch S, Woods R, Elliott WM, Buzatu L, Cherniack RM, Rogers RM, Sciurba FC, Coxson HO, Pare PD (2004) The nature of small-airway obstruction in chronic obstructive pulmonary disease. N Engl J Med 350:2645–2653
Hasegawa M, Nasuhara Y, Onodera Y, Makita, Nagai K, Fuke A, Ito Y, Betsuyaku T, Nishimura M (2006) Airflow limitation and airway dimensions in chronic obstructive pulmonary disease. Am J Respir Crit Care Med 173:1309–1315