530
Views
24
CrossRef citations to date
0
Altmetric
BASIC REVIEW

Proton MRI in COPD

, &
Pages 55-65 | Published online: 02 Jul 2009

REFERENCES

  • Kauczor H U, Kreitner K F. MRI of the pulmonary parenchyma. Eur Radiol 1999; 9: 1755–1764
  • Bankier A A, O'Donnell C R, Mai V M, et al. Impact of lung volume on MR signal intensity changes of the lung parenchyma. J Magn Reson Imaging 2004; 20: 961–966
  • Gevenois P A, de Maertelaer V, De Vuyst P, et al. Comparison of computed density and macroscopic morphometry in pulmonary emphysema. Am J Respir Crit Care Med 1995; 152: 653–657
  • Gevenois P A, De Vuyst P, de Maertelaer V, et al. Comparison of computed density and microscopic morphometry in pulmonary emphysema. Am J Respir Crit Care Med 1996; 154: 187–192
  • Baldi S, Miniati M, Bellina C R, et al. Relationship between extent of pulmonary emphysema by high-resolution computed tomography and lung elastic recoil in patients with chronic obstructive pulmonary disease. Am J Respir Crit Care Med 2001; 164: 585–589
  • Madani A, Zanen J, de Maertelaer V, et al. Pulmonary emphysema: objective quantification at multi-detector row CT—comparison with macroscopic and microscopic morphometry. Radiology 2006; 238: 036–1043
  • Zaporozhan J, Ley S, Eberhardt R, et al. Paired inspiratory/expiratory volumetric thin-slice CT scan for emphysema analysis: comparison of different quantitative evaluations and pulmonary function test. Chest 2005; 128: 3212–3220
  • Puderbach M, Eichinger M, Gahr J, et al, Proton MRI appearance of cystic fibrosis: Comparison to CT. Eur Radiol 2006. Epub ahead of print; DOI 10.1007/s00330-006-0373-4
  • Beckmann N, Cannet C, Zurbruegg S, et al. Proton MRI of lung parenchyma reflects allergen-induced airway remodeling and endotoxin-aroused hyporesponsiveness: a step toward ventilation studies in spontaneously breathing rats. Magn Reson Med 2004; 52: 258–268
  • Beckmann N, Tigani B, Sugar R, et al. Noninvasive detection of endotoxin-induced mucus hypersecretion in rat lung by MRI. Am J Physiol Lung Cell Mol Physiol 2002; 283: L22–L30
  • Zaporozhan J, Ley S, Gast K K, et al. Functional analysis in single-lung transplant recipients: a comparative study of high-resolution CT, (3)He-MRI, and pulmonary function tests. Chest 2004; 125: 173–181
  • Euler U S, Liljestrand G. Observation on the pulmonary arterial blood pressuer in the cat. Acta Physiol Scand 1946; 12: 301–320
  • Morrison N J, Abboud R T, Muller N L, et al. Pulmonary capillary blood volume in emphysema. Am Rev Respir Dis 1990; 141: 53–61
  • Cederlund K, Hogberg S, Jorfeldt L, et al. Lung perfusion scintigraphy prior to lung volume reduction surgery. Acta Radiol 2003; 44: 246–251
  • Bishop J M. Cardiovascular complications of chronic bronchitis and emphysema. Med Clin North Am 1973; 57: 771–780
  • Thabut G, Dauriat G, Stern J B, et al. Pulmonary hemodynamics in advanced COPD candidates for lung volume reduction surgery or lung transplantation. Chest 2005; 127: 1531–1536
  • Sandek K, Bratel T, Lagerstrand L, et al. Relationship between lung function, ventilation-perfusion inequality and extent of emphysema as assessed by high-resolution computed tomography. Respir Med 2002; 96: 934–943
  • Brudin L H, Rhodes C G, Valind S O. Regional structure-function correlations in chronic obstructive lung disease measured with positron emission tomography. Thorax 1992; 47: 914–921
  • Fujita E, Nagasaka Y, Kozuka T. Correlation among the indices of high-resolution computed tomography, pulmonary function tests, pulmonary perfusion scans and exercise tolerance in cases of chronic pulmonary emphysema. Respiration 2002; 69: 30–37
  • Ley S, Fink C, Puderbach M. [Contrast-enhanced 3D MR perfusion of the lung: application of parallel imaging technique in healthy subjects]. Fortschr Röntgenstr 2004; 176: 330–334
  • Fink C, Puderbach M, Bock M. Regional lung perfusion: assessment with partially parallel three-dimensional MR imaging. Radiology 2004; 231: 175–184
  • Fink C, Ley S, Kroeker R. Time-resolved contrast-enhanced three-dimensional magnetic resonance angiography of the chest: combination of parallel imaging with view sharing (TREAT). Invest Radiol 2005; 40: 40–48
  • Sergiacomi G, Sodani G, Fabiano S. MRI lung perfusion 2D dynamic breath-hold technique in patients with severe emphysema. In Vivo 2003; 17: 319–324
  • Ohno Y, Hatabu H, Higashino T. Dynamic perfusion MRI versus perfusion scintigraphy: prediction of postoperative lung function in patients with lung cancer. AJR Am J Roentgenol 2004; 182: 73–78
  • Molinari F, Fink C, Risse F. Assessment of differential pulmonary blood flow using perfusion magnetic resonance imaging: comparison with radionuclide perfusion scintigraphy. Invest Radiol 2006; 41: 624–630
  • Fink C, Ley S, Risse F. Effect of inspiratory and expiratory breathhold on pulmonary perfusion: assessment by pulmonary perfusion magnetic resonance imaging. Invest Radiol 2005; 40: 72–79
  • Amundsen T, Torheim G, Kvistad K A. Perfusion abnormalities in pulmonary embolism studied with perfusion MRI and ventilation-perfusion scintigraphy: an intra-modality and inter-modality agreement study. J Magn Reson Imaging 2002; 15: 386–394
  • Morino S, Toba T, Araki M. Noninvasive assessment of pulmonary emphysema using dynamic contrast-enhanced magnetic resonance imaging. Exp Lung Res 2006; 32: 55–67
  • Ohno Y, Hatabu H, Murase K. Quantitative assessment of regional pulmonary perfusion in the entire lung using three-dimensional ultrafast dynamic contrast-enhanced magnetic resonance imaging: preliminary experience in 40 subjects. J Magn Reson Imaging 2004; 20: 353–365
  • Levin D L, Hatabu H. MR evaluation of pulmonary blood flow. J Thorac Imaging 2004; 19: 241–249
  • Weitzenblum E. The pulmonary circulation and the heart in chronic lung disease. Monaldi Arch Chest Dis 1994; 49: 231–234
  • Budev M M, Arroliga A C, Wiedemann H P. Cor pulmonale: an overview. Semin Respir Crit Care Med 2003; 24: 233–244
  • Weitzenblum E, Chaouat A. Severe pulmonary hypertension in COPD: is it a distinct disease?. Chest 2005; 127: 1480–1482
  • Boxt L M. MR imaging of pulmonary hypertension and right ventricular dysfunction. Magn Reson Imaging Clin N Am 1996; 4: 307–325
  • Laffon E, Laurent F, Bernard V. Noninvasive assessment of pulmonary arterial hypertension by MR phase-mapping method. J Appl Physiol 2001; 90: 2197–2202
  • Vonk Noordegraaf A, Marcus J T, Roseboom B. The effect of right ventricular hypertrophy on left ventricular ejection fraction in pulmonary emphysema. Chest 1997; 112: 640–645
  • Vonk-Noordegraaf A, Marcus J T, Holverda S. Early changes of cardiac structure and function in COPD patients with mild hypoxemia. Chest 2005; 127: 1898–1903
  • Miller T R, Biello D R, Lee J I. Ventilation imaging with Kr-81m. A comparison with Xe-133. Eur J Nucl Med 1981; 6: 11–16
  • Alderson P O, Line B R. Scintigraphic evaluation of regional pulmonary ventilation. Semin Nucl Med 1980; 10: 218–242
  • Kauczor H U, Hanke A, Van Beek E J. Assessment of lung ventilation by MR imaging: current status and future perspectives. Eur Radiol 2002; 12: 1962–1970
  • Altes T A, Powers P L, Knight-Scott J. Hyperpolarized 3He MR lung ventilation imaging in asthmatics: preliminary findings. J Magn Reson Imaging 2001; 13: 378–384
  • Ley S, Zaporozhan J, Morbach A. Functional evaluation of emphysema using diffusion-weighted 3Helium-magnetic resonance imaging, high-resolution computed tomography, and lung function tests. Invest Radiol 2004; 39: 427–434
  • Swift A J, Wild J M, Fichele S. Emphysematous changes and normal variation in smokers and COPD patients using diffusion 3He MRI. Eur J Radiol 2005; 54: 352–358
  • Edelman R R, Hatabu H, Tadamura E. Noninvasive assessment of regional ventilation in the human lung using oxygen-enhanced magnetic resonance imaging. Nat Med 1996; 2: 1236–1239
  • Loffler R, Muller C J, Peller M. Optimization and evaluation of the signal intensity change in multisection oxygen-enhanced MR lung imaging. Magn Reson Med 2000; 43: 860–866
  • Ohno Y, Chen Q, Hatabu H. Oxygen-enhanced magnetic resonance ventilation imaging of lung. Eur J Radiol 2001; 37: 164–171
  • Hatabu H, Tadamura E, Chen Q. Pulmonary ventilation: dynamic MRI with inhalation of molecular oxygen. Eur J Radiol 2001; 37: 172–178
  • Ohno Y, Sugimura K, Hatabu H. Clinical oxygen-enhanced magnetic resonance imaging of the lung. Top Magn Reson Imaging 2003; 14: 237–243
  • Stadler A, Stiebellehner L, Jakob P M, et al. T1 maps and O(2)-enhanced MRT of the diseased lung Emphysema, fibrosis, mucoviscidosis. Radiologe 2006
  • Muller C J, Schwaiblmair M, Scheidler J. Pulmonary diffusing capacity: assessment with oxygen-enhanced lung MR imaging preliminary findings. Radiology 2002; 222: 499–506
  • Ohno Y, Hatabu H, Takenaka D. Oxygen-enhanced MR ventilation imaging of the lung: preliminary clinical experience in 25 subjects. AJR Am J Roentgenol 2001; 177: 185–194
  • Ohno Y, Hatabu H, Takenaka D. Dynamic oxygen-enhanced MRI reflects diffusing capacity of the lung. Magn Reson Med 2002; 47: 1139–1144
  • Decramer M. Hyperinflation and respiratory muscle interaction. Eur Respir J 1997; 10: 934–941
  • Cluzel P, Similowski T, Chartrand-Lefebvre C. Diaphragm and chest wall: assessment of the inspiratory pump with MR imaging-preliminary observations. Radiology 2000; 215: 574–583
  • Plathow C, Fink C, Ley S. Measurement of diaphragmatic length during the breathing cycle by dynamic MRI: comparison between healthy adults and patients with an intrathoracic tumor. Eur Radiol 2004; 14: 1392–1399
  • Plathow C, Schoebinger M, Fink C. Evaluation of lung volumetry using dynamic three-dimensional magnetic resonance imaging. Invest Radiol 2005; 40: 173–179
  • Plathow C, Klopp M, Fink C. Quantitative analysis of lung and tumour mobility: comparison of two time-resolved MRI sequences. Br J Radiol 2005; 78: 836–840
  • Suga K, Tsukuda T, Awaya H. Impaired respiratory mechanics in pulmonary emphysema: evaluation with dynamic breathing MRI. J Magn Reson Imaging 1999; 10: 510–520
  • Iwasawa T, Kagei S, Gotoh T. Magnetic resonance analysis of abnormal diaphragmatic motion in patients with emphysema. Eur Respir J 2002; 19: 225–231
  • Iwasawa T, Yoshiike Y, Saito K. Paradoxical motion of the hemidiaphragm in patients with emphysema. J Thorac Imaging 2000; 15: 191–195

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.