RSS-Feed abonnieren
Bitte kopieren Sie die angezeigte URL und fügen sie dann in Ihren RSS-Reader ein.
https://www.thieme-connect.de/rss/thieme/de/10.1055-s-00000059.xml
Pneumologie 2014; 68(11): 743-751
DOI: 10.1055/s-0034-1377955
DOI: 10.1055/s-0034-1377955
Fort- und Weiterbildung
Diagnostik der pulmonalen Hypertonie – Neues nach dem 5. Weltkongress
Diagnosis of Pulmonary Hypertension – Novelties after the 5th World ConferenceWeitere Informationen
Publikationsverlauf
Publikationsdatum:
10. November 2014 (online)

Lernziele
Ziel des Manuskripts ist es, die Neuigkeiten im Bereich der Diagnose einer Pulmonalen Hypertonie nach Ausgabe der Empfehlungen des fünften PH Weltkongresses zu diskutieren. Wir beschreiben und diskutieren in erster Linie die Erneuerungen, welche in der täglichen Routine die größte klinische Relevanz haben könnten.
-
Literatur
- 1 Hoeper MM, Bogaard HJ, Condliffe R et al. Definitions and diagnosis of pulmonary hypertension. J Am Coll Cardiol 2013; 62: D42-50
- 2 Galie N, Hoeper MM, Humbert M et al. Guidelines for the diagnosis and treatment of pulmonary hypertension. Eur Respir J 2009; 34: 1219-1263
- 3 Kovacs G, Berghold A, Scheidl S et al. Pulmonary arterial pressure during rest and exercise in healthy subjects: a systematic review. Eur Respir J 2009; 34: 888-894
- 4 Kovacs G, Maier R, Aberer E et al. Borderline pulmonary arterial pressure is associated with decreased exercise capacity in scleroderma. Am J Respir Crit Care Med 2009; 180: 881-886
- 5 Condliffe R, Kiely DG, Peacock AJ et al. Connective tissue disease-associated pulmonary arterial hypertension in the modern treatment era. Am J Respir Crit Care Med 2009; 179: 151-157
- 6 Argiento P, Vanderpool RR, Mule M et al. Exercise stress echocardiography of the pulmonary circulation: limits of normal and sex differences. Chest 2012; 142: 1158-1165
- 7 Lewis GD, Murphy RM, Shah RV et al. Pulmonary vascular response patterns during exercise in left ventricular systolic dysfunction predict exercise capacity and outcomes. Circ Heart Fail 2011; 4: 276-285
- 8 Naeije R, Vanderpool R, Dhakal BP et al. Exercise-induced pulmonary hypertension: physiological basis and methodological concerns. Am J Respir Crit Care Med 2013; 187: 576-583
- 9 Bush CA, Stang JM, Wooley CF et al. Occult constrictive pericardial disease. Diagnosis by rapid volume expansion and correction by pericardiectomy. Circulation 1977; 56: 924-930
- 10 Fujimoto N, Borlaug BA, Lewis GD et al. Hemodynamic responses to rapid saline loading: the impact of age, sex, and heart failure. Circulation 2013; 127: 55-62
- 11 Kovacs G, Avian A, Olschewski A et al. Zero reference level for right heart catheterisation. Eur Respir J 2013; 42: 1586-1594
- 12 Kovacs G, Avian A, Pienn M et al. Reading pulmonary vascular pressure tracings. How to handle the problems of zero leveling and respiratory swings. Am J Respir Crit Care Med 2014; 190: 252-257
- 13 Devaraj A, Hansell DM. Computed tomography signs of pulmonary hypertension: old and new observations. Clin Radiol 2009; 64: 751-760
- 14 Grosse C, Grosse A. CT findings in diseases associated with pulmonary hypertension: a current review. Radiographics 2010; 30: 1753-1777
- 15 Junqueira FP, Lima CM, Coutinho AC et al. Pulmonary arterial hypertension: an imaging review comparing MR pulmonary angiography and perfusion with multidetector CT angiography. Br J Radiol 2012; 85: 1446-1456
- 16 Kreitner KF. Noninvasive imaging of pulmonary hypertension. Semin Respir Crit Care Med 2014; 35: 99-111
- 17 Truong QA, Massaro JM, Rogers IS et al. Reference values for normal pulmonary artery dimensions by noncontrast cardiac computed tomography: the Framingham Heart Study. Circ Cardiovasc Imaging 2012; 5: 147-154
- 18 Dornia C, Lange TJ, Behrens G et al. Multidetector computed tomography for detection and characterization of pulmonary hypertension in consideration of WHO classification. J Comput Assist Tomogr 2012; 36: 175-180
- 19 Tan RT, Kuzo R, Goodman LR et al. Utility of CT scan evaluation for predicting pulmonary hypertension in patients with parenchymal lung disease. Medical College of Wisconsin Lung Transplant Group. Chest 1998; 113: 1250-1256
- 20 Han HC. Twisted blood vessels: symptoms, etiology and biomechanical mechanisms. J Vasc Res 2012; 49: 185-197
- 21 Kulik TJ, Clark RL, Hasan BS et al. Pulmonary arterial hypertension: what the large pulmonary arteries tell us. Pediatr Cardiol 2011; 32: 759-765
- 22 Helmberger M, Pienn M, Urschler M et al. Quantification of tortuosity and fractal dimension of the lung vessels in pulmonary hypertension patients. PLoS One 2014; 9: e87515
- 23 Revel MP, Faivre JB, Remy-Jardin M et al. Pulmonary hypertension: ECG-gated 64-section CT angiographic evaluation of new functional parameters as diagnostic criteria. Radiology 2009; 250: 558-566
- 24 Davarpanah AH, Hodnett PA, Farrelly CT et al. MDCT bolus tracking data as an adjunct for predicting the diagnosis of pulmonary hypertension and concomitant right-heart failure. AJR Am J Roentgenol 2011; 197: 1064-1072
- 25 Pienn M, Kovacs G, Tscherner M et al. Non-invasive determination of pulmonary hypertension with dynamic contrast-enhanced computed tomography: a pilot study. Eur Radiol 2014; 24: 668-676
- 26 Hoey ET, Gopalan D, Agrawal SK et al. Cardiac causes of pulmonary arterial hypertension: assessment with multidetector CT. Eur Radiol 2009; 19: 2557-2568
- 27 Kovacs G, Reiter G, Reiter U et al. The emerging role of magnetic resonance imaging in the diagnosis and management of pulmonary hypertension. Respiration 2008; 76: 458-470
- 28 Peacock AJ, Crawley S, McLure L et al. Changes in right ventricular function measured by cardiac magnetic resonance imaging in patients receiving pulmonary arterial hypertension-targeted therapy: the EURO-MR study. Circ Cardiovasc Imaging 2014; 7: 107-114
- 29 Reiter U, Reiter G, Kovacs G et al. Evaluation of elevated mean pulmonary arterial pressure based on magnetic resonance 4D velocity mapping: comparison of visualization techniques. PLoS One 2013; 8: e82212
- 30 Kreitner KF, Wirth GM, Krummenauer F et al. Noninvasive assessment of pulmonary hemodynamics in patients with chronic thromboembolic pulmonary hypertension by high temporal resolution phase-contrast MRI: correlation with simultaneous invasive pressure recordings. Circ Cardiovasc Imaging 2013; 6: 722-729
- 31 Swift AJ, Rajaram S, Hurdman J et al. Noninvasive estimation of PA pressure, flow, and resistance with CMR imaging: derivation and prospective validation study from the ASPIRE registry. JACC Cardiovasc Imaging 2013; 6: 1036-1047
- 32 Rajaram S, Swift AJ, Telfer A et al. 3D contrast-enhanced lung perfusion MRI is an effective screening tool for chronic thromboembolic pulmonary hypertension: results from the ASPIRE Registry. Thorax 2013; 68: 677-678
- 33 Wirth G, Bruggemann K, Bostel T et al. Chronic Thromboembolic Pulmonary Hypertension (CTEPH) – Potential Role of Multidetector-Row CT (MD-CT) and MR Imaging in the Diagnosis and Differential Diagnosis of the Disease. Rofo 2014; 186: 751-761
- 34 Sachdev A, Villarraga HR, Frantz RP et al. Right ventricular strain for prediction of survival in patients with pulmonary arterial hypertension. Chest 2011; 139: 1299-1309
- 35 Haeck ML, Scherptong RW, Marsan NA et al. Prognostic value of right ventricular longitudinal peak systolic strain in patients with pulmonary hypertension. Circ Cardiovasc Imaging 2012; 5: 628-636
- 36 Rajagopalan N, Saxena N, Simon MA et al. Correlation of tricuspid annular velocities with invasive hemodynamics in pulmonary hypertension. Congest Heart Fail 2007; 13: 200-204
- 37 Lopez-Candales A, Lopez FR, Trivedi S et al. Right ventricular ejection efficiency: a new echocardiographic measure of mechanical performance in chronic pulmonary hypertension. Echocardiography 2014; 31: 516-523
- 38 Ernande L, Cottin V, Leroux PY et al. Right isovolumic contraction velocity predicts survival in pulmonary hypertension. J Am Soc Echocardiogr 2013; 26: 297-306
- 39 Li Y, Xie M, Wang X et al. Right ventricular regional and global systolic function is diminished in patients with pulmonary arterial hypertension: a 2-dimensional ultrasound speckle tracking echocardiography study. Int J Cardiovasc Imaging 2013; 29: 545-551
- 40 Grapsa J, Gibbs JS, Cabrita IZ et al. The association of clinical outcome with right atrial and ventricular remodelling in patients with pulmonary arterial hypertension: study with real-time three-dimensional echocardiography. Eur Heart J Cardiovasc Imaging 2012; 13: 666-672
- 41 Zhang QB, Sun JP, Gao RF et al. Feasibility of single-beat full-volume capture real-time three-dimensional echocardiography for quantification of right ventricular volume: validation by cardiac magnetic resonance imaging. Int J Cardiol 2013; 168: 3991-3995
- 42 Grunig E, Henn P, D'Andrea A et al. Reference values for and determinants of right atrial area in healthy adults by 2-dimensional echocardiography. Circ Cardiovasc Imaging 2013; 6: 117-124
- 43 Coghlan JG, Denton CP, Grunig E et al. Evidence-based detection of pulmonary arterial hypertension in systemic sclerosis: the DETECT study. Ann Rheum Dis 2014; 73: 1340-1349