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September 28, 2004Circulation373 citationsOpen Access

Magnetic Resonance Imaging Analysis of Right Ventricular Pressure-Volume Loops

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TKTitus KühneSYSevim YilmazPSPaul Steendijk

Structured PICO

Can MRI-derived right ventricular pressure-volume loops accurately assess RV myocardial contractility and pump function in patients with chronic RV pressure overload?

P
Population
6 swine for in vivo validation, and 12 human subjects (6 healthy controls and 6 patients with chronic right ventricular pressure overload from pulmonary hypertension).
I
Intervention
MRI-derived right ventricular pressure-volume loops using flow-directed catheters guided under MR fluoroscopy and cine MRI.
C
Comparator
Conductance techniques (in swine model) and healthy controls (in human cohort).
O
Outcome
Right ventricular myocardial contractility (maximal ventricular elastance indexed to myocardial mass, E(max_i)), ventricular pump function (cardiac index), and ventricular-arterial (VA) coupling (E(max)/E(a)).surrogate

MRI-derived pressure-volume loops can effectively assess right ventricular contractility, demonstrating that chronic RV pressure overload is associated with reduced pump function despite enhanced contractility.

Abstract

BACKGROUND: The aims of this study were to validate MRI-derived right ventricular (RV) pressure-volume loops for assessment of RV myocardial contractility and then to apply this technique in patients with chronic RV pressure overload for assessment of myocardial contractility, ventricular pump function, and VA coupling. METHODS AND RESULTS: Flow-directed catheters were guided under MR fluoroscopy (1. 5 T) into the RV for invasive pressure measurements. Simultaneously, ventricular volumes and myocardial mass were assessed from cine MRI. From sampled data, RV pressure-volume loops were constructed, and maximal ventricular elastance indexed to myocardial mass (E (maxᵢ) ) was derived by use of a single-beat estimation method. This MRI method was first validated in vivo (6 swine), with conductance techniques used as reference. Bland-Altman test showed good agreement between methods (E (maxᵢ) =5. 1+/-0. 5 versus 5. 8+/-0. 7 mm Hg x mL (-1) x 100 g (-1), respectively; P=0. 08). Subsequently, the MRI method was applied in 12 subjects: 6 control subjects and 6 patients with chronic RV pressure overload from pulmonary hypertension. In these patients, indexes of RV pump function (cardiac index), E (maxᵢ), and VA coupling (E (max) /E (a) ) were assessed. In patients with pulmonary hypertension, RV pump function was decreased (cardiac index, 2. 2+/-0. 5 versus 2. 9+/-0. 4 L x min (-1) x m (-2) ; P<0. 01), myocardial contractility was enhanced (E (maxI), 9. 2+/-1. 1 versus 5. 0+/-0. 9 mm Hg x mL (-1) x 100 g (-1) ; P<0. 01), and VA coupling was inefficient (E (max) /E (a), 1. 1+/-0. 3 versus 1. 9+/-0. 4; P<0. 01) compared with control subjects. CONCLUSIONS: RV myocardial contractility can be determined from MRI-derived pressure-volume loops. Chronic RV pressure overload was associated with reduced RV pump function despite enhanced RV myocardial contractility. The proposed MRI approach is a promising tool to assess RV contractility in the clinical setting.

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Kühne et al. (2004) studied this question.

synapsesocial.com/papers/6a1bde561567d2fc4d5f2ad2https://doi.org/10.1161/01.cir.0000143138.02493.dd
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Right Ventricular Performance and Mass by Use of Cine MRI Late After Atrial Repair of Transposition of the Great Arteries1995 · 124 citations
  2. 2Ventricular pressure-volume relations in vivo1992 · 70 citations
  3. 3Single-beat estimation of the slope of the end-systolic pressure-volume relation in the human left ventricle.1991 · 202 citations
  4. 4Interventricular septal configuration as a predictor of right ventricular systolic hypertension in children: a cross-sectional echocardiographic study.1983 · 261 citations
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