Key result
In vivo estimation of the main pulmonary artery elastic modulus using a thick-walled approximation strongly correlated with ex vivo measurements (r2 = 0.844, P < 0.001) in a neonatal calf model.
Why the study?
Can proximal pulmonary artery elastic modulus be accurately estimated in vivo using combined ultrasound and catheter pressure measurements compared to ex vivo testing in a calf model of pulmonary hypertension?
Can proximal pulmonary artery elastic modulus be accurately estimated in vivo using combined ultrasound and catheter pressure measurements compared to ex vivo testing in a calf model of pulmonary hypertension?
Effect estimate: r2 = 0.844
p-value: p=<0.001
The elastic modulus of the main pulmonary artery can be reasonably estimated in vivo using combined ultrasound and catheter pressure measurements, providing a potential tool for assessing pulmonary vascular stiffness.
May support preclinical pulmonary artery stiffness assessment in neonates; leaves open human translation and clinical validation.
Developing clinical work suggests that vascular stiffening plays a role in the progression of pulmonary hypertension (PH), while recent studies in animal models of hypoxic PH have found significant proximal vascular stiffening in the diseased population. Here, we develop and validate a minimally invasive, clinically realizable method to estimate the local elastic modulus of the proximal pulmonary arteries from pressure-diameter (PD) data. PD measurements were made in the main pulmonary arteries of 16 calves; lumen diameter was assessed using color M-mode tissue Doppler imaging ultrasound, while pressure was measured via catheter. Two methods corresponding to thin-walled pressure vessel theory ("thin") and Lame's equation for a thick-walled cylinder ("thick") were used to approximate the artery elastic modulus from PD measurements. The harvested arteries were tested independently to determine their "true" ex vivo elastic modulus and stiffness. Both approximations displayed excellent correlation with ex vivo elastic modulus of the calf main pulmonary artery (thin r(2) = 0.811; thick r(2) = 0.844; both P < 0.01). Bland-Altman analysis indicated that the thick-walled approximation has better overall agreement with ex vivo modulus. The approximations displayed quantitatively distinct regression slopes that were statistically different (P = 0.02). The elastic modulus of the main pulmonary artery can be reasonably estimated from combined color M-mode tissue Doppler imaging ultrasound and catheter pressure measurements in calves. Such measurements may be a valuable tool in the diagnosis and treatment of human PH.
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Hunter et al. (2010) studied Pulmonary hypertension (n=16). In vivo measurement of elastic modulus using color M-mode tissue Doppler imaging and catheter pressure vs. Ex vivo elastic modulus measurement was evaluated on Correlation between in vivo thick-walled plane strain modulus approximation and ex vivo elastic modulus (r2 = 0.844, p=<0.001). In vivo estimation of the main pulmonary artery elastic modulus using a thick-walled approximation strongly correlated with ex vivo measurements (r2 = 0.844, P < 0.001) in a neonatal calf model.
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