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P L Castro

Publications and source records attributed to P L Castro.

4 recordsLinked to original sources

Potential pitfalls of strain rate imaging: angle dependency.

Strain Rate Imaging (SRI) is a new echocardiographic technique that allows for the real-time determination of myocardial SR, which may be used for the early and accurate detection of coronary artery disease. We sought to study whether SR is affected by scan line alignment in a computer simulation and an in vivo experiment. Through the computer simulation and the in vivo experiment we generated and validated safe scanning sectors within the ultrasound scan sector and showed that while SRI will be an extremely valuable tool in detecting coronary artery disease there are potential pitfalls for the unwary clinician. Only after accounting for these affects due to angle dependency, can clinicians utilize SRI's potential as a valuable tool in detecting coronary artery disease.

Adult↗

Effect of scanline orientation on ventricular flow propagation: assessment using high frame-rate color Doppler echocardiography.

Color M-mode echocardiography has recently been utilized to describe diastolic flow propagation velocity (Vp) in the left ventricle. While increasing temporal resolution from 15 to 200 Hz, this M-mode technique requires the user to select a single scanline, potentially limiting quantification of Vp due to the complex three-dimensional inflow pattern. We previously performed computational fluid dynamics simulations to demonstrate the insignificance of the scanline orientation, however geometric complexity was limited. The purpose of this study was to utilize high frame-rate 2D color Doppler images to investigate the importance of scanline selection in patients for the quantification of Vp. 2D color Doppler images were digitally acquired at 50 frames/s in 6 subjects from the apical 4-chamber window (System 5, GE/Vingmed, Milwaukee, WI). Vp was determined for a set of scanlines positioned through 5 locations across the mitral annulus (from the anterior to posterior mitral annulus). An analysis of variance was performed to examine the differences in Vp as a function of scanline position. Vp was not effected by scanline position in sampled locations from the center of the mitral valve towards the posterior annulus. Although not statistically significant, there was a trend to slower propagation velocities on the anterior side of the valve (60.8 +/- 16.7 vs. 54.4 +/- 13.6 cm/s). This study clinically validates our previous numerical experiment showing that Vp is insensitive to small perturbations of the scanline through the mitral valve. However, further investigation is necessary to examine the impact of ventricular geometry in pathologies including dilated cardiomyopathy.

Blood Flow Velocity↗

Digital echocardiographic communication using multivendor networked DICOM devices.

Digital acquisition, storage, and review of echocardiographic data are feasible in a multivendor networked DICOM environment. The authors' echocardiographic laboratory currently stores 120 studies per day using the ProSolv Echo Management System. Storage and retrieval is realized on standard computer hardware without the necessity for proprietary hardware solutions. DICOM storage has become more efficient as vendor solutions improve. Transmission rates over a 10/100 BT switched network are approximately 0.40 MB/s allowing a complete echo study (~40 MB) to be transferred to the server in approximately 1.5 minutes, however the ability to send data during a study has also been realized by one vendor.

Computer Communication Networks↗

Semi-automated analysis of color M-mode echocardiographic images for determining transmitral pressure gradients using a simplified Euler equation.

UNLABELLED: We hypothesize that a simplified version of the Euler equation (SEE) utilizing differences in velocity over a distance and time as obtained by Color Doppler M-mode (CMM) echocardiography can approximate actual peak transmitral pressure gradients deltaP(TM). METHODS: In 14 patients undergoing open-heart surgery, deltaP(TM) was measured under various hemodynamic conditions using 2 high fidelity transducers, 5 cm apart. Transesophageal CMM images were simultaneously acquired and a customized image analysis application was used to abstract spatiotemporal velocity characteristics. Using both the SEE and a simplified Bernoulli equations, deltaP(TM) were determined and compared to the actual deltaP(TM). RESULTS: While the simplified Bernoulli equation resulted in a poor estimate (y=0.075x+0.71, r=0.45), the deltaP(TM) obtained using the SEE correlated strongly (y=0.79x+0.48, r=0.91) with the actual measurements. CONCLUSIONS: Semi-automated analysis of CMM images using a SEE can accurately estimate actual deltaP(TM).

Algorithms↗