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Biomedical subjects

S Tomimoto

Publications and source records attributed to S Tomimoto.

26 records · Page 2Linked to original sources

[Feasibility of the left ventricular volume measurement by acoustic quantification method: comparison with ultrafast computed tomography].

Acoustic quantification (AQ: the real-time automated boundary detection system) allows instantaneous measurement of cardiac chamber volumes. The feasibility of this method was evaluated by comparing the left ventricular (LV) volumes obtained with AQ to those derived from ultrafast computed tomography (UFCT), which enables accurate measurements of LV volumes even in the presence of LV asynergy, in 23 patients (8 with ischemic heart disease, 5 with cardiomyopathy, 3 with valvular heart disease). Both LV end-diastolic and end-systolic volumes obtained with the AQ method were in good agreement with those obtained with UFCT (y = 1.04 x - 16.9, r = 0.95; y = 0.87x + 15.7, r = 0.91; respectively). AQ was reliable even in the presence of LV asynergy. Interobserver variability for the AQ measurement was 10.2%. AQ provides a new, clinically useful method for real-time accurate estimation of the left ventricular volume.

Feasibility Studies↗

Single-beat estimation of the slope of the end-systolic pressure-volume relation in the human left ventricle.

This study assessed a new method of estimating the slope (Ees) of the end-systolic pressure-volume relation (ESPVR) from a single beat of the human heart. Left ventricular pressure was recorded with a high-fidelity micromanometer in patients with heart disease during left ventriculography. Peak isovolumic pressure at the end-disastolic volume was estimated by a curve-fitting technique from an isovolumic left ventricular pressure curve. The ESPVR line was drawn from the estimated peak isovolumic pressure-volume point tangential to the left upper corner of the pressure-volume loop. The slope of this estimated ESPVR line from single-beat analysis was compared with the slope of the ESPVR line obtained from three pressure-volume loops in 16 patients given angiotensin II or nitroglycerin infusion. The estimated Ees was 5.0 +/- 2.2 mm Hg/ml/m2, and the conventional Ees was 4.9 +/- 2.7 mm Hg/ml/m2. The estimated Ees showed a positive correlation with the conventional Ees (r = 0.91, p less than 0.001, SEE = 1.2 mm Hg/ml/m2). In the other 13 patients, after dobutamine infusion (5 micrograms/kg/min i.v.) the estimated Ees increased significantly from 5.6 +/- 1.4 to 7.4 +/- 2.0 mm Hg/ml/m2 (p less than 0.01). Thus, the estimated Ees approximated the conventional Ees and was sensitive to a positive inotropic intervention. We conclude that this single-beat analysis method facilitates assessment of the beat-by-beat ESPVR of the human heart.

Angiotensin II↗

[Transmitral flow velocity patterns as influenced by preload, afterload and heart rate alterations: pulsed Doppler echocardiographic study].

The influences of preload, afterload and heart rate alterations on the pattern of left ventricular filling were investigated using pulsed Doppler echocardiography (PDE) in humans. Transmitral flow at the level of the valvular tip was recorded during dextran infusion, lower body negative pressure, angiotensin II infusion, and atrial and atrioventricular sequential pacings. Peak velocity of rapid filling (R), peak velocity of atrial contraction (A), the ratio of peak velocities (A/R), flow velocity integrals of the rapid filling phase (IR) and atrial contraction (IA) were obtained. PDE and the measurement of hemodynamics during lower body negative pressure (0, -10 mmHg, -20 mmHg) and dextran infusion (100 ml, 200 ml) were studied in 22 patients with ischemic heart disease. R decreased significantly after lower body negative pressure, and increased significantly during dextran infusion. Before and during angiotensin II infusion, PDE and the measurement of hemodynamics were studied in 14 patients with ischemic heart disease. The patients were categorized into 2 subgroups according to left ventricular function. During afterload stress, the A/R and IA increased in patients with normal left ventricular function; whereas, the A/R decreased in patients with poor left ventricular function. PDE was recorded during right atrial and atrioventricular sequential pacings at the heart rates of 60 to 100 beats/min in 29 patients with ischemic heart disease. When the heart rates increased, R decreased during atrial and atrioventricular sequential pacings. The A increased after the occurrence of the summation between the rapid and atrial filling waves. The A/R gradually increased with incremental heart rate. These results indicate that changes in the preload alter the peak velocity of left ventricular filling pattern of transmitral flow. The effects of the increasing afterload depend on the basal left ventricular function, with an increase in the peak velocity of atrial contraction being observed in the presence of normal left ventricular function. Both the peak velocity of rapid filling and atrial contraction were related to the heart rate and atrioventricular conduction delay. In assessing left ventricular filling dynamics using PDE, the influence of the preload, afterload and heart rate must be considered.

Angiotensin II↗

Noninvasive assessment of left ventricular diastolic filling in coronary artery disease by Doppler dipyridamole-stress testing.

To evaluate left ventricular diastolic function during dipyridamole-provoked myocardial ischemia, transmitral flow was studied in 73 patients with coronary artery disease and 8 normal subjects using pulsed Doppler echocardiography. Coronary vasodilating agents like dipyridamole can provoke myocardial ischemia in patients with coronary artery disease. The peak flow velocity of left ventricular rapid filling (R), that of atrial contraction (A) and the ratio of A to R (A/R) in each cardiac cycle were measured. The rapid filling phase was divided into two subphases at the point of R. The integral of the two subphases and atrial contraction were computed and designated IR1, IR2 and IA. The time intervals of the two subphases of rapid filling were designated TR1 and TR2. Of the 73 patients with coronary artery disease, 41 patients developed ischemia (positive responder = PR) and 32 patients did not (negative responder = NR) after dipyridamole infusion. In PR, A/R increased (p less than 0.05), IR2 decreased (p less than 0.01) and TR2 shortened (p less than 0.01) significantly. In NR and normal subjects, these indices remained unchanged. We observed mitral regurgitation (MR) in 13 PR patients during acute myocardial ischemia. A/R increased in patients without MR but A/R remained unchanged in patients with MR. These results suggest that in acute myocardial ischemia, changes in Doppler indices (A/R, IR2 and TR2) reflect a left ventricular diastolic abnormality, and that the masking of the diastolic abnormality was ascribed to the presence of MR.

Blood Flow Velocity↗

[Influence of preload alteration on the transmitral flow velocity in patients with old myocardial infarction: effects of nitroglycerin and lower body negative pressure].

We studied the influence of preload alteration on the pattern of transmitral flow as obtained by pulsed Doppler echocardiography. In protocol I, 14 patients with old myocardial infarction (OMI) were observed by simultaneous measurements of transmitral flow by PDE and left ventricular end-diastolic dimension (LVDd) using M-mode echocardiography during the control period and after sublingual nitroglycerin. In protocol II, eight patients with OMI were similarly observed during stepwise lower body negative pressure (LBNP: 0, -10 and -20 mmHg). The rapid filling phase was categorized in two subphases at peak R as the first half and second half phases. The integrals of each half phase and the atrial systolic phases (IR1, IR2 and IA) were measured by planimetry. After the administration of nitroglycerin, LVDd decreased significantly; whereas the mean arterial pressure decreased and heart rate increased significantly. The peak R and IR1 decreased significantly, but the peak A, IR2 and IA remained unchanged. During LBNP, LVDd decreased stepwise; whereas there was no change in the mean arterial pressure or heart rate. The changes in the peak R and IR1 paralleled the preload reduction during LBNP. The peak A, IR2, and IA remained unchanged. In conclusion, the first and second half volumes during the LV rapid filling phase can be influenced by various factors. The patterns of the transmitral flow velocity, the maximal velocity and first half volume in the LV rapid filling phase may be influenced by preload alteration.

Adult↗

Effects of percutaneous transluminal coronary angioplasty on segmental left ventricular function in patients with acute myocardial infarction.

In order to investigate the usefulness of percutaneous transluminal coronary angioplasty (PTCA) on subsequent left ventricular (LV) function in patients with acute myocardial infarction (AMI), regional ejection fraction (REF) was calculated from the left ventriculogram and compared in the acute and chronic phases (4 weeks after infarction) in 19 successful cases of PTCA (group A). In addition, 15 successful cases of intracoronary thrombolysis (PTCR) (group R) and 14 unsuccessful cases (group U) were also analyzed in this study. From the results, the following points were elucidated. (1) REF of group A in the chronic phase showed a significant increase compared to that in the acute phase (10 +/- 18% vs 20 +/- 19%, p less than 0.01), and this was similar to that observed in group R (9 +/- 19% vs 21 +/- 16%, p less than 0.01). (2) All cases in group A showed a significant increase in REF (p less than 0.02), if recanalization occurred within 3 hours after the onset of AMI. Some cases in the 3-6 hour recanalization group showed a decrease in REF. (3) In group A, only patients with subtotal occlusion on the initial coronary angiogram showed a significant increase in REF 4 weeks later (p less than 0.01), whereas patients with total occlusion on the initial coronary angiogram showed no significant increase in REF. (4) In group A, only patients recanalized between 3 and 6 hours showed a severe degree of prolonged contrast staining immediately after successful recanalization following PTCA. Thus, chronic phase regional wall motion was markedly improved by PTCA in those cases with residual flow. In contrast, abrupt recanalization after PTCA might causally decrease regional wall motion due to hemorrhagic infarction, if it is performed in cases with total occlusion.

Angioplasty, Balloon↗