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Biomedical subjects

R Okada

Publications and source records attributed to R Okada.

At least 145 records · Page 8Linked to original sources

[Familial cardiomyopathy with different clinical features in individual members].

The mother and three children of a family whose parents were consanguineous, each had cardiomyopathy with various patterns of hypertrophy and dilatation. All members had asymmetrical septal hypertrophy (ASH), and three of them were characterized as hypertrophic cardiomyopathy (HCM). Another one had ventricular dilatation mimicking dilated cardiomyopathy (DCM). Case 1: The 57-year-old mother had a typical ASH pattern; her septal/posterior wall thickness ratio (IVST/LVPWT) was 2.5. Case 2: The 37-year-old daughter had basal septal hypertrophy. Case 3: The 32-year-old elder son had typical concentric hypertrophy. Case 4: The 30-year-old younger son had an episode of congestive heart failure, and showed DCM-like features with considerable dilatation and impaired wall motion of the left ventricle. The hypertrophic pattern in cardiomyopathies is thought to depend partially on the ages of the onset, or its evolution with aging.

Adult↗

Comparison of contrast x-ray biplane cineangiography and technetium-99m radionuclide scans for measurement of ventricular volumes in human autopsy hearts.

The area-length method is widely used in the determination of left ventricular volume. Although previous studies have reported that this technique overestimates true volume (TV), it is unknown whether this overestimation is the same at different volumes. In the present study, with the use of 10 postmortem human hearts, left ventricular volumes were determined by contrast x-ray biplane cine ventriculography (LVA), biplane radionuclide (LVR), and absolute-counts (LVC) technetium scans, and the results were correlated with TV. LVA correlated well with TV (r = 0.98). LVR correlated well with TV (r = 0.97), and LVR also correlated well with LVA (r = 0.96). Both area-length techniques (LVA and LVR) resulted in overestimation of TV with an upward shift of the regression line of 30.4ml +/- 3.8 (SEM) for LVA and 28.5 +/- 4.4 for LVR. The percentage of overestimation error was significantly greater at smaller left ventricular volumes (error = 33% at TV = 30ml and 10% at TV = 100ml, p less than 0.001). LVC correlated well with TV (r = 0.99), TVA, and LVR but underestimated TV. Thus left ventricular volumes can be reliably obtained from LVR and LVA by means of the area-length method and from LVC. When the area-length method is utilized, the percentage of error in the determination of left ventricular volume is proportional to 1/TV.

Angiocardiography↗