High-field cyclotron resonance and valence-band structure in semiconducting diamond.
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Biomedical subjects
Publications and source records attributed to J Kono.
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Twenty-eight patients with amyloid heart disease, 9 with primary and 19 with familial amyloidosis, were examined by Doppler echocardiography to characterize transmitral flow velocity patterns and to assess restrictive ventricular hemodynamics. Six of the 28 patients had restrictive ventricular physiology, and the remaining 22 did not. Patients with a restrictive filling process had marked ventricular wall thickening with depressed fractional shortening. The transmitral flow velocity patterns in patients with restriction were characteristically manifested by the increased peak flow velocity and shortening of rapid diastolic filling, which was associated with a reduced flow velocity in atrial systole. In the 22 patients without restriction, the left ventricular filling patterns were subclassified as 1) filling patterns with the prolonged isovolumic relaxation time and reduced early diastolic filling, as well as enhanced atrial contribution to ventricular filling (16 patients with mild echocardiographic abnormalities), 2) normal filling patterns with normal echocardiograms (4 patients), and 3) normal filling patterns, with moderate ventricular wall thickening (2 patients). These findings suggested that restrictive ventricular hemodynamics can be characterized by the transmitral velocity pattern and that patterns of left ventricular diastolic filling are markedly varied depending on the magnitude of myocardial amyloid deposition in patients with amyloid heart disease.
To determine left ventricular diastolic properties in patients with familial amyloid polyneuropathy, 23 patients were studied by digitized M-mode echocardiography and were compared with 15 age-matched normal subjects. None of the patients had restrictive ventricular physiology and all but two showed normal left ventricular fractional shortening. Both the normalized peak rate of diastolic increase in left ventricular internal dimension and the normalized peak rate of diastolic thinning of posterior wall were significantly lower in patients than in normal subjects (2.0 +/- 0.8 vs 3.0 +/- 0.4 sec-1; p less than 0.001, and 2.5 +/- 1.2 vs 5.8 +/- 1.0 sec-1; p less than 0.001, respectively). The left ventricular isovolumic relaxation time in patients was 91.5 +/- 22.2 msec, compared with 64.0 +/- 2.6 msec in normal subjects (p less than 0.001). Of the 18 patients without clinical evidence of overt heart disease, 12 had normal ventricular wall thickness and normal fractional shortening, but 10 of the 12 exhibited some abnormalities in diastolic properties. In addition, indexes of diastolic function were significantly related to ventricular wall thickness alone. These findings indicate that left ventricular diastolic abnormalities precede the development of clinically overt heart disease, ventricular wall thickening, and systolic dysfunction and may be related to intramyocardial amyloid infiltration with resultant fibrosis in patients with familial amyloid polyneuropathy.
To assess left ventricular diastolic filling in patients with amyloid heart disease 12 patients with familial amyloid polyneuropathy and 15 normal subjects were studied by pulsed Doppler echocardiography. None of the patients had clinical evidence of overt heart disease or restrictive cardiomyopathy and only two of them showed ventricular wall thickening. The peak flow velocity of rapid diastolic filling and the acceleration rate of early diastolic inflow were significantly lower in patients with familial amyloid polyneuropathy than in controls. The pressure half time was significantly longer in patients than in controls. In addition, the peak flow velocity during atrial contraction and the ratio of atrial peak flow velocity to rapid diastolic peak flow velocity were significantly greater in patients than in controls. Although there were no significant correlations between measurements of diastolic filling and clinical findings in patients with familial amyloid polyneuropathy, the ratio of atrial peak flow velocity to rapid diastolic peak flow velocity was significantly related to left ventricular posterior wall thickness. These findings suggest that in patients with cardiac amyloidosis without restrictive cardiomyopathy, abnormal left ventricular diastolic filling, manifested by a reduction in the rate and volume of rapid diastolic filling with enhanced atrial contraction, can be seen even in the early stage of the disease.
To determine left ventricular (LV) systolic and diastolic properties in patients with familial amyloid polyneuropathy (FAP), we analyzed simultaneous recordings of the electrocardiogram, phonocardiogram, carotid arterial pulse, and apex cardiogram in 14 patients and 21 normal subjects. LV systolic and diastolic time intervals were measured. Correlations between the intervals and neurologic disabilities, duration of illness, and age were examined. We found that in patients with FAP, 1) LV relaxation was impaired, especially in early diastole, whereas systolic function was generally preserved, 2) abnormal LV relaxation could be seen before the development of both clinically identifiable heart disease and the abnormalities in systolic function, 3) indexes of LV systolic function and relaxation decreased in parallel with the progress of the disease, duration of illness, and age, and 4) electromechanical delay was markedly increased.
The purpose of this study was to examine the relationship between clinical findings and subgingival relationship between clinical findings and subgingival microbial flora in periodontitis at the first medical examination and after initial preparation. The results obtained were as follows: 1. Clinical findings with the exception of plaque index showed improvement after initial preparation in comparison with the first medical examination. 2. In phase contrast microscopy, both total bacteria and incidence of spirochetes and motile rods decreased after initial preparation in comparison with the first medical examination. 3. Clinical findings with the exception of plaque index were related to the total bacteria and proportional distribution of spirochetes and motile rods in periodontal pockets, observed in phase contrast microscopy. 4. Total bacteria and proportional distribution of black-pigmented Bacteroides in periodontal pockets decreased after initial preparation in comparison with the first medical examination.
Clinical significance of diffuse lung uptake of 201Tl was studied in 244 cases of various heart diseases. The grade of lung uptake of 201Tl was assessed by total lung uptake ratio (L/T), maximal lung uptake ratio (Max/T), lung to myocardium or mediastinum counts ratio (M/H or M/Med) and visual grade. L/T, Max/T, M/H and M/Med were directly correlated with pulmonary arterial pressure (PCW), and inversely correlated with cardiac output (CO) and cardiac index (CI). Among them, L/T was the best index to assess PCW, that was correlated with PCW (r = 0.65), CO (r = -0.53) and CI (r = -0.45). The visual grade of 201Tl lung uptake was correlated with L/T, and the increased lung uptake was associated with a higher PCW and a lower CO as well as a lower CI. Diffuse increased lung uptake of 201Tl was observed in 29 of 41 cases (70.7%) with myocardial infarction, 25 of 29 cases (86.2%) with mitral valvular diseases and 9 of 10 cases (90.0%) with combined valvular diseases, in addition, in most cases with left heart failure and cases of NYHA 3 and 4, but that was not rarely observed in cases of NYHA 2 and without left heart failure. In heart diseases, 201Tl myocardial scintigraphy seems to be valuable for detection of left heart failure including pulmonary congestion and interstitial pulmonary edema. Total lung uptake ratio (L/T) may be useful for estimation of PCW, and the visual grade of 201Tl lung uptake may be applicable as routine index for grading of lung uptake of 201Tl.
In order to assess blood volume of the cardiac chambers and lungs, distribution ratio of 99mTc-albumin (HSA) was obtained from radionuclide angiocardiogram and non-gated or gated equilibrium cardiac pool scintigram, using a scintillation camera coupled to a minicomputer. The radio-activity of 99mTc of the entire cardiac blood pool including the large vessels (T), the right ventricle including the right atrium (RV) and the left ventricle (LV) was calculated from the 30 degrees anterior oblique cardiac pool scintigram. That of the both lungs (Lu) was calculated from the anterior cardiac pool scintigram. The radioactivity of total injected dose of HSA (H) was estimated from the initial transit of the tracer obtained by the radionuclide angiocardiogram. Then, distribution ratio of HSA of the each region of interest was expressed as RV/H, LV/H, T/H and Lu/H. RV/H, LV/H and T/H were 3.4 +/- 0.6%, 3.1 +/- 0.5% and 10.4 +/- 2.0% in controls, 6.0 +/- 0.8%, 2.6 +/- 0.8% and 14.2 +/- 2.4% in cor pulmonale, and 7.9 +/- 1.7%, 7.7 +/- 3.5% and 20.7 +/- 4.3% in heart diseases with left heart failure, respectively. Lu/H was 4.9 +/- 1.4% in controls, 4.4 +/- 1.1% in cor pulmonale and 6.6 +/- 1.9% in heart diseases without left heart failure. LV/H was correlated with left ventricular end-diastolic volume by contrast ventriculography. LV/H and RV/H were related with functional classification of NYHA. In conclusion, these parameters may be utilized as indices of the volume of blood pool of the heart chambers and lungs, and this method seems to be clinically applicable for the evaluation of pathophysiology in heart diseases.
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An asymptomatic, posterior mediastinal mass first appeared in a routine chest X-ray film of a 43-year-old woman. Computed tomography (CT) permitted the diagnosis of intrathoracic kidney to be advanced. Intravenous urography confirmed the CT diagnosis.
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