[Measurement of serum prostatic acid phosphatase by radioimmunoassay--evaluation of "GammaDab PAP kit" (author's transl)].
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Biomedical subjects
Publications and source records attributed to N Hibi.
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To investigate the localization of tricuspid regurgitant flow in Ebstein's anomaly, pulsed Doppler echocardiography (PDE) was performed on nine patients with or without associated cardiac lesions. The equipment used was characterized by the real time frequency analysis of Doppler signals obtained from the sampling sites confirmed on the cross-sectional images. We employed the apical four-chamber view or right ventricular inflow view in order to facilitate the sampling of Doppler signals from the three-sided heart chambers of this lesion. Doppler signals were recorded from several points in the functional right ventricle, atrialized right ventricle and right atrium. The PDE recording was made in conjunction with M-mode echocardiography at a paper speed of 50 mm per second. In eight of the nine patients, a systolic disturbed flow of wide band pattern was maximally located in the atrialized right ventricle in the vicinity of the tricuspid valve leaflets and had a delayed onset, which were seemed to be the findings characteristic of tricuspid regurgitation in Ebstein's anomaly. In the remaining one, a turbulent flow due to this lesion was obscured by a systolic jet of the associated ventricular septal defect in the vicinity of the tricuspid valve leaflet. In the right atrium, no disturbed flow of wide band pattern existed or only a faint abnormal blood flow was observed during systole. In the functional right ventricle, a smooth blood flow of the right ventricular inflow was recognized in diastole. In contrast, 15 patients with secondary tricuspid regurgitation revealed a holosystolic disturbed flow of wide band pattern maximally in the right atrium in the vicinity of the tricuspid valve leaflets. In eight healthy subjects, there was no systolic disturbed flow in the right atrium. Pulsed Doppler technique combined with two-dimensional echocardiography is thought useful to detect the localization of the disturbed flow in Ebstein's anomaly, thus contributing to the differentiation of various causes of tricuspid regurgitation.
Human of rat alpha-foetoprotein (AFP) was highly purified from ascitic fluid or serum of hepatoma bearers. The purification was carried out mainly by means of immunoadsorbent chromatography using Sepharose coupled to specific anti-AFP antibody with BrCN activation, and by Sephadex gel filtration. Horses were immunized with the purified AFP and the specific antibody was isolated from the antiserum by means of an immunoadsorbent coupled to purified AFP. The specific antibody was found to bind specifically with AFP-producing tumour cells. The antibody was applied for radio immunodetection of the tumour. 125I-labelled antibody was administered to patients or rats with hepatoma, and radioactivity localized in the tumours was scintiscanned with a scintillation camera. In this way, the location of the tumour was detected in about 50% of the hepatoma bearers. The cytotoxicity of the antibody was clearly demonstrated both in vitro and in vivo in animal experiments. The antibody was administered to patients with advanced hepatoma. Although no improvement of the disease was demonstrated, serum AFP levels decreased greatly and in some cases low AFP levels were maintained for long periods suggesting that the antibody suppressed AFP-producing hepatoma cells. No significant side effects were observed in patients who had been administered with the horse antibody.
Cross-sectional echocardiography was performed on 77 patients with secundum atrial septal defect (ASD). Mitral valve prolapse (MVP) was recognized in 41 out of the 77 (53.2%); anterior MVP was found in 36 patients, three cases revealed posterior MVP, and two were diagnosed as having both anterior and posterior MVP. Pre- and post-operative study was carried out on 53 cases; anterior MVP decreased in incidence from 28 patients to 17 following closure of ASD, whereas posterior MVP remained unchanged, as did both anterior and posterior MVP. The left ventricular distortion ratio (LVDR) was measured in the short axis view in 45 cases. After the repair of ASD, the LVDR decreased both in end-systole and end-diastole (p less than 0.01), that is, the left ventricle became more circular in configuration. Pre- and post-operatively, MVP patients revealed a significantly greater LVDR than those without it in end-systole, and post-operatively in end-diastole as well (p less than 0.01). Prior to operation, the short axis area of the left ventricle (LVSAA) was statistically larger in patients with MVP than without it in end-diastole (p less than 0.05). However, there existed no relationship between the presence of MVP and the pulmonic to systemic flow ratio, right ventricular dimension index, right ventricular systolic pressure and size of ASD at the time of operation.
Pulsed Doppler echocardiography (PDE) was performed on 41 patients with aortic insufficiency (AI), isolated or associated with other cardiac diseases, using an ATL 500A pulsed Doppler system. The diagnosis was confirmed by angiocardiography in 25 cases. The purpose of the present study was to analyze the disturbed flow due to AI, to investigate the sensitivity of PDE to this lesion, and to compare with the angiographic severity of AI (Sellers). The transducer was placed on the left sternal border and the flow pattern was recorded at the aortic valve orifice and the proximal and distal left ventricular outflow tract (LVOT), using a strip chart recorded at a paper speed of 100 mm/sec. The specific feature of AI was a widely dispersed dot pattern which began at the aortic valve closure and extended to late diastole. The severity of AI was graded by supravalvular aortogram in 25 patients. In grades I and II, the abnormal dot pattern due to AI was mostly detected at the aortic valve orifice and the distal LVOT, but it was rather difficult to detect the disturbed flow at the proximal LVOT. In contrast, in grades III and IV, the disturbed flow was recorded at all the sampling sites; with severe aortic regurgitation, it was detected at a wider range in the left ventricular cavity. In grades I and II, the abnormal dot dispersion at the proximal LVOT was not so large at its onset in diastole but it tended to increase after the mitral valve opening, whereas in the majority of patients of grades III and IV, a large dot dispersion was recognized from its onset to late diastole. The typical flow pattern due to AI was detected at the LVOT in 38 out of 41 patients (92.7%). Moreover, it was detected in all the patients with angiographically proved AI except for 1 case of grade I (96.0%).
Pulsed Doppler echocardiography (PDE) was performed in 10 patients with Ebstein's anomaly and 10 cases of tricuspid regurgitation secondary to mitral stenosis. Distal atrialized right ventricle (ATRV): In all patients with Ebstein's anomaly, tricuspid regurgitation flow was recognized by PDE. In this lesion with moderate tricuspid regurgitation, a widely dispersed dot pattern was recorded during systole However, in the cases with severe tricuspid regurgitation a relatively smooth dot pattern was recognized. In the case with marked delay in pressure rise in the right ventricle, PDE showed a bimodal regurgitant flow pattern. The interval between the onset of QRS and that of tricuspid regurgitant flow with right ventricular pressure rise was measured. The interval corrected for heart rate ranged from 0.10 to 0.35 with an average of 0.19 +/- 0.08 sec. In the subjects with secondary tricuspid regurgitation, it ranged from 0.07 to 0.11 sec. This interval was significantly prolonged in Ebstein's anomaly as compared to that in secondary tricuspid regurgitation (p less than 0.001). Proximal ATRV: Tricuspid regurgitant flow was detected in 6 to 10 patients with Ebstein's anomaly. The disturbed flow was less apparent in the proximal ATRV than in the distal ATRV.
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In conventional cross-sectional echocardiography, the configuration of the chest or the presence of excessive chest wall tissue or air-containing lung often limits the resolution and field of view. To increase the diagnostic capability of cross-sectional echocardiography, a transesophageal ultrasonic high speed rotating scanner that can obtain cardiac images without hindrance from ribs, sternum and lung was developed. The scanner uses a single small transducer with a flexible shaft to permit easy swallowing by adults and mechanically scans ultrasonic beams within the esophagus. The small transducer in the esophagus is rotated through a full 360 degrees at a rate of 15 to 50 cycles/s, and cardiac images obtained through the esophageal wall are displayed on a cathode ray tube in real time. The transesophageal scanning technique was evaluated in more than 50 adult patients. Aside from some slight gagging, no serious complications were encountered. In all patients, high quality images of most portions of the heart were obtained. There was little difference in the image quality among various patients.
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Five rat yolk sac tumor cell lines were cloned from a yolk sac tumor line which originally arose following fetectomy. The doubling time of each of the cloned tumor lines was about 50 h. All of the cloned tumor cell lines synthesized and secreted AFP and albumin but there was a gradual decrease in the synthesis of these proteins during serial passage. The cells formed clusters which looked like vitelline ducts or the parietal yolk sac and they also had basement membranes which closely resembled Reichert's membrane. When the cloned cell lines were cultivated in the presence of 1 mM dibutyryl cyclic-AMP, myotube-like and neuron-like cells appeared. Acetylcholine esterase and creatine phosphokinase activity were present when myotube-like cells were present whereas acetylcholine esterase activity predominated when neuron-like cells were present.
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