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Biomedical subjects

Y Yase

Publications and source records attributed to Y Yase.

At least 55 records · Page 3Linked to original sources

[Reactor neutron activation analysis for aluminium in the presence of phosphorus and silicon. Contributions of 28Al activities from 31P(n, alpha) 28Al and 28Si(n, p) 28Al reactions].

Reactor neutron activation analysis for aluminium in samples containing phosphorus and silicon was studied. The experiments were performed by using neumatic tube of the Kyoto University Reactor (KUR). At first, the ratios of the 28Al activity produced from 27Al(n, gamma) 28Al reaction by thermal neutrons to that from 31P(n, alpha) 28Al reaction by fast neutrons, and to that from 28Si(n, p) 28Al reaction were measured by gamma-ray spectrometry. With a ratio of about 5 for the thermal to fast neutron flux of KUR, the ratio of the 28Al activity from aluminium to that from phosphorus was to be 812 +/- 7, and to that from silicon 282 +/- 3. Secondly, the contributions of 28Al activities from phosphorus and silicon and the determination limit of aluminium were calculated for various parameters, such as fast neutron flux, thermal to fast neutron flux ratio, amounts of phosphorus and silicon, etc. Thirdly, on the basis of these results, aluminium contents in spinal cords and brains of amyotrophic lateral sclerosis, Parkinsonism-dementia complex and control cases were determined.

Activation Analysis↗

[Determination of the Ca/P atomic ratio in the spinal cord of patients with amyotrophic lateral sclerosis by neutron activation and X-ray fluorescence analysis].

Ca/P atomic ratios in spinal cords of seven amyotrophic lateral sclerosis (ALS) cases were determined by neutron activation and X-ray fluorescence analyses, and were compared with those of seven control cases. In order to obtain calibration curves, the standard samples with 0.01-0.1 of Ca/P atomic ratio were prepared by mixing diammonium hydrogen phosphate with calcium carbonate. In neutron activation analysis, gamma-ray spectra of 49Ca and beta-ray intensities of 32P produced from (n, gamma) reactions of the spinal cords and standard samples were measured by Ge(Li) and GM detectors, respectively. In X-ray fluorescence analysis, the samples were excited with 1.6 MeV alpha particle beam accelerated by a Van de Graaff accelerator, manganese K X-rays from 55Fe radioactive source and rhodium K alpha X-rays from X-ray tube, respectively. The characteristic X-ray spectra were measured by Si(Li) or proportional detector. From the peak areas on the spectra and beta-ray intensities, the Ca/P atomic ratios in spinal cords were determined. Based on these results, the Ca/P atomic ratio of precipitate including calcium and phosphorus in spinal cord of ALS case was calculated. As a result, the Ca/P atomic ratios in spinal cords of ALS and control cases were 0.018-0.021 and 0.030-0.049, respectively. The calculated Ca/P atomic ratio in the precipitate of ALS case was estimated to be 1.6.

Amyotrophic Lateral Sclerosis↗

Studies on amyotrophic lateral sclerosis by neutron activation analysis--2. Comparative study of analytical results on Guam PD, Japanese ALS and Alzheimer disease cases.

Metal analysis of calcium, manganese, aluminum and copper in CNS tissue samples of degenerative CNS disease cases (six Japanese ALS, three Japanese Alzheimer disease, four Guam PD, one Guam ALS) using neutron activation analysis, was conducted with following results: Five of six Japanese ALS cases, two of three Japanese Alzheimer disease cases and all of four Guam PD cases showed a high content of calcium and aluminum in CNS tissue with a significant positive correlation between calcium and aluminum and/or between calcium and manganese. These findings suggest a possible process of metal-induced soft tissue calcification with interaction of other di- and/or trivalent cations such as aluminum, manganese in CNS tissue of these degenerative CNS diseases.

Adult↗

[Alpha particle excited X-ray fluorescence analysis for trace elements in cervical spinal cords of amyotrophic lateral sclerosis (author's transl)].

The mean contents of trace elements in anterior gray horn section of cervical spinal cords of six amyotrophic lateral sclerosis (ALS) cases were relatively determined against those of six control cases by alpha-particle excited X-ray fluorescence analysis. The anterior gray horn section of cervical spinal cord samples were excited by 1.6 MeV alpha-particle beam of 2 mm diameter accelerated with a Van de Graaff accelerator, and characteristic X-ray spectra were measured with alpha Si(Li) detector. From the peak area on the X-ray spectra, the relative mean contents of the trace elements in cervical spinal cords of ALS and control cases were determined. As a result, the X-ray peaks of Al, Si, P, S, Cl, K, Ca, Ti, V, Mn, Fe, Cu and Zn were detected. The contents of Al, Si, P, Ca, Ti, V, Mn and Fe in ALS cases were higher than those in control cases. The contents of S, Cl, K, Cu and Zn in ALS and control cases were equal to each other within standard deviation. The precipitation mechanisms of Al, Si, P, Ca, Ti, V, Mn and Fe into cervical spinal cord of ALS cases are discussed on the basis of the previous studies.

Alpha Particles↗

Fine structural correlations between the muscle pathology of amyotrophic lateral sclerosis (ALS) patients and experimental Ca-Mg deficient rats.

Nonspecific myofibrillar changes such as streaming of the Z-line, formation of rod-like structures, satellitosis, proliferation of sarcolemmal nuclei and papillary projection of the sarcolemma were recognized as a disorganization of the muscle itself. In addition, fine structural pathology in ALS specimens showed characteristically a pig-tail formation - 'Zopfformation' - which has been considered to have a neurogenic origin.

Amyotrophic Lateral Sclerosis↗

Wilson's disease; increased aluminum in liver.

Interaction of trace metal metabolism was studied in a patient with Wilson's dease. Atomic absorption analysis showed markedly increased urinary excretion of copper and aluminum and an increased aluminum content was found in the biopsied liver by neutron activation analysis. These findings suggest a complicated pathogenetic mechanism involving other metals besides copper in the Wilson's disease.

Aluminum↗