Heavy metal localization and age related accumulation in the rat nervous system
暂无分享,去创建一个
[1] G. Voigt,et al. Histochemische Untersuchungen über den Verbleib des Quecksilbers bei der experimentellen Sublimatvergiftung , 2005, Klinische Wochenschrift.
[2] K. Fleischhauer,et al. Intravitale Dithizonfärbung homologer Felder der Ammonsformation von Säugern , 2004, Zeitschrift für Zellforschung und Mikroskopische Anatomie.
[3] A. Brun,et al. The effect of aging on lysosomal permeability in nerve cells of the central nervous system. An enzyme histochemical study in rat , 2004, Histochemie.
[4] A. Brun,et al. Histochemical evidence for lysosomal uptake of lead in tissue cultured fibroblasts , 2004, Histochemie.
[5] F. Timm,et al. Zur Histochemie der Schwermetalle Das Sulfid-Silberverfahren , 2004, Deutsche Zeitschrift für die gesamte gerichtliche Medizin.
[6] T. Slater. Free-radical mechanisms in tissue injury. , 1984, The Biochemical journal.
[7] H. A. Johnson,et al. Neuron survival in the aging mouse. , 1972, Experimental gerontology.
[8] U. Brunk,et al. Electron microscopical studies on rat brain neurons. Localization of acid phosphatase and mode of formation of lipofuscin bodies. , 1972, Journal of ultrastructure research.
[9] A. Brun,et al. THE JOURNAL OF HISTOCHEMISTRY AND CYTOCHEMISTRY , 2005 .
[10] Lindquist Rr. Studies on the pathogenesis of hepatolenticular degeneration. 3. The effect of copper on rat liver lysosomes. , 1968 .
[11] S. E. Toth. The origin of lipofuscin age pigments. , 1968, Experimental gerontology.
[12] A. Brun,et al. Histochemical demonstration of heavy metals with the sulfide-silver method. A methodological study. , 1968, Acta histochemica.
[13] A. Brun,et al. Histochemical studies on brain phosphatases in experimental lead poisoning. , 2009, Acta pathologica et microbiologica Scandinavica.
[14] Lindquist Rr. Studies on the pathogenesis of hepatolenticular degeneration. I. Acid phosphatase activity in copper-loaded rat livers. , 1967 .
[15] W. J. Brown,et al. Subcellular distribution and enzyme changes following subacute copper intoxication. , 1967, Laboratory investigation; a journal of technical methods and pathology.
[16] R. Lindquist. Studies on the pathogenesis of hepatolenticular degeneration. I. Acid phosphatase activity in copper-loaded rat livers. , 1967, The American journal of pathology.
[17] N. Kaneta. Histochemical studies on the diencephalon of senescent rats. , 1966, The Tohoku journal of experimental medicine.
[18] M. Kraft,et al. Zur histochemie und genese der chronischen quecksilbervergiftung , 1966 .
[19] S. Goldfischer,et al. Electron probe microanalysis of liver in Wilson's disease. Simultaneous assay for copper and for lead deposited by acid phosphatase activity in lysosomes. , 1966, The American journal of pathology.
[20] S. Goldfischer. THE LOCALIZATION OF COPPER IN THE PERICANALICULAR GRANULES (LYSOSOMES) OF LIVER IN WILSON'S DISEASE (HEPATOLENTICULAR DEGENERATION) . , 1965, The American journal of pathology.
[21] J. Worm‐Petersen. VITAMIN B12, HAEMOGLOBIN AND IRON CONCENTRATION IN HUMAN BRAIN TISSUE , 1964, Acta neurologica Scandinavica.
[22] G. Voigt,et al. [Histochemical studies on the distribution of mercury in experimental mercury poisoning]. , 1963, Klinische Wochenschrift.
[23] H. Bertha,et al. Untersuchungen über die regionale Kationenverteilung im menschlichen Gehirn , 1962 .
[24] B. Hallgren,et al. THE EFFECT OF AGE ON THE NON‐HAEMIN IRON IN THE HUMAN BRAIN , 1958, Journal of neurochemistry.
[25] K. Fleischhauer,et al. [Intravital dithizone staining of homologous fields of the Ammon's formation in mammals]. , 1957, Zeitschrift fur Zellforschung und mikroskopische Anatomie.
[26] J. Cumings. The copper and iron content of brain and liver in the normal and in hepato-lenticular degeneration. , 1948, Brain : a journal of neurology.
[27] N. Lewis. Suggestive research leads in contemporary neurochemistry. , 1948, Journal of the American Medical Association.