Calcite microcrystals in the pineal gland of the human brain: first physical and chemical studies

scientific article (publication date: October 2002)

Calcite microcrystals in the pineal gland of the human brain: first physical and chemical studies is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1002/BEM.10053
P698PubMed publication ID12224052
P5875ResearchGate publication ID11165623

P50authorBozena HilczerQ74771244
P2093author name stringGarry Berkovic
Simon Baconnier
Guilia Meshulam
Maria Polomska
Sidney B Lang
P2860cites workA combined scanning and transmission electron microscopic study and electron probe microanalysis of human pineal acervuliQ31922186
Calcium content and concretions of pineal glands of young and old rats. A scanning and X-ray microanalytical studyQ33369251
Melatonin and biological rhythmsQ33971490
Human otoconial crystal growth. An approach from morphological and morphometric dataQ35997072
Electron probe X-ray microanalysis of the elemental composition of the pineal gland of young adults and aged ratsQ36800994
Magnetite biomineralization in the human brainQ37159839
A morphological and chemical study of calcification of the pineal glandQ39445169
Evaluation in humans of the effects of radiocellular telephones on the circadian patterns of melatonin secretion, a chronobiological rhythm marker.Q39521825
Static and extremely low frequency electromagnetic field exposure: reported effects on the circadian production of melatoninQ40710058
Decreased melatonin biosynthesis, calcium flux, pineal gland calcification and aging: a hypothetical frameworkQ40781834
Regulation of calcite crystal morphology by intracrystalline acidic proteins and glycoproteinsQ41401092
A scanning electron microscopy study on human otoconia genesisQ41575653
Microwave absorption by magnetite: a possible mechanism for coupling nonthermal levels of radiation to biological systems.Q45970006
A critical evaluation of the purification of biominerals by hypochlorite treatmentQ46296497
GSM radiocellular telephones do not disturb the secretion of antepituitary hormones in humans.Q47821481
P433issue7
P407language of work or nameEnglishQ1860
P921main subjectbrainQ1073
P304page(s)488-495
P577publication date2002-10-01
P1433published inBioelectromagneticsQ1954883
P1476titleCalcite microcrystals in the pineal gland of the human brain: first physical and chemical studies
P478volume23

Reverse relations

cites work (P2860)
Q100503889Divalent heavy metals and uranyl cations incorporated in calcite change its dissolution process
Q34422624Fluoride concentrations in the pineal gland, brain and bone of goosander (Mergus merganser) and its prey in Odra River estuary in Poland
Q92949778The morphological and functional characteristics of the pineal gland

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