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Biotechnic & Histochemistry : Official Publication of the Biological Stain Commission|November 6, 2009
Blood-brain barrier Ca2+-ATPase cytochemistry: incubation media and fixation methods for differentiating Ca2+-specific ATPase from ecto-ATPaseP S Manoonkitiwongsa, E F Whitter, J N Chavez, et al.
Brain Research. Brain Research Protocols|October 24, 2001
Use of image analysis for estimation of the numerical densities of neurons and synapses in cerebral cortexP S Manoonkitiwongsa, R L Schultz, E F Whitter, et al.
Journal of Neuroscience Research|January 1, 1983
The principal projection pathway between the olfactory bulb and the prepyriform cortex in the catT J Willey, G Maeda, R L Schultz, et al.
Brain Research. Brain Research Protocols|August 28, 2001
A simple stereologic method for analysis of cerebral cortical microvessels using image analysisP S Manoonkitiwongsa, P J McMillan, R L Schultz, et al.
Journal of Cerebral Blood Flow and Metabolism : Official Journal of the International Society of Cerebral Blood Flow and Metabolism|October 13, 2001
Angiogenesis after stroke is correlated with increased numbers of macrophages: the clean-up hypothesisP S Manoonkitiwongsa, C Jackson-Friedman, P J McMillan, et al.
Calcified Tissue International|June 1, 1989
Rapid changes of light microscopic indices of osteoclast-bone relationships correlated with electron microscopyP J McMillan, R A Dewri, E E Joseph, et al.
The Histochemical Journal|August 12, 2000
Calcium-dependent ATPase unlike ecto-ATPase is located primarily on the luminal surface of brain endothelial cellsP S Manoonkitiwongsa, E F Whitter, W Wareesangtip, et al.
The Journal of Histochemistry and Cytochemistry : Official Journal of the Histochemistry Society|May 23, 2000
Luminal localization of blood-brain barrier sodium, potassium adenosine triphosphatase is dependent on fixationP S Manoonkitiwongsa, R L Schultz, W Wareesangtip, et al.
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