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141.
We have designed an immobilization bed that accommodates mice of all ages and sizes, to improve image registration for multimodal scans and for longitudinal preclinical imaging studies. Stationary pegs were placed such that they effectively immobilized mice and reduced set-up time. (22)Na fiducial markers were placed into the pegs at unique depths to provide 3D references to facilitate image registration. Multiple users registered positron emission tomographic (PET) and CT data obtained with and without the bed to examine the effect of the bed on registration accuracy and interuser variability. The image registrations performed by different users were evaluated for their similarity by using the Entropy Correlation Coefficient as a metric. The immobilization bed significantly reduced variations in body movement and interuser variability. Average differences in quantification of tumor PET signal among users when registering images without versus with the fiduciary-marker bed fell from 9.1% to 0.8% for maximal percentage injected dose per gram (%ID/g), from 15.6% to 2.3% for mean %ID/g, and from 9.4% to 0.7% for the 90th percentile of the maximum %ID/g. The bed improves animal immobilization, greatly reduces interuser variability, and supports registration of image data acquired from different imaging sessions. 相似文献
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Theodore D. Graves 《American anthropologist》1964,66(2):441-442
Book reviewed in this article:
Culture and Personality . Victor Barnouw
Personality and Social Systems . Neil J. Smelser and William T. Smelser (eds.) 相似文献
Culture and Personality . Victor Barnouw
Personality and Social Systems . Neil J. Smelser and William T. Smelser (eds.) 相似文献
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Alikhani Z Alikhani M Boyd CM Nagao K Trackman PC Graves DT 《The Journal of biological chemistry》2005,280(13):12087-12095
Both aging and diabetes are characterized by the formation of advanced glycation end products (AGEs). Both exhibit other similarities including deficits in wound healing that are associated with higher rates of fibroblast apoptosis. In order to investigate a potential mechanism for enhanced fibroblast apoptosis in diabetes and aged individuals, experiments were carried out to determine whether the predominant advanced glycation end product in skin, N-epsilon-(carboxymethyl) lysine (CML)-collagen, could induce fibroblast apoptosis. In vivo experiments established that CML-collagen but not unmodified collagen induced fibroblast apoptosis and that apoptosis was dependent upon caspase-3, -8, and -9 activity. In vitro experiments demonstrated that CML-collagen but not control collagen induced a time- and dose-dependent increase in fibroblast apoptosis. By use of blocking antibodies, apoptosis was shown to be mediated through receptor for AGE signaling. AGE-induced apoptosis was largely dependent on the effector caspase, caspase-3, which was activated through both cytoplasmic (caspase-8-dependent) and mitochondrial (caspase-9) pathways. CML-collagen had a global effect of enhancing mRNA levels of pro-apoptotic genes that included several classes of molecules including ligands, receptors, adaptor molecules, mitochondrial proteins, and others. However, the pattern of expression was not identical to the pattern of apoptotic genes induced by tumor necrosis factor alpha. 相似文献
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The effects of broth pH, pressure, temperature, and fermentation medium on specific cake resistance were studied for dead-end microfiltration of Bacillus subtilis. Decreases in pH and transmembrane pressure decreased the specific cake resistance for cells grown in both complex and defined media. With the complex medium, the reduction in resistance with temperature decrease did not offset the flux decrease caused by the increase in viscosity. The greatest decrease in specific cake resistance occurred with adjustment of pH to 7.5 for cells grown in defined medium. For those cells the change in pH resulted in aggregation leading to a large increase in flux. 相似文献
150.
The duck-billed platypus is an extraordinary mammal. Its chromosome complement is no less extraordinary, for it includes a
system in which ten sex chromosomes form an extensive meiotic chain in males. Such meiotic multiples are unprecedented in
vertebrates but occur sporadically in plant and invertebrate species. In this paper, we review the evolution and formation
of meiotic multiples in plants and invertebrates to try to gain insights into the origin of the platypus meiotic multiple.
We describe the meiotic hurdles that translocated mammalian chromosomes face, which make longer chains disadvantageous in
mammals, and we discuss how sex chromosomes and dosage compensation might have affected the evolution of sex-linked meiotic
multiples. We conclude that the evolutionary conservation of the chain in monotremes, the structural properties of the translocated
chromosomes and the highly accurate segregation at meiosis make the platypus system remarkably different from meiotic multiples
in other species. We discuss alternative evolutionary models, which fall broadly into two categories: either the chain is
the result of a sequence of translocation events from an ancestral pair of sex chromosomes (Model I) or the entire chain came
into being at once by hybridization of two populations with different chromosomal rearrangements sharing monobrachial homology
(Model II). 相似文献