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We propose a mathematical model for pendelluft flow in a single airway bifurcation. The model is motivated by an apparatus used in an experimental study of the pendelluft by Ultman et al. (1988). We derive differential equations governing the fluid flow, which directly connect physiological parameters to the variables determining the pendelluft; this approach allows us to include nonlinearity in the model. If nonlinearity is neglected, our model is identical to the R-I-C circuits used by previous investigators. If nonlinearity is retained, we show that pendelluft can occur even in perfectly symmetric airway bifurcations. For the specific apparatus used in the experiments of High et al. (1991), we demonstrate that two qualitatively different pendelluft flows can occur in the system.  相似文献   
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We previously found that BDNF-dependent retrograde trafficking is impaired in AD transgenic mouse neurons. Utilizing a novel microfluidic culture chamber, we demonstrate that Aβ oligomers compromise BDNF-mediated retrograde transport by impairing endosomal vesicle velocities, resulting in impaired downstream signaling driven by BDNF/TrkB, including ERK5 activation, and CREB-dependent gene regulation. Our data suggest that a key mechanism mediating the deficit involves ubiquitin C-terminal hydrolase L1 (UCH-L1), a deubiquitinating enzyme that functions to regulate cellular ubiquitin. Aβ-induced deficits in BDNF trafficking and signaling are mimicked by LDN (an inhibitor of UCH-L1) and can be reversed by increasing cellular UCH-L1 levels, demonstrated here using a transducible TAT-UCH-L1 strategy. Finally, our data reveal that UCH-L1 mRNA levels are decreased in the hippocampi of AD brains. Taken together, our data implicate that UCH-L1 is important for regulating neurotrophin receptor sorting to signaling endosomes and supporting retrograde transport. Further, our results support the idea that in AD, Aβ may down-regulate UCH-L1 in the AD brain, which in turn impairs BDNF/TrkB-mediated retrograde signaling, compromising synaptic plasticity and neuronal survival.  相似文献   
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A A Nanji  R Poon  I Hinberg 《CMAJ》1988,138(6):517-520
We carried out a study to evaluate the quality of results obtained by 14 nontechnical medical office personnel using desktop analysers. The instruments evaluated were the Reflotron analyser, the Seralyzer, the Vision analyser and the DT60 analyser. For precision studies low and high concentrations of control materials were used. For correlation studies the results obtained by the office personnel were compared with those obtained by a trained technologist. The coefficient of variation for the office personnel ranged from 3.0% to 8.1% with the Reflotron analyser, from 6.3% to 26.5% with the Seralyzer, from 1.0% to 4.1% with the Vision analyser and from 1.4% to 16.7% with the DT60 analyser. The correlation coefficient ranged from 0.970 to 0.997 with the Reflotron analyser, from 0.779 to 0.997 with the Seralyzer, from 0.975 to 0.998 with the Vision analyser and from 0.963 to 0.995 with the DT60 analyser. The proportion of results obtained by the office personnel that differed by more than 10% from those obtained by the technologist was 7% with the Reflotron analyser, 42% with the Seralyzer, 2% with the Vision analyser and 21% with the DT60 analyser. The instruments whose operation involves the least number of steps gave the most reliable results in the hands of medical office personnel.  相似文献   
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