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411.
In this paper the changes of the megakaryocyte number of the spleen and those of thrombocyte number of the peripheral blood were studied during continuous irradiation with a dose rate of 9.57 to 957 mGy/day. Beginning with a dose rate of 95.7 mGy/day the thrombocyte number of the blood and the megakaryocyte number of the spleen of irradiated animals decreased significantly. Whereas the thrombocyte number remained permanently decreased, the cell number of the megakaryocyte type is increased temporarily to a clearly higher level as compared with the controls on the 100th day of irradiation approximately. This is especially true for the middle dose rate. During this time of irradiation nucleolar hyperchromatosis as well as pycnosis were observed in many megakaryocytes. 相似文献
412.
Alexander G. Petrov Barbara A. Miller Kalina Hristova Peter N. R. Usherwood 《European biophysics journal : EBJ》1993,22(4):289-300
An experimental study of flexoelectricity in model membranes containing ion pores and native membranes containing ion channels has been undertaken with the objective of determining the relationship, if any, between flexoelectricity and ion transport. Model membrane patches containing ion pores induced by a bluegreen algal toxin, microcystin-LR, and locust muscle membrane patches containing potassium channels were studied using patch-clamp techniques. A correspondence was established between the presence of open channels and pores and the amplitude of the 1st harmonic of the total membrane current when the membranes or patches were subjected to pressure oscillations. The 2nd harmonic of the membrane current provided a measure of the amplitude of a membrane curvature induced by pressure, thus making it possible to determine the membrane flexoelectric coefficient. This study shows that flexoelectricity could be an effective driving force for ion transport through membrane pores and channels, thus further highlighting the possible biological significance of this mechano-electric phenomenon.
Correspondence to: P. N. R. Usherwood 相似文献
413.
Daniel Todorov Anton Hinkov Kalina Shishkova Stoyan Shishkov 《Phytochemistry Reviews》2014,13(2):525-538
Medicinal plants have been widely used to treat a variety of infectious and non-infectious diseases. Bulgarian flora includes 4,300 plant species, over 500 of which are rare or endemic to the country or the Balkan region. The aim of the present work is to summarize comprehensively the investigations on the antiviral activity of Bulgarian medicinal plants from the past three decades. The effect of different extracts derived from in vitro propagated plants has been examined as well. The phytochemical composition and its influence on specific steps of the viral life cycle have been discussed in this paper. The review includes the following families: Amaryllidaceae, Fabaceae, Geraniaceae, Lamiaceae, Onagraceae, Ranunculaceae, Rosaceae, Scrophulariaceae and Rhodophyta. Special attention has been paid to viruses as important human pathogens. 相似文献
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415.
Caitlin Mills Andre Zamani Rebecca White Kalina Christoff 《Philosophical transactions of the Royal Society of London. Series B, Biological sciences》2021,376(1817)
Thoughts that appear to come to us ‘out of the blue’ or ‘out of nowhere’ are a familiar aspect of mental experience. Such thoughts tend to elicit feelings of surprise and spontaneity. Although we are beginning to understand the neural processes that underlie the arising of such thoughts, little is known about what accounts for their peculiar phenomenology. Here, we focus on one central aspect of this phenomenology—the experience of surprise at their occurrence, as it relates to internal probabilistic predictions regarding mental states. We introduce a distinction between two phenomenologically different types of transitions in thought content: (i) abrupt transitions, which occur at surprising times but lead to unsurprising thought content, and (ii) wayward transitions, which occur at surprising times and also lead to surprising thought content. We examine these two types of transitions using a novel approach that combines probabilistic and predictive processing concepts and principles. We employ two different probability metrics—transition and occurrence probability—to characterize and differentiate between abrupt and wayward transitions. We close by discussing some potentially beneficial ways in which these two kinds of transitions in thought content may contribute to mental function, and how they may be implemented at the neural level.This article is part of the theme issue ‘Offline perception: voluntary and spontaneous perceptual experiences without matching external stimulation’. 相似文献
416.
Kelly Karl Michael D. Paul Elena B. Pasquale Kalina Hristova 《The Journal of biological chemistry》2020,295(52):18494
Ligand bias is the ability of ligands to differentially activate certain receptor signaling responses compared with others. It reflects differences in the responses of a receptor to specific ligands and has implications for the development of highly specific therapeutics. Whereas ligand bias has been studied primarily for G protein–coupled receptors (GPCRs), there are also reports of ligand bias for receptor tyrosine kinases (RTKs). However, the understanding of RTK ligand bias is lagging behind the knowledge of GPCR ligand bias. In this review, we highlight how protocols that were developed to study GPCR signaling can be used to identify and quantify RTK ligand bias. We also introduce an operational model that can provide insights into the biophysical basis of RTK activation and ligand bias. Finally, we discuss possible mechanisms underpinning RTK ligand bias. Thus, this review serves as a primer for researchers interested in investigating ligand bias in RTK signaling. 相似文献
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