Results for 'calcium'

149 found
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  1. Unusual calcium sensitivity of aminobis(methylenephosphonate)-containing mri contrast agents.A. Mayer - unknown
    As calcium plays an important role in regulating a great variety of neuronal processes, there is a strong interest to generate gadolinium complexes which can act as calcium-sensors in magnetic resonance imaging (MRI). Here we report a new series of potential CAs based on DO3A, having alkylaminobis(methylenephosphonate) side chains (propyl L1, butyl L2, pentyl L3 or hexyl L4). The high complexation efficiency towards the biologically important metal ions of the aminopolyphosphonic acids could be used for the sensing of (...)
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  2.  17
    Calcium signalling and cell proliferation.Michael J. Berridge - 1995 - Bioessays 17 (6):491-500.
    The orderly sequence of events that constitutes the cell cycle is carefully regulated. A part of this regulation depends upon the ubiquitous calcium signalling system. Many growth factors utilize the messenger inositol trisphosphate (InsP3) to set up prolonged calcium signals, often organized in an oscillatory pattern. These repetitive calcium spikes require both the entry of external calcium and its release from internal stores. One function of this calcium signal is to activate the immediate early genes (...)
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  3.  59
    Calcium as a versatile plant signal transducer under soil water stress.Shao Hong-Bo, Chu Li-Ye & Shao Ming-An - 2008 - Bioessays 30 (7):634-641.
    The complexity of calcium profiles observed in plant cells has led to the realization that specific patterns of calcium propagation (now termed calcium signatures) encode specific information and relay it to downstream elements (effectors) for translation into corresponding cellular responses in higher plants. The concept of calcium signatures is now well established and the tight control of the temporal and spatial characteristics of cytosolic calcium alterations is considered to be responsible for the specificity of various (...)
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  4.  23
    Calpactins: Calcium‐regulated membrane‐skeletal proteins.John R. Glenney - 1987 - Bioessays 7 (4):173-175.
    The calpactins are a novel group of proteins associated with the membrane skeleton. The two main forms, calpactin I and II, have been shown to bind to the cytoskeletal proteins actin and spectrin, as well as to anionic phospholipids, which may imply some sort of bridging role. By raising monoclonal antibodies to the heavy and light chains of calpactin I, and to calpactin II, the protein subunits were shown to be coordinately expressed, and the existence of separate calpactin pools hypothesized. (...)
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  5.  39
    Calcium/calmodulin-sensitive adenylyl cyclase as an example of a molecular associative integrator.Thomas W. Abrams - 1995 - Behavioral and Brain Sciences 18 (3):468-469.
    Evidence suggests that the Ca2+/calmodulin-sensitive adenylyl cyclase may play a key role in neural plasticity and learning in Aplysia, Drosophila, and mammals. This dually-regulated enzyme has been proposed as a possible site of stimulus convergence during associative learning. This commentary discusses the evidence that is required to demonstrate that a protein in a second messenger cascade actually functions as a molecular site of associative integration. It also addresses the issue of how a dually-regulated protein could contribute to the temporal pairing (...)
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  6. Calcium nutrition of laying hens at various states of production.Ml Sunde - 1965 - In Karl W. Linsenmann (ed.), Proceedings. St. Louis, Lutheran Academy for Scholarship.
     
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  7.  12
    Capacitative calcium entry channels.James W. Putney & Richard R. McKay - 1999 - Bioessays 21 (1):38-46.
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  8.  8
    Calcium channels and signal transduction in plant cells.Eva Johannes, James M. Brosnan & Dale Sanders - 1991 - Bioessays 13 (7):331-336.
    An increasing number of studies indicate that changes in cytosolic free Ca2+ ([Ca2+]c) mediate specific types of signal transduction in plant cells. Modulation of [Ca2+]c is likely to be achieved through changes in the activity of Ca2+ channels, which catalyse passive influx of Ca2+ to the cytosol from extracellular and intracellular compartments. Voltage‐sensitive Ca2+ channels have been detected in the plasma membranes of algae, where they control membrane electrical properties and cell turgor. These channels are sensitive to 1,4‐dihydropyridines, which in (...)
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  9.  13
    Calcium in development: from ion transients to gene expression.Sarah E. Webb, Marc Moreau, Catherine Leclerc & Andrew L. Miller - 2001 - Bioessays 23 (4):372-374.
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  10.  7
    Calcium signalling during zebrafish embryonic development.Sarah E. Webb & Andrew L. Miller - 2000 - Bioessays 22 (2):113.
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  11.  15
    Model of Calcium Dynamics Regulating $$IP_{3}$$, ATP and Insulin Production in a Pancreatic $$\beta$$-Cell. Vaishali & Neeru Adlakha - 2024 - Acta Biotheoretica 72 (1):1-26.
    The calcium signals regulate the production and secretion of many signaling molecules like inositol trisphosphate ( $$IP_{3}$$ ) and adenosine triphosphate (ATP) in various cells including pancreatic $$\beta$$ -cells. The calcium signaling mechanisms regulating $$IP_{3}$$, ATP and insulin responsible for various functions of $$\beta$$ -cells are still not well understood. Any disturbance in these mechanisms can alter the functions of $$\beta$$ -cells leading to diabetes and metabolic disorders. Therefore, a mathematical model is proposed by incorporating the reaction-diffusion equation (...)
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  12.  4
    Gelsolin: Calcium‐ and polyphosphoinositide‐regulated actin‐ modulating protein.H. L. Yin - 1987 - Bioessays 7 (4):176-179.
    Receptor‐mediated stimulation induces massive actin polymerization and cyto‐skeletal reorganization. The activity of a potent actin‐modulating protein, gelsolin, is regulated both by Ca2+ and polyphos‐phoinositides, and it may have a pivotal role in restructuring the actin cytoskeleton in response to agonist stimulation. Structure‐function analysis of gelsolin has (1) indicated that its NH2‐terminal half is primarily responsible for modulating actin filament length and polymerization; and (2) elucidated mechanisms by which Ca2+ and phospholipids may regulate such functions. Gelsolin is functionally and structurally similar (...)
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  13.  18
    The endoplasmic reticulum and calcium storage.Gordon L. E. Koch - 1990 - Bioessays 12 (11):527-531.
    Calcium storage is one of the functions commonly attributed to the endoplasmic reticulum (ER) in non‐muscle cells. Several recent studies have added support to this concept. Analysis of reticuloplasm, the luminal ER content, has shown that it contains several proteins (reticuloplasmins) which are prospective calcium storage proteins. One of these, calreticulin, is also present in the sarcoplasmic reticulum (SR). In sea urchin eggs, a calsequestrin‐like protein has been clearly localised to the ER. The recent demonstration that the IP3 (...)
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  14.  7
    Control of Chaotic Calcium Oscillations in Biological Cells.Quanbao Ji & Min Ye - 2021 - Complexity 2021:1-7.
    The contribution of this present paper is to propose a method that combines a chemical Brusselator reaction-diffusion system with a biological cell system via gap junction for controlling and visualizing the frequency and magnitude of chaotic intracellular calcium oscillations in two cell types, including nonexcitable cells and the glial cells. This produces a wide variety of oscillatory behaviors similar to those reported in numerous biological experiments. We particularly show that in the majority of chaos cases, the reactor to cell (...)
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  15.  15
    Nuclear calcium and the regulation of the nuclear pore complex.Carmen Perez-Terzic, Marisa Jaconi & David E. Clapham - 1997 - Bioessays 19 (9):787-792.
    In eukaryotic cells the nucleus and its contents are separated from the cytoplasm by the nuclear envelope. Macromolecules, as well as smaller molecules and ions, can cross the nuclear envelope through the nuclear pore complex. Molecules greater than approx. 60 kDa and containing a nuclear localization signal are actively transported across the nuclear membranes, but there has been little evidence for regulatory mechanisms for smaller molecules and ions. Recently, diffusion across the nuclear envelope has been observed to be regulated by (...)
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  16. The Calcium Wave Model of the Perception-Action Cycle: Evidence From Semantic Relevance in Memory Experiments.Alfredo Pereira Jr, Rafael Peres dos Santos & Rafael Fernandes Barros - 2014 - In Ezequiel Morsella & T. Andrew Poehlman (eds.), Consciousness and action control. Lausanne, Switzerland: Frontiers Media SA.
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  17.  33
    Modelling of in vivo calcium metabolism. II. minimal structure or maximum dynamic diversity: The interplay of biological constraints.P. Tracqui, J. F. Staub & A. M. Perault-Staub - 1992 - Acta Biotheoretica 40 (2-3):103-111.
    The temporal behaviour of the nonlinear compartmental model we have developed for rat calcium metabolism is discussed with respect to the theoretical properties of the self-oscillating autocatalytic subunit around which the model is constructed. Depending on the approximations made, this subunit is described by a minimal two-variable model, SU2, or by a three-variable one, SU3. The diversity of the theoretical dynamic behaviours possible with SU2 is greatly increased with SU3. But the identification of SU3 parameter values in three different (...)
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  18.  21
    Use of calcium hypochlorite as a sanitizer for seeds used for sprouting: Task# 2 impact: Improved alfalfa decontamination technologies.Emily Damron, Carrie Klein, Melissa Leach, Jordan Mourot, Tom Murphy, Amy Seamans & Ryan Wilson - 2005 - Inquiry: The University of Arkansas Undergraduate Research Journal 6.
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  19.  11
    Presenilin mutations and calcium signaling defects in the nervous and immune systems.Mark P. Mattson, Sic L. Chan & Simonetta Camandola - 2001 - Bioessays 23 (8):733-744.
    Presenilin‐1 (PS1) is thought to regulate cell differentiation and survival by modulating the Notch signaling pathway. Mutations in PS1 have been shown to cause early‐onset inherited forms of Alzheimer's disease (AD) by a gain‐of‐function mechanism that alters proteolytic processing of the amyloid precursor protein (APP) resulting in increased production of neurotoxic forms of amyloid β‐peptide. The present article considers a second pathogenic mode of action of PS1 mutations, a defect in cellular calcium signaling characterized by overfilling of endoplasmic reticulum (...)
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  20.  31
    The Role of Calcium in the Recall of Stored Morphogenetic Information by Plants.Marie-Claire Verdus, Camille Ripoll, Vic Norris & Michel Thellier - 2012 - Acta Biotheoretica 60 (1-2):83-97.
    Flax seedlings grown in the absence of environmental stimuli, stresses and injuries do not form epidermal meristems in their hypocotyls. Such meristems do form when the stimuli are combined with a transient depletion of calcium. These stimuli include the “manipulation stimulus” resulting from transferring the seedlings from germination to growth conditions. If, after a stimulus, calcium depletion is delayed, meristem production is also delayed; in other words, the meristem-production instruction can be memorised. Memorisation includes both storage and recall (...)
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  21.  24
    Integrin‐mediated calcium signaling and regulation of cell adhesion by intracellular calcium.Michael D. Sjaastad & W. James Nelson - 1997 - Bioessays 19 (1):47-55.
    Integrins are ubiquitous trans‐membrane adhesion molecules that mediate the interaction of cells with the extracellular matrix (ECM). Integrins link cells to the ECM by interacting with the cell cytoskeleton. In cases such as leukocyte binding, integrins mediate cell‐cell interactions and cell‐ECM interactions. Recent research indicates that integrins also function as signal transduction receptors, triggering a number of intracellular signaling pathways that regulate cell behavior and development. A number of integrins are known to stimulate changes in intracellular calcium levels, resulting (...)
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  22.  11
    Cysteine strings, calcium channels and synaptic transmission.Barry Ganetzky - 1994 - Bioessays 16 (7):461-463.
    Multidisciplinary studies have led to the discovery and characterization of cysteine string proteins (csps) in both Drosophila and Torpedo. Phenotypic analysis of csp mutants in Drosophila demonstrates a crucial role for csp in synaptic transmission. Expression studies of Torpedo csp (Tcsp) in Xenopus oocytes suggests that the protein has some role in the function of presynaptic Ca2+ channels. However, biochemical purification of Tcsp indicates that is associated with synaptic vesicles rather than with the plasma membrane of presynaptic terminals where Ca2+ (...)
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  23. Reactions of kaolinite and calcium oxide between 450 C and 800 C.H. Rennen & He Schwiete - 1965 - In Karl W. Linsenmann (ed.), Proceedings. St. Louis, Lutheran Academy for Scholarship. pp. 7--171.
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  24.  21
    Trigon patterns on etched calcium fluoride cleavages.A. R. Patel, K. N. Goswami & C. C. Desai - 1964 - Philosophical Magazine 10 (108):931-935.
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  25.  24
    Spatial features of calcium‐regulated gene expression.Steven Finkbeiner & Michael E. Greenberg - 1997 - Bioessays 19 (8):657-660.
    A key characteristic of an animal's nervous system is that it can respond to brief environmental stimuli with lasting changes in its structure and function. These changes are triggered by specific patterns of neuronal electrical activity and are manifested as changes in the strength and patterns of synaptic connectivity between activated neurons. The biochemical mechanisms that control these changes are unclear, but cytoplasmic rises in Ca2+ levels may play a critical role, especially in regulating neuronal gene expression for making activity‐induced (...)
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  26.  25
    Complexity of calcium signaling in synaptic spines.Kevin M. Franks & Terrence J. Sejnowski - 2002 - Bioessays 24 (12):1130-1144.
    Long‐term potentiation and long‐term depression are thought to be cellular mechanisms contributing to learning and memory. Although the physiological phenomena have been well characterized, little consensus of their underlying molecular mechanisms has emerged. One reason for this may be the under‐appreciated complexity of the signaling pathways that can arise if key signaling molecules are discretely localized within the synapse. Recent findings suggest an unanticipated degree of structural organization at the synapse, and improved methods in cellular imaging of living tissue have (...)
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  27.  9
    The diffusion of calcium in magnesium oxide.J. Rungis & A. J. Mortlock - 1966 - Philosophical Magazine 14 (130):821-827.
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  28.  42
    Modelling of in vivo calcium metabolism. I. optimal cooperation between constant and rhythmic behaviours.A. M. Perault-Staub, P. Tracqui & J. F. Staub - 1992 - Acta Biotheoretica 40 (2-3):95-102.
    The relevance of nonlinear dynamics to calcium metabolism led us to reevaluate the role of Ca-regulating hormones in Ca homeostasis. We suggest that, firstly, the main Ca metabolic functions in rat-bone and gut - are organized as dynamic entities able to generate various temporal expressions, including self-oscillating patterns and, secondly, Ca homeostasis results from interaction between both metabolic and hormonal oscillators. Following this schema, a major role for the hormonal system, with its circadian pattern, could be to act directly (...)
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  29.  24
    Interpretation of epicardial mapping by means of computer simulations: Applications to calcium, lidocaine and to BRL 34915.P. Auger, R. Cardinal, A. Bril, L. Rochette & A. Bardou - 1992 - Acta Biotheoretica 40 (2-3):161-168.
    The aim of this work was to compare experimental investigations on effects of lidocaine, calcium and, BRL 34915 on reentries to simulated data obtained by use of a model of propagation based on the Huygens' constriction method already described in previous works. Calcium and lidocaine effects are investigated on anisotropic conduction conditions. In both cases, reduction in conduction velocities are observed. In lidocaine case, a refractory area is located along the longitudinal axis. In agreement with experimental electrical mapping, (...)
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  30. Mutations and calcium signaling defects in the nervous and immune systems (vol 23, pg 733, 2001).M. P. Mattson, S. L. Chan & C. S. Presenilin - 2001 - Bioessays 23 (10):979-979.
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  31.  15
    Reduced cytoplasmic calcium concentration may be both necessary and sufficient for photoreceptor light adaptation.H. R. Matthews & G. L. Fain - 1995 - Behavioral and Brain Sciences 18 (3):481-481.
    Light adaptation is modulated almost exclusively by changes in intracellular Ca2+ concentration, and other Ca2+-independent mechanisms are likely to play only a minor role. Changes in Ca2+i may be not only necessary for light adaptation to take place but sufficient to cause it.
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  32.  9
    The resistivity of calcium, strontium and barium under pressure.B. Vasvari & V. Heine - 1967 - Philosophical Magazine 15 (136):731-738.
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  33.  10
    The dynamics of cytosolic calcium in photoreceptor cells.David S. Williams - 1995 - Bioessays 17 (4):282-286.
    Analysis of the light‐induced changes of cytosolic Ca2+ ([Ca2+]i) in photoreceptor cells has been taken a step further with two recently published studies(1,2). In one, changes in [Ca2+]i were measured in single detached rod outer segments from Gecko in response to various light intensities. The advances of the other(2) are embodied in its employment of transgenic Drosophila, whose photoreceptors express a visual pigment that is insensitive to the wavelength of light used in the fluorescence imaging of [Ca2+]i. These studies provide (...)
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  34.  29
    Decomposition of calcium fluoride and strontium fluoride in the electron microscope.T. Evans - 1963 - Philosophical Magazine 8 (91):1235-1240.
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  35.  14
    Pairing phosphoinositides with calcium ions in endolysosomal dynamics.Dongbiao Shen, Xiang Wang & Haoxing Xu - 2011 - Bioessays 33 (6):448-457.
    The direction and specificity of endolysosomal membrane trafficking is tightly regulated by various cytosolic and membrane‐bound factors, including soluble NSF attachment protein receptors (SNAREs), Rab GTPases, and phosphoinositides. Another trafficking regulatory factor is juxta‐organellar Ca2+, which is hypothesized to be released from the lumen of endolysosomes and to be present at higher concentrations near fusion/fission sites. The recent identification and characterization of several Ca2+ channel proteins from endolysosomal membranes has provided a unique opportunity to examine the roles of Ca2+ and (...)
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  36.  22
    Genetics of calcium‐binding proteins in yeasts.David Hughes & Peter Fantes - 1987 - Bioessays 6 (5):229-231.
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  37.  20
    Recoverin, a calcium-binding protein in photoreceptors.James B. Hurley - 1995 - Behavioral and Brain Sciences 18 (3):497-498.
    Recoverin is a Ca2+-binding protein found primarily in vertebrate photoreceptors. The proposed physiological function of recoverin is based on the finding that recoverin inhibits light-stimulated phosphorylation of rhodopsin. Recoverin interacts with rod outer segment membranes in a Ca2+-dependent manner. This interaction requires N-terminal acylation of recoverin. Four types of fatty acids have been detected on the N-terminus of recoverin, but the functional significance of this heterogeneous acylation is not yet clear.
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  38.  16
    The role of calcium‐binding proteins in the control of transcription: structure to function.Mitsuhiko Ikura, Masanori Osawa & James B. Ames - 2002 - Bioessays 24 (7):625-636.
    Transcriptional regulation is coupled with numerous intracellular signaling processes often mediated by second messengers. Now, growing evidence points to the importance of Ca2+, one of the most versatile second messengers, in activating or inhibiting gene transcription through actions frequently mediated by members of the EF‐hand superfamily of Ca2+‐binding proteins. Calmodulin and calcineurin, representative members of this EF‐hand superfamily, indirectly regulate transcription through phosphorylation/dephosphorylation of transcription factors in response to a Ca2+ increase in the cell. Recently, a novel EF‐hand Ca2+‐binding protein (...)
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  39.  3
    Polarity in intracellular calcium signaling.Ole H. Petersen, Denis Burdakov & Alexei V. Tepikin - 1999 - Bioessays 21 (10):851-860.
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  40.  23
    A new class of membrane‐associated calcium‐binding proteins.Raymond J. Owens & Michael J. Crumpton - 1984 - Bioessays 1 (2):61-63.
    Calcium ions act as modulators of many fundamental processes in eukaryotic cells. Although these processes apparently involve initial interactions between calcium ions and cell membranes, the identity of the putative membrane Ca2+‐binding proteins has until recently been obscure. This article describes a recently discovered family of mammalian membrane proteins, of perhaps ancient origin, that may fulfil this function.
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  41.  11
    Modulation of the cGMP-gated channel by calcium.Mandeep S. Sagoo & Leon Lagnado - 1995 - Behavioral and Brain Sciences 18 (3):486-486.
    Calcium acting through calmodulin has been shown to regulate the affinity of cyclic nucleotide-gated channels expressed in cell lines. But is calmodulin the Ca-sensor that normally regulates these channels?
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  42.  6
    Mathematical Analysis of Membrane Transporters Dynamics: A Calcium Fluxes Case Study.B. Constantin, R. Guillevin, A. Miranville, N. Deliot & A. Perrillat-Mercerot - 2022 - Acta Biotheoretica 70 (2):1-32.
    A tight control of intracellular [Ca2+\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$^{2+}$$\end{document}] is essential for the survival and normal function of cells. In this study we investigate key mechanistic steps by which calcium is regulated and calcium oscillations could occur using in silico modeling of membrane transporters. To do so we give a deterministic description of intracellular Ca2+\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$^{2+}$$\end{document} dynamics using nonlinear dynamics in order to understand Ca2+\documentclass[12pt]{minimal} (...)
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  43.  1
    Deformation by slip in single crystals of calcium tungstate.B. Cockayne & G. E. Hollox - 1964 - Philosophical Magazine 9 (102):911-916.
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  44.  16
    The Versatile calcium ion. Calcium and the cell. Ciba foundation symposium 122, 1986. Edited by D. EVERED and J. WHELAN. John Wiley, Chichester. Pp. 300. £28.95. [REVIEW]Christine Wells - 1988 - Bioessays 8 (4):134-134.
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  45.  6
    Structural basis of the conformational and functional regulation of human SERCA2b, the ubiquitous endoplasmic reticulum calcium pump.Yuxia Zhang & Kenji Inaba - 2022 - Bioessays 44 (7):2200052.
    Sarco/endoplasmic reticulum Ca2+ ATPase 2b (SERCA2b), a member of the SERCA family, is expressed ubiquitously and transports Ca2+ into the sarco/endoplasmic reticulum using the energy provided by ATP binding and hydrolysis. The crystal structure of SERCA2b in its Ca2+‐ and ATP‐bound (E1∙2Ca2+‐ATP) state and cryo‐electron microscopy (cryo‐EM) structures of the protein in its E1∙2Ca2+‐ATP and Ca2+‐unbound phosphorylated (E2P) states have provided essential insights into how the overall conformation and ATPase activity of SERCA2b is regulated by the transmembrane helix 11 and (...)
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  46. The formation of" tobermorite-like" calcium silicate hydrates.Tun Soo-Lee & Loo Gon-Chen - 1965 - In Karl W. Linsenmann (ed.), Proceedings. St. Louis, Lutheran Academy for Scholarship. pp. 293.
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  47.  15
    On the crystal structure and properties of Ca2Nb2O7, “calcium pyroniobate”.J. K. Brandon & Helen D. Megaw - 1970 - Philosophical Magazine 21 (169):189-194.
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  48. Facile Synthesis of Gd-DO3A-EA Conjugated with DTPA: A Novel Calcium Dependent MR Contrast Agent.Anurag Mishra & Josef Pfeuffer - unknown
    ‘Smart’ contrast agents (CA) exhibit dynamic and reversible modulation of their relaxivity by specific physiological or biochemical triggers such as changes in pH, Ca2+ concentration or enzymatic activity (1-3). The extracellular concentration of Ca2+ plays important role in physiological and pathological processes in the nervous system. This led to the designing of a chelating system in which relaxivity is influenced as a function of Ca2+ concentration by changing coordination number around the paramagnetic metal ion. We synthesized a novel bifunctional bismacrocycle (...)
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  49.  10
    Fuller's Earth: A History of Calcium Montmorillonite. Robert H. S. Robertson.R. P. Multhauf - 1987 - Isis 78 (2):277-278.
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  50.  15
    XLVII. The photoproduction of charged mesons from calcium.W. R. Hogg & D. Sinclair - 1956 - Philosophical Magazine 1 (5):466-472.
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