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  • 标题:Discrete Coupling and Synchronization in the Insulin Release in the Mathematical Model of the <svg style="vertical-align:-3.69pt;width:12.5625px;" id="M1" height="20.075001" version="1.1" viewBox="0 0 12.5625 20.075001" width="12.5625" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns="http://www.w3.org/2000/svg"> <g transform="matrix(.022,-0,0,-.022,.062,15.412)"><path id="x1D737" d="M54 -114l114 487q24 102 62.5 165t102.5 109q53 38 129 38q51 0 86 -33.5t35 -84.5q0 -57 -31.5 -105t-81.5 -68v-2q88 -14 88 -126q0 -64 -29 -127q-29 -62 -90 -107q-62 -44 -143 -44q-67 0 -97 18l-28 -124q-11 -51 -26 -87h-117q9 19 26 91zM304 480l-87 -393&#xA;q0 -29 19 -44t48 -15q63 0 110 74q46 74 46 153q0 117 -52 117q-6 0 -23.5 -3t-21.5 -3q-33 0 -33 25q0 15 15 25.5t41 10.5q8 0 30 -6q27 -5 28 -5q26 0 41 43t15 89q0 39 -17.5 62t-44.5 23q-46 0 -71 -35.5t-43 -117.5z" /></g> </svg> Cells
  • 本地全文:下载
  • 作者:L. J. Ontañón-García ; E. Campos-Cantón
  • 期刊名称:Discrete Dynamics in Nature and Society
  • 印刷版ISSN:1026-0226
  • 电子版ISSN:1607-887X
  • 出版年度:2013
  • 卷号:2013
  • DOI:10.1155/2013/427050
  • 出版社:Hindawi Publishing Corporation
  • 摘要:The synchronization phenomenon that occurs in the Langerhans islets among pancreatic cells is an interesting topic because these cells are responsible for the release of insulin in the blood stream. The aim of this work is to generate in-phase bursting electrical activity (BEA) in cells with different behaviors such as active, inactive, and continuous spiking cells based on mathematical models using a discrete time coupling. The approach considers two steps, the former is a mechanism on how to force cells to switch from silent phase to active, the latter is based on how to deal with in phase synchronization between active cells. The coupling signal is triggered in discrete events caused by the crossing of a threshold of an active cell which is given or defined by a Poincar&#xe9; plane. The coupling on the inactive cells is applied to the state in which are the concentrations of agents which regulate the BEA. Based on numerical simulations, synchronization in the insulin release is obtained from cells with different behaviors.
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