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The Bistability Theorem in a Model of Metastatic Cancer 被引量:4

The Bistability Theorem in a Model of Metastatic Cancer
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摘要 The main theorem of the present paper is the bistability theorem for a four dimensional cancer model, in the variables  representing primary cancer C, metastatic cancer  , growth factor GF and growth inhibitor GI, respectively. It says that for some values of the para- meters this system is bistable, in the sense that there are exactly two positive singular points of this vector field. And one is stable and the other unstable. We also find an expression for  for the discrete model T of the introduction, with variables , where C is cancer, are growth factors and growth inhibitors respectively. We find an affine vector field Y whose time one map is T<sup>2</sup> and then compute  , where  is an integral curve of Y through  . We also find a formula for the first escape time for the vector field associated to T, see section four. The main theorem of the present paper is the bistability theorem for a four dimensional cancer model, in the variables  representing primary cancer C, metastatic cancer  , growth factor GF and growth inhibitor GI, respectively. It says that for some values of the para- meters this system is bistable, in the sense that there are exactly two positive singular points of this vector field. And one is stable and the other unstable. We also find an expression for  for the discrete model T of the introduction, with variables , where C is cancer, are growth factors and growth inhibitors respectively. We find an affine vector field Y whose time one map is T<sup>2</sup> and then compute  , where  is an integral curve of Y through  . We also find a formula for the first escape time for the vector field associated to T, see section four.
作者 Jens Christian Larsen Jens Christian Larsen(Vanlose Alle 50 2 mf tv, 2720 Vanlose, Copenhagen, Denmark)
机构地区 Vanlose Alle
出处 《Applied Mathematics》 2016年第10期1183-1206,共25页 应用数学(英文)
关键词 BISTABILITY CANCER Mass Action Kinetic System Discrete Dynamical System Bistability Cancer Mass Action Kinetic System Discrete Dynamical System
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