Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Unstable Modes and Order Parameters of Bistable Signaling Pathways at Saddle-Node Bifurcations: A Theoretical Study Based on Synergetics

View through CrossRef
Mathematical modeling has become an indispensable part of systems biology which is a discipline that has become increasingly popular in recent years. In this context, our understanding of bistable signaling pathways in terms of mathematical modeling is of particular importance because such bistable components perform crucial functions in living cells. Bistable signaling pathways can act as switches or memory functions and can determine cell fate. In the present study, properties of mathematical models of bistable signaling pathways are examined from the perspective of synergetics, a theory of self-organization and pattern formation founded by Hermann Haken. At the heart of synergetics is the concept of so-called unstable modes or order parameters that determine the behavior of systems as a whole close to bifurcation points. How to determine these order parameters for bistable signaling pathways at saddle-node bifurcation points is shown. The procedure is outlined in general and an explicit example is worked out in detail.
Title: Unstable Modes and Order Parameters of Bistable Signaling Pathways at Saddle-Node Bifurcations: A Theoretical Study Based on Synergetics
Description:
Mathematical modeling has become an indispensable part of systems biology which is a discipline that has become increasingly popular in recent years.
In this context, our understanding of bistable signaling pathways in terms of mathematical modeling is of particular importance because such bistable components perform crucial functions in living cells.
Bistable signaling pathways can act as switches or memory functions and can determine cell fate.
In the present study, properties of mathematical models of bistable signaling pathways are examined from the perspective of synergetics, a theory of self-organization and pattern formation founded by Hermann Haken.
At the heart of synergetics is the concept of so-called unstable modes or order parameters that determine the behavior of systems as a whole close to bifurcation points.
How to determine these order parameters for bistable signaling pathways at saddle-node bifurcation points is shown.
The procedure is outlined in general and an explicit example is worked out in detail.

Related Results

Predictors of False-Negative Axillary FNA Among Breast Cancer Patients: A Cross-Sectional Study
Predictors of False-Negative Axillary FNA Among Breast Cancer Patients: A Cross-Sectional Study
Abstract Introduction Fine-needle aspiration (FNA) is commonly used to investigate lymphadenopathy of suspected metastatic origin. The current study aims to find the association be...
River Bifurcations
River Bifurcations
<p>Bifurcations are key elements shaping a variety of surface water streams such as river deltas, channel loops, anastomosing and braided rivers. Their geometry inter...
Stable Heteroclinic Channel-Based Movement Primitives: Tuning Trajectories Using Saddle Parameters
Stable Heteroclinic Channel-Based Movement Primitives: Tuning Trajectories Using Saddle Parameters
Dynamic systems which underlie controlled systems are expected to increase in complexity as robots, devices, and connected networks become more intelligent. While classical stable ...
Differentiating the lymph node metastasis of breast cancer through dynamic contrast-enhanced magnetic resonance imaging
Differentiating the lymph node metastasis of breast cancer through dynamic contrast-enhanced magnetic resonance imaging
Objective: Lymph node metastasis is an important trait of breast cancer, and tumors with different lymph node statuses require various clinical treatments. This study was designed ...
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Are Cervical Ribs Indicators of Childhood Cancer? A Narrative Review
Abstract A cervical rib (CR), also known as a supernumerary or extra rib, is an additional rib that forms above the first rib, resulting from the overgrowth of the transverse proce...
NEW CANDIDATE BIOMARKER FOUND IN UNSTABLE ANGINA PATIENTS BY LC-MS/MS
NEW CANDIDATE BIOMARKER FOUND IN UNSTABLE ANGINA PATIENTS BY LC-MS/MS
Objectives Coronary heart disease (CHD) is the leading cause of death of adults worldwide, but the traditional related factors cannot explain the whole situations...
Discontinuous Bifurcations in Stick-Slip Mechanical Systems
Discontinuous Bifurcations in Stick-Slip Mechanical Systems
Abstract Non-smooth dynamical systems exhibit continuous and discontinuous bifurcations. Continuous bifurcations are well understood and described in many textbooks,...

Back to Top