paper-with-me

홈 › Papers

Inferring Density-Dependent Population Dynamics Mechanisms through Rate Disambiguation for Logistic Birth-Death Processes

2022-05-10 · Linh Huynh, Jacob G. Scott, Peter J. Thomas

Density dependence is important in the ecology and evolution of microbial and cancer cells. Typically, we can only measure net growth rates, but the underlying density-dependent mechanisms that give rise to the observed dynamics can manifest in birth processes, death processes, or both. Therefore, we utilize the mean and variance of cell number fluctuations to separately identify birth and death rates from time series that follow stochastic birth-death processes with logistic growth. Our method provides a novel perspective on stochastic parameter identifiability, which we validate by analyzing the accuracy in terms of the discretization bin size. We apply our method to the scenario where a homogeneous cell population goes through three stages: (1) grows naturally to its carrying capacity, (2) is treated with a drug that reduces its carrying capacity, and (3) overcomes the drug effect to restore its original carrying capacity. In each stage, we disambiguate whether it happens through the birth process, death process, or some combination of the two, which contributes to understanding drug resistance mechanisms. In the case of limited data sets, we provide an alternative method based on maximum likelihood and solve a constrained nonlinear optimization problem to identify the most likely density dependence parameter for a given cell number time series. Our methods can be applied to other biological systems at different scales to disambiguate density-dependent mechanisms underlying the same net growth rate.

📄 PDF Abstract BibTeX arXiv:2205.05189

Code (1)

lhuynhm/birthdeathdisambiguation 공식 구현

Tasks

Time SeriesTime Series Analysis

Similar Papers 제목 키워드 기반

Density-dependent and independent mechanisms jointly reduce species performance under nitrogen enrichment

2023-01-02 · David Sampson Issaka, Or Gross, Itunuoluwa Ayilara, Talia Schabes 외

Nitrogen (N) deposition is a primary driver of species loss in plant communities globally. However, the mechanisms by which high N availability causes species loss remain unclear. Many hypotheses for species loss with in…

Population Dynamics in ARIEL Robotics Systems Featuring Embodied Evolution via Spatial Mating Mechanisms

2026-04-29 · Victoria Peterson, Akshat Srivastava, Raghav Prabhakar arxiv

We present a Spatially Embedded Evolutionary Algorithm where robot individuals exist in a physically simulated 2D environment, must navigate to encounter potential mates, and compete for survival under various spatially-…

Global redistribution and local migration in semi-discrete host-parasitoid population dynamic models

2019-12-30

Host-parasitoid population dynamics is often probed using a semi-discrete/hybrid modeling framework. Here, the update functions in the discrete-time model connecting year-to-year changes in the population densities are o…

Seasonality, density dependence and spatial population synchrony

2022-03-30 · Pedro G Nicolau, Sigrunn H Sørbye, Nigel G Yoccoz, Rolf A Ims

Spatial population synchrony has been the focus of theoretical and empirical studies for decades, in the hopes of understanding mechanisms and interactions driving ecological dynamics. In many systems, it is well-known t…

Time SeriesTime Series Analysis

Stochastic dynamics of two-compartment cell proliferation models with regulatory mechanisms for hematopoiesis

2024-04-29 · Ren-Yi Wang, Marek Kimmel, Guodong Pang

We present an asymptotic analysis of a stochastic two-compartmental cell division system with regulatory mechanisms inspired by Getto et al. (2013). The hematopoietic system is modeled as a two-compartment system, where …