课题基金 / 基金详情

XVIII Red Raider Minisymposium on Modeling in a Heterogeneous World

XVIII Red Raider Minisymposium on Modeling in a Heterogeneous World
第十八届红色袭击者异构世界建模小型研讨会
批准号:
1956396
负责人:
Angela Peace
金额:
$1.78万
依托单位:
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2020
资助国家:
美国
项目状态:
已结题
起止时间:
2020-03-01 至 2023-02-28

项目摘要

项目成果

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中文摘要
翻译
该奖项为将于2020年4月3日至4日在德克萨斯理工大学举行的Red Raider Minisymphon Modeling in a Heterogeneous World提供参与者支持。minisymphilism的目标是将具有应用于异构系统的数学,计算和生物学方法专业知识的研究人员与在数学和生物学界面工作的早期职业调查人员聚集在一起。各种杰出的和早期的职业演讲者将参加。每位演讲者将进行一小时的演讲,然后进行讨论,合作和研讨会活动。杰出的和早期的职业演讲者将专注于五个领域之一:1)生态系统的空间异质性,2)肿瘤异质性,3)化学计量异质性,4)疾病传播的异质性,以及5)行为异质性。此外,将有一个关于各种主题的海报会议。研讨会将提供一个独特的机会,以推进这些领域的研究,促进合作,并发现新的研究方向。关于这种最小对称的更多信息可以在http://www.math.ttu.edu/rr2020/Research上找到,数学和生物学领域的接口已经产生了深刻的结果,加深了对生态学,流行病学,肿瘤学和社会生物学问题的理解,并有助于这两个领域的进步。数学模型和方法的应用为生物学各个子领域的问题提供了新的思路,并相应地发展了新的数学方法和理论来解决生物学中的复杂问题。需要越来越多的数学和计算方法和技术来研究当前生物学中的问题,这些问题对于理解不断变化的异质世界至关重要。虽然生物系统是多个动态因素的复杂组合物,但许多数学模型都是简化的,可能缺乏足够的异质性来解决当前重要的问题。随着生态系统的不断变化,个人医疗的进步,全球气温的变化,以及生物体获得抗微生物耐药性,我们现在比以往任何时候都需要现实的模型来解释个人,人口和生态系统的异质性。在异质世界的minisymoposum建模将使来自不同职业阶段的研究人员在数学和生物学的接口工作,以满足和讨论新的和令人兴奋的方法和技术,将异质性纳入现实的生物系统。这些互动和讨论将通过确定重要的开放问题和促进长期合作,为今后在这一方向的研究奠定基础。提出和讨论的主题将在数学上具有重要意义,涵盖动力系统理论,随机过程,最优控制理论和博弈论,以及生物学上具有重要意义,涵盖人口生态学,肿瘤学和流行病学。该奖项反映了NSF的法定使命,并被认为是值得通过使用基金会的智力价值和更广泛的影响审查标准进行评估的支持。
英文摘要
This award provides participant supports for the Red Raider Minisymposium on Modeling in a Heterogeneous World, to be held on April 3-4 2020 in Texas Tech University, TX. The goal of the minisymposium is to bring together researchers with expertise in mathematical, computational and biological methods applied to heterogeneous systems, together with early career investigators working at the interface of mathematics and biology. A variety of distinguished and early career speakers will participate. Each speaker will give an hour-long talk followed by discussion, collaboration, and workshop activities. Both distinguished and early career speakers will focus on one of five areas: 1) spatial heterogeneity in ecological systems, 2) tumor heterogeneity, 3) stoichiometric heterogeneity, 4) heterogeneity in disease transmission, and 5) behavioral heterogeneity. Additionally, there will be a poster session on a variety of topics. The symposium will provide a unique opportunity to advance research in these fields, to promote collaborations, and to discover novel research directions. More information regarding this minisymposium can be found at http://www.math.ttu.edu/rr2020/Research efforts at the interface of the fields of mathematics and biology have produced profound results that have deepened understanding of problems in ecology, epidemiology, oncology and sociobiology and contributed to the advancement of both fields. Application of mathematical models and methods have shed light on problems in various subfields of biology, and in turn, new mathematical methods and theories have been developed in response to the complex problems in biology. A growing arsenal of mathematical and computational methods and techniques are needed to study the current problems in biology that are critical to understanding the changing, heterogeneous world. While biological systems are complex compositions of multiple dynamical factors, many mathematical models are simplifications that may lack sufficient heterogeneity to address questions of current importance. As ecosystems continue to change, personal medicine advances, global temperatures shift, and organisms gain anti-microbial resistance, we need realistic models to account for individual, population and ecosystem heterogeneities, now more than ever. The minisymposum Modeling in a Heterogeneous World will enable researchers from different career stages working at the interface of mathematics and biology to meet and to discuss new and exciting methods and techniques for incorporating heterogeneity into realistic biological systems. These interactions and discussions will lay the groundwork for future research in this direction by identifying important open questions and fostering long-term collaborations. Topics presented and discussed will be mathematically significant, spanning dynamical systems theory, stochastic processes, optimal control theory, and game theory, as well as biologically significant, spanning population ecology, oncology, and epidemiology.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
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