日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Theoretical limits for sensing through phase separation

通过相分离进行传感的理论极限

Alston, Henry; Rouches, Mason; Murugan, Arvind; Walczak, Aleksandra M; Mora, Thierry

Simple biological controllers drive the evolution of soft modes

简单的生物控制器驱动着软模的演化

Russo, Christopher Joel; Husain, Kabir; Ranganathan, Rama; Pincus, David; Murugan, Arvind

Minimizing co-growth as a broad predictor of community robustness

最小化共生增长是社区稳健性的一个广泛预测指标

Chakraverti-Wuerthwein, Milena S; Matsubara, Yoshiya J; Roach, Finnegan D; Narla, Avaneesh V; Hwa, Terence; Murugan, Arvind

Temporal Contrastive Learning through implicit non-equilibrium memory

通过内隐非平衡记忆进行时间对比学习

Falk, Martin J; Strupp, Adam T; Scellier, Benjamin; Murugan, Arvind

Limits on the computational expressivity of non-equilibrium biophysical processes

非平衡生物物理过程计算表达能力的限制

Floyd, Carlos; Dinner, Aaron R; Murugan, Arvind; Vaikuntanathan, Suriyanarayanan

Soft Modes as a Predictive Framework for Low-Dimensional Biological Systems Across Scales

软模态作为跨尺度低维生物系统的预测框架

Russo, Christopher Joel; Husain, Kabir; Murugan, Arvind

Timescale of environmental change modulates metabolic guild cohesion in microbial communities

环境变化的时间尺度调节微生物群落中代谢群落的凝聚力

Crocker, Kyle; Skwara, Abigail; Kannan, Rathi; Murugan, Arvind; Kuehn, Seppe

Dynamic coexistence driven by physiological transitions in microbial communities

微生物群落生理转变驱动的动态共存

Narla, Avaneesh V; Hwa, Terence; Murugan, Arvind

Atomic PDF analysis as a basis for calculating the electronic structure of quantum materials

原子PDF分析作为计算量子材料电子结构的基础

Falk, Martin J; Wu, Jiayi; Matthews, Ayanna; Sachdeva, Vedant; Pashine, Nidhi; Gardel, Margaret L; Nagel, Sidney R; Murugan, Arvind; Petkov, Valeri

Microbial functional guilds respond cohesively to rapidly fluctuating environments

微生物功能群落能够协同应对快速变化的环境。

Crocker, Kyle; Skwara, Abigail; Kannan, Rathi; Murugan, Arvind; Kuehn, Seppe