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Data from:A method for estimating Hill function-based dynamic models of gene regulatory networks
负责人:
关键词:
gene regulatory networks;optimization;Escherichia coli;parameter estimation
DOI:
doi:10.5061/dryad.ht047
摘要:
Gene regulatory networks (GRNs) are quite large and complex. To better understand and analyze GRNs, mathematical models are being em
Copy of supplementary material.xlsx from A brittle star-like robot capable of immediately adapting to unexpected physical damage
负责人:
关键词:
90301 Biomaterials 90602 Control Systems, Robotics and Automation 19999 Mathematical Sciences not elsewhere classified 30402 Biomolecular Modelling and Design
DOI:
doi:10.6084/m9.figshare.5640280.v1
摘要:
the decentralized control mechanism that self-coordinates the arm motions by constructing a simple mathematical model. We implemented this mechanism in a brittle star-li
Data from: Deep phylogenomics of a tandem-repeat galectin regulating appendicular skeletal pattern formation
负责人:
关键词:
homology;galectin;mathematical modeling;phylogeny;Pattern formation
DOI:
doi:10.5061/dryad.n5095
摘要:
of the tetrapod pattern. Results: Translocations, duplications, and losses of Gal-8 genes in Actinopterygii established them in different genomic locations from
Data from: Establishment of the falling film evaporation model and correlation of the overall heat transfer coefficient
负责人:
关键词:
Falling film;Numerical Simulation;Heat transfer coefficient
DOI:
doi:10.5061/dryad.v4g58s8
摘要:
In order to study the heat transfer of the falling film evaporator with phase change on both sides, we built the mathematical model
Processing Code from Gait control in a soft robot by sensing interactions with the environment using self-deformation
负责人:
关键词:
90602 Control Systems, Robotics and Automation 60801 Animal Behaviour 19999 Mathematical Sciences not elsewhere classified
DOI:
doi:10.6084/m9.figshare.4246643
摘要:
d to control movements, we have developed a soft-bodied crawling robot inspired by a highly tractable animal model, the tobacco hornworm Ma
Processing Code from Gait control in a soft robot by sensing interactions with the environment using self-deformation
负责人:
关键词:
90602 Control Systems, Robotics and Automation 60801 Animal Behaviour 19999 Mathematical Sciences not elsewhere classified
DOI:
doi:10.6084/m9.figshare.4246643.v1
摘要:
d to control movements, we have developed a soft-bodied crawling robot inspired by a highly tractable animal model, the tobacco hornworm Ma
Data from: Don't put all eggs in one nest - spread them and cut time at risk
负责人:
Andersson, Malte
关键词:
Adaptation Behavior: antipredator Behavior: reproductive Life history: theory Mating systems Parental care Reproduction: strategies Bird Fish Insect
DOI:
doi:10.5061/dryad.104t1
摘要:
ng mathematical modelling and field observations we analyse an unexplored benefit of egg spreading in brood parasitic and other breeding systems: reduced time at risk
Data from: Stability of spontaneous, correlated activity in mouse auditory cortex
负责人:
关键词:
cortical networks;dynamics;two-photon imaging;auditory cortex;Mus musculus;network
DOI:
doi:10.5061/dryad.85387h3
摘要:
or functional connections. The resulting network can be analyzed using mathematical tools from network science and graph theory to quantify the system
Mathematical model for optimizing feed mix raw material requirement and estimating the impacts of government policies and storage capacity
负责人:
Jirachai Buddhakulsomsiri, Advisor
关键词:
Feed mix problem Feed formulation Linear programming Cost optimization Government policy Scenarios analysis
DOI:
doi:10.14457/tu.the.2018.127
摘要:
government policy and storage capacity are incorporated. The model is solved with real data in various scenario to estimate their impacts on key system performa
Data from: Chameleons communicate with complex colour changes during contests: different body regions convey different information
负责人:
关键词:
Agonistic signaling Combat Communication Colour signals Physiological colour change Chameleons
DOI:
doi:10.5061/dryad.8jp03
摘要:
on of rapidly changing colours (as in chameleons and cephalopods) is poorly understood. We used recently developed photographic and mathematical modelling tools

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