RANDOM_WALK

作品数:152被引量:172H指数:7
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相关作者:倪卫宁石寅张佳惠傅应强成可立更多>>
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Dynamic partition of urban network considering congestion evolution based on random walk
《Chinese Physics B》2025年第1期530-534,共5页Zhen-Tong Feng Lele Zhang Yong-Hong Wu Mao-Bin Hu 
Project supported by the National Natural Science Foundation of China(Grant No.12072340);the Chinese Scholarship Council and the Australia Research Council through a linkage project fund。
The successful application of perimeter control of urban traffic system strongly depends on the macroscopic fundamental diagram of the targeted region.Despite intensive studies on the partitioning of urban road networ...
关键词:urban road networks dynamic partitioning random walk Akaike information criterion perimeter control 
Spatial search weighting information contained in cell velocity distribution
《Chinese Physics B》2024年第2期522-528,共7页马一凯 李娜 陈唯 
Project supported by the National Natural Science Foundation of China(Grant No.31971183).
Cell migration plays a significant role in physiological and pathological processes.Understanding the characteristics of cell movement is crucial for comprehending biological processes such as cell functionality,cell ...
关键词:cell migration foraging efficiency random walk spatial search weight 
Characteristics of cell motility during cell collision
《Chinese Physics B》2024年第2期72-77,共6页马一凯 李娜 陈唯 
Project supported by the National Natural Science Foundation of China(Grant No.31971183)。
Quantitative examination of cellular motion and intercellullar interactions possesses substantial relevance for both biology and medicine.However,the effects of intercellular interactions during cellular locomotion re...
关键词:cell migration random walk cell-cell interaction 
Directional-to-random transition of cell cluster migration
《Chinese Physics B》2023年第11期168-172,共5页曾阳 车丙晨 孙聃 张策 经光银 
Project supported by the National Natural Science Foundation of China (Grant Nos. 51927804 and 12174306);the Natural Science Basic Research Program of Shaanxi Province of China (Grant No. 2023-JC-JQ-02)。
Efficient cell migration is crucial for the functioning of biological processes, e.g., morphogenesis, wound healing, and cancer metastasis. In this study, we monitor the migratory behavior of the 3D fibroblast cluster...
关键词:cell migration random walk active wetting cell cluster 
Biased random walk with restart for essential proteins prediction
《Chinese Physics B》2022年第11期638-648,共11页Pengli Lu Yuntian Chen Teng Zhang Yonggang Liao 
Project supported by the National Natural Science Foundation of China(Grant Nos.11861045 and 62162040)。
Predicting essential proteins is crucial for discovering the process of cellular organization and viability.We propose biased random walk with restart algorithm for essential proteins prediction,called BRWR.Firstly,th...
关键词:PPI network essential proteins random walk with restart gene expression 
Ergodicity recovery of random walk in heterogeneous disordered media被引量:1
《Chinese Physics B》2020年第5期165-173,共9页Liang Luo Ming Yi 
Project supported by the National Natural Science Foundation of China(Grants Nos.11705064,11675060,and 91730301).
Significant and persistent trajectory-to-trajectory variance are commonly observed in particle tracking experiments,which have become a major challenge for the experimental data analysis.In this theoretical paper we i...
关键词:anomalous diffusion random walk disordered systems non-Gaussian diffusion 
Derivation of persistent time for anisotropic migration of cells
《Chinese Physics B》2017年第12期55-61,共7页刘艳平 张晓翠 吴宇宁 刘雯 李翔 刘如川 刘雳宇 帅建伟 
Project supported by the National Natural Science Foundation of China(Grant Nos.31370830,11675134,11474345,and 11604030);the State Key Development Program for Basic Research of China(Grant No.2013CB837200);the 111 Project,China(Grant No.B16029);the China Postdoctoral Science Foundation(Grant No.2016M602071)
Cell migration plays an essential role in a wide variety of physiological and pathological processes. In this paper we numerically discuss the properties of an anisotropic persistent random walk (APRW) model, in whi...
关键词:cell migration random walk Langevin equation cancer 
Multiple-predators-based capture process on complex networks
《Chinese Physics B》2017年第3期598-603,共6页Rajput Ramiz Sharafat 濮存来 李杰 陈荣斌 许忠奇 
Project supported by the National Natural Science Foundation of China(Grant No.61304154);the Specialized Research Fund for the Doctoral Program of Higher Education of China(Grant No.20133219120032);the Postdoctoral Science Foundation of China(Grant No.2013M541673);China Postdoctoral Science Special Foundation(Grant No.2015T80556)
The predator/prey (capture) problem is a prototype of many network-related applications. We study the capture process on complex networks by considering multiple predators from multiple sources. In our model, some l...
关键词:capture process random walk scale-free networks 
Sub-diffusive scaling with power-law trapping times
《Chinese Physics B》2014年第7期64-72,共9页罗亮 汤雷翰 
supported by the National Natural Science Foundation of China (Grant No. 11175013);the Research Grants Council of the Hong Kong Special Administrative Region,China (Grant No. N HKBU 213/10)
Thermally driven diffusive motion of a particle underlies many physical and biological processes. In the presence of traps and obstacles, the spread of the particle is substantially impeded, leading to subdiffusive sc...
关键词:anomalous diffusion subdiffusive scaling random walk in a disordered medium glass transition 
Random walks in generalized delayed recursive trees
《Chinese Physics B》2013年第10期654-660,共7页孙伟刚 张静远 陈关荣 
Project supported by the National Natural Science Foundation of China (Grant Nos.61203155 and 11232005);the Natural Science Foundation of Zhejiang Province,China (Grant No.LQ12F03003);the Hong Kong Research Grants Council under the GRF Grant CityU (Grant No.1109/12)
Recently a great deal of effort has been made to explicitly determine the mean first-passage time (MFPT) between two nodes averaged over all pairs of nodes on a fractal network. In this paper, we first propose a fam...
关键词:mean first-passage time random walk delayed recursive tree 
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