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5篇 您的检索式:作者名="W.Daniel"
    题名 作者 年代 出处 被引量
1Phenology of high-arctic butterflies and their floral resources: Species-specific responses to climate change显示文摘Toke T.HФYE Anne ESKILDSEN Rikke R. HANSEN Joseph J.BOWDEN Niels M.SCHMIDT W.Daniel KISSLING 2014Current Zoology2014,60,2:2
2The Network Architecture of the Connection Machine CM-5显示文摘Charles E. Leiserson Zahi S. Abuhamdeh David C. Douglas Carl R. Feynman Mahesh N. Ganmukhi Jeffrey V. Hill W.Daniel Hillis Bradley C. Kuszmaul Margaret A. St. Pierre David S. Wells Monica C. Wong-Chan Shaw-Wen Yang Robert Zak 1996Journal of Parallel and Distributed Computing1996,,2:1
3Demographic uncertainty in ecological risk assessments显示文摘Guiming Wang W.Daniel Edge Jerry O Wolff 2001Ecological Modelling2001,,1:1
4Scaling Notebooks as Re-configurable Cloud Workflows显示文摘Literate computing environments,such as the Jupyter(i.e.,Jupyter Notebooks,JupyterLab,and JupyterHub),have been widely used in scientific studies;they allow users to interactively develop scientific code,test algorithms,and describe the scientific narratives of the experiments in an integrated document.To scale up scientific analyses,many implemented Jupyter environment architectures encapsulate the whole Jupyter notebooks as reproducible units and autoscale them on dedicated remote infrastructures(e.g.,highperformance computing and cloud computing environments).The existing solutions are stl limited in many ways,e.g.,1)the workflow(or pipeline)is implicit in a notebook,and some steps can be generically used by different code and executed in parallel,but because of the tight cell structure,all steps in the Jupyter notebook have to be executed sequentially and lack of the flexibility of reusing the core code fragments,and 2)there are performance bottlenecks that need to improve the parallelism and scalability when handling extensive input data and complex computation.In this work,we focus on how to manage the workflow in a notebook seamlessly.We 1)encapsulate the reusable cells as RESTful services and containerize them as portal components,2)provide a composition tool for describing workflow logic of those reusable components,and 3)automate the execution on remote cloud infrastructure.Empirically,we validate the solution's usability via a use case from the Ecology and Earth Science domain,illustrating the processing of massive Light Detection and Ranging(LiDAR)data.The demonstration and analysis show that our method is feasible,but that it needs further improvement,especially on integrating distributed workflow scheduling,automatic deployment,and execution to develop as a mature approach.Yuandou Wang Spiros Koulouzis Riccardo Bianchi Na Li Yifang Shi Joris Timmermans W.Daniel Kissling Zhiming Zhao 2022Data Intelligence2022,4,2:0
5How does stiffness of trabecular meshwork affect outflow resistance in human eyes?显示文摘Purpose Ocular hypertension is the primary risk factor for development of glaucoma and the only modifiable endpoint[1,2].Clinical trials involving thousands of patients have shown consistently that lowering intraocular pressure(IOP)in those with glaucoma,whether or not their IOP is above normal,slows vision loss.IOP elevation is the result of diminished outflow facility in the conventional outflow pathway;and the highest resistance to aqueous humor outflow resides in the juxtacanalicular tissue(JCT)layer of trabecular meshwork(TM)and the inner wall of Schlemm’s canal(SC).However,mechanisms of outflow facility decrease in glaucomatous eyes remain to be determined.Fan Yuan Lucinda J.Camras W.Daniel Stamer David Epstein Pedro Gonzalez 2013医用生物力学2013,28,S1:0
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