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6篇 您的检索式:作者名="Arefeh"
    题名 作者 年代 出处 被引量
1Energy storage design and optimization for power sys- tem with wind feeding显示文摘AREFEH D S 2010European Wind Energy Conference2010,10,4:1
2Energy storage design and optimization for power system with wind feeding 显示文摘Arefeh Danesh Shakib Gerd Balzer 2010IEEE Transactions on Energy Conversion2010,10,2:1
3Generation of Liver Disease-Specific Induced Pluripotent Stem Cells Along with Efficient Differentiation to Functional Hepatocyte-Like Cells显示文摘Arefeh Ghodsizadeh Adeleh Taei Mehdi Totonchi Ali Seifinejad Hamid Gourabi Behshad Pournasr Nasser Aghdami Reza Malekzadeh Navid Almadani Ghasem Hosseini Salekdeh Hossein Baharvand 2010Stem Cell Reviews and Reports2010,,4:1
4Cardiac disease in pregnancy显示文摘Arefeh JM Baird SM 2006Grit Care Nurs Q2006,29,:1
5Prospective randomized trial of simulation versus didactic teaching for obstetrical emergencies显示文摘Daniels K Arefeh J Clark A 2010Simulation Healthc2010,5,1:1
6Dynamical modeling and controllability analysis of a flexible needle in soft tissue显示文摘This paper is concerned with deriving a dynamic model of a moderately flexible needle inserted into soft tissue,where the model’s output is the needle deflection.The main advantages of the proposed dynamic modeling approach are that the presented model structure involves parameters that are all measurable or identifiable by simple exper-iments and that it considers the same inputs that are currently used in the clinical practice of manual needle insertion.Conventional manual needle insertion suffers from the fact that flexible needles bend during insertion and their trajectories often vary from those planned,resulting in positioning errors.Enhancement of needle insertion accuracy via robot-assisted needle steering has received significant attention in the past decade.A common assumption in previous research has been that the needle behavior during insertion can be adequately described by static models relating the needle’s forces and torques to its deflection.For closed-loop control purposes,however,a dynamic model of the flexible needle in soft tissue is desired.In this paper,we propose a Lagrangian-based dynamic model for the coupled needle/tissue system,and analyze the response of the dynamic system.Steerability(controllability)analysis is also performed,which is only possible with a dynamic model.The proposed dynamic model can serve as a cornerstone of future research into designing dynamics-based control strategies for closed-loop needle steering in soft tissue aimed at minimizing position error.Arefeh Boroomand Mahdi Tavakoli Ron Sloboda Nawaid Usmani 2014International Journal of Modeling, Simulation, and Scientific Computing2014,5,2:0
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