生物医学模拟:ISBMS 2006/会议录 Biomedical simulation

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  • 版 次:1
  • 页 数:216
  • 字 数:
  • 印刷时间:2006年12月01日
  • 开 本:
  • 纸 张:胶版纸
  • 包 装:平装
  • 是否套装:否
  • 国际标准书号ISBN:9783540360094
作者:Matthias Harders 著出版社:崇文书局(原湖北辞书出版社)出版时间:2006年12月 
编辑推荐
The LNCS series reports state-of-the-art results in computer science research, development, and education, at a high level and in both printed and electronic form. Enjoying tight cooperation with the R&D community, with numerous individuals, as well as with prestigious organizations and societies, LNCS has grown into the most comprehensive computer science resarch forum available.
The scope of LNCS, including its subseries LNAI, spans the whole range of computer science and information technology including interdisciplinary topics in a variety of application fields. The type of material publised traditionally includes.
-proceedings(published in time for the respective conference)
-post-proceedings(consisting of thoroughly revised final full papers)
-research monographs(which may be basde on outstanding PhD work, research projects, technical reports, etc.) 
内容简介
This book constitutes the refereed proceedings of the Third International Symposium on Biomedical Simulation, ISBMS 2006, held in Zurich, Switzerland in July 2006.
The 12 revised full papers and 11 poster papers presented were carefully reviewed and selected from 37 submissions. The papers are organized in topical sections on simulation of biophysical processes, systems and applications, and anatomical modeling and tissue properties.
目  录
Simulation of Biophysical Processes
Computer Prediction of Friction in Balloon Angioplasty and Stent Implantation
Real Time Simulation of Organ Motions Induced by Breathing;First Evaluation on Patient Data
Effcient 3D Finite Element Modeling of a Muscle-Activated Tongue
A 3-D Computational Model for Multicellular Tissue Growth
Hierarchical Multi-resolution Finite Element Model for Soft Body Simulation
Simulation of the Retroglossal Fluid-Structrue Interaction During Obstructive Sleep Apnea
Image Based Musculoskeletal Modeling Allows Personalized Biomechanical Analysis of Gait
Real-Time Simulation for Global Deformation of Soft Tissue Using Deformable Centerline and Medial Representation
The Framework for Real-Time Simulation of Deformable Soft-Tissue Using a Hybrid Elastic Model
Systems and Applications
A Flexible Framework for Highly-Modular Surgical Simulation Systems
An Introduction to GPU Accelerated Surgical Simulation
Simulation of Cardiac Activation Patterns for Checking Suggestions About the Suitability of Multi-lead ECG Electrode Arrays

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