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Elastic Shape Analysis of Three-Dimensional Objects, Ian H. Jermyn, Sebastian Kurtek, Hamid Laga, Anuj Srivastava


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Автор: Ian H. Jermyn, Sebastian Kurtek, Hamid Laga, Anuj Srivastava
Название:  Elastic Shape Analysis of Three-Dimensional Objects
ISBN: 9781681730271
Издательство: Mare Nostrum (Eurospan)
Классификация:



ISBN-10: 1681730278
Обложка/Формат: Paperback
Страницы: 185
Вес: 0.33 кг.
Дата издания: 30.09.2017
Серия: Synthesis lectures on computer vision
Язык: English
Иллюстрации: Illustrations, color
Размер: 235 x 191 x 10
Читательская аудитория: General (us: trade)
Ключевые слова: Calculus & mathematical analysis,Differential & Riemannian geometry,Computer vision, COMPUTERS / Computer Vision & Pattern Recognition,MATHEMATICS / Geometry / Differential,MATHEMATICS / Mathematical Analysis
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Поставляется из: Англии
Описание: Statistical analysis of shapes of 3D objects is an important problem with a wide range of applications. This analysis is difficult for many reasons, including the fact that objects differ in both geometry and topology. In this manuscript, we narrow the problem by focusing on objects with fixed topology, say objects that are diffeomorphic to unit spheres, and develop tools for analyzing their geometries. The main challenges in this problem are to register points across objects and to perform analysis while being invariant to certain shape-preserving transformations.We develop a comprehensive framework for analyzing shapes of spherical objects, i.e., objects that are embeddings of a unit sphere in ℝ, including tools for: quantifying shape differences, optimally deforming shapes into each other, summarizing shape samples, extracting principal modes of shape variability, and modeling shape variability associated with populations. An important strength of this framework is that it is elastic: it performs alignment, registration, and comparison in a single unified framework, while being invariant to shape-preserving transformations.The approach is essentially Riemannian in the following sense. We specify natural mathematical representations of surfaces of interest, and impose Riemannian metrics that are invariant to the actions of the shape-preserving transformations. In particular, they are invariant to reparameterizations of surfaces. While these metrics are too complicated to allow broad usage in practical applications, we introduce a novel representation, termed square-root normal fields (SRNFs), that transform a particular invariant elastic metric into the standard L² metric. As a result, one can use standard techniques from functional data analysis for registering, comparing, and summarizing shapes. Specifically, this results in: pairwise registration of surfaces; computation of geodesic paths encoding optimal deformations; computation of Karcher means and covariances under the shape metric; tangent Principal Component Analysis (PCA) and extraction of dominant modes of variability; and finally, modeling of shape variability using wrapped normal densities.These ideas are demonstrated using two case studies: the analysis of surfaces denoting human bodies in terms of shape and pose variability; and the clustering and classification of the shapes of subcortical brain structures for use in medical diagnosis.This book develops these ideas without assuming advanced knowledge in differential geometry and statistics. We summarize some basic tools from differential geometry in the appendices, and introduce additional concepts and terminology as needed in the individual chapters.

Infinite Dimensional Analysis: A Hitchhiker`s Guide

Автор: Charalambos D. Aliprantis
Название: Infinite Dimensional Analysis: A Hitchhiker`s Guide
ISBN: 3540326960 ISBN-13(EAN): 9783540326960
Издательство: Springer
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Цена: 45650.00 T
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Описание: What you`ll find in this monograph is nothing less than a complete and rigorous study of modern functional analysis. It is intended for the student or researcher who could benefit from functional analytic methods, but who does not have an extensive background in the subject and does not plan to make a career as a functional analyst.

Three-dimensional geometry and topology

Автор: Thurston, William P.
Название: Three-dimensional geometry and topology
ISBN: 0691083045 ISBN-13(EAN): 9780691083049
Издательство: Wiley
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Цена: 116160.00 T
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Описание: Hyperbolic geometry is the star. A strong effort has been made to convey not just denatured formal reasoning, but a living feeling for the subject. There are many figures, examples, and exercises of varying difficulty. This book develops some of the power of geometry in two and three dimensions, and the strong connection of geometry with topology.

The Three-Dimensional Navier–Stokes Equations

Автор: Robinson
Название: The Three-Dimensional Navier–Stokes Equations
ISBN: 1107019664 ISBN-13(EAN): 9781107019669
Издательство: Cambridge Academ
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Цена: 74970.00 T
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Описание: A rigorous but accessible introduction to the mathematical theory of the three-dimensional Navier-Stokes equations, offering a self-contained treatment of many of the major results. Numerous exercises are provided, each with full solutions, making the book an ideal text for a graduate course of one or two semesters.

Three-dimensional computer vision

Автор: Faugeras, O.d.
Название: Three-dimensional computer vision
ISBN: 0262061589 ISBN-13(EAN): 9780262061582
Издательство: MIT Press
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Цена: 188180.00 T
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Описание: This monograph by one of the world`s leading vision researchers provides a thorough, mathematically rigorous exposition of a broad and vital area in computer vision: the problems and techniques related to three-dimensional (stereo) vision and motion.

High-dimensional Covariance Estimation

Автор: Pourahmadi Mohsen
Название: High-dimensional Covariance Estimation
ISBN: 1118034295 ISBN-13(EAN): 9781118034293
Издательство: Wiley
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Цена: 84430.00 T
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Описание: Methods for estimating sparse and large covariance matrices Covariance and correlation matrices play fundamental roles in every aspect of the analysis of multivariate data collected from a variety of fields including business and economics, health care, engineering, and environmental and physical sciences.


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