Fourier Methods in Imaging introduces the mathematical tools for modeling linear imaging systems to predict the action of the system or for solving for the input. The chapters are grouped into five sections, the first introduces the imaging "tasks" (direct, inverse, and system analysis), the basic concepts of linear algebra for vectors and functions, including complex-valued vectors, and inner products of vectors and functions. The second section defines ""special"" functions, mathematical operations, and transformations that are useful for describing imaging systems. Among these are t
This book addresses the mathematical aspects of modern image processing methods, with a special emph...
What Fourier analysis does is to deconstruct complex functions into simpler component segments that ...
This report describes research done at the Artificial Intelligence Laboratory of the Massachusetts I...
The Handbook of Mathematical Methods in Imaging provides a comprehensive treatment of the mathematic...
A brief explanation of how the Fourier transform can be used in image processing
This chapter based on a series of lecture notes proposes an overview of mathematical concepts common...
Mathematical Imaging is currently a rapidly growing field in applied mathematics, with an increasing...
A thorough guide to the classical and contemporary mathematical methods of modern signal and image p...
Discrete Fourier Analysis and Wavelets presents a thorough introduction to the mathematical foundati...
The first of its kind, this focused textbook serves as a self-contained resource for teaching from s...
In this thesis, image processing is explored from a mathematical point of view. After defining a dig...
Based on diffraction theory and the propagation of the light, Fourier optics is a powerful tool allo...
In this thesis, image processing is explored from a mathematical point of view. After defining a dig...
The aim of this volume is to bring together research directions in theoretical signal and imaging pr...
The concept of a mapping, which takes its values in an infinite-dimensional functional space, has be...
This book addresses the mathematical aspects of modern image processing methods, with a special emph...
What Fourier analysis does is to deconstruct complex functions into simpler component segments that ...
This report describes research done at the Artificial Intelligence Laboratory of the Massachusetts I...
The Handbook of Mathematical Methods in Imaging provides a comprehensive treatment of the mathematic...
A brief explanation of how the Fourier transform can be used in image processing
This chapter based on a series of lecture notes proposes an overview of mathematical concepts common...
Mathematical Imaging is currently a rapidly growing field in applied mathematics, with an increasing...
A thorough guide to the classical and contemporary mathematical methods of modern signal and image p...
Discrete Fourier Analysis and Wavelets presents a thorough introduction to the mathematical foundati...
The first of its kind, this focused textbook serves as a self-contained resource for teaching from s...
In this thesis, image processing is explored from a mathematical point of view. After defining a dig...
Based on diffraction theory and the propagation of the light, Fourier optics is a powerful tool allo...
In this thesis, image processing is explored from a mathematical point of view. After defining a dig...
The aim of this volume is to bring together research directions in theoretical signal and imaging pr...
The concept of a mapping, which takes its values in an infinite-dimensional functional space, has be...
This book addresses the mathematical aspects of modern image processing methods, with a special emph...
What Fourier analysis does is to deconstruct complex functions into simpler component segments that ...
This report describes research done at the Artificial Intelligence Laboratory of the Massachusetts I...