Description

Book Synopsis

Edited by and featuring contributions from world-class researchers, Ophthalmological Imaging and Applications offers a unified work of the latest human eye imaging and modeling techniques that have been proposed and applied to the diagnosis of ophthalmologic problems, including inflammation, cataracts, diabetic retinopathy, and glaucoma. With a focus on theory, basic principles, and results derived from research, the book:

  • Explores various morphological, textural, higher-order spectral, and wavelet transformation techniques used to extract salient features from images of the human eye
  • Examines 2D and 3D finite element and boundary element models of the human eye developed to simulate thermal steady-state conditions
  • Addresses the difficult task of benchmarking the validity of human eye imaging techniques and computer-simulated results with experimental measurements

Intended to be a companion to Image Analysis and Modeling in

Table of Contents

Retinal Vascular Imaging in Clinical Research. Detection and Modeling of the Major Temporal Arcade in Retinal Fundus Images. Application of Higher Order Spectra Cumulants for Diabetic Retinopathy Detection using Digital Fundus Images. Quality Measures for Retinal Images. Graph Search Retinal Vessel Tracking. Fundus Autofluorescence Imaging. The Needs/Requirements and Design of Imaging and Image Processing Methods for Ophthalmology in the Indian Context. The Application of Ocular Fundus Photography and Angiography. Optic Nerve Analysis and Imaging in Relation to Glaucoma. Imaging of the Eye after Glaucoma Surgery. Confocal Microscopy of Cornea. Corneal Topography and Tomography. Automatic Analysis of Scanning Laser Ophthalmoscope Sequences for Arteriovenous Passage Time Measurement. Optical Coherence Tomography. The Role of Optical Coherence Tomography on Imaging of the Ocular Surface. Anterior Segment Imaging of Anterior Segment Optical Coherence Tomography. Cyst Detection in OCT Images for Pathology Characterization. Scanning Laser Ophthalmoscope Fundus Perimetry. In Vivo Confocal Microscopy. Biomechanical Modeling of Blood Vessels for Interpretation of Tortuosity Estimates. Hybrid Finite Element Simulation for Bioheat Transfer in Human Eye. Effects of Electromagnetic Fields on Specific Absorption Rate and Heat Transfer in the Human Eye. Dry-Eye Characterization by Analysis of Tear Film Images. Thermography and the Eye.

Ophthalmological Imaging and Applications

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    A Hardback by E. Y. K. Ng, U. Rajendra Acharya, Rangaraj M. Rangayyan

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      Publisher: Taylor & Francis Inc
      Publication Date: Publication Date: 05/05/2014
      ISBN13: 9781466559134, 978-1466559134
      ISBN10: 1466559136

      Description

      Book Synopsis

      Edited by and featuring contributions from world-class researchers, Ophthalmological Imaging and Applications offers a unified work of the latest human eye imaging and modeling techniques that have been proposed and applied to the diagnosis of ophthalmologic problems, including inflammation, cataracts, diabetic retinopathy, and glaucoma. With a focus on theory, basic principles, and results derived from research, the book:

      • Explores various morphological, textural, higher-order spectral, and wavelet transformation techniques used to extract salient features from images of the human eye
      • Examines 2D and 3D finite element and boundary element models of the human eye developed to simulate thermal steady-state conditions
      • Addresses the difficult task of benchmarking the validity of human eye imaging techniques and computer-simulated results with experimental measurements

      Intended to be a companion to Image Analysis and Modeling in

      Table of Contents

      Retinal Vascular Imaging in Clinical Research. Detection and Modeling of the Major Temporal Arcade in Retinal Fundus Images. Application of Higher Order Spectra Cumulants for Diabetic Retinopathy Detection using Digital Fundus Images. Quality Measures for Retinal Images. Graph Search Retinal Vessel Tracking. Fundus Autofluorescence Imaging. The Needs/Requirements and Design of Imaging and Image Processing Methods for Ophthalmology in the Indian Context. The Application of Ocular Fundus Photography and Angiography. Optic Nerve Analysis and Imaging in Relation to Glaucoma. Imaging of the Eye after Glaucoma Surgery. Confocal Microscopy of Cornea. Corneal Topography and Tomography. Automatic Analysis of Scanning Laser Ophthalmoscope Sequences for Arteriovenous Passage Time Measurement. Optical Coherence Tomography. The Role of Optical Coherence Tomography on Imaging of the Ocular Surface. Anterior Segment Imaging of Anterior Segment Optical Coherence Tomography. Cyst Detection in OCT Images for Pathology Characterization. Scanning Laser Ophthalmoscope Fundus Perimetry. In Vivo Confocal Microscopy. Biomechanical Modeling of Blood Vessels for Interpretation of Tortuosity Estimates. Hybrid Finite Element Simulation for Bioheat Transfer in Human Eye. Effects of Electromagnetic Fields on Specific Absorption Rate and Heat Transfer in the Human Eye. Dry-Eye Characterization by Analysis of Tear Film Images. Thermography and the Eye.

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