Optical coherence tomography in glaucoma : a practical guide /

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Bibliographic Details
Imprint:Cham, Switzerland : Springer Nature : Springer, 2018.
Description:1 online resource
Language:English
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/11737060
Hidden Bibliographic Details
Other authors / contributors:Akman, Ahmet, editor.
Bayer, Atilla., editor.
Nouri-Mahdavi, Kouros, editor.
ISBN:9783319949055
3319949055
9783319949048
Notes:Online resource; title from PDF title page (EBSCO, viewed September 25, 2018).
Summary:This book focuses on the practical aspects of Optical Coherence Tomography (OCT) in glaucoma diagnostics offering important theoretical information along with many original cases. OCT is a non-invasive imaging technique that acquires high-resolution images of the ocular structures. It enables clinicians to detect glaucoma in the early stages and efficiently monitor the disease. Optical Coherence Tomography in Glaucoma features updated information on technical applications of OCT in glaucoma, reviews recently published literature and provides clinical cases based on Cirrus and Spectralis OCT platforms. In addition, newer techniques like event and trend analyses for progression, macular ganglion cell analysis, and OCT angiography are discussed. This book will serve as a reference for ophthalmologists and optometrists worldwide with a special interest in OCT imaging providing essential guidance on the application of OCT in glaucoma.

MARC

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588 0 |a Online resource; title from PDF title page (EBSCO, viewed September 25, 2018). 
505 0 |a Intro; Foreword; Preface; Contents; Abbreviations; Part I: Optical Coherence Tomography in Glaucoma, Basics; Chapter 1: Optical Coherence Tomography: Introduction, History andCurrent Status; 1.1 Introduction; 1.2 History; References; Chapter 2: Optical Coherence Tomography: Basics andTechnical Aspects; 2.1 What Is Optical Coherence Tomography?; 2.2 How Does OCT Work?; 2.3 OCT System Designs; 2.3.1 Time Domain OCT; 2.3.2 Spectral Domain OCT; 2.3.3 Swept-Source OCT; References; Chapter 3: Role ofOptical Coherence Tomography inGlaucoma; 3.1 Introduction; 3.2 RNFL Analysis 
505 8 |a 3.2.1 RNFL Thickness Map3.2.2 The RNFL Calculation Circle; 3.2.2.1 The RNFL Calculation Circle andTSNIT Plots; 3.3 Macular Ganglion Cell Analysis; 3.4 Optic Nerve Head Analysis; References; Chapter 4: Optical Coherence Tomography: Manufacturers andCurrent Systems; 4.1 Carl Zeiss Meditec; 4.1.1 Cirrus HD-OCT 5000 and500; 4.1.2 Primus 200 OCT; 4.1.3 Plex Elite 9000 Swept Source OCT; 4.2 Heidelberg Engineering Inc.; 4.2.1 Spectralis OCT; 4.3 Topcon Medical Systems; 4.3.1 3D OCT-1 Maestro OCT; 4.3.2 DRI OCT Triton Swept Source OCT; 4.4 Optovue; 4.4.1 Avanti Wide Field OCT; 4.4.2 AngioVue HD 
505 8 |a 4.4.3 iVue OCT4.4.4 iScan OCT; 4.5 Other Manufacturers; References; Part II: How to Interpret the Optical Coherence Tomography Results; Chapter 5: Interpretation ofImaging Data fromCirrus HD-OCT; 5.1 Introduction; 5.2 Scanning Algorithm ofCirrus HD-OCT fortheONH andPeripapillary Area; 5.3 How toRead theCirrus HD-OCT ONH andRNFL Analysis Report?; 5.3.1 Color Code Schemes inCirrus HD-OCT (Fig. 5.2); 5.3.2 Sections ofthePrintout (Fig. 5.2); 5.4 Cirrus HD-OCT's Macula Report; 5.5 How toRead theCirrus HD-OCT's Ganglion Cell Analysis Report?; 5.5.1 Sections ofthePrintout (Fig. 5.5) 
505 8 |a 5.6 The PanoMap Analysis5.7 The Normative Databases ofCirrus HD-OCT; 5.7.1 Cirrus HD-OCT RNFL andONH Normative Database; 5.7.2 Cirrus HD-OCT Macular GCL+IPL Normative Database; 5.8 Key Points; References; Chapter 6: Interpretation ofImaging Data fromSpectralis OCT; 6.1 Introduction; 6.2 The Automated Anatomic Positioning System; 6.3 Scan Properties ofSpectralis OCT forPeripapillary Region; 6.3.1 Standard 12 Degrees Scan Pattern; 6.3.2 The Glaucoma Module Premium Edition; 6.4 Features oftheGlaucoma Module Premium Edition Software fortheOptic Nerve Head; 6.4.1 The Optic Disc Margin 
505 8 |a 6.4.2 Bruch's Membrane Opening6.4.3 The Neuro-Retinal Rim; 6.5 The Posterior Pole Horizontal Algorithm (PPoleH); 6.5.1 The Posterior Pole Asymmetry Analysis; 6.6 Posterior Pole Vertical Scan (PPoleV); 6.7 Interpretation ofthePrintouts; 6.7.1 The Standard RNFL Single Exam Report; 6.7.2 The RNFL Single Exam Report oftheGlaucoma Module Premium Edition Software; 6.7.3 The Minimum Rim Width Analysis Report oftheGlaucoma Module Premium Edition Software; 6.7.4 The Posterior Pole Asymmetry Analysis Report; 6.8 Key Points; References 
520 |a This book focuses on the practical aspects of Optical Coherence Tomography (OCT) in glaucoma diagnostics offering important theoretical information along with many original cases. OCT is a non-invasive imaging technique that acquires high-resolution images of the ocular structures. It enables clinicians to detect glaucoma in the early stages and efficiently monitor the disease. Optical Coherence Tomography in Glaucoma features updated information on technical applications of OCT in glaucoma, reviews recently published literature and provides clinical cases based on Cirrus and Spectralis OCT platforms. In addition, newer techniques like event and trend analyses for progression, macular ganglion cell analysis, and OCT angiography are discussed. This book will serve as a reference for ophthalmologists and optometrists worldwide with a special interest in OCT imaging providing essential guidance on the application of OCT in glaucoma. 
650 0 |a Glaucoma.  |0 http://id.loc.gov/authorities/subjects/sh85055227 
650 0 |a Glaucoma  |x Diagnosis.  |0 http://id.loc.gov/authorities/subjects/sh85055228 
650 0 |a Optical coherence tomography.  |0 http://id.loc.gov/authorities/subjects/sh2006001524 
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650 7 |a Glaucoma  |x Diagnosis.  |2 fast  |0 (OCoLC)fst00943369 
650 7 |a Optical coherence tomography.  |2 fast  |0 (OCoLC)fst01739425 
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