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Photoreceptor Optics
Overview of attention for book
Table of Contents
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Book Overview
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Chapter 1
Introduction to Photoreceptor Optics — An Overview
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Chapter 2
Vertebrate Rod Receptors Are Directionally Sensitive
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Chapter 3
Photoreceptor Optics — Theoretical Principles
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Chapter 4
Waveguide Mode Effects, Birefringence and Dichroism in Fly Photoreceptors
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Chapter 5
Physiological Optics of the Fused Rhabdom
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Chapter 6
Sampling of the Visual Environment by the Compound Eye of the Fly: Fundamentals and Applications
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Chapter 7
A.6 Optical Qualities of the Fly Eye — An Approach from the Side of Geometrical, Physical and Waveguide Optics
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Chapter 8
Theory of the Stiles-Crawford Effect of the Second Kind
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Chapter 9
Angular Sensitivity of Lens-Photoreceptor Systems
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Chapter 10
Optical Interaction between Retinal Receptors
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Chapter 11
The Function of the Nonguided Light in Some Explanations of the Stiles-Crawford Effects
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Chapter 12
Light Absorption in an Idealised Photoreceptor on the Basis of Waveguide Theory
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Chapter 13
Birefringence, Dichroism and Rod Outer Segment Structure
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Chapter 14
The Role of the Photoreceptor Membrane in Photoreceptor Optics
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Chapter 15
Membranes, Dichroism and Receptor Sensitivity
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Chapter 16
Photoregeneration and the Adaptation Process in Insect Photoreceptors
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Chapter 17
Dark Regeneration of Invertebrate Visual Pigments
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Chapter 18
Photokinetics and Dichroism of Visual Pigments in the Photoreceptors of Eledone (Ozoena) moschata
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Chapter 19
The Photochemical Equilibrium in Rhabdomeres of Eledone and Its Effect on Dichroic Absorption
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Chapter 20
The Optics of Polarization Sensitivity
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Chapter 21
Polarisation Sensitivity in Insect Eyes with Fused Rhabdoms
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Chapter 22
Polarisation Sensitivity of Twisted Fused Rhabdoms
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Chapter 23
The Polarization Sensitivity — Dichroic Absorption Paradox in Arthropod Photoreceptors
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Chapter 24
Electron Microscopic Investigations on the Structure of the Photoreceptor Cells in the Compound Eye of Ascalaphus macaronius (Insecta: Neuroptera). (Preliminary Note)
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Chapter 25
Mechanisms of Photomechanical Movement
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Chapter 26
Properties and Functions of Screening Pigments in Insect Eyes
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Chapter 27
Arthropod Receptor Optics
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Chapter 28
Receptor Function in the Apposition Eye — An Electrophysiological Approach
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Chapter 29
Membrane Structure and Transduction Mechanism of Visual Receptors
Overall attention for this book and its chapters
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Mentioned by
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institution with syllabi
wikipedia
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Wikipedia page
Citations
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Book overview
1. Introduction to Photoreceptor Optics — An Overview
2. Vertebrate Rod Receptors Are Directionally Sensitive
3. Photoreceptor Optics — Theoretical Principles
4. Waveguide Mode Effects, Birefringence and Dichroism in Fly Photoreceptors
5. Physiological Optics of the Fused Rhabdom
6. Sampling of the Visual Environment by the Compound Eye of the Fly: Fundamentals and Applications
7. A.6 Optical Qualities of the Fly Eye — An Approach from the Side of Geometrical, Physical and Waveguide Optics
8. Theory of the Stiles-Crawford Effect of the Second Kind
9. Angular Sensitivity of Lens-Photoreceptor Systems
10. Optical Interaction between Retinal Receptors
11. The Function of the Nonguided Light in Some Explanations of the Stiles-Crawford Effects
12. Light Absorption in an Idealised Photoreceptor on the Basis of Waveguide Theory
13. Birefringence, Dichroism and Rod Outer Segment Structure
14. The Role of the Photoreceptor Membrane in Photoreceptor Optics
15. Membranes, Dichroism and Receptor Sensitivity
16. Photoregeneration and the Adaptation Process in Insect Photoreceptors
17. Dark Regeneration of Invertebrate Visual Pigments
18. Photokinetics and Dichroism of Visual Pigments in the Photoreceptors of Eledone (Ozoena) moschata
19. The Photochemical Equilibrium in Rhabdomeres of Eledone and Its Effect on Dichroic Absorption
20. The Optics of Polarization Sensitivity
21. Polarisation Sensitivity in Insect Eyes with Fused Rhabdoms
22. Polarisation Sensitivity of Twisted Fused Rhabdoms
23. The Polarization Sensitivity — Dichroic Absorption Paradox in Arthropod Photoreceptors
24. Electron Microscopic Investigations on the Structure of the Photoreceptor Cells in the Compound Eye of Ascalaphus macaronius (Insecta: Neuroptera). (Preliminary Note)
25. Mechanisms of Photomechanical Movement
26. Properties and Functions of Screening Pigments in Insect Eyes
27. Arthropod Receptor Optics
28. Receptor Function in the Apposition Eye — An Electrophysiological Approach
29. Membrane Structure and Transduction Mechanism of Visual Receptors
Summary
Syllabi
Wikipedia
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