Visual perception a clinical orientation edited by Steven H. Schwartz.
Detalles de publicación: New York McGraw-Hill, Health Pub. Division c2004.Edición: 3rd edDescripción: xvi, 471 p. ill. 25 cmISBN:- 0071411879
- 612.84 V8344 2004 22
- QP475 .S38 2004
- 2004 G-070
- WW 105
| Imagen de cubierta | Tipo de ítem | Biblioteca actual | Biblioteca de origen | Colección | Ubicación en estantería | Signatura topográfica | Materiales especificados | Info Vol | URL | Copia número | Estado | Notas | Fecha de vencimiento | Código de barras | Reserva de ítems | Prioridad de la cola de reserva de ejemplar | Reservas para cursos | |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| Libro | Biblioteca Mons. Iñaki Mallona (Arecibo) Colección General ab | 612.84 V8344 2004 (Navegar estantería(Abre debajo)) | Disponible | 60000010019963 |
Descripciones mejoradas de Syndetics:
The only text for the optometric optics course in optometry schools This concise, student-friendly, highly visual text covers the key topics in geometrical and visual optics foundational to optometric practice. Features over 300 illustrations, summaries and self-assessment questions, and case studies making the subject more clinically relevant. In addition, the illustrations will be improved with more original artwork.
Rev. ed. of: Visual perception / Steven H. Schwartz. 2nd ed. c1999.
Includes bibliographical references (p. 435-454) and index.
Foreword -- Preface -- Acknowledgments -- 1. Experimental approaches -- 2. Introductory concepts -- 3. The duplex retina -- 4. Photometry -- 5. Color vision -- 6. Anomalies of color vision -- 7. Spatial vision -- 8. Temporal aspects of vision -- 9. Motion perception -- 10. Depth perception -- 11. Psychological methodology -- 12. Functional retinal physiology -- 13. Parallel processing -- 14. Striate cortex -- 15. Information streams and extrastriate processing -- 16. Gross electrical potentials -- 17. Development and maturation of vision -- Answers to self-assessment questions -- Practice examination 1 -- Practice examination 2 -- Practice examination 3 Answers to practice examinations -- References -- Index.
Tabla de contenidos provista por Syndetics
- Foreword(p. xi)
- Preface(p. xiii)
- Acknowledgments(p. xv)
- 1. Experimental Approaches(p. 1)
- 2. Introductory Concepts(p. 3)
- Very Basic Ocular Anatomy(p. 3)
- Basic Retinal Anatomy and Postretinal Pathways(p. 6)
- Electromagnetic Spectrum(p. 19)
- Transmission Characteristics of the Eye(p. 21)
- Summary(p. 22)
- 3. The Duplex Retina(p. 23)
- Basic Distinctions Between Scotopic and Photopic Vision(p. 24)
- Morphological Distinctions Between Rods and Cones(p. 24)
- Photopigments in Rods and Cones(p. 27)
- Retinal Distribution of Photoreceptors(p. 33)
- Dark Adaptation(p. 35)
- Light Adaptation(p. 42)
- Spatial Resolution and Spatial Summation(p. 44)
- Temporal Resolution and Temporal Summation(p. 48)
- Stiles-Crawford Effect of the First Kind(p. 51)
- Clinical Considerations(p. 54)
- Summary(p. 58)
- Self-Assessment Questions(p. 59)
- 4. Photometry(p. 61)
- Photometry and Radiometry: Basic Concepts and Units(p. 61)
- Cosine Diffusers(p. 69)
- Inverse Square Law(p. 70)
- Retinal Illumination(p. 70)
- Scotopic Units(p. 73)
- Derivation of the Photopic Luminosity Function(p. 73)
- Specification of Light Sources(p. 76)
- Filters(p. 79)
- Clinical Considerations(p. 85)
- Summary(p. 85)
- Self-Assessment Questions(p. 86)
- 5. Color Vision(p. 89)
- Trichromatic Theory(p. 89)
- Absorption Spectra of the Cone Photopigments(p. 98)
- Grassman's Laws of Metamers(p. 101)
- Color Labels(p. 103)
- Wavelength Discrimination(p. 105)
- Bezold-Brucke Phenomenon(p. 106)
- Color Constancy(p. 108)
- Physiological Basis of Color Vision(p. 108)
- Munsell Color Appearance System(p. 114)
- CIE Color Specification System(p. 115)
- Summary(p. 125)
- Self-Assessment Questions(p. 126)
- 6. Anomalies of Color Vision(p. 127)
- Basic Classification(p. 127)
- Basic Data of Color Deficiency(p. 129)
- Color Labeling(p. 137)
- Inherited Anomalies of Color Vision(p. 140)
- The Molecular Genetics of Red-Green Color Vision Anomalies(p. 141)
- Acquired Color Vision Anomalies(p. 144)
- Achromatopsias(p. 145)
- Chromatopsias(p. 146)
- Standard Color Vision Tests(p. 147)
- Nagel Anomaloscope(p. 151)
- Additional Clinical Considerations(p. 155)
- Summary(p. 161)
- Self-Assessment Questions(p. 163)
- 7. Spatial Vision(p. 165)
- Sine Wave Gratings(p. 165)
- Fourier Analysis: Basic Introduction(p. 169)
- Spatial Modulation Transfer Function of a Lens(p. 171)
- The Human Contrast Sensitivity Function(p. 173)
- CSF High-frequency Cutoff(p. 174)
- CSF Low-frequency Drop-Off(p. 179)
- The Visual System as a Fourier Analyzer(p. 180)
- Relationship of the CSF to Snellen Acuity(p. 184)
- Clinical Implications of the CSF(p. 185)
- Clinical Determination of the CSF(p. 188)
- Other Forms of Visual Acuity(p. 189)
- Summary(p. 192)
- Self-Assessment Questions(p. 193)
- 8. Temporal Aspects of Vision(p. 195)
- Stimulus Considerations(p. 195)
- Temporal Modulation Transfer Functions(p. 198)
- Critical Flicker Fusion Frequency(p. 202)
- Other Temporal Visual Effects(p. 205)
- Masking(p. 208)
- Clinical Considerations(p. 211)
- Summary(p. 212)
- Self-Assessment Questions(p. 213)
- 9. Motion Perception(p. 215)
- First-Order Motion Stimuli(p. 215)
- Second-Order Motion Stimuli(p. 217)
- Dorsal Processing Stream(p. 219)
- Roles of Luminance and Color(p. 219)
- Dynamic Visual Acuity(p. 220)
- Saccadic Suppression(p. 221)
- Clinical Considerations(p. 222)
- Summary(p. 223)
- Self-Assessment Question(p. 224)
- 10. Depth Perception(p. 225)
- Monocular Depth Cues(p. 225)
- Binocular Depth Cues(p. 230)
- Size Illusions(p. 232)
- Clinical Considerations(p. 235)
- Summary(p. 236)
- Self-Assessment Question(p. 236)
- 11. Psychophysical Methodology(p. 237)
- Threshold(p. 237)
- Determination of Threshold(p. 239)
- Signal Detection Theory(p. 245)
- Weber's Law(p. 252)
- Magnitude of Sensation(p. 256)
- Summary(p. 258)
- Self-Assessment Questions(p. 259)
- 12. Functional Retinal Physiology(p. 261)
- The Retina(p. 262)
- Receptive Fields of Ganglion Cells(p. 263)
- Recording from Retinal Neurons(p. 267)
- Photoreceptors(p. 268)
- Horizontal Cells(p. 270)
- Bipolar Cells(p. 272)
- Amacrine Cells(p. 276)
- Ganglion Cell(p. 276)
- Clinical Considerations(p. 280)
- Summary(p. 280)
- Self-Assessment Questions(p. 281)
- 13. Parallel Processing(p. 283)
- What the Frog's Eye Tells Its Brain(p. 284)
- X- and Y-Cells(p. 285)
- Parvo and Magno Cells(p. 287)
- Functions of the Parvo and Magno Pathways(p. 290)
- Clinical Considerations(p. 293)
- Summary(p. 295)
- Self-Assessment Questions(p. 296)
- 14. Striate Cortex(p. 297)
- Basic Organization of the Cortex(p. 297)
- Simple and Complex Cells(p. 300)
- Edges or Gratings(p. 306)
- Striate Cortical Architecture(p. 306)
- Clinical Considerations(p. 311)
- Summary(p. 313)
- Self-Assessment Questions(p. 314)
- 15. Information Streams and Extrastriate Processing(p. 315)
- Information Diverges Beyond Striate Cortex(p. 315)
- Cortical Modularity(p. 316)
- Visual Area 5(p. 317)
- Visual Area 4 and Inferotemporal Cortex(p. 320)
- Visual Agnosias(p. 320)
- Are There Grandmother Cells?(p. 322)
- Binocular Rivalry and Neuronal Activity(p. 322)
- Top-Down Attention and Neuronal Activity(p. 325)
- Can Vision Be Trained?(p. 326)
- A Word of Caution(p. 327)
- Summary(p. 327)
- Self-Assessment Question(p. 328)
- 16. Gross Electrical Potentials(p. 329)
- Electrooculogram(p. 329)
- Electroretinogram(p. 332)
- Visually Evoked Potentials(p. 339)
- Clinical Considerations(p. 343)
- Summary(p. 344)
- Self-Assessment Questions(p. 345)
- 17. Development and Maturation of Vision(p. 347)
- Deprivation Studies(p. 347)
- Amblyopia(p. 352)
- Meridional Amblyopia(p. 358)
- Perceptual Consequences of Bilateral Visual Deprivation(p. 360)
- Development of Refractive Errors(p. 360)
- Development of Grating Acuity(p. 362)
- Development of Other Visual Attributes(p. 367)
- Clinical Considerations(p. 371)
- Vision in the Later Years(p. 372)
- Self-Assessment Questions(p. 379)
- Answers to Self-Assessment Questions(p. 381)
- Chapter 3: The Duplex Retina(p. 381)
- Chapter 4: Photometry(p. 382)
- Chapter 5: Color Vision(p. 385)
- Chapter 6: Anomalies of Color Vision(p. 386)
- Chapter 7: Spatial Vision(p. 387)
- Chapter 8: Temporal Aspects of Vision(p. 389)
- Chapter 9: Motion Perception(p. 390)
- Chapter 10: Depth Perception(p. 390)
- Chapter 11: Psychophysical Methodology(p. 390)
- Chapter 12: Functional Retinal Physiology(p. 391)
- Chapter 13: Parallel Processing(p. 391)
- Chapter 14: Striate Cortex(p. 392)
- Chapter 15: Information Streams and Extrastriate Processing(p. 392)
- Chapter 16: Gross Electrical Potentials(p. 393)
- Chapter 17: Development and Maturation of Vision(p. 393)
- Practice Examination 1(p. 395)
- Practice Examination 2(p. 409)
- Practice Examination 3(p. 421)
- Answers to Practice Examinations(p. 433)
- References(p. 435)
- Index(p. 455)