PhD Figures

Figures · complete English translation

114 Figures – extracted original artwork

114 figures · local figure areas extracted from the original PDF, with deterministic composites of real embedded sub-images where needed.
Extracted original figure 1: Embryonic Development of the Cornea (Graw, 2010)
Figure 1. Embryonic Development of the Cornea (Graw, 2010) Source: Original dissertation, Original p. 26. Figure area extracted locally from the original PDF.
Extracted original figure 2: Snell's Law (OCULUS)
Figure 2. Snell's Law (OCULUS) Source: Original dissertation, Original p. 32. Figure area extracted locally from the original PDF.
Extracted original figure 3: Comparison of the Compliance Curve of a Normal Cornea (top) and a Keratoconic Cornea (bottom) (Mazen M. Sinjab, 2011b)
Figure 3. Comparison of the Compliance Curve of a Normal Cornea (top) and a Keratoconic Cornea (bottom) (Mazen M. Sinjab, 2011b) Source: Original dissertation, Original p. 33. Figure area extracted locally from the original PDF.
Extracted original figure 4: Pellucid Marginal Degeneration (Mazen M. Sinjab, 2011a)
Figure 4. Pellucid Marginal Degeneration (Mazen M. Sinjab, 2011a) Source: Original dissertation, Original p. 35. Figure area extracted locally from the original PDF.
Extracted original figure 5: Keratoglobus (Mazen M. Sinjab, 2011a)
Figure 5. Keratoglobus (Mazen M. Sinjab, 2011a) Source: Original dissertation, Original p. 36. Figure area extracted locally from the original PDF.
Extracted original figure 6: Terrien Marginal Dystrophy (Mazen M. Sinjab, 2011a)
Figure 6. Terrien Marginal Dystrophy (Mazen M. Sinjab, 2011a) Source: Original dissertation, Original p. 37. Figure area extracted locally from the original PDF.
Extracted original figure 7: Keratoconus (Mazen M. Sinjab, 2011a)
Figure 7. Keratoconus (Mazen M. Sinjab, 2011a) Source: Original dissertation, Original p. 41. Figure area extracted locally from the original PDF.
Extracted original figure 8: Placido Disc
Figure 8. Placido Disc Source: Original dissertation, Original p. 44. Figure area extracted locally from the original PDF.
Extracted original figure 9: Photokeratometer
Figure 9. Photokeratometer Source: Original dissertation, Original p. 45. Figure area extracted locally from the original PDF.
Extracted original figure 10: Example of an Orbscan Image with Basic Indices and Maps
Figure 10. Example of an Orbscan Image with Basic Indices and Maps Source: Original dissertation, Original p. 46. Figure area extracted locally from the original PDF.
Extracted original figure 11: Example of a Pentacam Topography Image with Basic Indices and Maps (OCULUS)
Figure 11. Example of a Pentacam Topography Image with Basic Indices and Maps (OCULUS) Source: Original dissertation, Original p. 47. Figure area extracted locally from the original PDF.
Extracted original figure 12: Example of a Sirius Image with Basic Indices and Maps (CSO, 2018)
Figure 12. Example of a Sirius Image with Basic Indices and Maps (CSO, 2018) Source: Original dissertation, Original p. 48. Figure area extracted locally from the original PDF.
Extracted original figure 13: Example of an MS-39 Image with Basic Indices and Maps (CSO)
Figure 13. Example of an MS-39 Image with Basic Indices and Maps (CSO) Source: Original dissertation, Original p. 49. Figure area extracted locally from the original PDF.
Extracted original figure 14: Example of a Pachymetry Map of a Normal Cornea
Figure 14. Example of a Pachymetry Map of a Normal Cornea Source: Original dissertation, Original p. 50. Figure area extracted locally from the original PDF.
Extracted original figure 15: Tangential Curvature Map of a Normal Cornea
Figure 15. Tangential Curvature Map of a Normal Cornea Source: Original dissertation, Original p. 51. Figure area extracted locally from the original PDF.
Extracted original figure 16: Calculation of Curvature Values: A – Tangential Map, B – Sagittal Map
Figure 16. Calculation of Curvature Values: A – Tangential Map, B – Sagittal Map Source: Original dissertation, Original p. 51. Figure area extracted locally from the original PDF.
Extracted original figure 17: Example of a Sagittal Curvature Map of a Normal Cornea
Figure 17. Example of a Sagittal Curvature Map of a Normal Cornea Source: Original dissertation, Original p. 52. Figure area extracted locally from the original PDF.
Extracted original figure 18: Example of an Elevation Map of a Normal Cornea
Figure 18. Example of an Elevation Map of a Normal Cornea Source: Original dissertation, Original p. 53. Figure area extracted locally from the original PDF.
Extracted original figure 19: Example of a Refractive Power Map of a Normal Cornea
Figure 19. Example of a Refractive Power Map of a Normal Cornea Source: Original dissertation, Original p. 54. Figure area extracted locally from the original PDF.
Extracted original figure 20: Example of an Anterior Chamber Map of a Normal Cornea
Figure 20. Example of an Anterior Chamber Map of a Normal Cornea Source: Original dissertation, Original p. 55. Figure area extracted locally from the original PDF.
Extracted original figure 21: Zernike Analysis
Figure 21. Zernike Analysis Source: Original dissertation, Original p. 56. Figure area extracted locally from the original PDF.
Extracted original figure 22: Some Indices Used by the SIRIUS Device for Corneal Classification
Figure 22. Some Indices Used by the SIRIUS Device for Corneal Classification Source: Original dissertation, Original p. 59. Figure area extracted locally from the original PDF.
Extracted original figure 23: Some Topographic Patterns of the Sagittal Curvature Map in Keratoconus
Figure 23. Some Topographic Patterns of the Sagittal Curvature Map in Keratoconus Source: Original dissertation, Original p. 61. Figure area extracted locally from the original PDF.
Extracted original figure 24: Different Patterns on Elevation Maps
Figure 24. Different Patterns on Elevation Maps Source: Original dissertation, Original p. 62. Figure area extracted locally from the original PDF.
Extracted original figure 25: Comparison between a Biological and an Artificial Neuron (Fiorelli, Tomita & Neto, 2015)
Figure 25. Comparison between a Biological and an Artificial Neuron (Fiorelli, Tomita & Neto, 2015) Source: Original dissertation, Original p. 70. Figure area extracted locally from the original PDF.
Extracted original figure 26: Model of a Three-Layer Artificial Neural Network (Sarno & Wijaya, 2019)
Figure 26. Model of a Three-Layer Artificial Neural Network (Sarno & Wijaya, 2019) Source: Original dissertation, Original p. 71. Figure area extracted locally from the original PDF.
Extracted original figure 27: Illustration of the Training Process (Negnevitsky, 2005)
Figure 27. Illustration of the Training Process (Negnevitsky, 2005) Source: Original dissertation, Original p. 72. Figure area extracted locally from the original PDF.
Extracted original figure 28: Training Process Flow and Accuracy Change between Training and Validation Groups (Zimmermann, 2017)
Figure 28. Training Process Flow and Accuracy Change between Training and Validation Groups (Zimmermann, 2017) Source: Original dissertation, Original p. 72. Figure area extracted locally from the original PDF.
Extracted original figure 29: Schematic Representation of the Relationship between Artificial Intelligence, Machine Learning, and Deep Learning (Oppermann, 2019)
Figure 29. Schematic Representation of the Relationship between Artificial Intelligence, Machine Learning, and Deep Learning (Oppermann, 2019) Source: Original dissertation, Original p. 74. Figure area extracted locally from the original PDF.
Extracted original figure 30: Multi-Layer Artificial Network as a Model of a Deep Learning Network (Oppermann, 2019)
Figure 30. Multi-Layer Artificial Network as a Model of a Deep Learning Network (Oppermann, 2019) Source: Original dissertation, Original p. 75. Figure area extracted locally from the original PDF.
Extracted original figure 31: Difference between Machine Learning and Deep Learning (Oppermann, 2019)
Figure 31. Difference between Machine Learning and Deep Learning (Oppermann, 2019) Source: Original dissertation, Original p. 75. Figure area extracted locally from the original PDF.
Extracted original figure 32: How a Filter Operates (Jeong, 2019)
Figure 32. How a Filter Operates (Jeong, 2019) Source: Original dissertation, Original p. 76. Figure area extracted locally from the original PDF.
Extracted original figure 33: Feature Map Generated by a Filter (Jeong, 2019)
Figure 33. Feature Map Generated by a Filter (Jeong, 2019) Source: Original dissertation, Original p. 77. Figure area extracted locally from the original PDF.
Extracted original figure 34: How the Pooling Layer Operates (Jeong, 2019)
Figure 34. How the Pooling Layer Operates (Jeong, 2019) Source: Original dissertation, Original p. 77. Figure area extracted locally from the original PDF.
Extracted original figure 35: How the Flattening Layer Operates and Its Connection to Subsequent Layers through to the Output Layer (Jeong, 2019)
Figure 35. How the Flattening Layer Operates and Its Connection to Subsequent Layers through to the Output Layer (Jeong, 2019) Source: Original dissertation, Original p. 78. Figure area extracted locally from the original PDF.
Extracted original figure 36: Number of Studies Published on PubMed per Year
Figure 36. Number of Studies Published on PubMed per Year Source: Original dissertation, Original p. 83. Figure area extracted locally from the original PDF.
Extracted original figure 37: Number of Studies Published on PubMed per Year
Figure 37. Number of Studies Published on PubMed per Year Source: Original dissertation, Original p. 86. Figure area extracted locally from the original PDF.
Extracted original figure 38: Number of PubMed Publications by Disease (Analysis for 2007–2018)
Figure 38. Number of PubMed Publications by Disease (Analysis for 2007–2018) Source: Original dissertation, Original p. 87. Figure area extracted locally from the original PDF.
Extracted original figure 39: ROC Diagram Compared to a Group of Physicians (coloured points)
Figure 39. ROC Diagram Compared to a Group of Physicians (coloured points) Source: Original dissertation, Original p. 88. Figure area extracted locally from the original PDF.
Extracted original figure 40: CBI and TBI (Oculus, 2021)
Figure 40. CBI and TBI (Oculus, 2021) Source: Original dissertation, Original p. 92. Figure area extracted locally from the original PDF.
Extracted original figure 41: Discriminative Feature Map in the Centre and Heatmap on the Right Side of the Image
Figure 41. Discriminative Feature Map in the Centre and Heatmap on the Right Side of the Image Source: Original dissertation, Original p. 94. Figure area extracted locally from the original PDF.
Extracted original figure 42: Distribution of the Training Group by Diagnosis
Figure 42. Distribution of the Training Group by Diagnosis Source: Original dissertation, Original p. 100. Figure area extracted locally from the original PDF.
Extracted original figure 43: Mann–Whitney Test for Age Distribution by Gender in the Training Group
Figure 43. Mann–Whitney Test for Age Distribution by Gender in the Training Group Source: Original dissertation, Original p. 103. Figure area extracted locally from the original PDF.
Extracted original figure 44: Kruskal–Wallis Test for Age Distribution by Diagnosis in the Training Group
Figure 44. Kruskal–Wallis Test for Age Distribution by Diagnosis in the Training Group Source: Original dissertation, Original p. 104. Figure area extracted locally from the original PDF.
Extracted original figure 45: Distribution of the Test Group by Diagnosis
Figure 45. Distribution of the Test Group by Diagnosis Source: Original dissertation, Original p. 105. Figure area extracted locally from the original PDF.
Extracted original figure 46: Mann–Whitney Test for Age Distribution by Gender in the Test Group
Figure 46. Mann–Whitney Test for Age Distribution by Gender in the Test Group Source: Original dissertation, Original p. 108. Figure area extracted locally from the original PDF.
Extracted original figure 47: Kruskal–Wallis Test for Age Distribution by Diagnosis in the Test Group
Figure 47. Kruskal–Wallis Test for Age Distribution by Diagnosis in the Test Group Source: Original dissertation, Original p. 109. Figure area extracted locally from the original PDF.
Extracted original figure 48: Confusion Matrix of the Training Group (Anterior Sagittal Curvature Map)
Figure 48. Confusion Matrix of the Training Group (Anterior Sagittal Curvature Map) Source: Original dissertation, Original p. 115. Figure area extracted locally from the original PDF.
Extracted original figure 49: Confusion Matrix of the Validation Group (Anterior Sagittal Curvature Map)
Figure 49. Confusion Matrix of the Validation Group (Anterior Sagittal Curvature Map) Source: Original dissertation, Original p. 116. Figure area extracted locally from the original PDF.
Extracted original figure 50: Confusion Matrix of the Test Group (Anterior Sagittal Curvature Map)
Figure 50. Confusion Matrix of the Test Group (Anterior Sagittal Curvature Map) Source: Original dissertation, Original p. 117. Figure area extracted locally from the original PDF.
Extracted original figure 51: Confusion Matrix of the Training Group (Posterior Sagittal Curvature Map)
Figure 51. Confusion Matrix of the Training Group (Posterior Sagittal Curvature Map) Source: Original dissertation, Original p. 118. Figure area extracted locally from the original PDF.
Extracted original figure 52: Confusion Matrix of the Validation Group (Posterior Sagittal Curvature Map)
Figure 52. Confusion Matrix of the Validation Group (Posterior Sagittal Curvature Map) Source: Original dissertation, Original p. 119. Figure area extracted locally from the original PDF.
Extracted original figure 53: Confusion Matrix of the Test Group (Posterior Sagittal Curvature Map)
Figure 53. Confusion Matrix of the Test Group (Posterior Sagittal Curvature Map) Source: Original dissertation, Original p. 120. Figure area extracted locally from the original PDF.
Extracted original figure 54: Confusion Matrix of the Training Group (Anterior Tangential Curvature Map)
Figure 54. Confusion Matrix of the Training Group (Anterior Tangential Curvature Map) Source: Original dissertation, Original p. 121. Figure area extracted locally from the original PDF.
Extracted original figure 55: Confusion Matrix of the Validation Group (Anterior Tangential Curvature Map)
Figure 55. Confusion Matrix of the Validation Group (Anterior Tangential Curvature Map) Source: Original dissertation, Original p. 122. Figure area extracted locally from the original PDF.
Extracted original figure 56: Confusion Matrix of the Test Group (Anterior Tangential Curvature Map)
Figure 56. Confusion Matrix of the Test Group (Anterior Tangential Curvature Map) Source: Original dissertation, Original p. 123. Figure area extracted locally from the original PDF.
Extracted original figure 57: Confusion Matrix of the Training Group (Posterior Tangential Curvature Map)
Figure 57. Confusion Matrix of the Training Group (Posterior Tangential Curvature Map) Source: Original dissertation, Original p. 124. Figure area extracted locally from the original PDF.
Extracted original figure 58: Confusion Matrix of the Validation Group (Posterior Tangential Curvature Map)
Figure 58. Confusion Matrix of the Validation Group (Posterior Tangential Curvature Map) Source: Original dissertation, Original p. 125. Figure area extracted locally from the original PDF.
Extracted original figure 59: Confusion Matrix of the Test Group (Posterior Tangential Curvature Map)
Figure 59. Confusion Matrix of the Test Group (Posterior Tangential Curvature Map) Source: Original dissertation, Original p. 126. Figure area extracted locally from the original PDF.
Extracted original figure 60: Confusion Matrix of the Training Group (Pachymetry Map)
Figure 60. Confusion Matrix of the Training Group (Pachymetry Map) Source: Original dissertation, Original p. 127. Figure area extracted locally from the original PDF.
Extracted original figure 61: Confusion Matrix of the Validation Group (Pachymetry Map)
Figure 61. Confusion Matrix of the Validation Group (Pachymetry Map) Source: Original dissertation, Original p. 128. Figure area extracted locally from the original PDF.
Extracted original figure 62: Confusion Matrix of the Test Group (Pachymetry Map)
Figure 62. Confusion Matrix of the Test Group (Pachymetry Map) Source: Original dissertation, Original p. 129. Figure area extracted locally from the original PDF.
Extracted original figure 63: Confusion Matrix of the Training Group (Anterior Elevation Map)
Figure 63. Confusion Matrix of the Training Group (Anterior Elevation Map) Source: Original dissertation, Original p. 130. Figure area extracted locally from the original PDF.
Extracted original figure 64: Confusion Matrix of the Validation Group (Anterior Elevation Map)
Figure 64. Confusion Matrix of the Validation Group (Anterior Elevation Map) Source: Original dissertation, Original p. 131. Figure area extracted locally from the original PDF.
Extracted original figure 65: Confusion Matrix of the Test Group (Anterior Elevation Map)
Figure 65. Confusion Matrix of the Test Group (Anterior Elevation Map) Source: Original dissertation, Original p. 132. Figure area extracted locally from the original PDF.
Extracted original figure 66: Confusion Matrix of the Training Group (Posterior Elevation Map)
Figure 66. Confusion Matrix of the Training Group (Posterior Elevation Map) Source: Original dissertation, Original p. 133. Figure area extracted locally from the original PDF.
Extracted original figure 67: Confusion Matrix of the Validation Group (Posterior Elevation Map)
Figure 67. Confusion Matrix of the Validation Group (Posterior Elevation Map) Source: Original dissertation, Original p. 134. Figure area extracted locally from the original PDF.
Extracted original figure 68: Confusion Matrix of the Test Group (Posterior Elevation Map)
Figure 68. Confusion Matrix of the Test Group (Posterior Elevation Map) Source: Original dissertation, Original p. 135. Figure area extracted locally from the original PDF.
Extracted original figure 69: Confusion Matrix of the Training Group (Anterior Refractive Power Map)
Figure 69. Confusion Matrix of the Training Group (Anterior Refractive Power Map) Source: Original dissertation, Original p. 136. Figure area extracted locally from the original PDF.
Extracted original figure 70: Confusion Matrix of the Validation Group (Anterior Refractive Power Map)
Figure 70. Confusion Matrix of the Validation Group (Anterior Refractive Power Map) Source: Original dissertation, Original p. 137. Figure area extracted locally from the original PDF.
Extracted original figure 71: Confusion Matrix of the Test Group (Anterior Refractive Power Map)
Figure 71. Confusion Matrix of the Test Group (Anterior Refractive Power Map) Source: Original dissertation, Original p. 138. Figure area extracted locally from the original PDF.
Extracted original figure 72: Confusion Matrix of the Training Group (Posterior Refractive Power Map)
Figure 72. Confusion Matrix of the Training Group (Posterior Refractive Power Map) Source: Original dissertation, Original p. 139. Figure area extracted locally from the original PDF.
Extracted original figure 73: Confusion Matrix of the Validation Group (Posterior Refractive Power Map)
Figure 73. Confusion Matrix of the Validation Group (Posterior Refractive Power Map) Source: Original dissertation, Original p. 140. Figure area extracted locally from the original PDF.
Extracted original figure 74: Confusion Matrix of the Test Group (Posterior Refractive Power Map)
Figure 74. Confusion Matrix of the Test Group (Posterior Refractive Power Map) Source: Original dissertation, Original p. 141. Figure area extracted locally from the original PDF.
Extracted original figure 75: Confusion Matrix of the Training Group (Equivalent Refractive Power Map)
Figure 75. Confusion Matrix of the Training Group (Equivalent Refractive Power Map) Source: Original dissertation, Original p. 142. Figure area extracted locally from the original PDF.
Extracted original figure 76: Confusion Matrix of the Validation Group (Equivalent Refractive Power Map)
Figure 76. Confusion Matrix of the Validation Group (Equivalent Refractive Power Map) Source: Original dissertation, Original p. 143. Figure area extracted locally from the original PDF.
Extracted original figure 77: Confusion Matrix of the Test Group (Equivalent Refractive Power Map)
Figure 77. Confusion Matrix of the Test Group (Equivalent Refractive Power Map) Source: Original dissertation, Original p. 144. Figure area extracted locally from the original PDF.
Extracted original figure 78: Confusion Matrix of the Training Group (AI System)
Figure 78. Confusion Matrix of the Training Group (AI System) Source: Original dissertation, Original p. 145. Figure area extracted locally from the original PDF.
Extracted original figure 79: Confusion Matrix of the Validation Group (AI System)
Figure 79. Confusion Matrix of the Validation Group (AI System) Source: Original dissertation, Original p. 146. Figure area extracted locally from the original PDF.
Extracted original figure 80: Confusion Matrix of the Test Group (AI System)
Figure 80. Confusion Matrix of the Test Group (AI System) Source: Original dissertation, Original p. 147. Figure area extracted locally from the original PDF.
Extracted original figure 81: Confusion Matrix of the Test Group (SIRIUS)
Figure 81. Confusion Matrix of the Test Group (SIRIUS) Source: Original dissertation, Original p. 148. Figure area extracted locally from the original PDF.
Extracted original figure 82: Confusion Matrix of the Test Group (Physician without AI Support)
Figure 82. Confusion Matrix of the Test Group (Physician without AI Support) Source: Original dissertation, Original p. 149. Figure area extracted locally from the original PDF.
Extracted original figure 83: Confusion Matrix of the Test Group (Physician with AI Support)
Figure 83. Confusion Matrix of the Test Group (Physician with AI Support) Source: Original dissertation, Original p. 150. Figure area extracted locally from the original PDF.
Extracted original figure 84: Confusion Matrix of the Test Group (Physician with SIRIUS Device Support)
Figure 84. Confusion Matrix of the Test Group (Physician with SIRIUS Device Support) Source: Original dissertation, Original p. 151. Figure area extracted locally from the original PDF.
Extracted original figure 85: Binary Confusion Matrix (AI System vs. SIRIUS Result)
Figure 85. Binary Confusion Matrix (AI System vs. SIRIUS Result) Source: Original dissertation, Original p. 153. Figure area extracted locally from the original PDF.
Extracted original figure 86: Binary Confusion Matrix (AI System vs. Physician Result without Support)
Figure 86. Binary Confusion Matrix (AI System vs. Physician Result without Support) Source: Original dissertation, Original p. 153. Figure area extracted locally from the original PDF.
Extracted original figure 87: Binary Confusion Matrix (AI System vs. Physician Result with AI Support)
Figure 87. Binary Confusion Matrix (AI System vs. Physician Result with AI Support) Source: Original dissertation, Original p. 154. Figure area extracted locally from the original PDF.
Extracted original figure 88: Binary Confusion Matrix (AI System vs. Physician Result with SIRIUS Support)
Figure 88. Binary Confusion Matrix (AI System vs. Physician Result with SIRIUS Support) Source: Original dissertation, Original p. 154. Figure area extracted locally from the original PDF.
Extracted original figure 89: Binary Confusion Matrix (SIRIUS Result vs. Physician Result without Support)
Figure 89. Binary Confusion Matrix (SIRIUS Result vs. Physician Result without Support) Source: Original dissertation, Original p. 155. Figure area extracted locally from the original PDF.
Extracted original figure 90: Binary Confusion Matrix (SIRIUS Result vs. Physician Result with AI Support)
Figure 90. Binary Confusion Matrix (SIRIUS Result vs. Physician Result with AI Support) Source: Original dissertation, Original p. 155. Figure area extracted locally from the original PDF.
Extracted original figure 91: Binary Confusion Matrix (SIRIUS Result vs. Physician Result with SIRIUS Support)
Figure 91. Binary Confusion Matrix (SIRIUS Result vs. Physician Result with SIRIUS Support) Source: Original dissertation, Original p. 156. Figure area extracted locally from the original PDF.
Extracted original figure 92: Binary Confusion Matrix (Physician Result without Support vs. Physician Result with AI Support)
Figure 92. Binary Confusion Matrix (Physician Result without Support vs. Physician Result with AI Support) Source: Original dissertation, Original p. 156. Figure area extracted locally from the original PDF.
Extracted original figure 93: Binary Confusion Matrix (Physician Result without Support vs. Physician Result with SIRIUS Support)
Figure 93. Binary Confusion Matrix (Physician Result without Support vs. Physician Result with SIRIUS Support) Source: Original dissertation, Original p. 157. Figure area extracted locally from the original PDF.
Extracted original figure 94: Binary Confusion Matrix (Physician Result with AI Support vs. Physician Result with SIRIUS Support)
Figure 94. Binary Confusion Matrix (Physician Result with AI Support vs. Physician Result with SIRIUS Support) Source: Original dissertation, Original p. 157. Figure area extracted locally from the original PDF.
Extracted original figure 95: Heatmaps of the Network for the Anterior Sagittal Curvature Map
Figure 95. Heatmaps of the Network for the Anterior Sagittal Curvature Map Source: Original dissertation, Original p. 167. Figure area extracted locally from the original PDF.
Extracted original figure 96: Heatmaps of the Network for the Posterior Sagittal Curvature Map
Figure 96. Heatmaps of the Network for the Posterior Sagittal Curvature Map Source: Original dissertation, Original p. 168. Figure area extracted locally from the original PDF.
Extracted original figure 97: Heatmaps of the Network for the Anterior Tangential Curvature Map
Figure 97. Heatmaps of the Network for the Anterior Tangential Curvature Map Source: Original dissertation, Original p. 168. Figure area extracted locally from the original PDF.
Extracted original figure 98: Heatmaps of the Network for the Posterior Tangential Curvature Map
Figure 98. Heatmaps of the Network for the Posterior Tangential Curvature Map Source: Original dissertation, Original p. 169. Figure area extracted locally from the original PDF.
Extracted original figure 99: Heatmaps of the Network for the Anterior Elevation Map
Figure 99. Heatmaps of the Network for the Anterior Elevation Map Source: Original dissertation, Original p. 169. Figure area extracted locally from the original PDF.
Extracted original figure 100: Heatmaps of the Network for the Posterior Elevation Map
Figure 100. Heatmaps of the Network for the Posterior Elevation Map Source: Original dissertation, Original p. 170. Figure area extracted locally from the original PDF.
Extracted original figure 101: Heatmaps of the Network for the Pachymetry Map
Figure 101. Heatmaps of the Network for the Pachymetry Map Source: Original dissertation, Original p. 170. Figure area extracted locally from the original PDF.
Extracted original figure 102: Heatmaps of the Network for the Equivalent Refractive Power Map
Figure 102. Heatmaps of the Network for the Equivalent Refractive Power Map Source: Original dissertation, Original p. 171. Figure area extracted locally from the original PDF.
Extracted original figure 103: Heatmaps of the Network for the Anterior Refractive Power Map
Figure 103. Heatmaps of the Network for the Anterior Refractive Power Map Source: Original dissertation, Original p. 172. Figure area extracted locally from the original PDF.
Extracted original figure 104: Heatmaps of the Network for the Posterior Refractive Power Map
Figure 104. Heatmaps of the Network for the Posterior Refractive Power Map Source: Original dissertation, Original p. 172. Figure area extracted locally from the original PDF.
Extracted original figure 105: Case 1
Figure 105. Case 1 Source: Original dissertation, Original p. 174. Figure area extracted locally from the original PDF.
Extracted original figure 106: Case 2
Figure 106. Case 2 Source: Original dissertation, Original p. 175. Figure area extracted locally from the original PDF.
Extracted original figure 107: Case 3
Figure 107. Case 3 Source: Original dissertation, Original p. 176. Figure area extracted locally from the original PDF.
Extracted original figure 108: Case 4
Figure 108. Case 4 Source: Original dissertation, Original p. 178. Figure area extracted locally from the original PDF.
Extracted original figure 109: Case 5
Figure 109. Case 5 Source: Original dissertation, Original p. 179. Figure area extracted locally from the original PDF.
Extracted original figure 110: Case 6
Figure 110. Case 6 Source: Original dissertation, Original p. 180. Figure area extracted locally from the original PDF.
Extracted original figure 111: Case 7
Figure 111. Case 7 Source: Original dissertation, Original p. 182. Figure area extracted locally from the original PDF.
Extracted original figure 112: Case 8
Figure 112. Case 8 Source: Original dissertation, Original p. 183. Figure area extracted locally from the original PDF.
Extracted original figure 113: Case 9
Figure 113. Case 9 Source: Original dissertation, Original p. 184. Figure area extracted locally from the original PDF.
Extracted original figure 114: Summary of Programme Usage
Figure 114. Summary of Programme Usage Source: Original dissertation, Original p. 189. Figure area extracted locally from the original PDF.