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Corneal Higher Order Aberrations: A Method to Grade Keratoconus

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ABSTRACT PURPOSE: To use the anterior corneal surface higher order aberrations as a tool to detect and grade keratoconus using corneal map analysis videokeratoscopy. METHODS: A prospective observational comparative study of 80 eyes was performed. The eyes were divided into two groups. Group A comprised 40 eyes of 20 asymptomatic individuals with no ocular pathology. Mean sphere was -0.03 diopters (D) (range: +0.75 to -0.75 D), mean cylinder was -0.27 D, mean average K was 43.28 D, and mean uncorrected visual acuity (UCVA) was 1.01. Group B comprised 40 eyes of 25 patients with keratoconus. Mean sphere was -3.70 D (range: +2.00 to -10.00 D), mean cylinder was -3.82 D, mean average K was 49.29, and mean best spectacle-corrected visual acuity (BSCVA) was 0.61. RESULTS: In group A, mean root-mean-square (RMS) of spherical (Z 4 and Z 6 ), coma-like (Z 3 , Z 5 , and Z 7 ), and higher order aberrations (Z^sub 3-7^) were 0.38 µm, 0.35 µm, and 0.52 µm, respectively. In group B, mean RMS of spherical, coma-like, and higher order aberrations were 1.06 µm, 2.90 µm, and 3.14 µm, respectively, for a 6.0-mm simulated pupil diameter. Mean RMS differences between the two groups were 0.68 µm (P≤.0002), 2.55 µm (P≤.0001), and 2.61 µm (P≤.0001) for spherical, coma-like, and total higher order aberrations, respectively. In group B, according to Amsler-Krumeich classification, the mean RMS of coma-like aberration was 1.87 µm in grade I (14 eyes), 2.97 µm in grade II (11 eyes), 3.46 µm in grade III (12 eyes), and 5.20 µm in grade IV (3 eyes). CONCLUSIONS: Corneal higher order aberrations, especially coma-like aberrations, are significantly higher in eyes with keratoconus than normal eyes. Coma-like aberrations, with the aid of a corneal aberrometry map, are good indicators for early detection and grading of keratoconus. [J Refract Surg. 2006;22:539-545.]
Title: Corneal Higher Order Aberrations: A Method to Grade Keratoconus
Description:
ABSTRACT PURPOSE: To use the anterior corneal surface higher order aberrations as a tool to detect and grade keratoconus using corneal map analysis videokeratoscopy.
METHODS: A prospective observational comparative study of 80 eyes was performed.
The eyes were divided into two groups.
Group A comprised 40 eyes of 20 asymptomatic individuals with no ocular pathology.
Mean sphere was -0.
03 diopters (D) (range: +0.
75 to -0.
75 D), mean cylinder was -0.
27 D, mean average K was 43.
28 D, and mean uncorrected visual acuity (UCVA) was 1.
01.
Group B comprised 40 eyes of 25 patients with keratoconus.
Mean sphere was -3.
70 D (range: +2.
00 to -10.
00 D), mean cylinder was -3.
82 D, mean average K was 49.
29, and mean best spectacle-corrected visual acuity (BSCVA) was 0.
61.
RESULTS: In group A, mean root-mean-square (RMS) of spherical (Z 4 and Z 6 ), coma-like (Z 3 , Z 5 , and Z 7 ), and higher order aberrations (Z^sub 3-7^) were 0.
38 µm, 0.
35 µm, and 0.
52 µm, respectively.
In group B, mean RMS of spherical, coma-like, and higher order aberrations were 1.
06 µm, 2.
90 µm, and 3.
14 µm, respectively, for a 6.
0-mm simulated pupil diameter.
Mean RMS differences between the two groups were 0.
68 µm (P≤.
0002), 2.
55 µm (P≤.
0001), and 2.
61 µm (P≤.
0001) for spherical, coma-like, and total higher order aberrations, respectively.
In group B, according to Amsler-Krumeich classification, the mean RMS of coma-like aberration was 1.
87 µm in grade I (14 eyes), 2.
97 µm in grade II (11 eyes), 3.
46 µm in grade III (12 eyes), and 5.
20 µm in grade IV (3 eyes).
CONCLUSIONS: Corneal higher order aberrations, especially coma-like aberrations, are significantly higher in eyes with keratoconus than normal eyes.
Coma-like aberrations, with the aid of a corneal aberrometry map, are good indicators for early detection and grading of keratoconus.
[J Refract Surg.
2006;22:539-545.
].

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