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Planned myopic astigmatism as a substitute for accommodation in pseudophakia.

Patients with an implanted intraocular lens can be made nearly spectacle independent by increasing the depth of focus of the uncorrected implanted eye. In simple myopic astigmatism the visual acuity can be above 20/50 from far to near because the size of the blurred retinal image changes less than its shape as an object approaches the eye. For simple myopic astigmatism the change in corneal power must be included in the calculation of intraocular lens power. The change in corneal power induced by surgery is a spherocylinder with no spherical equivalent. The postoperative shape of the cornea can be predicted and intraocular lens power is calculated to make the flatter meridian emmetropic. The stronger meridian of the cornea is then myopic. In a series of 40 successive cases, the refractions and the measured depth of focus illustrate the application of these principles and the advantage of myopic astigmatism for the pseudophakic patient.

Accommodation, Ocular↗

The surgical astigmatic ruler.

A simple device for evaluating the corneal astigmatism present at the conclusion of ocular surgery is described. Directing the coaxial light from the operating microscope through the ruler's round aperture will create an elliptical reflex from the cornea that indicates the presence of astigmatism. Successive apertures in the ruler present known elliptical light reflexes to the cornea, and the surgeon can select the aperture that converts the corneal reflex to a circular appearance. The dioptric marking of the aperture indicates the approximate value of the astigmatism on the cornea.

Astigmatism↗

Control of astigmatism by wound placement.

We performed a clinical surgical study of extracapsular extraction/phacoemulsification and lens implantation to determine the effectiveness of posterior wound placement in reducing immediate astigmatism. One hundred three cases, one half with anterior wounds and one half with posterior wounds, were analyzed for cylinder, axis, and astigmatism at six days and six weeks. We found little change in the amount of preexistent astigmatism with posteriorly placed wounds. The change was much greater with anteriorly placed wounds.

Astigmatism↗

Postoperative astigmatism induced by intraocular lens tilt.

We report a case of intraocular lens implantation with an unexpected postoperative increase in spectacle astigmatism but no change in corneal astigmatism. The Nd:YAG laser was used to release a fibrous capsular band that was tilting the posterior chamber implant and causing four diopters of astigmatism.

Aged↗

Nonkeratometric control of postoperative astigmatism.

A scleral pocket incision technique with continuous suture closure was used in a series of 40 patients undergoing phacoemulsification with posterior chamber lens implantation to determine the change in astigmatic error induced by surgery. Intraoperative keratometry was not used and no attempt to estimate the induced cylinder at the time of surgery was made. Keratometric analysis of postoperative astigmatism in the present study indicated that shortly after surgery there was an induced with-the-rule shift that gradually abated to a minimal against-the-rule change after the wound was fully healed, regardless of how tight the wound was closed at the time of surgery. It appears that intraoperative keratometry would have had no bearing on the final astigmatic outcome.

Astigmatism↗

Correction of astigmatism with short arc-length intrastromal corneal ring segments: preliminary results.

OBJECTIVE: To evaluate the refractive effect of 130 degrees short arc length intrastromal corneal ring segments (ICRS) designed to correct myopia concurrent with astigmatism. DESIGN: Prospective, nonrandomized, comparative (self-controlled) trial. PARTICIPANTS: Ten eyes of 6 patients from one surgical center with manifest refraction spherical equivalent between -1.00 and -6.00 diopters (D), manifest cylinder correction between 1.00 and 6.00 D, and best spectacle-corrected visual acuity of 20/20 or better. INTERVENTION: The patients were assigned to receive 1 of 6 ICRS thicknesses, ranging from 0.25 to 0.50 mm by 0.05 mm increments, with an arc length of 130 degrees. MAIN OUTCOME MEASURES: Vector analysis of astigmatic correction. Efficacy was assessed by uncorrected visual acuity and by deviation of postoperative spherical and cylindrical refractive error from predicted correction. Safety was assessed by maintenance or loss of preoperative best spectacle-corrected visual acuity. Measurements were made before surgery and after surgery at days 1 and 7 and months 1, 2, 3, and 6. RESULTS: At 6 months, uncorrected visual acuity was 20/20 or better in 80% of eyes (8/10) and 20/40 or better in all eyes. Eight of 10 eyes (80%) were within +/-0.25 D of plano spherical equivalent manifest refraction. There was no loss of best spectacle-corrected visual acuity, and 6 of 10 eyes (60%) gained a line. Reduction of keratometric cylinder by ICRS thickness was statistically significant (P = 0.039). CONCLUSIONS: Preliminary results of visual and refractive performance after correction of compound myopic astigmatism using short arc length ICRS are promising.

Adult↗

Use of large optical zones with the LADARVision laser for myopia and myopic astigmatism.

PURPOSE: To analyze the visual acuity, contrast sensitivity, and target deviations of patients who underwent laser in situ keratomileusis (LASIK) for spherical and astigmatic myopia with up to 8.0-mm laser optical zones. DESIGN: A retrospective noncomparative interventional case series. PARTICIPANTS: Three hundred fifty-two eyes of 186 patients in a refractive surgery practice. METHODS: Chart review of consecutive patients who underwent LASIK for spherical and astigmatic myopia with the Autonomous LADARVision excimer laser. MAIN OUTCOME MEASURES: The preoperative and the 3-month postoperative visual acuity and contrast sensitivity, as well as the target deviation, were assessed for each eye. The change in best spectacle-corrected visual acuity (BSCVA), best spectacle-corrected contrast sensitivity (BSCCS), and target deviation were analyzed by size of optical zone. RESULTS: For spherical myopes, uncorrected visual acuity (UCVA) was 20/20 or better in 55.7% of eyes. The mean deviation from target was -0.19 +/- 0.64 diopters (D), with 75.3% within +/-0.50 D of the target. None of the eyes lost more than two lines of BSCVA. A loss of three or more patches (levels) of BSCCS was seen in 2.7% of eyes, whereas a loss of four or more patches of BSCCS was seen in 1.1%. For astigmatic myopes, UCVA was 20/20 or better in 61.9% of eyes. The mean deviation from target was -0.17 +/- 0.55 D, with 67.5% within +/-0.50 D of the target. No eye lost more than two lines of BSCVA. A loss of three or more patches of BSCCS was seen in 4.3% of eyes, whereas a loss of four or more patches of BSCCS was seen in 1.2%. CONCLUSIONS: Larger optical diameters did not adversely affect BSCVA and BSCCS. Postoperative target deviation with the nomogram used was accurate with larger optical zones.

Adolescent↗

Impact of graft diameter on corneal power and the regularity of postkeratoplasty astigmatism before and after suture removal.

OBJECTIVE: To assess the impact of graft diameter on corneal curvature before and after removal of a double-running suture after nonmechanical penetrating keratoplasty (PK). DESIGN: Prospective, nonrandomized, comparative (self-controlled) single-center clinical trial. PATIENTS: Four hundred eighty-nine eyes with "two sutures in" and 308 eyes with "all sutures out" (mean age, 52+/-19 years) were included. The diagnoses were keratoconus (48%), Fuchs' and stromal dystrophies (31%), aphakic or pseudophakic bullous keratopathy (11%), and scars (10%). INTERVENTIONS: In all eyes, a central trephination was performed (donor trephination from the epithelial side) using the 193-nm Meditec excimer laser (Carl Zeiss Meditec, Jena, Germany) along metal masks with eight "orientation teeth/notches." Diameters were 8.0 mm, 7.5 mm, and 7.0 mm with a graft oversize of 0.1 mm. In 29% of eyes, additional cataract, intraocular lens surgery, or both were performed simultaneously. In all eyes, a double-running 10-0 nylon suture was applied. Zeiss keratometry and TMS-1 topography analysis were performed before removal of the first suture (14+/-4 months) and at least 6 weeks after removal of the second suture (20+/-4 months), but before any additional surgery, such as cataract extraction or refractive keratotomies. MAIN OUTCOME MEASURES: Topographic central corneal power (CP; keratometric diopters), keratometric astigmatism (KA), surface regularity index (SRI), and surface asymmetry index (SAI). The regularity of keratometry mires was recorded semiquantitatively from 0 = regular to 3 = not measurable (as published earlier). RESULTS: With both sutures in, median CP in 7.0-mm (42.0 diopters [D]; P = 0.04) and in 7.5-mm grafts (42.3 D; P = 0.007) was significantly lower than in 8.0-mm grafts (43.0 D). Keratometric astigmatism did not differ between groups (3.0 D vs. 3.0 D vs. 2.7 D). The SRI (1.66 vs. 1.43 vs. 1.11) and SAI (1.55 vs. 1.24 vs. 0.85) decreased significantly with increasing diameter. The proportion of regular keratometry mires (13% vs. 17% vs. 29%) increased, and the proportion of not measurable keratometries (45% vs. 18% vs. 9%) decreased with increasing diameter. With all sutures out, CP in 7.0-mm grafts (40.4 D) was significantly smaller than in 7.5-mm (43.6 D; P = 0.04) and 8.0-mm grafts (43.3 D; P = 0.04). Again, KA did not differ between groups (3.0 D vs. 3.2 D vs. 3.0 D). The SRI (1.40 vs. 1.09 vs. 0.84) and SAI (1.24 vs. 0.83 vs. 0.62) decreased significantly with increasing diameter. The proportion of regular keratometry mires (5% vs. 31% vs. 52%) increased, and the proportion of not measurable keratometries (42% vs. 11% vs. 4%) decreased with increasing diameter. CONCLUSIONS: After PK, a smaller graft diameter results in a flatter curvature and a higher degree of topographic irregularity, but not in higher net astigmatism. After suture removal, graft topography tends to regularize, whereas the principal differences between diameters do persist.

Adult↗

The cause of excessive astigmatism with intraocular lens implants.

Higher degrees of astigmatism are found after intraocular lens implantation than after routine cataract surgery. The cause is optical and is associated with the effectivity of lenses. The same amount of corneal astigmatism requires, in the spectacle correction, a cylinder that is smaller than, equal to, or larger than the corneal astigmatism, depending on whether the spherical equivalent of the refraction is a plus, zero, or minus sphere.

Astigmatism↗

Post-cataract astigmatism with and without the use of the Terry keratometer.

Measured and induced post-cataract astigmatism was compared in 15 eyes prior to the purchase of a Terry keratometer , in 62 eyes with the keratometer , and subsequently in 36 eyes without the keratometer . All groups received the same preoperative and postoperative care. The surgical techniques were the same and were performed by a single surgeon. We found no significant difference between cases performed with and cases performed without the Terry keratometer at various postoperative gates. Seventy-five percent of the cases performed without the keratometer had less than 2 diopters of induced astigmatism, whereas 62% of the cases performed with the Terry keratometer achieved the same level of astigmatism 6 to 8 weeks postoperatively. The lack of difference between these two groups is due to biological variables which affect intraoperative readings and postoperative wound healing.

Astigmatism↗

Keratography as a guide to selective suture removal for the reduction of astigmatism after penetrating keratoplasty.

After penetrating keratoplasty in 52 eyes, keratography refraction and keratometry were used to select appropriate interrupted sutures for removal in order to reduce astigmatism. All eyes had one continuous and either 12 or 16 interrupted nylon sutures. The keratographs were examined retrospectively and separated into six groups on the basis of similar mire patterns. The removal of single sutures associated with three of these patterns reduced astigmatism by the following average amounts: symmetrical oval pattern, 0.44 diopters (D); D-shaped oval pattern, 2.07 D; and focal indentation pattern, 6.60 D. The other three patterns--mildly disrupted mires, incomplete mires, and uninterpretable mires--did not allow quantification of results. Examples of these keratographic patterns are presented and recommendations are made for their use in the management of astigmatism following penetrating keratoplasty.

Astigmatism↗

Corneal astigmatism after penetrating keratoplasty. The role of suture technique.

A randomized clinical trial was conducted to contrast two techniques of suturing in penetrating keratoplasty (PK) surgery: double running 10-0 and 11-0 sutures (DR), and a combination of 12 interrupted 10-0 sutures with a single running 11-0 suture (IR), followed by selective suture removal. The primary outcome evaluated in the 60 patients within each group was keratometric astigmatism. A decreasing trend in astigmatism over postoperative year 1 was observed only in the IR group (from 4.00 diopters [D] at 3 months to 2.50 D at 12 months). The difference in median astigmatism at 1 year (IR, 2.50 D; DR, 4.00 D) approached statistical significance (P = 0.06, Mann-Whitney U test). Both groups showed comparable steepening of almost 1 D during postoperative year 1. Assessment of the rate of visual rehabilitation was limited by a greater proportion of IR patients showing cystoid macular edema (CME) after surgery. These results, while favorable toward the IR/selective suture removal technique, must be substantiated by a final assessment after all sutures have been removed.

Aged↗

Optimal astigmatism to enhance depth of focus after cataract surgery.

A small amount of myopic astigmatism can enhance the depth of focus of the pseudophakic eye, optimally providing at least 20/30 visual acuity for both near and distance fixation. For given spherocylindrical refractive errors and fixation distances, the cross-sectional area of Sturm's conoid at the retina was calculated for a schematic eye. These data were used to determine the optimal astigmatic error needed to obtain maximum depth of focus and least theoretical blur for any given spherical equivalent refractive error. Optimal depth of focus was obtained when the plus cylindrical component equaled negative sphere - 0.25 diopters. The near and distance visual acuities of ten pseudophakic patients with induced refractive errors were highly correlated with this model. Low myopic astigmatism after cataract surgery may represent an alternative to multifocal intraocular lenses by providing spectacle independence.

Astigmatism↗

Opposite clear corneal incisions to correct pre-existing astigmatism in cataract surgery.

In cataract surgery, the clear corneal incision (CCI) has a small flattening effect on corneal curvature, which can be used to reduce pre-existing astigmatism (PEA). Adding an identical, penetrating CCI opposite the first one can enhance the flattening effect. The paired opposite CCIs (OCCIs) are placed on the steepest meridian axis to flatten it. One CCI is used to perform cataract surgery, and the opposite CCI is made to enhance the flattening effect on the cornea to modulate PEA. During the past 12 months, we have used 2.8 to 3.5 mm OCCIs in 33 eyes with PEA greater than 2.00 diopters (D) having cataract surgery. The mean astigmatism correction achieved with this technique was 2.06 D. This technique is simple and effective and yields stable results that rival those of arcuate keratotomy. The OCCI technique has a potential application for the correction of astigmatism in general refractive surgery. Opposite clear corneal incision nomograms with variables such as width, length, and distance from the limbus will be needed for future applications.

Astigmatism↗

Laser in situ keratomileusis to correct residual myopia and astigmatism after radial keratotomy.

PURPOSE: To evaluate the safety and efficacy of laser in situ keratomileusis (LASIK) in selected post-radial-keratotomy (RK) eyes with residual myopia and astigmatism. SETTING: TLC-The Brea Laser Eye Center, Brea, California, USA. METHODS: Nine eyes of 6 patients who had had RK but had residual myopia and/or astigmatism had LASIK. All RK eyes had 8 radial incisions, were more than 1 year post-RK, had no epithelial inclusion cysts or corneal disease, and had had no subsequent ocular surgery. Follow-up was a minimum of 13 months, at which time uncorrected visual acuity (UCVA), best corrected visual acuity (BCVA), manifest refraction, cycloplegic refraction, keratometry, central and peripheral pachymetries, intraocular pressure, and a subjective assessment of visual function were obtained. RESULTS: At the last follow-up, the mean spherical equivalent (SE) was -0.156 diopter (D) +/- 0.174 (SD). All eyes treated for distance vision had a UCVA of 20/25 or better. No patient lost BCVA. No intraoperative or postoperative complications occurred. Seven eyes had morning and evening measurements. The mean change in manifest SE from morning to evening was -0.143 D. Six of the 7 eyes (86%) had 0 to 1 Snellen line change in UCVA from morning to evening. The subjective questionnaire revealed a high degree of satisfaction with overall vision, minimal glare, and less fluctuation in daily vision than before LASIK. CONCLUSION: Laser in situ keratomileusis is safe and efficacious for reducing residual myopia and astigmatism in properly selected RK patients.

Astigmatism↗

Relaxation of postoperative astigmatism after lens implantation through a 6.25 mm scleral wound in children.

PURPOSE: To investigate the evolution of postoperative astigmatism in children having cataract extraction with intraocular lens (IOL) implantation through a 6.25 mm superior scleral tunnel wound. SETTING: A university clinical practice. METHODS: A retrospective chart review of all pediatric patients having cataract extraction and IOL implantation in the practice of 1 surgeon from 1995 to 2000 was performed. Statistical comparisons were performed using the Student t test for nonpaired data. RESULTS: Ten eyes of 9 children were included. Six cataracts were due to corneal or corneoscleral lacerations, 3 were idiopathic, and 1 occurred after blunt trauma. Eight eyes could not be refracted preoperatively because of mature cataract. The mean cylindrical correction of all refractions performed 1 to 15 days after surgery (n = 6) was 6.71 diopters (D) +/- 1.63 (SD); of those performed at 16 to 30 days (n = 6), 2.71 +/- 2.09 D; and of those performed at 31 to 45 days (n = 7), 1.93 +/- 1.48 D. The mean spherical equivalent of the final (dispensed) refraction was -0.21 +/- 1.79 D; the mean cylindrical correction of this refraction was 1.13 +/- 0.79 D. The difference between the cylindrical correction of the final prescription and the corneal astigmatism in fellow eyes was not statistically significant (P =.29). CONCLUSIONS: Relaxation of large amounts of suture-induced astigmatism occurs in children having cataract extraction. Surgeons should not hesitate to secure scleral wounds meticulously in children for fear of a permanent undesirable refractive outcome.

Adolescent↗

Laser in situ keratomileusis with a scanning excimer laser for the correction of low to moderate myopia with and without astigmatism.

PURPOSE: To evaluate the safety and effectiveness of and patient satisfaction with laser in situ keratomileusis (LASIK) performed with a scanning excimer laser by experienced surgeons to correct low and moderate levels of myopia and astigmatism. SETTING: Clinique Laservue, Montreal, Quebec, Canada. METHODS: A consecutive series of 125 patients (236 eyes) with myopia of -0.5 to -7.0 diopters (D) and cylinder less than 2.5 D were enrolled in this single-center prospective clinical trial. The patients were treated with LASIK and followed for 6 months. The System-ALK Automated Corneal Shaper microkeratome (Bausch & Lomb Surgical) with a 180 microm thickness plate and the Technolas 217 excimer laser (Bausch & Lomb Surgical) with PlanoScan software for the stromal ablation were used in all procedures. Since this version of PlanoScan tended to undercorrect, a mean of 14.7% was added to the standard nomogram. Patient satisfaction was assessed by questionnaires administered preoperatively and 1 and 6 months postoperatively. Retreatments for enhancement were not performed during the 6-month follow-up. RESULTS: Six months after LASIK (86.4% follow-up), the mean postoperative manifest spherical equivalent was +0.02 D +/- 0.64 (SD) compared with a preoperative mean of -4.01 +/- 1.59 D. The uncorrected visual acuity was 20/40 or better in 94.6% of eyes and 20/20 or better in 81.9%. A total of 91.2% were within +/-1.0 D of emmetropia and 73.0% were within +/-0.5 D. Only 2 eyes were overcorrected by >1.0 D. Of the eyes with astigmatic myopia, 86.8% were within +/-1.0 D of the intended cylinder correction (by vector analysis) and 73.0% were within +/-0.5 D. The refractions were generally stable after 1 month, and the change in refraction between postoperative examinations was within +/-0.5 D in 88.0% of eyes. A 1-line decrease in best spectacle-corrected visual acuity was seen in 11.3% of eyes, and no eye lost more than 1 line. An increase of 1 or 2 lines was seen in 45.1%. No intraoperative problems occurred, and the interface was clear in all eyes. At 6 months, most symptoms present significantly more frequently than preoperatively were "mild"; none were "marked" or "severe." A total of 90.5% of eyes were reported with marked to extreme improvement in the overall quality of vision, and 99.0% of patients said they would choose LASIK surgery again. CONCLUSIONS: Mild to moderate myopia, with and without astigmatism, was corrected safely, effectively, and predictably with a high degree of patient satisfaction using LASIK with a scanning excimer laser and the System-ALK Automated Corneal Shaper.

Adult↗

Lens-induced astigmatism after perforating scleral injury.

Within 6 weeks of a penetrating scleral injury that included vitreous prolapse, a 6-year-old boy developed lenticular astigmatism with a regular component of 5.5 diopters (D). Visible indentational folds in the posterior lens capsule, caused by anterior vitreous fibers and anterior hyaloid, were presumed to be the origin of the astigmatism. Because of decreased visual acuity and the suspicion of early amblyopia, a pars plana vitrectomy with removal of the anterior hyaloid and the critical anterior vitreous fibers was performed. Dense fibrotic tissue between the lens equator and the site of the original scleral perforation limited reduction of the preoperative astigmatism to 4.0 D. However, the striae-like lenticular deformation disappeared completely, and full visual acuity was restored. During the 12-month follow-up, the lens remained clear

Astigmatism↗