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Biomedical subjects

S N Lipsky

Publications and source records attributed to S N Lipsky.

4 recordsLinked to original sources

Capsular management and refractive error in pediatric intraocular lenses.

BACKGROUND: Guidelines for intraocular lens (IOL) implantation in children regarding patient selection, age limitations, operative techniques, including management of the posterior capsule, and refractive goals are not universally agreed on. METHODS: The authors placed posterior chamber IOLs in the capsular bag of 79 eyes in 57 children. Patient age ranged from 10 months to 17 years. Follow-up averaged 2 years. Patients were selected on the basis of age, cataract morphology, laterality, and lack of potential complicating factors. In general, postoperative refractions were intended to be mildly hyperopic with the magnitude dependent on patient age. RESULTS: Seventy-nine percent of patients able to report a postoperative visual acuity showed 20/40 or better visual acuity. Vision was limited by amblyopia in the remaining patients. There were no significant complications. The posterior capsule opacified on average 2 years after surgery regardless of patient age. CONCLUSIONS: Implantation of posterior chamber IOLs in carefully selected children appears to be effective and safe. Consideration should be given to primary posterior capsulectomy-anterior vitrectomy at the time of lens implant in children who are not expected to be candidates for yttrium aluminum garnet (YAG) capsulotomy within 18 months of surgery.

Adolescent↗

Comitant strabismus.

Comitant strabismus has been investigated and treated for centuries. Advances in understanding the etiology of this disorder have improved our ability to successfully treat it. This article addresses recent insights into the causes and treatments of comitant strabismus, with a focus on congenital esotropia, intermittent exotropia, and adult strabismus.

Adult↗

Surgical treatment of superior oblique palsy.

Reports of several large series of patients with superior oblique palsy (SOP) published in 1986 or before set forth important guidelines for both diagnosis and treatment of this condition. Newer information about the anatomy, physiology, and pathophysiology of the superior oblique has accrued over the past decade. This paper reviews our experience with diagnosis and treatment of SOP over the past 5 years in light of this new information. Charts of patients treated for SOP over 5 year (1990 to 1995) were reviewed for male or female sex, age, symptoms, refraction, vision, stereo acuity, head posture, facial asymmetry, intraoperative superior oblique traction test, diagnostic position prism and cover test, torsion, surgery performed, and results of treatment. The charts of 190 patients were reviewed. In 181, postoperative examinations were performed by us. The etiology of the SOP was congenital in 137 and acquired in 53. Twenty-nine acquired cases were due to trauma and 24 arose from other causes. Fifty-six patients had facial asymmetry, 51 of whom had congenital SOP. Ninety-five had a lax tendon, 83 (87%) of whom had congenital SOP. Sixty-six had a normal tendon, 29 (44%) of whom had acquired SOP. Seventy-seven percent of patients had Knapp class I, III, or IV palsy. An average of 1.26 surgeries was performed per patient. Inferior oblique weakening was performed in 177 (93%), while 68 vertical rectus recessions were done. Thirty-five patients had superior oblique tuck or resection, all on lax tendons, and 15 had Harada Ito procedures for torsion. Six patients had mild Brown syndrome postoperatively, none of which required a takedown. A cure, defined as relief of symptoms or elimination of strabismus and head tilt, was achieved in 166 of 181 (92%) of patients. Successful treatment of SOP can be accomplished in the majority of cases by selective surgery usually beginning with inferior oblique weakening plus additional vertical rectus and horizontal surgery as needed, with superior oblique strengthening used only for lax tendons or when torsion is the main problem.

Adolescent↗

Blood-ocular barrier permeability in monkeys.

The permeability of the blood-ocular barrier was investigated in five monkeys using vitreous fluorophotometry (VFP). Inward permeability (Pin) of the blood-retinal barrier was calculated by a computer simulation method. Kinetic VFP was performed after intravitreal injection of fluorescein (F) or fluorescein monoglucuronide (FG). The estimated mean value of Pin (x10(-6) cm/min) was 4.8 (SD 1.2). The mean rates of loss (per hour) of F from the anterior chamber (Ka) and the vitreous (Kv) were 0.11 (SD 0.01) and 0.13 (SD 0.03), respectively, which were approximately three and four times greater than those of FG (0.04 (SD 0.01) and 0.03 (SD 0.01), respectively). Probenecid administered intraperitoneally decreased both the Ka and the Kv of F significantly but had no effect on the Ka or the Kv of FG, suggesting that F was excreted from the eye with the aid of the active transport mechanism. The results of comparative studies of the rates of loss of F from the anterior chamber (Ka) and from the vitreous (Kv) suggested that active transport was more predominant in the blood-retinal barrier than in the blood-aqueous barrier.

Animals↗