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Biomedical subjects

Dennis Orlock

Publications and source records attributed to Dennis Orlock.

2 recordsLinked to original sources

Peripapillary detachment in pathologic myopia.

OBJECTIVE: To describe peripapillary detachment in pathologic myopia (PDPM), a newly recognized fundus lesion. DESIGN: Retrospective medical record review. METHODS: We evaluated a series of myopic eyes that had a yellow-orange elevation of the retina and retinal pigment epithelium at the inferior border of the myopic conus. RESULTS: Twenty eyes of 15 patients were identified during a 17-year period to have characteristic findings of PDPM. The mean age of the patients was 58 years. They were followed up for an average of 6 years. The mean spherical equivalent correction was -11.00 diopters (D) (range, -6.00 to -16.00 D). The mean axial length was 27.4 mm (range, 25.3-28.9 mm). In each case, ophthalmic coherence tomographic examination showed a localized detachment of the retinal pigment epithelium and retina corresponding to the PDPM lesion. During the follow-up period, the lesion remained stable in all cases except for 1. No apparent negative effect on visual function was noted. CONCLUSIONS: Peripapillary detachment in pathologic myopia is an asymptomatic, yellow-orange peripapillary detachment of the retinal pigment epithelium and retina in pathologic myopia. Recognition of this lesion is important to distinguish it from other fundus pathologic conditions, such as tumors or choroidal neovascularization, which require further investigation and treatment.

Adult↗

Combined multiplanar optical coherence tomography and confocal scanning ophthalmoscopy.

We demonstrate the clinical application of a multiplanar imaging system that simultaneously acquires en face (C-scan) optical coherence tomography (OCT) and the corresponding confocal ophthalmoscopic images, along with cross-sectional (B-scan) OCT at specifiable locations on the confocal image. The advantages of the simultaneous OCT and confocal acquisition as well as the challenges of interpreting the C-scan OCT images are discussed. Variations in tissue inclination with respect to the coherence wave surface alter the sampling of structures within the depth of the retina, producing novel slice orientations that are often challenging to interpret. We have evaluated for the first time the utility of C-scan OCT for a variety of pathologies, including melanocytoma, diabetic retinopathy, choroidal neovascular membrane, and macular pucker. Several remarkable new aspects of clinical anatomy were revealed using this new technique. The versatility of selective capture of C-scan OCT images and B-scan OCT images at precise points on the confocal image affords the clinician a more complete and interactive tool for 3-D imaging of retinal pathology.

Equipment Design↗