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PubMed · 9584228

Bilateral simultaneous cataract extraction.

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C Claoué. 1998. Bilateral simultaneous cataract extraction.. https://pubmed.ncbi.nlm.nih.gov/9584228/

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The Manitoba Cataract Waiting List Program.

This article describes the Manitoba Cataract Waiting List Program. This program uses a centralized database to track and prioritize all patients waiting for cataract surgery. It provides an objective and reliable measure of the length of the wait, and patients on the waiting list are treated in a more equitable fashion through application of a uniform method of prioritization. The program will allow for long-term tracking of quality of care through monitoring of the average length of wait for patients with comparable functional impairment. It will also allow for long-term monitoring of thresholds for surgery. It has brought to light previously undocumented issues, such as the simultaneous booking of both eyes for cataract surgery and variations in waiting time between surgeons.

Cataract Extraction↗

Site of potential operating microscope light-induced phototoxicity on the human retina during temporal approach eye surgery.

OBJECTIVE: To determine the site of focal illumination on the retina of phakic human cadaver eyes from an operating microscope positioned for temporal approach eye surgery. DESIGN: Experimental study. METHODS: A Zeiss OPMI-6SFR operating microscope (Zeiss Humphrey Systems, Dublin, CA) was positioned over two phakic human cadaver eyes to measure the site of the focal illumination on the retina by directly observing the illumination on the posterior scleral surface of the globe. External localization of the foveola was made by direct observation using scleral indentation and indirect ophthalmoscopy. Various combinations of microscope angulation and field of view were analyzed. MAIN OUTCOME MEASURES: Distance of focal illumination from the operating room microscope relative to the foveola was measured. RESULTS: The diameter of the "hot spot" of focal illumination on the retina was 4.0 mm. With the eye positioned straight ahead and the level operating room microscope positioned for temporal approach eye surgery, the center of retinal illumination was 0.9 and 1.4 mm nasal relative to the foveola when the microscope field of view was centered over the cornea and temporal limbus, respectively. With the microscope angled 5, 10, 15, and 20 degrees temporally (oculars tilted toward surgeon), the center of the illumination was displaced nasal to the foveola by 1.1, 1.5, 3.8, and 5.1 mm, respectively, when the field of view was centered over the cornea and 1.5, 2.6, 4.7, and 6.0 mm, respectively, nasal to the foveola when centered over the temporal limbus. CONCLUSIONS: Retinal illumination from an operating microscope positioned for temporal approach eye surgery has the potential for light-induced injury to the fovea. Angulation of the operating microscope by up to 10 degrees temporally when the microscope field of view was centered over the cornea and up to 5 degrees temporally when centered over the temporal limbus was not adequate to displace the focal illumination off the foveola when the eye was in the straight-ahead position. Tilting the operating microscope 15 degrees or more temporally when centered on the pupil and 10 degrees or more when centered over the temporal limbus should safely displace the retinal light exposure away from the fovea during temporal approach surgery. Suggestions for reducing the risk of iatrogenic phototoxicity are reviewed.

Cataract Extraction↗