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At least 91 records · Page 5Linked to original sources

Mizuo phenomenon observed by scanning laser ophthalmoscopy in a patient with Oguchi disease.

PURPOSE: To elucidate the origin of the abnormal fundus reflex in Oguchi disease. METHODS: The ocular fundus of a 63-year-old woman who showed a homozygous arrestin 1147delA mutation was observed by scanning laser ophthalmoscopy with the use of an argon blue laser (wavelength, 488 nm), a helium-neon laser (633 nm), and an infrared laser (780 nm). RESULTS: Diffuse, fine, white particles, which do not exist in normal subjects, were clearly demonstrated only with the helium-neon laser. After 4-hour dark adaptation, the abnormal particles disappeared, but then they reappeared gradually during 30 minutes of light adaptation, in accordance with the golden metallic reflex. CONCLUSION: The white particles found by helium-neon laser could be the origin of the abnormal fundus reflex in Oguchi disease.

Arrestin↗

Comparison of optic nerve head measurements obtained by optical coherence tomography and confocal scanning laser ophthalmoscopy.

PURPOSE: To evaluate the relationship between optic nerve head (ONH) measurements generated by optical coherence tomography (OCT; versions 2 and 3) and confocal scanning laser ophthalmoscopy (CSLO) and to compare the association between OCT and CSLO ONH measurements with glaucoma disease status, as determined by clinical evaluation and perimetry. DESIGN: Cross-sectional study. METHODS: In a prospective study in the glaucoma service of an academic department of ophthalmology, 159 eyes (97 subjects) and 77 eyes (44 subjects) were recruited in two separate periods. All subjects were scanned with a CSLO device. Subjects tested within the first period of recruitment were scanned with OCT version 2 and in the second period with OCT version 3. The main outcome measure was the correlation between automatic and manually defined OCT ONH measurements and the correlation of CSLO and OCT ONH measurements between devices and with glaucoma disease status. RESULTS: A high correlation was found between ONH measurements obtained by the automatic determination of ONH margin and those obtained by manual tracing of the disk margin (r =.93 to.98). Optical coherence tomography and CSLO ONH measurements were highly correlated. Optical coherence tomography-measured mean disk area was significantly larger than that measured by CSLO, as were all other disk size-related parameters. The areas under the receiver operator characteristic (AROC) curves for the associations between CSLO and OCT ONH measurements and clinical diagnosis were found to be similar and in the range of 0.47 to 0.79 for both devices. CONCLUSIONS: Automated OCT ONH measurements correlate highly with those obtained by manual tracing of disk margin. Optical coherence tomography and CSLO ONH analyses are highly correlated and have similar associations with glaucoma disease status.

Cross-Sectional Studies↗

The oculocardiac reflex during ophthalmoscopy in premature infants.

Of 54 consecutive infants referred for ophthalmoscopy with the pupils dilated, continuous electrocardiographic monitoring showed that 17 (31%) had bradycardia, ranging from 10% to 59% of baseline, coincident with instillation of eyedrops, insertion of an eyelid speculum, pressure on the globe, or stretching of the medial and lateral recti muscles.

Arrhythmias, Cardiac↗

The ability of scanning laser ophthalmoscopy to identify various glaucomatous optic disk appearances.

PURPOSE: To compare four distinct glaucomatous disk appearances using scanning laser ophthalmoscopy and determine the ability of a previously described discriminant analysis to detect glaucomatous damage for each group. METHODS: Two thousand three hundred eighty-eight stereoscopic optic disk photographs of 2,388 subjects with glaucoma or suspicion of glaucoma were reviewed to select four pure glaucomatous optic disk types. Twenty-three topographic, volumetric, and morphometric scanning laser ophthalmoscopic variables from one optic disk of each selected subject were compared. Differences between the groups were evaluated using an analysis of variance and the Pearson chi-square test. RESULTS: Forty-four focal ischemic disks, 38 myopic glaucomatous disks, 30 senile sclerotic disks, and 28 disks characterized by generalized cup enlargement were studied. Significant intergroup differences were found for the majority of the evaluated optic disk variables. The accuracy with which the discriminant analysis model was able to detect disks with glaucomatous visual field damage was 93.2% for focal ischemic disks, 81.6% for myopic disks, 66.7% for senile sclerotic disks, and 78.6% for disks with generalized cup enlargement. CONCLUSIONS: By comparing mean values for certain optic disk variables, scanning laser ophthalmoscopic optic disk assessment can distinguish groups of disks with specific appearances. However, the ability of presently available software to detect glaucomatous damage varied considerably with disk appearance. Expert clinical optic disk evaluation remains an important part of the assessment of patients suspected of having glaucoma, although refinement of computerized scanning laser ophthalmoscopic disk assessment may eventually make this easier.

Analysis of Variance↗

Scanning laser ophthalmoscopy-based evaluation of epipapillary velocities: method and physiologic variability.

PURPOSE: Scanning laser ophthalmoscopy is capable of producing high-resolution fluorescein angiograms. Measurements of capillary blood velocities in the fovea are well established. In this study, we used an identical technique to measure particle velocities in the superficial layers of the optic nerve head. We compared these data with simultaneous velocity measurements in the retinal and macular vasculature. METHODS: Fluorescein angiograms were performed in 30 subjects (12 men, 18 women; mean age, 26 years; standard deviation [SD], 3 years). Off-line, the velocities of hypofluorescent particles through the microvasculature of epipapillary and macular vessels were measured by image-processing techniques. We also assessed the arteriovenous passage (AVP) time of the fluorescein dye front. RESULTS: Epipapillary blood velocities ranged from 2.7 to 6.5 mm/sec (mean, 4.0 mm/sec; SD, 0.99 mm/sec) and differed significantly from macular capillary blood velocities (MCBVs), which ranged from 1.67 to 3.31 mm/sec (mean, 2.53 mm/sec; SD, 0.34 mm/sec). The AVP time in all subjects was 1.74 +/- 0.5 sec (mean +/- SD) and correlated with the MCBV (P < 0.05, r = -0.46). Epipapillary blood velocities showed no correlation with either AVP time or MCBV. CONCLUSIONS: The scanning laser methodology, adapted to objectively assess velocities in the epipapillary vasculature, shows that these measurements are neither correlated with velocities in the perifoveal network, nor inversely correlated with overall retinal transit time. Epipapillary blood velocities were found to be substantially higher than those measured in macular capillaries. This result might be explained by the different anatomy of epipapillary vessels compared with macular capillaries.

Adult↗

Detection of drusen in the fellow eye of Japanese patients with age-related macular degeneration using scanning laser ophthalmoscopy.

OBJECTIVE: To study the prevalence of drusen in the fellow eye of Japanese patients with age-related macular degeneration (AMD). DESIGN: Retrospective, cross-sectional study. PARTICIPANTS: Seventeen eyes of 17 Japanese patients with unilateral AMD. MAIN OUTCOME MEASURES: To compare the frequency of drusen based on photography and scanning laser ophthalmoscopy with confocal and ring apertures and a diode laser (780 nm). RESULTS: Using the scanning laser ophthalmoscope (SLO) with a ring aperture, drusen were detected clearly as in topographic imaging. In the fellow eyes of the study patients with AMD, photography showed drusen in 10 cases (58.8%); however, SLO imaging detected drusen in 15 cases (88.2%). The number of drusen detected using SLO imaging was significantly greater than when using photography (P < 0.05). CONCLUSIONS: Scanning laser ophthalmoscope imaging is superior to photography for detecting drusen in the fellow eyes of Japanese patients with unilateral AMD. The prevalence of drusen in the fellow eye of Japanese patients with AMD is much higher than previously speculated.

Aged↗

Comparison of optic nerve head assessment with a digital stereoscopic camera (discam), scanning laser ophthalmoscopy, and stereophotography.

PURPOSE: To compare computer-assisted planimetry using the Discam system (Marcher Enterprises Ltd., Hereford, UK), confocal scanning laser ophthalmoscopy (CSLO), and stereoscopic disc photography with respect to optic nerve head (ONH) measurements and glaucoma status. DESIGN: Comparative, observational case series and interobserver variability study. METHODS: Three hundred eighty-six eyes of 233 consecutive subjects were imaged with the Discam, and a subset underwent ONH evaluation with CSLO (n = 297), stereoscopic photography (n = 233), or both. Subjects were classified into normal, glaucoma suspect, and glaucoma groups based on clinical findings of slit-lamp disc examination and visual field testing. Agreement of cup-to-disc ratio measurements among the three technologies was assessed by the intraclass correlation coefficient (ICC) and areas under the receiver operator characteristic (AROC) curves. MAIN OUTCOME MEASURES: Cup-to-disc ratio as measured by Discam, CSLO, and stereography. RESULTS: Intraclass correlation coefficients calculated using the two-way random effects model for comparing Discam, CSLO, and stereography among cup-to-disc area ratio, vertical cup-to-disc ratio, and horizontal cup-to-disc ratio were 0.46 to 0.53. The ICC was higher for eyes with larger optic discs (0.51) than those with smaller ones (0.32). The ICC calculated using the fixed effects model for the Discam and CSLO comparison was 0.72. Areas under the receiver operator characteristic curves were 0.67 to 0.80 among the three technologies comparing normal with glaucomatous eyes. In general, there was no statistically significant difference between techniques with respect to sensitivity and specificity of glaucoma detection. CONCLUSIONS: There is good agreement between ONH measurements obtained by Discam, CSLO, and stereography; however, the results are not interchangeable. Similar AROC curve values among all three techniques imply that the Discam, CSLO, and stereography perform equally for the determination of glaucoma status.

Area Under Curve↗

Scanning laser ophthalmoscopy. Clinical applications.

The scanning laser ophthalmoscope (SLO) provides a high-quality television image of the retina using less than 1/1000 of the light required for conventional indirect ophthalmoscopy. The SLO employs a new ophthalmoscopic principle in which a dim laser beam scans across the fundus, and light is collected only from one retinal point at a time. Since the instrument is highly light efficient, illumination levels are comfortable for the patient, and fluorescein angiography can be performed with one tenth of the usual fluorescein dose. Since a continuous, large depth of field view is displayed on the SLO screen and stored on video tape, repeated dynamic inspection of the vitreous, retina and vitreoretinal interface is afforded. In addition, any graphical material that can be displayed on a microcomputer monitor (such as text of video games) can also be impressed on the retinal pattern formed by the sweeping laser beam. The graphical material is thus observed directly by the patient and on the patient's retina by the clinician. Since the exact retinal locus of each point in the graphical material is viewed directly, it is possible to perform perimetry directly on the retina, to measure acuity at arbitrary retinal loci, to study how patients with macular disease use residual functional retina for reading, and to perform distortometry with a retinal (Amsler-type) grid.

Fluorescein Angiography↗

Quantitative assessment of the blue-light hazard during indirect ophthalmoscopy and the increase in the "safe" operating period achieved using a yellow lens.

PURPOSE: The indirect ophthalmoscope presents a blue-light hazard with the potential for causing photochemical injury to the retina. In this study, this hazard was assessed with respect to the threshold limit values (TLVs) recently adopted by the American Conference of Governmental Industrial Hygienists. METHOD: Spectral radiometric measurements were made from a standard indirect ophthalmoscope headset used in conjunction with either a clear or a yellow lens. The results were weighted spectrally with the published blue-light hazard function. RESULTS: When the clear lens was used, the TLV was exceeded after approximately 2.5 minutes. The yellow lens filtered out the more hazardous blue wavelengths of light and this increased the "safe" operating period by a factor of approximately 20. CONCLUSION: In clinical practice, with a clear lens, the TLV could be exceeded easily if the patient is subjected to prolonged or repeated examination because the blue-light hazard is additive in a linear manner for periods as long as 3 hours with a potential for a cumulative effect over longer periods. Furthermore, some ophthalmic patients, such as those with aphakia, are less tolerant of blue-light than healthy subjects. In the interests of patient safety, it is recommended that yellow lenses are considered for use for routine indirect ophthalmoscopy.

Equipment Safety↗

Choroidal abnormalities in Behçet disease observed by simultaneous indocyanine green and fluorescein angiography with scanning laser ophthalmoscopy.

OBJECTIVE: To examine choroidopathy in patients with Behçet disease. DESIGN: Prospective clinical study. PARTICIPANTS: Thirty-three patients (63 eyes) with Behçet disease. INTERVENTION: Patients underwent simultaneous indocyanine green (ICG) and fluorescein angiography with a double detector of scanning laser ophthalmoscopy. MAIN OUTCOME MEASURES: Angiographic findings recorded on videotapes were evaluated. The relation of angiographic findings with systemic activity and aqueous inflammation was also analyzed. RESULTS: Fluorescein angiography showed leakage in varying degrees from retinal vessels in 30 patients (53 eyes, 84%). The ICG angiographic findings were choroidal vascular wall staining in 16 eyes (25%), hyperfluorescent spots in 42 eyes (66%) and hypofluorescent plaques in 22 eyes (35%), both of which were not evident with fluorescein, leakage from choroidal vessels in 3 eyes (5%), and irregular filling of choriocapillaris in 11 eyes (17%). These findings did not have a statistically significant correlation with the presence or absence of aqueous inflammation or oral aphthous ulcerations. CONCLUSIONS: The patients with Behçet disease showed choroidal abnormalities, which could be revealed only by ICG angiography, but not with funduscopy or fluorescein angiography. Simultaneous ICG and fluorescein angiography would be useful for examining choroidal lesions in Behçet disease.

Adult↗

Cup-to-disc ratio: ophthalmoscopy versus automated measurement in a general population: The Rotterdam Study.

OBJECTIVE: To determine the correlations between ophthalmoscopic estimations and the measurements with a semiautomated image-analysis device of the vertical cup-to-disc ratio (VCDR) in the human optic disc. DESIGN: Population-based, cross-sectional study. PARTICIPANTS: All subjects 55 years of age and older from the population-based sample of 6777 ophthalmologically examined subjects from The Rotterdam Study of whom gradable optic disc transparencies of at least 1 eye and ophthalmoscopic data of the same eye were available. MAIN OUTCOME MEASURES: Ophthalmoscopic assessment of the VCDR and semiautomated measurement of the VCDR. METHODS: Indirect and direct ophthalmoscopy were performed in mydriasis to assess the VCDR. Optic disc transparencies made with a simultaneous stereoscopic telecentric fundus camera were analyzed with a semiautomated measurement system (Topcon Imagenet). RESULTS: In 5143 subjects, the mean ophthalmoscopic VCDR was 0.30 (standard error [SE], 0.0021; range, 0.00, 1.00) compared with a semiautomatically measured VCDR of 0.49 (SE, 0.0019; range, 0.04, 0.86; difference, 0.19; P < 0.0001). The overall correlation between both methods was moderate (correlation coefficient, 0.61; SE, 0.11) and lower in small optic discs. Semiautomated optic disc measurements correctly identified 76% of the glaucoma cases (as defined using visual field data and ophthalmoscopic data about the optic disc). CONCLUSION: Semiautomated measurements of the VCDR are larger than the ophthalmoscopic VCDR estimate with a moderate correlation. The interobserver variability using Imagenet was smaller compared with the ophthalmoscopic assessments, and Imagenet was better standardized, which is important for epidemiologic surveys and follow-up studies.

Aged↗

Use of optical coherence tomography (OCT) and indirect ophthalmoscopy in the diagnosis of macular edema in diabetic patients.

OBJECTIVES: To evaluate the use of Optical Coherence Tomography (OCT) in the diagnosis of macular edema (ME) in diabetic patients in comparison to indirect ophthalmoscopy (IO) and, in addition, to study the characteristics of these patients. METHODS: 165 patients were randomly selected to join the study in 1998. Ophthalmological, clinical and laboratory examinations were performed for all these patients. RESULTS: Diabetic retinopathy was identified in 143 eyes (44.7%) and ME in 58 (18.3% of the total and 40.5% of the patients with retinopathy). 82.7% (48) of the eyes with ME could be diagnosed with OCT, against 62.0% (36) with IO. Haemoglobin A1c was the only variable that showed a significant association with ME, when compared to control (p < 0.05). Retinopathy was associated with the presence of nephropathy (p = 0.01) and neuropathy (p = 0.001), but ME was not (NS for both). 68% of patients without ME had a visual acuity of more than 50%. CONCLUSIONS: OCT is a new method that can help the evaluation of ME in diabetic patients. It can be used not only to diagnose the lesion, but also to follow up the patients during treatment. High levels of haemoglobin A1c might be associated with the presence of ME. Diabetic complications (nephropathy and neuropathy) are associated with retinopathy but not with macular edema.

Adult↗

Scanning laser ophthalmoscopy as a tool for detecting atrophy of the central retinal nerve fibre layer in Leber's hereditary optic neuropathy.

PURPOSE: To study the central retinal nerve fibre layer with scanning laser ophthalmoscopy (SLO) in subjects with Leber's hereditary optic neuropathy (LHON), a disease primarily affecting retinal nerve fibres in the macular area. METHODS: SLO was performed using combinations of laser wavelengths and aperture settings in subjects with LHON and in age-matched normal controls. RESULTS: Six subjects with LHON were examined. The reduction of central retinal nerve fibre layer was clearly demonstrated on the SLO images. Consistent findings were abnormal visibility and apparent broadening of perifoveal blood vessels. In all six normal controls the temporal nerve fibre raphe could be demonstrated. CONCLUSIONS: SLO imaging is an easy way of depicting the central retinal nerve fibre layer, requiring no special photographic skills. The demonstration of nerve fibre reduction is valuable in the early diagnosis of LHON.

Adolescent↗

Preoperative measurements of macular hole with scanning laser ophthalmoscopy. Correlation with functional outcome.

PURPOSE: To measure the dimensions of macular holes before surgery and compare them with the functional outcome. METHODS: A prospective study of ten consecutive patients scheduled for macular hole surgery. Macular holes were imaged with scanning laser ophthalmoscopy with different laser wavelengths. Computerized image analyses were used to measure the size of the hole and the surrounding rim. RESULTS: Eyes were referred to three different groups preoperatively according to visual function. Measurements of the longest diameter and the area of the macular hole were found to correlate well with visual function tested before and after surgery. All holes closed after one operation. Eighty per cent of eyes improved two or more lines on the distance visual chart and all patients but one could read a newspaper six months after surgery. CONCLUSION: Preoperative size of macular hole can be used as a predictor of the functional outcome of macular hole surgery.

Aged↗

Ocular fundus images with confocal scanning laser ophthalmoscopy in the dog, monkey and minipig.

Confocal scanning laser ophthalmoscopy (CSLO) is a new technique that enables ocular fundus image recording and retinal dynamic angiography to be performed. The ocular fundus image is acquired sequentially, point by point, and is reconstructed on a video monitor at the rate of 25 images per second. The feasibility of performing both ocular fundus image recordings and retinal angiography image recordings were tested on two dogs, two monkeys and two minipigs using a 40 degrees field I + Tech CSLO. Fundus area of each dog, monkey and minipig were examined without any additional optical devices. The ocular fundus and angiography images were recorded, stabilized and analyzed under the same conditions. For each species, all images were easily recorded without any additional optical device in a lighted room and the morphology of the retinal images generated was similar to those obtained with a camera or angiography of higher resolution. Capillary phase or venous times are presented. Image recording at 25 frames/second enabled more retinal dynamics to be demonstrated than with use of regular angiography. This technique is noninvasive and easy to perform if the eye is fixed and eyelids maintained open. It also allows exploration of retinal microvascularization and could be utilized for clinical, pharmacologic and toxicologic investigations as well.

Animals↗

[Ophthalmoscopy attempts before Helmholtz].

The principle of contact lens ophthalmoscopy was discovered in 1703; the fundus contact lens was very nearly invented in 1844. Coaxial illumination was applied in 1823 and improved in 1841 by including a mirror, while, the first usable ophthalmoscope was designed in 1847. This article pays tribute to the virtually ignored services of Méry, Kussmaul, Purkinje, Hofmann, and Babbage.

Europe↗

Binocular indirect ophthalmoscopy using a standard fiberoptic surgical headlight.

Binocular indirect ophthalmoscopy may be performed in the operating room with a fiberoptic surgical headlight and condensing lens, eliminating the need for the indirect ophthalmoscope headpiece. The resultant aerial inverted stereo image has enhanced stereopsis but is otherwise identical to that obtained with the headpiece. Safe power settings for individual headlights can be determined with a photometer by measuring illuminance from a standard indirect ophthalmoscope and comparing this value to the intensities obtained at each voltage setting of the headlight. Illuminance from four different headlights was measured, and settings that yielded light output equivalent to the average indirect ophthalmoscope were designated for each headpiece. The maximum indirect ophthalmoscope illuminance values were averaged and found to be 2.0 watts/m2 (W/m2) for the 20-diopter (D) lens and 1.8 W/m2 for the 30-D lens. All of the headlights could be used at transformer settings that produced light intensities at or below the average maximum indirect ophthalmoscope illuminance. A stereoscopic image was obtained with each of the headlights, with both the 20-D and 30-D lenses. We conclude that standard fiberoptic surgical headlights may be used for stereoscopic fundus examination. The average maximal light intensity of fiberoptic surgical headlights is greater than that of the average indirect ophthalmoscope. However, each fiberoptic headlight can be operated at brightnesses equal to or below that of the maximum intensity of the indirect ophthalmoscope, and therefore, retinal toxicity is unlikely for brief retinal evaluations.

Depth Perception↗