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Biomedical subjects

O Arend

Publications and source records attributed to O Arend.

At least 55 records · Page 3Linked to original sources

[Retinal hemodynamics in diabetic retinopathy before and after laser coagulation].

PATIENTS AND METHODS: By means of video-fluoresce in angiography arm-retina-time (ART) and retinal arteriovenous passage time (AVP) were measured in order to determine the effect of panretinal laser-coagulation on retinal circulation in patients with diabetic retinopathy. 55 patients with either preproliferative (n = 29) or proliferative (n = 26) retinopathy we reexamined before, 3-9 weeks after panretinal laser-coagulation (mean: 848 burns, 0.5 mm diameter), and 0.5-3 years later. RESULTS: The ART of the diabetic patients was in the normal range and showed no differences among the three measuring times. The retinal AVP was significantly prolonged in the three measuring times (nasal and temporal) when compared to normals. Laser-coagulation showed no significant effect on AVP in the temporal branches, whereas in the nasal branches AVP decreased from 2.38 +/- 0.69 s (before laser-coagulation) to 2.11 +/- 0.68 s (3-9 weeks after treatment) and 2.06 +/- 0.67 s (0.5-3 years after treatment) (p < 0.01). In branches with neovascularisation (n = 24) a pronounced decrease of AVP from 2.60 +/- 0.70 s to 1.96 +/- 0.61 s and 2.09 +/- 0.64 s (p < 0.01) was detected. CONCLUSIONS: Thus, laser-coagulation leads to a faster circulation in areas with laser burns within 3-9 weeks post-treatment.

Adult↗

[Variability of perifoveal microcirculation in healthy probands].

BACKGROUND: Fluorescein angiography with a scanning laser ophthalmoscope allows the assessment of retinal hemodynamics. Fundamental for all interpretations of the evaluated data is the knowledge of the physiological variation. In the present study we examined the variability of dynamic and morphologic retinal blood flow indices in healthy subjects over a period of one year. PATIENTS AND METHODS: In sixteen healthy volunteers aged from 23 to 34 years video-fluorescein angiography was repeated nine times in one year. At each term arm-retina-time, arteriovenous passage time, mean arterial dye velocity and capillary flow velocity were assessed. In addition the perifoveal intercapillary areas and the foveal avascular zone were determined at the first and last examination. RESULTS: Statistical analysis of the evaluated data did not show any significant variation of the mean values during the one year follow-up. Reliability indices between 0.61 and 0.87 underline a stable position of each subject to the other participants at the single terms. CONCLUSION: The present study demonstrates that retinal hemodynamics are stable over a one year follow-up in healthy subjects. There are not significant changes to expect in retinal hemodynamics assesses in healthy subjects in one year under constant conditions. The knowledge of the intra- and interindividual variation of retinal blood flow indices allows a correct interpretation of pathophysiologic and pharmacological changes in retinal macro- and microcirculation.

Adult↗

[Quantification of cystoid changes in diabetic macular edema].

BACKGROUND: Cystoid changes in diabetic macular oedema can result in severe visual consequences and were previously difficult to quantify. This study was performed to introduce reliable measurements of the area covered by cysts, of their quantification and relation to visual acuity. PATIENTS AND METHODS: 58 diabetic patients suffering from cystoid macular oedema were examined by means of a scanning laser ophthalmoscope. Fluorescein angiography provides a detailed recognition of well demarcated cystoid formations in the early transit. In three different sampling areas from the center of the fovea (1.2 deg, 2.5 deg and 5 deg) and in the foveal avascular zone (FAZ) itself the area covered by cystoid changes was quantified as well as the number of cysts and their shortest distance from the center of the FAZ. RESULTS: The mean area covered by cystoid formations in the 2.5 degrees area was 0.128 +/- 0.08 micron2, the number of cysts ranged from 1 to 7. In all sampling areas there was a significant correlation between area of cysts and visual acuity. Their number and distance from the center of the FAZ did not show a significant correlation to vision. Measurements within the 2.5 degrees area seem to have the highest predictability concerning visual function. CONCLUSION: Fluorescein angiography allows the quantification of number and area covered by cystoid formations in patients with diabetic macular oedema. There is a significant correlation of visual acuity to the area covered by these cystoid changes. The distance of cysts from the center of the FAZ does not correlate significantly to visual acuity. These measurements can prove useful in following cystoid changes and in monitoring the effect of currently used therapy regimen.

Adult↗

Effects of topical dorzolamide on retinal and retrobulbar hemodynamics.

PURPOSE: Topical carbonic anhydrase inhibitors such as dorzolamide have been developed as ocular hypotensive agents devoid of the side effects plaguing their systemic predecessors. We evaluated the influence of dorzolamide on retinal and retrobulbar blood flow markers to determine if the drug has orbital vascular as well as ocular hypotensive effects. METHODS: Eleven persons with healthy eyes received either placebo or two drops 2% dorzolamide, 2 h prior to studies conducted in double-masked, counterbalanced fashion. Four retrobulbar vessels (nasal and temporal posterior ciliary, central retinal, and ophthalmic arteries) were analyzed by color Doppler imaging; scanning laser ophthalmoscopy was used to examined retinal and superficial optic nerve head blood linear velocity. RESULTS: Dorzolamide lowered IOP from 15.7 +/- 0.7 to 13.7 +/- 0.7 mmHg (p < 0.05). The drug also hastened retinal arteriovenous passage of fluorescein dye, and accelerated capillary dye transit in the macula and optic nerve head. The drug, however, left unaltered blood velocity or resistance index in any retrobulbar vessel. CONCLUSIONS: Dorzolamide is an effective ocular hypotensive agent that accelerates blood velocity in the retinal and superficial optic nerve head without an apparent effect upon retrobulbar hemodynamics.

Administration, Topical↗

Hyperoxia improves contrast sensitivity in early diabetic retinopathy.

AIM: The cause of vascular and visual pathology in diabetic retinopathy remains unknown. If retinal hypoxia plays a role, then early in the course of diabetes 100% oxygen breathing should normalise both contrast sensitivity and retinal blood flow. METHODS: This hypothesis was tested in 12 diabetic patients with minimal retinopathy who, none the less, exhibited reduced contrast sensitivity (p = 0.003 versus 12 age and sex-matched controls) and prolonged retinal arteriovenous dye transit (p = 0.0001 versus controls). RESULTS: Isocapnic hyperoxia failed to alter contrast sensitivity in controls, while it significantly improved contrast sensitivity in patients (at 12 cpd; p = 0.042) to levels indistinguishable from normal. Individual improvement in contrast sensitivity correlated positively with the severity of the initial defect (r = +0.84, p = 0.0008). Hyperoxia also had haemodynamic effects; it slowed retinal arteriovenous passage of fluorescein dye in controls, but did not further slow this transit time in patients. CONCLUSIONS: These results demonstrate the reversibility of early contrast sensitivity deficits in diabetes mellitus, and support the hypothesis that factors linked to tissue hypoxia initiate both visual and vascular dysfunction in diabetic retinopathy.

Adult↗

Retinal hemodynamics during increased intraocular pressure.

The pathogenesis of primary chronic open-angle glaucoma (POAG) remains uncertain. It has been proposed that some of these patients may present with a deficiency in retinal hemodynamic autoregulation. It is also thought that visual field loss in POAG could be related to poor retinal perfusion. The present study was undertaken to evaluate the capacity of retinal autoregulation to maintain constant retinal circulation despite an acute rise in intraocular pressure (IOP). A total of 22 healthy subjects were recruited to this study. Retinal hemodynamics were assessed by digital video fluorescein angiograms using a scanning laser ophthalmoscope at normal (13.8 +/- 1.5 mmHg) and increased IOP (33.8 +/- 3.4 mmHg). Suction cups were used for raising the IOPs. The angiograms were performed at baseline and after 1 min of increased IOP. To quantify retinal hemodynamics the arm-retina time (ART) and arteriovenous passage time (AVP) were evaluated. The ART increased significantly from 9.4 +/- 1.8 to 11.8 +/- 2.2 s (P < 0.05) during elevated IOP, and the AVP was significantly prolonged from 1.6 +/- 0.4 to 3.0 +/- 0.8 s (P < 0.01) with IOP elevation as well. The increase in ART and AVP indicates an insufficiency of retinal autoregulation after an acute rise in IOP, even in healthy subjects. It appears that IOP values of > or = 30 mmHg may be detrimental to retinal perfusion in normals as well as in patients with POAG, who may have compromised retinal perfusion to begin with.

Adult↗

Measurements of foveal cysts in branch retinal vein occlusion.

This study was performed to quantify cystoid changes in the fovea using fluorescein angiography with a scanning laser ophthalmoscope and digital image analysis. In digitized angiograms of 50 patients with branch retinal vein occlusion the number of cysts, the area of each cyst, and the relation of the total area to visual acuity was determined.

Adult↗

The relationship of macular microcirculation to visual acuity in diabetic patients.

OBJECTIVE: To assess the perifoveal microcirculation in diabetic maculopathy without clinically significant macular edema and its relationship to visual acuity. DESIGN: Prospective analysis. SETTING: A teaching hospital. PATIENTS: Fifteen patients with impaired visual acuity of 20/50 or worse, a diabetic control population with unaffected visual acuity (matched age, gender, retinopathy stage), and 52 healthy controls were enrolled. INTERVENTIONS: Study consisted of video-fluorescein angiography with image analyses and hemoglobin A1c measurements. MAIN OUTCOME MEASURES: Macular capillary blood velocity, capillary density (perifoveal intercapillary area), and foveal avascular zone. RESULTS: The capillary blood velocity was significantly reduced in both diabetic groups (P < .001) when compared with healthy controls, but did not differ significantly among the two diabetic groups. The perifoveal intercapillary area and foveal avascular zone were significantly enlarged in both diabetic groups compared with healthy controls (P < .001). The foveal avascular zone (P < .01) and perifoveal intercapillary area (P = .01) were further enlarged in the diabetics with reduced visual acuity. The visual acuity correlated significantly with foveal avascular zone (R2 = .51) and perifoveal intercapillary area (R2 = .24), indicating an association between enlargement and declined visual acuity. CONCLUSIONS: Capillary blood velocity remained unchanged regardless of presence of visual impairment, whereas foveal avascular zone and perifoveal intercapillary area indicated ischemia. This may help in defining a critical hypoxic threshold for visual loss and identifying the presence of an ischemic diabetic maculopathy.

Adult↗

Macular capillary particle velocities: a blue field and scanning laser comparison.

BACKGROUND: Two different techniques are available for measurement of macular capillary particle velocities. The psychophysical blue field simulation technique gives data on macular leukocyte flow velocities, while the scanning laser technique provides information on capillary blood velocities of hypofluorescent segments in the macular network. Published velocity data differ considerably between the two methods. The current study was undertaken to compare the two measuring techniques in a group of healthy volunteers. METHODS: Thirty-two healthy subjects (12 man, 20 women, mean age 27 years) participated in this study. All subjects underwent entoptic leukocyte visualization by means of blue field simulation followed by fluorescein angiography using scanning laser ophthalmoscopy. RESULTS: The capillary blood velocities measured using the scanning laser technique were significantly higher (P < 0.01) than the flow velocities estimated with the blue field simulation technique (2.68 +/- 0.3 mm/s vs 0.89 +/- 0.2 mm/s). No significant correlation between the flow velocities was found (r = -0.22). CONCLUSION: The differences may be related to different measuring locations and/or measurements of different phenomena. The blue field technique estimates average leukocyte flow in the macular network, whereas the scanning laser technique quantifies the velocity of erythrocyte aggregates in the capillary lumen of the para- and perifoveal network. A combination of both techniques may be helpful in interpreting physiological responsiveness and altered velocity pattern in diseased eyes.

Adult↗

[Retinal hemodynamics in patients with hyperviscosity syndrome].

BACKGROUND: The hyperviscosity syndrome (e.g. plasmacytoma, cryoglobulinaemia and Waldenström's macroglobulinaemia) leads through the polymerisation of macro-molecules to an increased blood viscosity. This may result in microcirculatory disturbances in various organs. In the retina the hyperviscosity produces a pattern of retinal changes including dot and blot hemorrhages, retinal and optic nerve head edema and increased diameters of the veins. In the present study we quantified the retinal hemodynamic in patients with hyperviscosity syndrome. PATIENTS AND METHODS: Fifteen patients aged between 35 and 72 years were included in the study. Ten presented with Waldenström's macroglobulinaemia, two with cryoglobulinaemia and three with plasmacytoma. All patients underwent video fluorescein angiographic studies. The arteriovenous passage time (AVP) representing the retinal microcirculation and the arm retina time (ART) were quantified from the angiograms. In addition, hematocrit (Hct) and the plasma viscosity (ETA) were measured. RESULTS: The AVP was significantly prolonged in patients with hyperviscosity syndrome in comparison to healthy volunteers (AVP: 2.6 +/- 1.5 s vs. 1.6 +/- 0.4 s; p < 0.05). The ART showed no significant differences. Plasma viscosity was doubled in the patients as compared with reference values (ETA: 2.54 +/- 2.23 mPas vs. 1.24 +/- 0.08 mPas; p < 0.01). CONCLUSIONS: The simultaneous rising of plasmaviscosity and arteriovenous passage time suggests that the increase of plasmaviscosity causes retinal circulatory disturbance. All this may result in the typical fundus changes in patients with hyperviscosity syndrome.

Adult↗

CO2 dependence of retinal arterial and capillary blood velocity.

OBJECTIVE: Blood flow to the brain is extremely sensitive to changes in PCO2. While animal studies show a similar potent PCO2 dependence in retinal and choroidal vessels, the PCO2-retinal blood flow relationship has never been adequately studied in humans. METHODS: Video scanning laser ophthalmoscopy after fluorescein angiography was used to analyze retinal arterial and capillary blood velocity under conditions of mild hypercapnia and hypocapnia. Control conditions (end-tidal PCO2 = 38.3 +/- 0.4 mmHg) were contrasted with hyperventilation-induced hypocapnia (PCO2 = 34.0 +/- 0.4 mmHg) and hypercapnia (PCO2 = 42.3 +/- 0.5 mmHg) created by PCO2 addition to inspired gas. RESULTS: Both larger vessel and macular capillary blood velocity was dependent upon PCO2: arteriovenous passage time fell as PCO2 rose, and both mean arterial dye velocity and capillary blood velocity rose as PCO2 rose (all p < 0.05). These changes in flow velocity occurred despite unchanged heart rate, arterial systolic and diastolic blood pressure, intraocular pressure, and calculated ocular perfusion pressure. Contrast sensitivity was also unchanged by PCO2 variation. CONCLUSIONS: The human retinal circulation, like the whole cerebral circulation, may be strongly dependent upon PCO2 in a manner that is unrelated to perfusion pressure and apparently outside strict autoregulatory controls.

Adult↗

Macular microcirculation in cystoid maculopathy of diabetic patients.

BACKGROUND: In patients with diabetic macular oedema and central cysts ischaemia of the retina appears to be an important contributing factor in the pathogenesis of cysts. This study was performed to further elucidate the role of the inner retinal microcirculation in diabetic cystoid macular oedema (CMO). METHODS: Video fluorescein angiography allows visualisation of the macular microvasculature and measurements of the capillary blood velocity (CBV), foveal avascular zone (FAZ), and perifoveal intercapillary area (PIA, characterising capillary density). RESULTS: Twenty three diabetic subjects with CMO, matched diabetic patients without macular oedema (n = 23), and healthy subjects (n = 23) were included. CBV, PIA, and FAZ did not differ significantly among diabetic groups regardless of presence of cystoid changes. CBV was significantly reduced (p < 0.0001) and PIA was more than doubled in both diabetic groups (p < 0.0001) when compared with healthy subjects. Furthermore, FAZ showed a nearly doubled size in diabetic patients without macular oedema (p < 0.01) and a less pronounced enlargement (by 29%) in diabetics with CMO (p < 0.05). CONCLUSION: The results indicate that the retinal microcirculation in diabetic patients is markedly altered when compared with healthy subjects, regardless of CMO presence. In CMO patients the microcirculatory changes are similar to those of diabetic patients without macular oedema. Thus inner retinal perfusion does not contribute to tissue ischaemia leading to cystoid formations in diabetic maculopathy.

Adult↗

Digital imaging of central serous retinopathy using infrared illumination.

When used with an infrared laser, scanning laser technology allows imaging of subretinal structures. In the indirect mode (scattered light), drusen, subretinal edema, and other changes in the retinal pigment epithelial complex can easily be visualized as pseudoprominent structures. This study was undertaken to determine the role of infrared imaging in central serous retinopathy. A total of 22 patients affected by acute central serous retinopathy were recruited for the study. All patients underwent fluorescein angiography (488 nm) and infrared imaging (788 nm) using a scanning laser ophthalmoscope (SLO 101; Rodenstock). The confocal mode was used for the fluorescein angiography, but the indirect mode was applied for infrared imaging. In all patients, serous detachment could be visualized by infrared imaging as pseudoprominent, oval-shaped structures. The size was at least one disk diameter and correspondend very well to the clinical appearance. In all patients, late-phase (20 min) fluorescein studies revealed the typical focal leakage with progressive hyperfluorescence. In six patients (27%) the extent of the serous detachment could be seen in a slightly hyperfluorescent rim. Digital image analysis showed that the extent of the serous detachment in the fluorescein angiogram was similar to the size of the thickened structures in the infrared image (r2 = 0.94). This initial study suggests that noninvasive infrared imaging can be a very useful indicator of serous detachment. Further studies regarding the influence of medical or laser treatment must be carried out to prove the clinical relevance.

Acute Disease↗

Indocyanine green angiography in traumatic choroidal rupture: clinicoangiographic case reports.

Blunt trauma to the eye can cause choroidal ruptures. Often localization is obscured by hemorrhages, edema, and pigmentary changes. The use of indocyanine green (ICG) angiography to supplement fluorescein angiography in visualizing retinal and choroidal tissues was investigated. Three patients with acute traumatic choroidal ruptures received a retinal examination, including fluorescein and ICG angiography study. Choroidal ruptures were well localized in ICG angiograms in both early and late phases. In fluorescein angiograms, the defects were underestimated in early phases and overestimated in the later phases. In one patient with severe traumatic changes, ophthalmoscopy and fluorescein angiography identified all superficial splits, whereas ICG angiography readily detected deeper changes as well. ICG angiography is helpful in diagnosis major and minor ruptures of the choriocapillaris and the choroid, in defining the extent of traumatic ruptures, and in furthering the understanding of the pathology of traumatic ruptures, and in furthering the understanding of the pathology of traumatic tears.

Adolescent↗

Retinal hemodynamics in patients with chronic open-angle glaucoma.

Recently it has been demonstrated that retinal hemodynamics are disturbed in patients with chronic open-angle glaucoma. As the underlying cause a reduction in perfusion pressure due to increased intraocular pressure (IOP) and deficiencies of retinal autoregulation has been discussed. The present study was undertaken to clarify the influence of filtering surgery on retinal hemodynamics in patients with chronic open-angle glaucoma. A total of 17 patients with chronic open-angle glaucoma aged between 37 and 86 years were included in this prospective study. All patients underwent digital fluorescein angiography before and 10 days after fistulating procedures. From the angiograms the arteriovenous passage time (AVP) and arterial mean dye-bolus velocity (MDV) were quantified by means of digital picture analysis. At baseline the AVP was significantly prolonged in the patients as compared with reference values (AVP, 2.5 +/- 0.8 versus 1.6 +/- 0.4 s; P < 0.01). After the fistulating procedure (IOP: before, 29 +/- 5 mmHg; after, 16 +/- 4 mmHg) the AVP was significantly reduced as compared with baseline values (AVP, 2.5 +/- 0.8 versus 2.0 +/- 0.4 s; P < 0.05), whereas the MDV showed only a slight increase (MDV, 5.70 +/- 0.89 versus 5.99 +/- 0.92 mm/s; P > 0.05). This study confirms a disturbance of retinal hemodynamics in patients with chronic open-angle glaucoma. The significant reduction in AVP observed after lowering of the IOP by fistulating procedures demonstrates the positive influence of IOP reduction on the retinal circulation. The improvement in retinal circulation may prevent the occurrence of further glaucomatous damage after fistulating procedures.

Adult↗

In vivo measurement of lipofuscin in Stargardt's disease--Fundus flavimaculatus.

PURPOSE: Several histopathologic studies have concluded that Stargardt's disease (Fundus flavimaculatus) is associated with abnormally high levels of lipofuscin-like material in the retinal pigment epithelium. The purpose of this study was to determine whether this material has the same fluorescence characteristics as lipofuscin in vivo and whether noninvasive measurements identify a significant elevation in this material. METHODS: Five patients with autosomal recessive Stargardt's disease were included in this study, as were 45 healthy controls. All patients had the angiographic dark choroid sign. The intensity and emission spectra of lipofuscin fluorescence were measured by noninvasive fundus spectrophotometry at 7 degrees temporal to the fovea. RESULTS: The fluorescence intensities in the five patients with Stargardt's disease were significantly higher (P < 0.0001) than those observed in normal subjects of the same age. The emission spectra in the patients are similar in shape to those measured in normals, but flecks appear to shift the spectra toward shorter wavelengths. CONCLUSIONS: The spectral characteristics of the fluorophore observed in patients with Stargardt's disease are consistent with those of retinal pigment epithelial lipofuscin. These patients have abnormally high levels of lipofuscin, confirming previous histopathologic observations. Noninvasive retinal pigment epithelial lipofuscin measurements may be a useful adjunct in the diagnosis of Stargardt's disease.-F. flavimaculatus.

Adolescent↗

Quantification of cystoid changes in diabetic maculopathy.

PURPOSE: In patients with diabetic macular edema and cysts, quantification of the extent of the cystoid formation has been difficult. This study was performed to introduce reliable measurements of cysts, the quantification of the extent, and its relation to visual acuity. METHODS: Fluorescein angiography generated with a scanning laser ophthalmoscope provided detailed recognition not only of the foveal microvasculature, but also of well-demarcated cystoid formations in the early phases. The sampling area included the central 2.5 degrees of the fovea. Using digital image analysis, two independent observers estimated the area covered by cysts, the number of cysts, and the foveal avascular zone (FAZ). RESULTS: Twenty-three subjects with diabetes and macular cysts were enrolled in the current study. The mean area of the cysts was 0.315 +/- 0.241 mm2 (0.05 mm2 to 0.9 mm2), and the number of cysts ranged from 1 to 7. Both parameters, area of cysts (r2 = 0.61), and number of cysts (r2 = 0.48) showed a significant correlation with visual acuity (P < 0.01), whereas FAZ (0.08 to 0.58 mm2) showed no significant correlation with visual acuity. CONCLUSIONS: Fluorescein angiography allows a reproducible quantification of the extent of macular cysts. The relation of visual acuity to the number of cysts and to the area covered by the cystoid formation is highly significant. Thus, both these measures can provide an objective criterion for the estimation of visual prognosis and an outcome for evaluation therapy techniques.

Adult↗