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At least 19 recordsLinked to original sources

Avulsed retinal veins without retinal breaks.

A localized segment of a retinal vein can be avulsed or torn from the retina by vitreous traction without a concurrent retinal break or tear. Eight eyes in eight patients (five women and three men, 20 to 69 years old) with avulsed retinal veins without retinal breaks showed a wide range of underlying retinal abnormalities, including background diabetic retinopathy, pars planitis, and involutional proliferative retinopathies. Such avulsed retinal veins often cause recurrent vitreous hemorrhage. Despite vitreous hemorrhages in six of the eight eyes, the visual prognoses were excellent in all eyes. An avulsed retinal vein must be considered in the differential diagnosis of those patients with proliferative retinopathies who have vitreous hemorrhage.

Adult

[Role of the vitreous in retinal neovascularization evaluated by a comparison of central retinal vein occlusion and branch retinal vein occlusion].

Thirty three patients (33 eyes) with central retinal vein occlusion (CRVO) and 80 patients (81 eyes) with branch retinal vein occlusion (BRVO) were studied in an attempt to investigate the role of the vitreous in the formation of retinal neovascularization. All these eyes had some areas of capillary nonperfusion confirmed by fluorescein angiography and no scatter photocoagulation before the first examination. The incidence of new vessels at the optic disc (NVD) in CRVO was not significantly different from that in BRVO. However, the incidence of new vessels elsewhere (NVE) in CRVO was significantly less than that in BRVO. Follow-up vitreous examination of 36 cases while they had not developed NVD and/or NVE showed a higher incidence of posterior vitreous detachment from the mid-peripheral retina (MP-PVD) in CRVO than in BRVO. On the other hand, there was no statistically significant difference in the incidence of posterior vitreous detachment from the optic disk (D-PVD) between CRVO and BRVO. The high incidence of MP-PVD in CRVO may explain the low incidence of NVE in CRVO.

Adult

Retinal vein occlusion.

Retinal vein occlusion is a common form of retinal vascular disease, especially in middle-aged and older individuals. The diagnosis is based on the funduscopic finding of retinal vein dilatation in association with retinal hemorrhages and cotton-wool spots. The pathology can involve the entire venous system or can be limited to a branch of the central retinal vein. Retinal vein occlusion can be distinguished clinically from diabetic retinopathy and other retinal diseases. Treatment for the acute phase of retinal vein occlusion has been disappointing. However, some late complications, such as persistent macular edema and neovascularization of the iris and retina, respond well to retinal photocoagulation. The family physician has an important role in detecting and controlling risk factors for retinal vein occlusion, including hypertension, diabetes mellitus and hyperviscosity syndromes.

Adult

Cases from the aerospace medicine residents' teaching file. Case #38. A navigator with nonischemic central retinal vein occlusion progressing to ischemic central retinal vein occlusion.

A case report of a young USAF navigator with nonischemic central retinal vein occlusion progressing to ischemic central retinal vein occlusion is presented. This young man was treated with hyperbaric oxygen therapy early in the course of his disease with complete resolution of his condition. Two years later his vision remained 20/17. This is the first known case of central retinal vein occlusion being treated with hyperbaric oxygen.

Adult

Acute onset of central retinal vein occlusion and retinal detachment.

The simultaneous occurrence of a central retinal vein occlusion and retinal detachment has not been previously reported. Although both are well recognized entities with characteristic appearances, their simultaneous acute onset led to a misdiagnosis in our case report. The need for a complete eye examination in the face of obvious pathology is stressed.

Humans

Optociliary veins and central retinal vein occlusion.

In a follow up of 94 patients with central retinal vein occlusion (CRVO) whose onset had taken place less than 1 year earlier, optociliary veins (OCVs) were found in 7.4% at first examination. Among the 79 eyes in which the fundus of the eye was very visible after a follow up of more than 1 year OCVs were found in 30.4%, showing a late development of OCVs in many cases of CRVO. No difference was found in the occurrence of OCVs between non-ischaemic and ischaemic forms of CRVO. The visual acuity of the eyes with CRVO that developed OCVs was not significantly different from the visual acuity of the eyes without OCVs. Thus, the presence of OCVs in CRVO does not seem to be associated with better visual prognosis.

Adolescent

[Retinal vein occlusion. I. Pathophysiology of thrombosis and etiopathogenesis of retinal vein occlusion].

The author submits contemporary views on thrombosis. In all intravascular thromboses three mechanisms participate in varying extents: humoral, i.e. haemocoagulation, fibrinolytic and thrombocyte disorders, disorders of the vascular wall and rheological and haemodynamic disorders resp. Mechanisms of thrombosis are interlinked, activation of one group as a rule does not lead to the development of a thrombus unless it is particularly intense. As a rule combination with another group of factors is necessary. In case of venous thrombosis a key role is played by a combination of stasis and activation of the blood clotting system. In the aetiopathogenesis of occlusion of the retinal vein the author considers impairment of the vascular wall the key factor which leads to changes of the rheological conditions which predispose to thrombosis. The author describes the so-called critical retardation of the blood flow in the retinal vein as the critical level of changed rheological condition humoral factors begin to play a clinical role when in thrombogenesis. On this predisposed background humoral factors act and the result is occlusion of the retinal vein. The author considers occlusion proper a process which develops for a long time and the occlusion of the retinal vein is the final link of a long and very complicated process which is multifactorial and very variable.

Humans

[Retinal vein occlusion. III. Initial experience with therapy of retinal vein occlusion with an argon laser].

The authors report the results of laser treatment in 11 patients with chronic oedema of the macula and 6 patients with neovascularizations of the retina and disk of the optic nerve in occlusion of a branch of the retinal vein. In the treatment of chronic oedema of the macula they used their own modification of quadrant barrage suggested by L'Esperance and grid photocoagulation. After a mean follow up period of 3.2 years they achieved a resulting vision of 6/12 or better in 9 of 11 patients, i.e. in 82%, the poorest results were 6/18 in two patients of 11, i.e. in 18%. In the treatment of neovascularizations they used the method of sector photocoagulation. In all six patients, i.e. in 100% they observed regression of neovascularizations. During 2.5-3 years after photocoagulation they did not observe a relapse of neovascularization or haemorrhage into the vitreous body. The results of photocoagulation treatment in chronic oedema of the macula and treatment of neovascularization are of a long-term character.

Fluorescein Angiography

Central retinal vein occlusion associated with retinal arteriovenous malformation.

PURPOSE/BACKGROUND: Retinal arteriovenous malformations can be seen in a variety of ways and have multiple, associated, ocular changes that can affect vision. The authors report two cases of retinal arteriovenous malformation. In each case, a central retinal vein occlusion developed. METHODS: Each patient underwent clinical examination and fluorescein angiography. One patient was followed over a long period of time. CONCLUSION: The authors propose that a turbulent flow, high intravascular volume, and arteriolar pressure in the venous side of the retinal arteriovenous malformation may lead to vessel wall damage, thrombosis, and occlusion. They also suggest that compression of the central retinal vein by the mass effect of the arteriovenous malformation on the optic nerve further leads to turbulence and thrombosis.

Arteriovenous Malformations

Hemi-central retinal vein occlusion. Pathogenesis, clinical features, natural history and incidence of dual trunk central retinal vein.

It has been shown that dual trunk central retinal vein (CRV) occurs in 20.3 per cent of a normal population. Confirmatory evidence has been produced by the results of anatomical, histological and micro-dissection studies. Occlusion of the single trunk of such a vein in its retrolaminar, or intraneural part, would result in a venous occlusion affecting one-half of the retina similar to that of branch retinal vein occlusion (BRVO). Yet this should be regarded as a variation of CRVO. Visual prognosis seems to be better in hemi-central retinal venous occlusion than in total CRVO. The site of development of collateral gives a clue to the site of the occlusion. Therefore, it is suggested that hemi-CRVO is a distinct entity and should not be confused with so-called hemi-spherical vein occlusion which is a variation of BRVO.

Aged

Characteristics of the hemispheric retinal vein occlusion.

Hemispheric retinal vein occlusions involve the venous return from approximately one-half of the retina and have characteristics of both central retinal vein occlusions and branch retinal vein occlusions. One hundred six such occlusions were studied in 104 patients whose average age was 66 years. The site of the hemispheric vein occlusion was located in a branch retinal vein in 90% of the eyes, and in 10% of the eyes it was located in one of the dual intraneural trunks of the central retinal vein. Of these eyes, 11% developed neovascularization of the disc, 9% developed neovascularization of the retina elsewhere, 9% developed neovascularization of the iris, and 3% developed neovascular glaucoma. Neovascularization was positively correlated with an increasing percentage of capillary nonperfusion (ischemic index) within the area of occlusion. Prophylactic argon laser treatment was effective in reducing the incidence of neovascularization in eyes with significant capillary nonperfusion.

Adult

Management of retinal vein occlusion.

Retinal vein occlusion is a common cause of visual loss. The clinical features, pathogenesis, aetiology and management of this condition are presented and discussed. It is an advantage to involve both the physician and the ophthalmologist in the management of the condition.

Comorbidity

Does type II diabetes predispose to retinal vein occlusion?

Retinal vein occlusion (RVO) not infrequently occurs in diabetic patients. Although the aetiology is unclear, it could relate to the other microvascular complications of diabetes. In the non-diabetic, both the central (CRVO) and branch (BRVO) forms are commonly associated with hypertension and hyperlipidaemia. We have therefore studied fifty type II diabetic patients with RVO compared to a carefully matched diabetic control group (n = 50) to elucidate underlying medical conditions and hence the aetiology of RVO in diabetic patients. The two groups were well matched. Diabetics with RVO showed a strikingly high prevalence of hypertension compared to the controls (72% versus 32%: p < 0.001) and a trend to increased hyperlipidaemia (54% versus 36%). Diabetic microvascular complications were more common in the control group (diabetic retinopathy and proteinuria). No significant differences were observed in mean HbA1 or weight, but current smoking habits and blood pressure levels were increased in the diabetics with RVO. 80% of diabetic patients with the BRVO form, were hypertensive. We conclude that the main underlying medical conditions for RVO in diabetics are hypertension and hyperlipidaemia, and these may be important in the aetiology as in the non-diabetic. RVO is more common in type II rather than type I diabetes, and does not associate with the presence of diabetic microvascular complications. Clinical assessment for hypertension and hyperlipidaemia is therefore important in diabetic patients with RVO, especially if recurrence of the condition and further visual loss is to be prevented.

Adult