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Posterior Vitreous Detachment clinical trials

View clinical trials related to Posterior Vitreous Detachment.

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NCT ID: NCT04727398 Recruiting - Clinical trials for Posterior Vitreous Detachment

The Incidence of Complete Posterior Vitreous Degeneration After Phacoemulsification

Start date: September 3, 2021
Phase: N/A
Study type: Interventional

Intraocular surgery could induce vitreous degeneration and then abnormal posterior vitreous detachment (PVD) could occur including vitreoschisis and partial-thickness PVD. Vitreomacular interface (VMI) abnormalities such as epimacular membrane were observed following many intraocular surgeries. The incidence of peripheral break and epimacular membrane (EMM) after pneumatic retinopexy were 11.7% and 4-11%, respectively. Although multiple intravitreal anti-vascular endothelial growth factor (anti-VEGF) injections induced PVD of 5.6%, but peripheral break was reported as only 0.67%. The incidence of rhegmatogenous retinal detachment (RRD) after phacoemulsification is gradually increased with time. The accumulative risk of RRD was increased from 0.27% at 1 year to 1.27% at 20 years after phacoemulsification.

NCT ID: NCT04719871 Recruiting - Glaucoma Clinical Trials

Vitreous Detachment and Glaucoma Progression

REVEAL
Start date: October 1, 2020
Phase:
Study type: Observational

Posterior vitreous detachment is a common event. With optical coherence tomography, the investigators can precisely follow the stage of posterior vitrous detachment. In this study, the investigators investigate if the loss of contact between the vitreous and the fovea is the start of glaucoma progression.

NCT ID: NCT02290795 Recruiting - Glaucoma Clinical Trials

Vitreopapillary Interface and Optic Disc Morphology

Start date: November 2014
Phase: N/A
Study type: Observational

The vitreous fills the posterior chamber of the eye and is firmly attached, at the posterior pole, to the macula and the optic nerve head (ONH). With formation of a stepwise posterior vitreous detachment (PVD) exerted tractional forces could influence retinal functioning. Especially in patients with glaucoma the influence of vitreous traction to the ONH could mask progression, interfere with current imaging techniques and even be a cause of ONH hemorrhages. Therefore the aim of this study is to investigate whether vitreopapillary traction has a significant effect on diagnosis and follow up of glaucoma patients.