scholarly journals Treatment of Vitreomacular Traction with Intravitreal Injection of Perfluoropropane

2020 ◽  
Vol 75 (4) ◽  
pp. 182-187
Author(s):  
Miroslav Veith

Purpose: To evaluate the effect of one intravitreal injection of expansile gas in the treatment of vitreomacular traction (VMT). Methods: A retrospective review of eyes with VMT treated with singl injection of 0,3 ml of 100% C3F8 gas was performed. The procedure was performed on an outpatient basis under topical anesthesia. Results: Twelve consecutive patient (14 eyes) with symptomatic VMT underwent pneumatic vitreolysis. Mean extend of vitreomacular adhesion was 490,5 µm (408-751). A posterior vitreous detachment developed in 13 eyes (92,9 %) after a single gas injection, in 11 eyes (84,6 %) during the first month of follow-up, in 2 eyes within two month of injection. Mean baseline and last BCVA were 0,5 (0,16-0,18) and 0,67 (0,2-1,0) respectively (p < 0,001). Mean folow-up time was 5,8 (1-16) months. The procedure was also successful in two eyes, which where previously unsuccessfuly treated with ocriplasmin. One eye formed a macular hole. There were no other complication. Conclucion: Intravitreal injection of C3F8 is an effective, safe and inexpensive therapy of vitreomacular traction.

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Josef Guber ◽  
Celine Rusch ◽  
Ivo Guber ◽  
Hendrik P. N. Scholl ◽  
Christophe Valmaggia

AbstractTo evaluate the indications and outcomes of perfluoropropane (C3F8) gas injection for symptomatic vitreomacular traction (VMT). A retrospective analysis of eyes with VMT treated with 0.3 mL of C3F8 gas was performed. Patients were not asked to posture after gas injection. In phakic patients, cataract surgery was performed simultaneously. Patients were examined after one week and one month postoperatively. Twenty-nine consecutive eyes of 26 patients with symptomatic VMT who underwent pneumatic vitreolysis were included. A complete posterior vitreous detachment was achieved in 18 eyes (62.1%) after a single gas injection at the final visit. The rate of posterior vitreous detachment was reduced significantly with the presence of epiretinal membrane (ERM) (p = 0.003). Three eyes formed a macular hole (MH) postoperatively and another eye developed a retinal detachment. Mean visual acuity increased significantly after one month (p < 0.008). Pneumatic vitreolysis is a viable option for treating VMT with few adverse events. Patient with concomitant ERM had a significantly lower success rate.


2011 ◽  
Vol 05 (01) ◽  
pp. 69 ◽  
Author(s):  
Paolo Carpineto ◽  
Luca Di Antonio ◽  
Agbeanda Aharrh-Gnama ◽  
Vincenzo Ciciarelli ◽  
Leonardo Mastropasqua ◽  
...  

Perifoveal vitreous detachment with residual vitreofoveal adhesion is considered as the first stage of posterior vitreous detachment. A key point is the transition from an innocuous vitreomacular adhesion (VMA) to a pathological vitreomacular traction (VMT). By using optical coherence tomography (OCT), VMA is defined as adhesion of the posterior hyaloid cortex involving the centre of the foveal region with or without a hyper-reflective signal on the inner surface of the retina. VMT is diagnosed when the inner macular surface slopes steeply, or sharp angulation and localised deformation of the retinal profile is detected at the VMA site. Otherwise, VMA is simply considered to be persistent adherence of the cortical vitreous. The tractional effects of perifoveal vitreous detachment cause a variety of macular pathologies determined by the size and the strength of the residual vitreoretinal adhesion. Vitreomacular adhesion plays a major role in the development of diseases such as vitreomacular traction syndrome (VMTS), macular hole, epiretinal membrane, tractional macular oedema and myopic macular retinoschisis. In addition, clinical evidence supports the theory that the course of diabetic retinopathy and age-related macular degeneration may be strongly influenced by an incomplete posterior vitreous separation. The current standard of care of vitreomacular interface pathologies is vitrectomy and membrane peeling – a procedure that is thought to relieve epiretinal traction – followed by regeneration of the retinal architecture and recovery of visual function. Over the last few years, with the introduction of 25-gauge (0.50mm) and 23-gauge (0.72mm) instruments, there has been another major shift toward transconjunctival microincisional vitrectomy surgery (MIVS). Pharmacological induction of posterior vitreous detachment (PVD) can become a further step toward a real ‘minimally invasive vitreous surgery’ for VMTS.


2019 ◽  
Vol 10 (2) ◽  
pp. 195-199
Author(s):  
Kosuke Nagaoka ◽  
Satoru Inoda ◽  
Hidenori Takahashi ◽  
Yusuke Arai ◽  
Yuji Inoue ◽  
...  

We report a case of giant macular hole progression after rupture of giant retinal pigment epithelial detachment (PED). The patient was a 91-year-old man who had a giant PED in the left eye. He had bilateral hypermetropia (+2.00 dpt), and he had developed posterior vitreous detachment. The PED was 5,800 μm in diameter and 800 μm in height and ruptured during follow-up. A macular hole was formed, with a diameter of 400 μm, and the height of the PED had reduced to 360 μm. After 5 months, the macular hole expanded up to a diameter of 600 μm. Therefore, some cases of giant PED may lead to macular hole.


2017 ◽  
Vol 98 (5) ◽  
pp. 865-868
Author(s):  
D V Petrachkov ◽  
A V Zolotarev ◽  
P A Zamytskiy ◽  
E V Karlova ◽  
T A Podsevakina

To study the efficacy of pneumatic induction of posterior vitreous detachment for the treatment of vitreomacular traction syndrome, the analysis of the results of surgical treatment of 10 patients (10 eyes) with vitreomacular traction syndrome was performed, among them 8 patients (8 eyes) had an accompanied immature age-related cataract and 2 patients (2 eyes) - pseudophakia. The average age of the patients was 64.1±4.6 years, among them 8 women and 2 men. The mean best corrected visual acuity on admission was 0.31±0.15, the average length of vitreomacular adhesion and retina thickness in the fovea by optical coherence tomography were 289.3±75.4 and 367.5±50.3 μm, respectively. Patients with pseudophakia underwent pneumatic induction of the posterior vitreous detachment, and patients with cataract underwent the same surgery in combination with phacoemulsification of the cataract and intraocular lens implantation. Within 1 month of follow-up, all patients had a complete posterior vitreous detachment and increased best corrected visual acuity. Intraocular pressure remained normal throughout the follow-up period in 9 out of 10 patients, 1 patient experienced hypertension on day 1 after the surgery, which required decompression during the gas expansion period. Further on, intraocular pressure was normalized and did not require therapy. Pneumatic induction of posterior vitreous detachment is an effective method of treatment of vitreomacular traction syndrome, which allows eliminating vitreomacular traction; the combination of pneumatic induction of the posterior vitreous detachment with phacoemulsification of cataract allows avoiding hypertension during and after operation and avoiding performing vitrectomy.


Vitreomacular interface disorders consist of a series of diseases including vitreomacular adhesion, vitreomacular traction, macular hole, and epiretinal membrane formation. They occur due to the failed progression of normal posterior vitreous detachment. Affected patients may present with metamorphopsia and varying degrees of visual loss depending on the severity of foveal disturbance and disease duration. The aim of this review is to define the epidemiological characteristics of these groups of disorders which show an increased incidence and prevalence with age in parallel with the occurrence of posterior vitreous detachment.


Vitreomacular adhesions between the macula and the cortex may cause complications during the normal posterior vitreous detachment. These adhesions can affect a focal or wide area. Simple vitreomacular adhesion may not alter the macular anatomy. But sometimes these tractional forces can cause vitreomacular tractions with eye movements. This situation leads to distortion of the retina and foveal detachment. This review mentions the Vitreomacular Traction in the main aspects.


2015 ◽  
Vol 2015 ◽  
pp. 1-14 ◽  
Author(s):  
Alfredo García-Layana ◽  
José García-Arumí ◽  
José M. Ruiz-Moreno ◽  
Lluís Arias-Barquet ◽  
Francisco Cabrera-López ◽  
...  

The paper presents a review of the sequence of events of posterior vitreous detachment (PVD), vitreomacular adhesion (VMA), vitreomacular traction (VMT), and macular hole (MH) from their pathophysiological aspects, clinical features, diagnostic implications, and current management strategies. A treatment algorithm to be used in clinical practice in patients with VMA, VMT, and MH based on the presence of symptoms, visual acuity, associated epiretinal membrane, and width of the vitreous attachment is presented. Observation, pharmacologic vitreolysis with ocriplasmin, and surgical treatment are positioned as treatment options in the different steps of the therapeutic algorithm, with clear indications of the paths to be followed according to the initial presenting manifestations and the patient’s clinical course.


Author(s):  
Daniel A. Brinton ◽  
Charles P. Wilkinson

Evaluation of a patient for retinal detachment includes a thorough history and a complete ocular exam, including measurement of visual acuity, external examination, ocular motility testing, testing of pupillary reactions, anterior-segment biomicroscopy, tonometry, and binocular indirect ophthalmoscopy with scleral depression. Posterior-segment biomicroscopy, perimetry, and ultrasonography are also sometimes required. Rhegmatogenous retinal detachment is a diagnosis generally made by clinical examination of the retina alone, but a full history, ocular examination, and sometimes selected ancillary tests are also important parts of the evaluation (Figure 4–1). The symptoms of retinal detachment include fl ashes of light, new floaters, visual Field defect, decreased visual acuity, metamorphopsia, and rarely, defective color vision. The perception of light fl ashes, or photopsia, is due to the production of phosphenes by pathophysiologic stimulation of the retina. The retina is activated by light but is also capable of responding to mechanical disturbances. In fact, the most common cause of light fl ashes is posterior vitreous detachment. As the vitreous separates from the retinal surface, the retina is disturbed mechanically, stimulating a sensation of light. This perception is more marked if there are focal vitreoretinal adhesions. Generally, vitreous separation is benign and may almost be regarded as normal in the senescent eye. In approximately 12% of symptomatic posterior vitreous detachments, however, a careful search of the periphery reveals a tear of the retina. If the fl ashes are associated with floaters, it is wise to assume that a retinal tear exists, until proved otherwise. These symptoms demand a prompt and careful examination of the periphery with binocular indirect ophthalmoscopy and scleral indentation. The patient’s localization of the photopsia is of little value in predicting the location of the vitreoretinal pathology. If no breaks are evident in the first examination after symptomatic vitreous detachment, they rarely appear at a later date. If there is no associated hemorrhage or other pathologic condition, the patient needs counseling only. However, if pigment or blood is detected in the vitreous, a follow-up examination is often required. It is prudent to forewarn patients about the symptoms of retinal detachment. Flashes alone or floaters alone are less significant than if they occur together, in which case they are more likely to be associated with a retinal break.


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