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D Toubeau

Publications and source records attributed to D Toubeau.

4 recordsLinked to original sources

[Surgical management of nontraumatic corneal perforations: an 8-year retrospective study].

PURPOSE: Treatment of nontraumatic corneal perforation is a difficult task. The aim of our study was to retrospectively analyze predisposing conditions leading to perforation, surgical treatments, and visual outcomes. METHODS: Fifty-six patients were admitted in our department for a nontraumatic corneal perforation between 1997 and 2004. Mean patient age was 69 years (range, 16-95 years) and the mean follow-up was 20.5 months (range, 6-96 months). RESULTS: The diseases associated with perforations were neurotrophic ulcer in 24 cases (43%), peripheral immunologic ulcer in ten cases (18%), dry eye in six cases (11%), and infectious keratitis in seven cases (13%). All patients had specific adapted medical treatment before surgery. As a first procedure, we used cyanoacrylate glue in 14 cases (50% anatomic success), multilayer amniotic membrane transplantation in 23 cases (100% anatomic success), conjunctival flap in six cases, peripheral lamellar graft in three cases (33% anatomic success), emergency penetrating keratoplasty in 13 cases (31% anatomic success), and one patient's eye had to be eviscerated. Several surgical procedures were necessary in 16 cases (28%), nine patients needing total conjunctival flap at the end. We were able to achieve tectonic stability in 91% of eyes and 32% of patients recovered useful visual acuity between 20/400 and 20/50. CONCLUSION: Amniotic membrane transplantation is an effective method for managing corneal perforations and usually does not need a further reconstructive procedure. Visual outcome is poor when peripheral or central keratoplasty are needed. We recommend a conjunctival flap when descemetocele or perforation recurs despite previous surgical management.

Adolescent↗

[Advantages of amniotic membrane transplantation in eye surface diseases].

Amniotic membrane transplantation is now a widely adopted technique in the field of eye surface diseases. Depending on the indication, the amniotic membrane can be used as either a graft or a patch. When used as a graft, the amniotic membrane serves as a substrate for regrowth of deficient epithelium; the aim is to integrate this membrane. The basal membrane reinforces the adhesion and differentiation of the corneal epithelial cells, facilitates their migration, and prevents their apoptosis. When used as a patch, the amniotic membrane is sutured epithelium-down so as to maximize the concentration of biological factors delivered by this membrane: the membrane covers the diseased cornea and acts as a biological bandage and analgesic. The best indications for amniotic membrane grafts are acute chemical burns and trophic corneal ulcers refractory to all medical treatment. When these ulcers are perforated or in the early stages of perforation, it is best to use multiple layers of amniotic membrane, restoring the thickness of the cornea. In cases of confirmed limbal deficiency, amniotic membrane grafts may be a useful complement to the necessary limbal stem cell grafts. In the future, amniotic membranes will provide an indispensable support for the expansion of cultured stem cells. Amniotic membrane grafts may also be used to reconstruct the conjunctiva following the exeresis of symblepharons or conjunctival tumors. However, the use of this technique is currently limited to diseases with little inflammation and no extensive fibrosis.

Amnion↗

Analysing the various obstacles to cornea postmortem procurement.

AIMS: In many countries the number of corneal donations is far too low to graft all patients on waiting lists within reasonable time. The aim of this study was to define specifically what practical changes are to be implemented to fully meet corneal graft demand. METHODS: The list of potential donors drawn by the coordination team from 1 January to 31 December 1999 was compared with that of all patients who had died during the same period. In each identified record, the parameters which permitted or precluded effective collection of cornea specimens were analysed, and the reasons why other records were not identified were investigated. RESULTS: Among the 1112 patients who died in 1999, coordinating nurses were able to identify 451 records (40.5 %) including 329 patients aged between 18 and 85 years (29.5%). After excluding 184 patients (55.9 %) who presented with medical contraindications, the coordinating nurses were able to meet the relatives of only 55 out of 145 patients (38%) and obtained their agreement in 39 cases (71% approval rate). Therefore, relatives' refusal was the cause for the absence of collection in only 5.5% of cases (16/290). The number of corneas procured amounted to 11.8% of identified records and 3.5% of all deceased patients. CONCLUSION: French law and regulations regarding tissue collection are based on consent presumption but it requires that verifications be made with the relatives to ensure that potential donors were not, before their death, opposed to such tissue procurement. That provision implies a high degree of organisation on the part of coordinating teams. It was demonstrated that donation shortage is no longer the result of relatives' refusal but rather because of logistical difficulties (potential donors not identified and problems in reaching relatives). It appears necessary therefore to strengthen coordinating teams with sufficient staff levels for wider donor identification. Those teams should also find ways to keep closer contact with relatives, so as to meet the maximum transparency targets required by public opinion and regulations and to graft all patients awaiting corneal transplantation.

Adolescent↗

[Amniotic membrane graft in ocular surface disease. Prospective study with 31 cases].

INTRODUCTION: Amniotic membrane's unique combination of properties including the facilitation of migration of epithelial cells, the reinforcement of basal cellular adhesion and the encouragement of epithelial differentiation [6] together with its ability to modulate stromal scarring and its anti-inflammatory and anti-bacterial activity has led to its use in the treatment of ocular surface pathology as well as an adjunct to stem cell grafts of the corneal limbus [6-4]. We report a prospective study of 30 patients so treated. MATERIAL AND METHODS: We studied 31 eyes of 30 patients subjected to amniotic membrane grafts between September 1999 and May 2000. There were 25 men and 5 women with an average age of 60.1 (range 25-86) years who were followed for a mean of 7.7 (range 4-11) months. 5 groups (A to D) were observed: A: 6 eyes. Small chronic ulcers without limbal involvement. B: 4 eyes. Ulcers of at least 75% corneal area or occupying 75% of the limbus. C: 9 eyes. Corneal burns. D: 8 eyes. Painful bullous corneal dystrophies unresponsive to other treatment. E: 4 eyes. Symblepharons. Amniotic membrane was placed on the corneal lesion, epithelial surface externally [6, 15], trimmed and sutured with interrupted 10/0 nylon, removed at one month. In two patients (11, 12) inflamed conjunctiva was recessed and amnion sutured to the recessed margin. For the bullous dystrophies we removed all the corneal epithelium and either sutured the amnion to peri-limbal conjunctiva (4 eyes) or to the limbus (4 eyes). For the symblepharons the conjunctiva was dissected to reform the fornix which was lined with amniotic membrane, sutured with 8/0 vicryl. Patients were reviewed regularity. RESULTS: Group A: All healed within 15 days, in most with dissolution of the amnion over 2-3 months although some persisted, covered with corneal epithelium. An eye with a Descemetocoele and one with a microperforation both healed. Vision improved more than two lines in 4 of 6 eyes. Group B: 2 of 4 eyes healed, one despite detachment of the membrane after 15 days. One eye was salvaged by tarsorrhaphy over a fresh keratoplasty after perforation of a neuroparalytic ulcer on failure of three successive amnion grafts. The final cornea vascularised despite an amnion graft for a meta-herpetic ulcer. Group C: 2 of 9 eyes had limbal damage in one quadrant but 7 had vessels in at least three-quarters of the circumference. One (15) also had a limbal autograft. 3 of 9 eyes healed satisfactorily with more than 2/10 improvement in acuity in each case. 2 showed further neovascularisation despite surface healing. One old chemical burn healed satisfactorily but vascularisation remained 5 eyes failed to heal with lysis of the graft, the patient who had a limbal autograft developed a vascular pannus, and in 4 eyes neovascularisation progressed to cover the entire cornea. Group D: 3 eyes settled with loss of symptoms but in 5 the graft detached within 15 days. All eyes where the membrane had been sutured to the conjunctiva beyond the limbus failed whilst 3 of 4 in which it had been sutured anterior to the limbus succeeded, leaving a persistent whitish membrane under the epithelium. Group E: We were able to reconstruct the cul de sac in 3 out of 4 eyes. In one patient with recurrent pterygium good ocular movement was restored, previously limited by scarring. One with associated ocular surface damage from a thermal burn failed by scarring of the cul de sac a month after surgery. DISCUSSION: Our best results were in persistent trophic ulcers of the cornea (Groups A and B) with a success rate of 80%, comparable to those of others [49, 37, 38]. The ready availability of amniotic membrane in our facility makes amniotic membrane transplantation the main secondary treatment for such lesions, especially because of the visual improvement we obtained. Because we did not observe any improvement in corneal thickness after this treatment we advise its early use before significant stromal lysis. The technique was not sufficient to control the effect of corneal anaesthesia in two eyes [40] or in chemical burns suggesting that amniotic membrane alone is insufficient to promote corneal healing in the absence of limbal stem cells. Nevertheless, three eyes did benefit. It has been suggested [13] that the anti-apoptotic function of amnion may prevent stem cell loss in such eyes [42], thus it appears logical to offer an amniotic membrane graft first, before stem cell transplantation, which may entrain complications in the donor eye if autografted [43] or because of the rejection risk of an allograft. It may be that an amniotic membrane graft simply becomes a holding procedure allowing time to settle the eye so as to allow secondary procedures to address the underlying cause of further damage. Our treatment of bullous dystrophy only succeeded on confining the graft to within the limbus, 3 out of 4 eyes becoming comfortable. By contrast we found amniotic membrane helpful in reconstructing symblepharons in the absence of local inflammation. CONCLUSION: Amniotic membrane grafting is a simple and straightforward surgical technique which should form part of the therapeutic arsenal for the treatment of ocular surface disease. Indications for the technique need further clarification for it is evident that it cannot correct all secondary pathology associated with limbal destruction. It is certainly preferable to conjunctival advancement and has proved useful in the reconstruction of the cul-de-sac.

Adult↗