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A new strategy to replace the natural vitreous by a novel capsular artificial vitreous body with pressure-control valve.

机译:用具有压力控制阀的新型囊状人工玻璃体代替天然玻璃体的新策略。

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PURPOSE: The current vitreous substitutes such as silicone oil, heavy silicone oil, and polymeric gels that are directly injected into vitreous cavity frequently cause severe intraocular complications. There is a very urgent need to find a more suitable artificial vitreous substitute for pars plana vitrectomy (PPV) surgery.METHODS: We have devised a novel capsular artificial vitreous using tailor-made silicone rubber elastomer. The novel device was implanted into the vitreous cavity of rabbit after PPV and the eye was examined by ophthalmoscopy, fundus photography, and tonometry during an 8-week treatment period. B-scan ultrasonography, electroretinogram (ERG), and histological studies by light microscopy were also performed at the end of 8 weeks.RESULTS: The novel artificial vitreous body consists of a thin vitreous-like capsule with a silicone tube-valve system. The capsule can be folded and implanted into vitreous cavity through 1.5 mm incision on sclera. Physiological balanced solution (PBS) was then injected into the capsule and inflated to support retina and control intraocular pressure (IOP) through the tube-valve system subsequently fixed under the conjunctiva. Experiments using rabbits showed that the novel vitreous body could effectively support the retina and apparently induced no significant pathological changes in the eye over 8 weeks.CONCLUSION: This approach may provide a new research strategy in the vitreous replacement technology. The novel artificial vitreous body device can effectively support retina, control IOP, and has good biocompatibility. It may be a good alternative to injecting artificial vitreous although its tamponade properties and usefulness still have to be proven in complex vitreoretinal diseases.
机译:目的:目前的玻璃化替代品,例如硅油,重硅油和直接注入玻璃体腔的聚合物凝胶经常会引起严重的眼内并发症。迫切需要找到一种更合适的人工玻璃体替代物来进行平板玻璃体切除术(PPV)手术。方法:我们已经设计了一种使用定制的硅橡胶弹性体的新型胶囊人工玻璃体。在PPV植入后,将这种新型装置植入兔的玻璃体腔中,并在8周的治疗期内通过检眼镜,眼底照相和眼压计检查眼睛。在8周结束时还进行了B扫描超声检查,视网膜电图(ERG)以及光学显微镜的组织学研究。结果:新型人工玻璃体由玻璃体状的薄胶囊组成,并带有硅胶管阀系统。可将胶囊折叠并通过巩膜上的1.5 mm切口植入玻璃体腔。然后将生理平衡溶液(PBS)注入胶囊,并通过随后固定在结膜下的管阀系统充气以支持视网膜并控制眼压(IOP)。使用兔的实验表明,这种新型玻璃体可以有效地支撑视网膜,并且在8周内对眼睛没有明显的病理变化。结论:这种方法可能为玻璃体置换技术提供新的研究策略。该新型人工玻璃体装置可以有效地支撑视网膜,控制眼压,并具有良好的生物相容性。尽管它的填塞物特性和有用性仍必须在复杂的玻璃体视网膜疾病中得到证实,但它可能是注射人工玻璃体的好选择。

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