Wong D, Williams R L, German M J
St. Paul's Eye Unit, Royal Liverpool University Hospital, UK.
Graefes Arch Clin Exp Ophthalmol. 1998 Mar;236(3):234-7. doi: 10.1007/s004170050070.
The introduction of liquid perfluorocarbons as an intraoperative tool has greatly facilitated retinal re-apposition in giant retinal tears (GRT) and relieving retinotomies (RR). Slippage of the retina can occur during the exchange of heavy liquids for oil or gas, especially if the fill of perfluorocarbons is subtotal.
We have used a model eye chamber to study the surface interactions of perfluorodecalin (PFD) with silicone oil and air to evaluate possible mechanisms of slippage.
The results demonstrate that it is possible during a PFD/air exchange to trap a wedge of aqueous which is displaced laterally and forced posteriorly during removal of the PFD, whereas during a PFD/silicone oil exchange the remaining aqueous is displaced laterally and upwards and thus trapped above the silicone oil/PFD interface.
We believe that during PFD/air exchange the displacement of the aqueous posteriorly can cause slippage and that this could be avoided by performing a direct PFD/silicone oil exchange.
液态全氟碳化合物作为一种术中工具的引入,极大地促进了巨大视网膜裂孔(GRT)和松解性视网膜切开术(RR)中视网膜的重新复位。在将重液换成油或气体的过程中,视网膜可能会发生滑动,尤其是在全氟碳化合物填充不完全时。
我们使用了一个模型眼房来研究全氟萘烷(PFD)与硅油和空气之间的表面相互作用,以评估可能的滑动机制。
结果表明,在PFD/空气交换过程中,有可能捕获一个水楔,在去除PFD时,该水楔会横向移位并被向后挤压,而在PFD/硅油交换过程中,剩余的水会横向和向上移位,从而被困在硅油/PFD界面上方。
我们认为,在PFD/空气交换过程中,水的向后移位会导致滑动,而通过直接进行PFD/硅油交换可以避免这种情况。