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使用新型高超声玻璃体切割系统进行玻璃体切割术后的超微结构和组织病理学发现。定性初步评估。

Ultrastructural and histopathologic findings after pars plana vitrectomy with a new hypersonic vitrector system. Qualitative preliminary assessment.

作者信息

Pastor-Idoate Salvador, Bonshek Richard, Irion Luciane, Zambrano Isaac, Carlin Paul, Mironov Aleksandr, Bishop Paul, McLeod David, Stanga Paulo Eduardo

机构信息

Manchester Royal Eye Hospital, Central Manchester University Hospitals NHS Foundation Trust, Manchester Academic Health Science Centre, Manchester, United Kingdom.

Manchester Vision Regeneration (MVR) Lab at Manchester Royal Eye Hospital and NIHR/ Wellcome Trust Manchester CRF, Manchester, United Kingdom.

出版信息

PLoS One. 2017 Apr 11;12(4):e0173883. doi: 10.1371/journal.pone.0173883. eCollection 2017.

Abstract

PURPOSE

Preliminary assessment of a new prototype ultrasound-based hypersonic vitrector (HV) by qualitatively examining the histopathological changes in the retina and vitreous body after pars plana vitrectomy (PPV) and its ability to fragment vitreous collagen.

METHODS

Fourteen porcine cadaveric eyes, 20 eyes in live swine and six human cadaveric eyes underwent PPV using the HV or a pneumatic guillotine vitrector (GV). An additional 4 porcine crystalline lenses were touched with either the HV or GV for 1 minute. Following PPV, human vitreous was removed and processed for electron microscopy (EM). Eyes and lenses were fixed and sectioned for light microscopy (LM).

RESULTS

There were no macroscopic retinal or optic nerve defects associated with either HV or GV PPVs. Cadaveric retinal specimens showed separation of the inner limiting membrane (ILM) and vacuolization and fragmentation at the nerve fiber layer (NFL) and the ganglion cell layer (GCL). ILM fragmentation and separation were found after PPV in live swine with both vitrectors. Small disruptions of the posterior capsule or structural lens defects were found after HV touch. The EM analysis revealed more fragmentation of human vitreous collagen fibrils after HV compared to GV PPV.

CONCLUSIONS

LM and EM analysis of retina, vitreous, and crystalline lens after PPV showed similar morphological changes using the HV or the GV. Vitreous fragmentation appeared more effective with the HV. Overall this study suggests that the HV may be a promising new technology. More work is needed to quantitatively assess its safety and efficacy.

摘要

目的

通过定性检查玻璃体切割术后视网膜和玻璃体的组织病理学变化及其破碎玻璃体胶原的能力,对一种新型基于超声的高超声玻璃体切割器(HV)原型进行初步评估。

方法

14只猪尸体眼、20只活猪眼和6只人尸体眼使用HV或气动断头台玻璃体切割器(GV)进行玻璃体切割术。另外4个猪晶状体分别用HV或GV接触1分钟。玻璃体切割术后,取出人玻璃体并进行电子显微镜(EM)检查。将眼和晶状体固定并切片进行光学显微镜(LM)检查。

结果

HV或GV玻璃体切割术后均未出现宏观视网膜或视神经缺陷。尸体视网膜标本显示内界膜(ILM)分离,神经纤维层(NFL)和神经节细胞层(GCL)出现空泡化和破碎。两种玻璃体切割器在活猪玻璃体切割术后均发现ILM破碎和分离。HV接触后发现晶状体后囊有小破裂或晶状体结构缺陷。EM分析显示,与GV玻璃体切割术相比,HV术后人玻璃体胶原纤维的破碎更多。

结论

玻璃体切割术后对视网膜、玻璃体和晶状体进行LM和EM分析表明,使用HV或GV会出现相似的形态学变化。HV的玻璃体破碎似乎更有效。总体而言,本研究表明HV可能是一项有前景的新技术。需要更多工作来定量评估其安全性和有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/521a/5388328/2edd042324c1/pone.0173883.g001.jpg

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