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角膜胶原交联联合飞秒激光辅助屈光性晶状体摘除模拟:离体生物力学效应评估

Corneal collagen cross-linking combined with simulation of femtosecond laser-assisted refractive lens extraction: an ex vivo biomechanical effect evaluation.

作者信息

Kanellopoulos Anastasios J, Kontos Mark A, Chen Shihao, Asimellis George

机构信息

*Laservision.gr Clinical and Research Eye Institute, Eye Institute, Athens, Greece; †New York University Medical School, New York, NY; ‡Empire Eye Physicians, Spokane, WA; and §Affiliated Eye Hospital of Wenzhou Medical University, Zhejiang, China.

出版信息

Cornea. 2015 May;34(5):550-6. doi: 10.1097/ICO.0000000000000376.

Abstract

PURPOSE

To evaluate biomechanical changes induced by in situ corneal cross-linking (CXL) with stromal pocket delivered enhanced concentration riboflavin and high-fluence, high-energy UV-A irradiation.

METHODS

Eight human donor corneas were subjected to intrastromal lamellar corneal tissue removal of anterior 140-μm deep, 80-μm thick × 5-mm diameter central stromal buttons, extracted through a 3.5-mm width tunnel, surfacing in the superior cornea periphery. Enhanced concentration riboflavin solution (0.25%) was instilled in the pocket. In study group A (CXL), superficial high-fluence UV-A irradiation was applied, whereas in control group B (no CXL), none. To comparatively assess changes in corneal rigidity, corneal specimens were subjected to transverse biaxial resistance measurements by application of a unidirectional tangential shear force. Biomechanical differences were evaluated through stress and Young shear modulus.

RESULTS

Stress at 10% strain was 305 ± 24 kPa in study group A versus 157 ± 11 kPa in control group B (relative difference Δ = 107%, P = 0.021). Stress at 20% strain was 1284 ± 34 kPa in study group A versus 874 ± 29 kPa in control group B (Δ = 47%, P = 0.043). Average shear modulus in study group A at 10% strain was 6.98 ± 1.12 MPa versus 4.04 ± 0.85 MPa in control group B (Δ = 73%, P = 0.036). Average shear modulus in study group A at 20% strain was 11.46 ± 0.75 MPa versus 8.80 ± 0.72 MPa in group B (Δ = 30%, P = 0.047).

CONCLUSIONS

Adjunct CXL in this ex vivo simulation refractive lens extraction procedure seems to provide significant increase in corneal rigidity, up to +107%. These findings also support our previous reported work on laser in situ keratomileusis combined with CXL.

摘要

目的

评估通过基质袋递送高浓度核黄素和高能量、高辐照度紫外线A(UV-A)照射进行原位角膜交联(CXL)所引起的生物力学变化。

方法

对8只人供体角膜进行基质内板层角膜组织切除,切除深度为前140μm、厚度为80μm、直径为5mm的中央基质纽扣,通过3.5mm宽的隧道取出,位于角膜上缘周边。将高浓度核黄素溶液(0.25%)滴入袋中。在研究组A(CXL组)中,进行表面高辐照度UV-A照射,而在对照组B(非CXL组)中不进行照射。为了比较评估角膜硬度的变化,通过施加单向切向剪切力对角膜标本进行横向双轴阻力测量。通过应力和杨氏剪切模量评估生物力学差异。

结果

研究组A在10%应变时的应力为305±24kPa,而对照组B为157±11kPa(相对差异Δ=107%,P=0.021)。研究组A在20%应变时的应力为1284±34kPa,而对照组B为874±29kPa(Δ=47%,P=0.043)。研究组A在10%应变时的平均剪切模量为6.98±1.12MPa,而对照组B为4.04±0.85MPa(Δ=73%,P=0.036)。研究组A在20%应变时的平均剪切模量为11.46±0.75MPa,而B组为8.80±0.72MPa(Δ=30%,P=0.047)。

结论

在这种体外模拟屈光性晶状体摘除手术中辅助进行CXL似乎能使角膜硬度显著增加,增幅高达+107%。这些发现也支持了我们之前报道的关于准分子原位角膜磨镶术联合CXL的研究工作。

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