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Quantifying changes in lens biomechanical properties due to cold cataract with optical coherence elastography

机译:用光学相干弹性成像技术量化由于冷性白内障引起的晶状体生物力学性能变化

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Cataract is the most prevalent cause of visual impairment worldwide. Cataracts can be formed due to trauma, radiation, drug abuse, or low temperatures. Thus, early detection of cataract can be immensely helpful for preserving visual acuity by ensuring that the appropriate therapeutic procedures are performed at earlier stages of disease onset and progression. In this work, we utilized a phase-sensitive optical coherence elastography (OCE) system to quantify changes in biomechanical properties of porcine lenses in vitro with induced cold cataracts. The results show significant increase in lens Young's modulus due to formation of the cold cataract (from ~ 35 kPa to ~60 kPa). These results show that OCE can assess lenticular biomechanical properties and may be useful for detecting and, potentially, characterizing cataracts.
机译:白内障是全世界视力障碍最普遍的原因。白内障可能由于外伤,辐射,药物滥用或低温而形成。因此,通过确保在疾病发作和进展的较早阶段进行适当的治疗程序,白内障的早期发现对保持视力有很大帮助。在这项工作中,我们利用相敏光学相干弹性成像(OCE)系统来量化猪晶状体在体外引起的感性白内障的生物力学特性变化。结果表明,由于冷白内障的形成(从〜35 kPa到〜60 kPa),镜片的杨氏模量显着增加。这些结果表明,OCE可以评估双凸透镜的生物力学特性,并且可能对检测和潜在地表征白内障有用。

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