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Mechanical characteristics of the porcine retina in low temperatures

机译:低温下猪视网膜的机械特性

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BACKGROUND: We previously observed that the stiffness of the porcine retina was significantly higher when deforming at room temperature than at body temperature. The present study further investigates this phenomenon by examining the mechanical properties of the retina in saline at temperature lower than room temperature. METHODS: Tensile testing was performed on a total of 15 retinal strips dissected from pig eyes. Equal amount of strips from the dissection were tested at 37.0 ± 0.3°C, 26.1 ± 0.1°C, and 7.8 ± 1.2°C. Their transition modulus, stress, and strain were measured for statistical analysis. RESULTS: The transition modulus, the transition stress, and the transition strain of the retinal strips were found to be 11.12 ± 6.10 kPa, 0.12 ± 0.07 kPa, and 0.016 ± 0.001, respectively, at 37.0°C. These values were 111.25 ± 88.16 kPa, 1.11 ± 0.85 kPa, and 0.016 ± 0.001 at 26.1°C, and 125.13 ± 63.61 kPa, 1.30 ± 0.50 kPa, and 0.017 ± 0.003 at 7.8°C, respectively. The differences of the transition modulus and the transition stress at between 37.0°C and 26.1°C and at between 37.0°C and 7.8°C were statistically significant (P < 0.05). There were no significant differences in these values at between 26.1°C and 7.8°C. CONCLUSION: These findings suggest that lowering the temperature of the retina from body temperature is potentially useful to decrease retinal damage in posterior eye surgeries by increasing the resistance of the retina to mechanical deformation.
机译:背景:我们以前观察到,在室温下变形时,猪视网膜的刚度明显高于在体温下。本研究通过在低于室温的温度下检查盐水中视网膜的机械性能,进一步研究了这种现象。方法:对从猪眼解剖的总共15条视网膜条进行拉伸测试。在37.0±0.3°C,26.1±0.1°C和7.8±1.2°C下测试了来自解剖的等量条带。测量它们的转变模量,应力和应变以进行统计分析。结果:在37.0°C下,视网膜带的转变模量,转变应力和转变应变分别为11.12±6.10 kPa,0.12±0.07 kPa和0.016±0.001。这些值在26.1°C下分别为111.25±88.16 kPa,1.11±0.85 kPa和0.016±0.001,在7.8°C下分别为125.13±63.61 kPa,1.30±0.50 kPa和0.017±0.003。在37.0°C和26.1°C之间以及37.0°C和7.8°C之间的转变模量和转变应力的差异具有统计学意义(P <0.05)。在26.1°C和7.8°C之间,这些值没有显着差异。结论:这些发现表明,从体温降低视网膜温度可能通过增加视网膜对机械变形的抵抗力来减少后眼手术中的视网膜损伤。

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