This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the biomechanical response to ex vivo uniaxial tests of the human sclera. Scleral strips were collected from two enucleated eyes with markedly different axial length (AXL) of 24 and 31 mm, respectively. Static stress measurements under uniaxial loading were carried out with a Zwicki-Line testing machine, specially designed for low load mechanical testing applications. Although all uniaxial stress-strain curves showed an exponential response typical of biological viscoelastic materials loaded within the physiological strain range, the qualitative behavior was ostensibly different between the two eyes. With respect to the 24 mm AXL eye, th...
The study aimed to determine the variation in thickness and biomechanical properties between the dif...
The purpose of this study was to examine the effects of myopia-inducing and myopia recovery conditio...
Exogenous collagen cross-linking has been investigated as method of reinforcing scleral biomechanics...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the ...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the ...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the ...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the b...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the b...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the b...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the b...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the b...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the b...
Excessive axial elongation of the eye is the principal structural cause of myopia. The increase in e...
PURPOSE: To investigate the relationship between scleral mechanical properties, its birefringence, a...
The study aimed to determine the variation in thickness and biomechanical properties between the dif...
The study aimed to determine the variation in thickness and biomechanical properties between the dif...
The purpose of this study was to examine the effects of myopia-inducing and myopia recovery conditio...
Exogenous collagen cross-linking has been investigated as method of reinforcing scleral biomechanics...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the ...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the ...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the ...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the b...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the b...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the b...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the b...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the b...
This study aims at assessing the differences between highly myopic eyes and emmetropic eyes in the b...
Excessive axial elongation of the eye is the principal structural cause of myopia. The increase in e...
PURPOSE: To investigate the relationship between scleral mechanical properties, its birefringence, a...
The study aimed to determine the variation in thickness and biomechanical properties between the dif...
The study aimed to determine the variation in thickness and biomechanical properties between the dif...
The purpose of this study was to examine the effects of myopia-inducing and myopia recovery conditio...
Exogenous collagen cross-linking has been investigated as method of reinforcing scleral biomechanics...