There has been a large amount of research focused on studying the biomechanical properties of the lens ex vivo. However, the storage medium of the lenses may affect the biomechanical evaluation during ex vivo measurements, which has been demonstrated with other tissues such as the cornea. In this work, we utilized a focused micro air-pulse and phase-sensitive optical coherence elastography to quantify the changes in lenticular biomechanical properties when incubated in different media, temperatures, and pHs for up to 24 hours. The results show that the lenses became stiffer when incubated at lower temperatures and higher pHs. Meanwhile, lenses incubated in M-199 were more mechanically stable than lenses incubated in PBS and DMEM
Thesis (Ph.D.)--University of Washington, 2021Optical coherence elastography (OCE) can provide clini...
Linear elastic properties of ex vivo porcine lenses were characterized by compression and indentatio...
The ability of the human lens to accommodate is mediated by the ciliary muscle and zonule; the manif...
There has been a large amount of research focused on studying the biomechanical properties of the le...
Maintaining a normal intraocular pressure (IOP) is important for visual health. Elevated IOPs have b...
Normal intraocular pressure (IOP) is crucial for proper maintaining of eye-globe geometry, ocular ti...
This dissertation reports on the application of optical coherence tomography (OCT) based elastograph...
The mechanical properties of the crystalline lens are crucial in determining the changes in lens sha...
The crystalline lens and cornea comprise the eye's optical system for focusing light in human vision...
This dissertation reports on the development of measurement methods to assess the biomechanical prop...
[[abstract]]Aim: To determine the viscoelastic properties of the porcine lens Methods: Linear visco...
Purpose: Optical coherence elastography (OCE) quantifies the tissue’s biomechanical properties throu...
Several methods have been proposed to assess changes in corneal biomechanical properties due to vari...
This dissertation reports the development of noncontact techniques to quantify the biomechanical pro...
The cornea is a highly specialised tissue with a unique set of biomechanical properties determined b...
Thesis (Ph.D.)--University of Washington, 2021Optical coherence elastography (OCE) can provide clini...
Linear elastic properties of ex vivo porcine lenses were characterized by compression and indentatio...
The ability of the human lens to accommodate is mediated by the ciliary muscle and zonule; the manif...
There has been a large amount of research focused on studying the biomechanical properties of the le...
Maintaining a normal intraocular pressure (IOP) is important for visual health. Elevated IOPs have b...
Normal intraocular pressure (IOP) is crucial for proper maintaining of eye-globe geometry, ocular ti...
This dissertation reports on the application of optical coherence tomography (OCT) based elastograph...
The mechanical properties of the crystalline lens are crucial in determining the changes in lens sha...
The crystalline lens and cornea comprise the eye's optical system for focusing light in human vision...
This dissertation reports on the development of measurement methods to assess the biomechanical prop...
[[abstract]]Aim: To determine the viscoelastic properties of the porcine lens Methods: Linear visco...
Purpose: Optical coherence elastography (OCE) quantifies the tissue’s biomechanical properties throu...
Several methods have been proposed to assess changes in corneal biomechanical properties due to vari...
This dissertation reports the development of noncontact techniques to quantify the biomechanical pro...
The cornea is a highly specialised tissue with a unique set of biomechanical properties determined b...
Thesis (Ph.D.)--University of Washington, 2021Optical coherence elastography (OCE) can provide clini...
Linear elastic properties of ex vivo porcine lenses were characterized by compression and indentatio...
The ability of the human lens to accommodate is mediated by the ciliary muscle and zonule; the manif...