AI Article Synopsis

  • Acoustic Radiation Force Optical Coherence Elastography (ARF-OCE) has been effectively used to assess soft tissue properties like the cornea and retina with high resolution, but existing OCE methods have limitations in spatial and temporal control.
  • A new technique called 2-D ultrasonic array-based OCE imaging combines the benefits of dynamic electronic steering and high-resolution optical coherence tomography (OCT) to improve accuracy in mapping biomechanical properties.
  • Validation and experiments on rabbit corneal tissue show that this innovative approach has the potential to be an important diagnostic tool in ophthalmology.

Article Abstract

Acoustic radiation force optical coherence elastography (ARF-OCE) has been successfully implemented to characterize the biomechanical properties of soft tissues, such as the cornea and the retina, with high resolution using single-element ultrasonic transducers for ARF excitation. Most currently proposed OCE techniques, such as air puff and ARF, have less capability to control the spatiotemporal information of the induced region of deformation, resulting in limited accuracy and low temporal resolution of the shear wave elasticity imaging. In this study, we propose a new method called 2-D ultrasonic array-based OCE imaging, which combines the advantages of 3-D dynamic electronic steering of the 2-D ultrasonic array and high-resolution optical coherence tomography (OCT). The 3-D steering capability of the 2-D array was first validated using a hydrophone. Then, the combined 2-D ultrasonic array OCE system was calibrated using a homogenous phantom, followed by an experiment on ex vivo rabbit corneal tissue. The results demonstrate that our newly developed 2-D ultrasonic array-based OCE system has the capability to map tissue biomechanical properties accurately, and therefore, has the potential to be a vital diagnostic tool in ophthalmology.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8106462PMC
http://dx.doi.org/10.1109/TUFFC.2020.3033304DOI Listing

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