Ultrahigh-speed multimodal adaptive optics system for microscopic structural and functional imaging of the human retina

  • Liu Z
  • Zhang F
  • Zucca K
  • et al.
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Abstract

We describe the design and performance of a multimodal and multifunctional adaptive optics (AO) system that combines scanning laser ophthalmoscopy (SLO) and optical coherence tomography (OCT) for simultaneous retinal imaging at 13.4 Hz. The high-speed AO-OCT channel uses a 3.4 MHz Fourier-domain mode-locked (FDML) swept source. The system achieves exquisite resolution and sensitivity for pan-macular and transretinal visualization of retinal cells and structures while providing a functional assessment of the cone photoreceptors. The ultra-high speed also enables wide-field scans for clinical usability and angiography for vascular visualization. The FDA FDML-AO system is a powerful platform for studying various retinal and neurological diseases for vision science research, retina physiology investigation, and biomarker development.

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Liu, Z., Zhang, F., Zucca, K., Agrawal, A., & Hammer, D. X. (2022). Ultrahigh-speed multimodal adaptive optics system for microscopic structural and functional imaging of the human retina. Biomedical Optics Express, 13(11), 5860. https://doi.org/10.1364/boe.462594

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