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  1. Enhancement of intrinsic optical signal recording with split spectrum optical coherence tomography
  2. Comparative investigation of stimulus-evoked rod outer segment movement and retinal electrophysiological activity
  3. Concurrent OCT imaging of stimulus evoked retinal neural activation and hemodynamic responses
  4. In vivo super-resolution retinal imaging through virtually structured detection
  5. Stimulus-evoked outer segment changes occur before the hyperpolarization of retinal photoreceptors
  6. In vivooptical coherence tomography of stimulus-evoked intrinsic optical signals in mouse retinas
  7. Optical coherence tomography angiography of stimulus evoked hemodynamic responses in individual retinal layers
  8. Stimulus-evoked outer segment changes in rod photoreceptors
  9. Biophysical mechanism of transient retinal phototropism in rod photoreceptors
  10. In vivo intrinsic optical signal imaging of mouse retinas
  11. Intrinsic optical signal imaging of retinal physiology: a review
  12. Functional Optical Coherence Tomography Enables In Vivo Physiological Assessment of Retinal Rod and Cone Photoreceptors
  13. Rapid super-resolution line-scanning microscopy through virtually structured detection
  14. Super-Resolution Scanning Laser Microscopy Based on Virtually Structured Detection
  15. Functional optical coherence tomography reveals transient phototropic change of photoreceptor outer segments
  16. Virtually Structured Detection Enables Super-Resolution in Scanning Laser Microscopy and Optical Coherence Tomography
  17. En face optical coherence tomography of transient light response at photoreceptor outer segments in living frog eyecup