A method and apparatus for measuring the retinal auto-fluorescence of a
subject retina includes an excitation light source for providing an
excitation light at a wavelength of at least 450 nm and an image capture
device for recording an ocular auto-fluorescence signal generated in
response to the excitation light. The image capture device includes a
filter for reducing background non-signal wavelengths from the ocular
auto-fluorescence signal and an image intensifier for increasing the
ocular auto-fluorescence signal strength. The method and apparatus may
further include a processor that analyzes the ocular auto-fluorescence
signal to determine a contrast change or pattern to thereby detect
retinal disease or damage. The processor may compare the images with
control images, past images of the same eye or other diagnostic
modalities such as fundus photography, angiography, or visual field
testing to detect the retinal disease or damage.