A large-view-field catadioptric
fundus camera optic system belongs to the field of medical optical instruments and aims at resolving technical problems in the prior art that a total
refraction system is stray in light, and a total
catadioptric system is small in imaging view field, complex in structure, free of diopter compensation, difficult in manufacturing off-axial
retina objective lenses and the like. The large-view-field catadioptric
fundus camera optic system comprises two parts including an imaging light path and an illumination light path, wherein the imaging light path and the illumination light path share a reflection type
retina objective lens primary lens, a reflection type
retina objective lens secondary lens and a hollow reflection lens. The large-view-field catadioptric
fundus camera optic system further comprises a
refraction type illumination
relay lens group, an illumination diaphragm, a
refraction illumination collecting lens group, a
light source, a refraction focusing lens group, a refraction type focus
imaging lens group and a camera, wherein the refraction type
imaging lens group adopts a free-form surface to rectify residual off-axial aberration of a reflection type retina objective lens. Therefore, a fundus imaging
system is guaranteed to meet imaging requirements in the area of 45-degree view field, and performance of the refraction fundus camera optical
system is improved.