Nova Patents
EP2075615A1

Microscope

Abstract

A microscope has an objective lens, an imaging lens projecting light passing through the objective lens to form an image of a specimen, an image sensor located at an imaging position where the image of the specimen is formed by the imaging lens, an illumination light source, and a reflecting fluorescence illumination optical system including a dichroic mirror introducing light from the illumination light source into an optical path on the objective lens side, illuminating the specimen with the light. In this case, the microscope further has a relay optical system in which an intermediate image of the specimen is formed between the objective lens and the imaging lens and is relayed to the imaging lens, and the dichroic mirror of the reflecting fluorescence illumination optical system is located between a pupil position conjugate with a pupil position of the objective lens, formed between the relay optical system and the imaging lens, and the relay optical system.

EP2075615A1, drawing sheet 1
Sheet 1 of 23

Term

Projected expiry 19 October 2027.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

45 claims: 16 independent, 29 dependent

  1. 1
    A microscope comprising:an objective lens;an imaging lens projecting light passing through the objective lens to form an image of a specimen;an image sensor located at an imaging position where the image of the specimen is formed by the imaging lens;an illumination light source;and a reflecting fluorescence illumination optical system including a dichroic mirror introducing light from the illumination light source into an optical path on an objective lens side, illuminating the specimen with the light, wherein the microscope further comprises a relay optical system in which an intermediate image of the specimen is formed between the objective lens and the imaging lens and is relayed to the imaging lens, and the dichroic mirror of the reflecting fluorescence illumination optical system is located between a pupil position conjugate with a pupil position of the objective lens, formed between the relay optical system and the imaging lens, and the relay optical system.
  2. 4
    A microscope according to any one of claims 1-3, wherein the imaging lens is constructed with a zoom optical system or a variable magnification optical system whose magnification is changed stepwise.
  3. 5
    A microscope according to any one of claims 1-4, satisfying the following condition:0.6 ≦ β ≦ 1.5 where β is a pupil relay magnification of the relay optical system from a pupil of the objective lens to a pupil conjugate position.
  4. 6
    A microscope according to any one of claims 1-4, satisfying the following equation:β ≒ - 1 where β is a pupil relay magnification of the relay optical system.
  5. 8
    A microscope according to any one of claims 1-7, wherein the illumination light source is constructed with a reflector light source, an LED light source, or a fiber light source.
  6. 9
    A microscope according to any one of claims 1-8, having an integrator rod in the reflecting fluorescence illumination optical system.
  7. 22
    A microscope according to any one of claims 1-6, wherein the illumination light source has a reflector light source emitting a convergent beam to perform a primary formation of a light source image and an integrator rod having an entrance end face at a position of the primary formation of the light source image of the reflector light source, and the reflecting fluorescence illumination optical system has a collector lens converting a divergent beam emerging from an exit end face of the integrator rod into a parallel beam.
  8. 23
    A microscope according to any one of claims 1-6, wherein the illumination light source has a reflector light source emitting a parallel beam, a lens condensing the parallel beam emitted from the reflector light source to perform a primary formation of a light source image of the reflector light source, and an integrator rod having an entrance end face at a position of the primary formation, and the reflecting fluorescence illumination optical system has a collector lens converting a divergent beam emerging from an exit end face of the integrator rod into a parallel beam.
  9. 24
    A microscope according to any one of claims 1-6, wherein the illumination light source has an LED light source, a lens condensing a divergent beam emitted from the LED light source to perform a primary formation of a light source image of the LED light source, and an integrator rod having an entrance end face at a position of the primary formation, and the reflecting fluorescence illumination optical system has a collector lens converting a divergent beam emerging from an exit end face of the integrator rod into a parallel beam.
  10. 25
    A microscope according to any one of claims 1-24, wherein the objective lens, the imaging lens, and the relay optical system are constructed to be nearly telecentric optical systems on a surface of an object, at a position of the intermediate image, and on a surface of the image sensor, respectively.
  11. 26
    A microscope according to any one of claims 1-25, wherein, in the reflecting fluorescence illumination optical system, an excitation filter is provided and a barrier filter cutting off unwanted light, of light from the specimen, is placed in the proximity of a pupil position conjugate with the pupil position of the objective lens, formed between the relay optical system and the imaging lens.
  12. 27
    A microscope according to any one of claims 1-25, wherein a pupil modulation means is placed in the proximity of a pupil position conjugate with the pupil position of the objective lens, formed between the relay optical system and the imaging lens.
  13. 32
    A microscope according to any one of claims 27-31, wherein the pupil modulation means is constructed to be movable in and out of the optical path.
  14. 39
    A microscope according to any one of claims 1-38, wherein an image restriction means for partially blocking illumination light from the reflecting fluorescence illumination optical system is constructed to be locatable in the proximity of an imaging position where an intermediate image of the specimen is formed through the relay optical system.
  15. 43
    A microscope according to any one of claims 1-42, wherein a deflection member deflecting an optical path from the objective lens to the imaging lens in a nearly horizontal direction is located at a preset place between the objective lens and the relay optical system.
  16. 45
    A microscope according to any one of claims 1-44, wherein an autofocus correction mechanism is provided between the objective lens and the imaging lens.
Independent claims16