IP Library Granted Patent US 11,137,588
Granted Patent B2
US 11,137,588 · App. 16/364,946 · Granted Oct 5, 2021

Observation apparatus which illuminates and observes a specimen from below

Inventors: Masaru Mizunaka (Tokyo, JP); Shintaro Takahashi (Tokyo, JP); Akira Matsushita (Tokyo, JP); Yohei Tanikawa (Tokyo, JP); Tsuyoshi Mochizuki (Tokyo, JP); Shinichi Takimoto (Tokyo, JP)
Assignee: OLYMPUS CORPORATION
G02B21/16G01N21/17G01N21/64G01N21/6458G02B21/02G02B21/06G02B21/10G02B21/12G02B21/125G02B21/24G02B21/36G02B21/367G01N2021/6478G02B21/33
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Quick Facts
Patent No.
US 11,137,588
App. No.
16/364,946
Granted
Oct 5, 2021
Kind
B2
Abstract

An observation apparatus including: a light-source that emits illumination light and excitation light upward from below a specimen; and an image-capturing optical system having an objective lens that focuses, below the specimen, transmitted light, which is the illumination light that is emitted from the light-source, that is reflected above the specimen, and that has passed through the specimen, and fluorescence that is generated in the specimen that has been irradiated with the excitation light emitted from the light-source, wherein the light-source is disposed radially outside the objective lens.

Claims (43)

1. An observation apparatus comprising:

a light-source that emits illumination light and excitation light upward from below a specimen; and

an image-capturing optical system having an objective lens that focuses, below the specimen, transmitted light, which is the illumination light that is emitted from the light-source, that is reflected above the specimen, and that has passed through the specimen, and fluorescence that is generated in the specimen that has been irradiated with the excitation light emitted from the light-source,

wherein the light-source is disposed radially outside the objective lens.

2. The observation apparatus according to claim 1 , wherein the light-source is configured to emit the illumination light from different positions in radial directions of the objective lens.

3. The observation apparatus according to claim 1 , wherein the light-source is arranged in an area surrounding the objective lens and comprises a plurality of light sources that are configured to be independently turned on.

4. The observation apparatus according to claim 1 , wherein the light-source is configured to simultaneously emit the excitation light from different positions in radial directions of the objective lens.

5. The observation apparatus according to claim 1 , wherein:

a wavelength of the illumination light emitted from the light-source is the same as a wavelength of the excitation light emitted from the light source, and

the image-capturing optical system is provided with a detection-light switch that selectively allows the illumination light or the fluorescence to pass therethrough.

6. The observation apparatus according to claim 1 , wherein the image-capturing optical system is provided with a barrier filter that possesses wavelength characteristics that allow the illumination light and the fluorescence to pass therethrough and block the excitation light.

7. The observation apparatus according to claim 1 , wherein the light-source is provided with:

an optical device that converts the illumination light into substantially parallel light and that focuses the excitation light; and

a diffusion plate that diffuses the illumination light and the excitation light.

8. The observation apparatus according to claim 1 , wherein the light-source is provided with a band-pass filter that allows only light in wavelength bands of the illumination light and the excitation light to pass therethrough.

9. The observation apparatus according to claim 1 , wherein:

the specimen is accommodated in a container formed of an optically transparent material, and

the illumination light is reflected by an inner surface of a top plate of the container, which is disposed above the specimen.

10. The observation apparatus according to claim 1 , wherein the illumination light is reflected by a reflecting member that is disposed above the specimen.

11. The observation apparatus according to claim 1 , wherein:

the specimen is immersed in a solution, and the illumination light is reflected by a top liquid surface at the top of the solution.

12. An observation apparatus comprising:

an illumination light-source that emits illumination light upward from below a specimen;

an excitation light-source that emits excitation light toward the specimen; and

an image-capturing optical system that captures, below the specimen, transmitted light, which is the illumination light that is emitted from the illumination light-source, that is reflected above the specimen, and that has passed through the specimen, and fluorescence that is generated in the specimen that has been irradiated with the excitation light emitted from the excitation light-source.

13. The observation apparatus according to claim 12 , wherein the excitation light-source emits the excitation light from above the specimen.

14. The observation apparatus according to claim 12 , wherein:

the image-capturing optical system is provided with an objective lens that focuses the transmitted light that has passed through the specimen and the fluorescence,

the illumination light-source is disposed radially outside the objective lens and radiates the illumination light from radially outside the objective lens, and

the excitation light-source radiates the excitation light onto the specimen via the objective lens.

15. The observation apparatus according to claim 12 , wherein the light-source is arranged in an area surrounding the objective lens and comprises a plurality of light sources that are configured to be independently turned on.

16. The observation apparatus according to claim 12 , wherein:

the specimen is accommodated in a container formed of an optically transparent material, and

the illumination light is reflected by an inner surface of a top plate of the container, which is disposed above the specimen.

17. An observation method comprising:

emitting illumination light upward from below a specimen;

reflecting, above the specimen, the emitted illumination light;

causing the reflected illumination light to pass through the specimen;

capturing, below the specimen, transmitted light, which is the illumination light that has passed through the specimen;

emitting excitation light toward the specimen; and

capturing fluorescence generated in the specimen by means of the emitted excitation light.

18. The observation method according to claim 17 , further comprising:

superimposing an acquired transmitted-illumination-light image and an acquired fluorescence image.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2023
From: OLYMPUS CORPORATION
To: EVIDENT CORPORATION
Reel/Frame 062492/0267 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2019
From: MIZUNAKA, MASARU; TAKAHASHI, SHINTARO; MATSUSHITA, AKIRA; TANIKAWA, YOHEI; MOCHIZUKI, TSUYOSHI; TAKIMOTO, SHINICHI
To: OLYMPUS CORPORATION
Reel/Frame 048702/0743 →
Priority Claims (1)
JP JP2016-194281 · Sep 30, 2016 · national
Continuity (2)
Continuation PCTJP2017033820 · Sep 20, 2017
Related Publication 20190219810A1 · Jul 18, 2019