IP Library Granted Patent US 12,114,833
Granted Patent B2
US 12,114,833 · App. 17/440,217 · Granted Oct 15, 2024

Optical system, endoscope, and medical image processing system

Inventors: Koji Kashima (Tokyo, JP); Takeshi Miyai (Tokyo, JP); Junichiro Enoki (Tokyo, JP)
Assignee: SONY GROUP CORPORATION
A61B1/000095A61B1/042A61B1/045G02B5/3083G02B23/2484H04N23/56A61B1/0669A61B1/07H04N23/555
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Quick Facts
Patent No.
US 12,114,833
App. No.
17/440,217
Granted
Oct 15, 2024
Kind
B2
Abstract

The present disclosure relates to a medical image processing system including a light source that irradiates an observation target with light; an image capturing control unit that controls capturing of an image of the observation target irradiated with the light and an endoscope including a scope having a tubular shape and made from a rigid or flexible material, a camera head including an imaging element that captures an image, and an optical element insertion unit provided between the scope and the camera head. Further, the optical element insertion unit includes two or more optical elements having the effect of extending the depth of field, and at least one of the optical elements is movable.

Claims (72)

1. An optical system, comprising:

at least two optical elements having an effect of extending a depth of field, wherein

the at least two optical elements include a fixed first birefringent mask and a rotatable second birefringent mask,

the rotatable second birefringent mask is rotatable about an optical axis of the optical system,

the fixed first birefringent mask includes first polarizing elements and first non-polarizing elements,

the rotatable second birefringent mask includes second polarizing elements and second non-polarizing elements,

the fixed first birefringent mask is divided in a form of a first cross at a center of the fixed first birefringent mask to have first four fan shapes so that

a first upper left fan shape of the first four fan shapes and a second lower right fan shape of the first four fan shapes are the first polarizing elements, and

a first upper right fan shape of the first four fan shapes and a second lower left fan shape of the first four fan shapes are the first non-polarizing elements,

the rotatable second birefringent mask is divided in a form of a second cross at a center of the rotatable second birefringent mask to have second four fan shapes so that

a second upper right fan shape of the second four fan shapes and a third lower left fan shape of the second four fan shapes are the second polarizing elements, and

a second upper left fan shape of the second four fan shapes and a third lower right fan shape of the second four fan shapes are the second non-polarizing elements,

the first polarizing elements are concentric from a vicinity of the center of the fixed first birefringent mask toward an outside of the fixed first birefringent mask,

the second polarizing elements are concentric from a vicinity of the center of the rotatable second birefringent mask toward an outside of the rotatable second birefringent mask,

the rotatable second birefringent mask is rotated by 90 degrees with respect to the fixed first birefringent mask,

a polarization direction of the second polarizing elements is at 90 degrees relative to a polarization direction of the first polarization elements after the rotation, and

the effect of extending the depth of field is adjustable based on the rotation of the rotatable second birefringent mask.

2. The optical system according to claim 1 , further comprising a plurality of optical elements, wherein

the plurality of optical elements includes a number of fixed first birefringent masks and a number of rotatable second birefringent masks,

the plurality of optical elements includes the at least two optical elements,

the number of the fixed first birefringent masks includes the fixed first birefringent mask,

the number of the rotatable second birefringent masks includes the rotatable second birefringent mask, and

the number of the rotatable second birefringent masks is one of less than or equal to the number of the fixed first birefringent masks.

3. The optical system according to claim 1 , wherein

the fixed first birefringent mask includes an even-numbered ring as a first polarizing element of the first polarizing elements and an odd-numbered ring as a first non-polarizing element of the first non-polarizing elements, and

the rotatable second birefringent mask includes an odd-numbered ring as a second polarizing element of the second polarizing elements and an even-numbered ring as a second non-polarizing element of the second non-polarizing elements.

4. The optical system according to claim 1 , wherein

a specific polarizing element of the second polarizing elements in the rotatable second birefringent mask has an outer shape that is set based on a diameter of a rigid scope.

5. The optical system according to claim 1 , wherein the at least two optical elements are one of wavefront coding filters or chromatic aberration filters.

6. An endoscope, comprising:

a scope having a tubular shape and made from one of a rigid material or a flexible material; and

a camera head including an imaging element configured to capture an image, wherein

the imaging element is further configured to receive light having passed through an optical system including at least two optical elements,

the at least two optical elements having an effect of extending a depth of field,

the at least two optical elements include a fixed first birefringent mask and a rotatable second birefringent mask,

the rotatable second birefringent mask is rotatable about an optical axis of the optical system,

the fixed first birefringent mask includes first polarizing elements and first non-polarizing elements,

the rotatable second birefringent mask includes second polarizing elements and second non-polarizing elements,

the fixed first birefringent mask is divided in a form of a first cross at a center of the fixed first birefringent mask to have first four fan shapes so that

a first upper left fan shape of the first four fan shapes and a second lower right fan shape of the first four fan shapes are the first polarizing elements, and

a first upper right fan shape of the first four fan shapes and a second lower left fan shape of the first four fan shapes are the first non-polarizing elements,

the rotatable second birefringent mask is divided in a form of a second cross at a center of the rotatable second birefringent mask to have second four fan shapes so that

a second upper right fan shape of the second four fan shapes and a third lower left fan shape of the second four fan shapes are the second polarizing elements, and

a second upper left fan shape of the second four fan shapes and a third lower right fan shape of the second four fan shapes are the second non-polarizing elements,

the first polarizing elements are concentric from a vicinity of the center of the fixed first birefringent mask toward an outside of the fixed first birefringent mask,

the second polarizing elements are concentric from a vicinity of the center of the rotatable second birefringent mask toward an outside of the rotatable second birefringent mask,

the rotatable second birefringent mask is rotated by 90 degrees with respect to the fixed first birefringent mask,

a polarization direction of the second polarizing elements is at 90 degrees relative to a polarization direction of the first polarization elements after the rotation, and

the effect of extending the depth of field is adjustable based on the rotation of the rotatable second birefringent mask.

7. The endoscope according to claim 6 , further comprising an optical element insertion unit between the scope and the camera head, wherein the rotatable second birefringent mask is in the optical element insertion unit.

8. A medical image processing system, comprising:

a light source configured to irradiate an observation target with light;

an image capturing control unit configured to control capture of an image of the observation target irradiated with the light; and

an endoscope including: a scope having a tubular shape and made from one of a rigid material or a flexible material, and a camera head including an imaging element configured to capture an image, wherein

the imaging element is further configured to receive light having passed through an optical system including at least two optical elements,

the at least two optical elements having an effect of extending a depth of field,

the at least two optical elements include a fixed first birefringent mask and a rotatable second birefringent mask,

the rotatable second birefringent mask is rotatable about an optical axis of the optical system,

the fixed first birefringent mask includes first polarizing elements and first non-polarizing elements,

the rotatable second birefringent mask includes second polarizing elements and second non-polarizing elements,

the fixed first birefringent mask is divided in a form of a first cross at a center of the fixed first birefringent mask to have first four fan shapes so that

a first upper left fan shape of the first four fan shapes and a second lower right fan shape of the first four fan shapes are the first polarizing elements, and

a first upper right fan shape of the first four fan shapes and a second lower left fan shape of the first four fan shapes are the first non-polarizing elements,

the rotatable second birefringent mask is divided in a form of a second cross at a center of the rotatable second birefringent mask to have second four fan shapes so that

a second upper right fan shape of the second four fan shapes and a third lower left fan shape of the second four fan shapes are the second polarizing elements, and

a second upper left fan shape of the second four fan shapes and a third lower right fan shape of the second four fan shapes are the second non-polarizing elements,

the first polarizing elements are concentric from a vicinity of the center of the fixed first birefringent mask toward an outside of the fixed first birefringent mask,

the second polarizing elements are concentric from a vicinity of the center of the rotatable second birefringent mask toward an outside of the rotatable second birefringent mask,

the rotatable second birefringent mask is rotated by 90 degrees with respect to the fixed first birefringent mask,

a polarization direction of the second polarizing elements is at 90 degrees relative to a polarization direction of the first polarization elements after the rotation, and

the effect of extending the depth of field is adjustable based on the rotation of the rotatable second birefringent mask.

9. The medical image processing system according to claim 8 , further comprising an optical element insertion unit between the scope and the camera head, wherein the rotatable second birefringent mask is in the optical element insertion unit.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 17, 2021
From: KASHIMA, KOJI; MIYAI, TAKESHI; ENOKI, JUNICHIRO
To: SONY GROUP CORPORATION
Reel/Frame 057510/0040 →
Priority Claims (1)
JP 2019-063267 · Mar 28, 2019 · national
Continuity (1)
Related Publication 20220142458A1 · May 12, 2022