IP Library Granted Patent US 11,054,631
Granted Patent B2
US 11,054,631 · App. 16/137,653 · Granted Jul 6, 2021

Illumination optical system, endoscope optical system, and endoscope

Inventor: Susumu Takahashi (Iruma, JP)
Assignee: OLYMPUS CORPORATION
G02B23/2461A61B1/00096A61B1/06A61B1/0623A61B1/07G02B23/2423A61B1/00163A61B1/00177A61B1/05G02B23/243
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Quick Facts
Patent No.
US 11,054,631
App. No.
16/137,653
Granted
Jul 6, 2021
Kind
B2
Abstract

An illumination optical system is formed into a substantially U shape or a partial shape of the substantially U shape as a cross-sectional shape viewed from a distal end side of a longitudinal axis such that an observation optical system is arranged inside, and has a plane as an incidence surface on which light directed toward the distal end side from a proximal end side along the longitudinal axis is incident, a plane as an emission surface from which the light is emitted as illumination light toward a subject, and a reflection surface which is inclined to direct the light incident on the incidence surface toward the emission surface when viewed from the distal end side of the longitudinal axis.

Claims (42)

1. An illumination optical system comprising:

at least one illumination window provided in a distal end portion of an insertion section configured to be inserted into a subject, the illumination window being configured to emit illumination light in a sideward direction or an oblique direction of the distal end portion; and

an optical member formed into a substantially U shape or a partial shape of the substantially U shape as a cross-sectional shape viewed from a distal end side of a longitudinal axis of the insertion section, the optical member comprising:

an incidence surface on which light directed toward the distal end side from a proximal end side along the longitudinal axis is incident,

an emission surface from which the light is emitted as the illumination light toward the subject, and

at least one reflection surface which is inclined to direct the light incident on the incidence surface toward the emission surface when viewed from the distal end side of the longitudinal axis, wherein the at least one reflection surface is a helical surface formed on the distal end side of the optical member.

2. The illumination optical system according to claim 1 , wherein the helical surface is a surface obtained by cutting an outer peripheral surface of the optical member having the substantially U shape along a line segment extending in a direction perpendicular to a central axis of a circular arc of the outer peripheral surface at a predetermined angle to the central axis.

3. The illumination optical system according to claim 2 , wherein the reflection surface has a curved surface shape in which a distance z along the central axis is represented by z=r×θ×A, where r is a radius of the circular arc, and θ is an angle in radians from a predetermined position around the central axis, and A is a coefficient.

4. The illumination optical system according to claim 1 , wherein the substantially U shape is formed by respective circular arcs of two concentric circles.

5. The illumination optical system according to claim 1 , wherein the substantially U shape is formed by two respective circular arcs, which differ in center position, of two circles.

6. The illumination optical system according to claim 1 , wherein a shape of the reflection surface is a rectangle when viewed in a direction of the longitudinal axis.

7. The illumination optical system according to claim 1 , wherein the at least one reflection surface includes two reflection surfaces provided plane-symmetrically with respect to a plane which passes through a central axis of the distal end portion.

8. The illumination optical system according to claim 7 , wherein the at least one illumination window includes two illumination windows.

9. The illumination optical system according to claim 1 , wherein the reflection surface is a plane formed on the distal end side of the optical member having the substantially U shape.

10. The illumination optical system according to claim 9 , wherein the at least one reflection surface includes two reflection surfaces provided plane-symmetrically with respect to a plane which passes through a central axis of the distal end portion.

11. The illumination optical system according to claim 10 , wherein the at least one illumination window includes two illumination windows.

12. An endoscope optical system provided in a distal end portion of an insertion section configured to be inserted into a subject, the endoscope optical system being configured to illuminate and observe a sideward direction or an oblique direction of the distal end portion, the endoscope optical system comprising:

an observation optical system provided in the distal end portion of the insertion section and configured to observe light captured from an observation window configured to capture light in the sideward direction or the oblique direction of the distal end portion; and

an illumination optical system arranged in the distal end portion and including an optical member formed into a substantially U shape or a partial shape of the substantially U shape as a cross-sectional shape viewed from a distal end side of a longitudinal axis of the insertion section such that the observation optical system is arranged inside, the optical member comprising:

an incidence surface on which light directed toward the distal end side from a proximal end side along the longitudinal axis is incident,

an emission surface from which the light is emitted as the illumination light toward the subject, and

a reflection surface which is inclined to direct the light incident on the incidence surface toward the emission surface when viewed from the distal end side of the longitudinal axis, wherein the reflection surface is a helical surface formed on the distal end side of the optical member.

13. The endoscope optical system according to claim 12 , wherein the observation optical system emits the light captured from the observation window toward the proximal end side from the distal end side along a longitudinal axis of the insertion section.

14. An endoscope comprising:

an insertion section configured to be inserted into a subject;

an observation window provided in a distal end portion of the insertion section and configured to capture light in a sideward direction or an oblique direction of the distal end portion;

an illumination window provided in the distal end portion of the insertion section and configured to emit illumination light in the sideward direction or the oblique direction of the distal end portion;

an observation optical system provided in the distal end portion of the insertion section and configured to observe the light captured from the observation window; and

an illumination optical system arranged in the distal end portion and including an optical member formed into a substantially U shape or a partial shape of the substantially U shape as a cross-sectional shape viewed from a distal end side of a longitudinal axis of the insertion section such that the observation optical system is arranged inside, the optical member comprising:

an incidence surface on which light directed toward the distal end side from a proximal end side along the longitudinal axis is incident,

an emission surface from which the light is emitted as the illumination light toward the subject, and

a reflection surface which is inclined to direct the light incident on the incidence surface toward the emission surface when viewed from the distal end side of the longitudinal axis, wherein the reflection surface is a helical surface formed on the distal end side of the optical member.

15. The endoscope according to claim 14 , wherein the observation optical system emits the light captured from the observation window toward the proximal end side from the distal end side along the longitudinal axis of the insertion section.

16. The illumination optical system according to claim 3 , wherein θ is within a range from 35° to 55°.

17. The illumination optical system according to claim 1 , wherein the light reflected by the reflection surface which is the helical surface is reflected by a side surface of the optical member and emitted.

18. An optical adapter configured to removably connect to a distal end portion of an insertion section of an endoscope, the optical adapter comprising:

an illumination optical system comprising:

at least one illumination window configured to emit illumination light in a sideward direction or an oblique direction of the distal end portion; and

an optical member formed into a substantially U shape or a partial shape of the substantially U shape as a cross-sectional shape viewed from a distal end side of a longitudinal axis of the insertion section, the optical member comprising:

an incidence surface on which light directed from the distal end portion along the longitudinal axis is incident,

an emission surface from which the light is emitted as the illumination light toward the subject, and

at least one reflection surface which is inclined to direct the light incident on the incidence surface toward the emission surface when viewed from the distal end side of the longitudinal axis, wherein the at least one reflection surface is a helical surface formed on the distal end side of the optical member.

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 Sep 21, 2018
From: TAKAHASHI, SUSUMU
To: OLYMPUS CORPORATION
Reel/Frame 046934/0429 →