IP Library Granted Patent US 12,310,550
Granted Patent B2
US 12,310,550 · App. 17/569,192 · Granted May 27, 2025

Endoscope calibration system, endoscope device, endoscope device calibration method, and computer-readable storage medium

Inventor: Hidehiro Miyayashiki (Akishima, JP)
Assignee: Evident Corporation
A61B1/00057A61B1/00009
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Quick Facts
Patent No.
US 12,310,550
App. No.
17/569,192
Granted
May 27, 2025
Kind
B2
Abstract

An endoscopic calibration system that calibrates an endoscope, includes: an imaging part that acquires an image by an optical system in which an optical adapter and a scope of the endoscope are combined; a parameter measurement part that measures a first parameter indicating optical characteristics of an optical system in which a first scope and a first optical adapter are combined, a second parameter indicating optical characteristics of an optical system in which the first scope and a second optical adapter are combined, and a third parameter indicating optical characteristics of an optical system in which the second scope and the first optical adapter are combined; and a parameter estimation part that estimates a fourth parameter indicating optical characteristics of an optical system in which the second scope and the second optical adapter are combined using the first parameter, the second parameter, and the third parameter.

Claims (56)

1. An endoscopic calibration system for calibrating an endoscope comprising a fourth optical system in which a second scope and a second optical adapter are combined, the endoscope calibration system comprising:

one or more processors comprising hardware, the one or more processors being configured to:

acquire a first parameter indicating optical characteristics of a first optical system in which a first scope and a first optical adapter are combined;

acquire a second parameter indicating optical characteristics of a second optical system in which the first scope and the second optical adapter are combined;

acquire a third parameter indicating optical characteristics of a third optical system in which the second scope and the first optical adapter are combined;

access a storage storing a preexisting fourth parameter for correcting optical characteristics of the fourth optical system in which the second scope and the second optical adapter are combined;

determine whether to use the preexisting fourth parameter stored in the storage to correct the optical characteristics of the fourth optical system;

in response to determining to use the preexisting fourth parameter stored in the storage, correct the optical characteristics of the fourth optical system using the preexisting fourth parameter stored in the storage;

in response to determining not to use the preexisting fourth parameter stored in the storage, estimate a new fourth parameter for correcting the optical characteristics of the fourth optical system using the first parameter, the second parameter, and the third parameter; and

correct the optical characteristics of the fourth optical system using the new fourth parameter estimated.

2. The endoscope calibration system according to claim 1 , wherein in estimating the new fourth parameter, the one or more processors are configured to estimate a correcting parameter for correcting an optical system distortion of the fourth optical system.

3. The endoscope calibration system according to claim 2 , wherein in estimating the new fourth parameter, the one or more processors are configured to estimate a mask-shape parameter relating to a field mask shape of the fourth optical system.

4. The endoscope calibration system according to claim 1 ,

wherein the first parameter, the second parameter, and the third parameter are parameters measured by a same method for measuring optical characteristics.

5. The endoscope calibration system according to claim 1 ,

wherein the first parameter, the second parameter, and the third parameter are measured from corresponding images captured with the corresponding one of the first optical system, the second optical system, and the third optical system.

6. The endoscope calibration system according to claim 1 ,

wherein the one or more processors are configured to acquire the second parameter from the storage, and

wherein the storage is mounted on the endoscope.

7. The endoscope calibration system according to claim 1 ,

wherein the one or more processors are configured to acquire the third parameter from the storage, the storage being provided in the endoscope, or another storage provided in the second scope.

8. The endoscope calibration system according to claim 1 , wherein the one or more processors are configured to acquire at least a part of the first parameter, the second parameter, and the third parameter from a server.

9. The endoscope calibration system according to claim 1 ,

wherein the one or more processors are configured to estimate the new fourth parameter by adding or subtracting the first parameter, the second parameter, and the third parameter.

10. The endoscope calibration system according to claim 1 , wherein the one or more processors are provided in the endoscope.

11. The endoscope calibration system according to claim 1 , wherein the one or more processors are configured to communicate with the endoscope comprising the fourth optical system.

12. An endoscope device comprising:

an endoscope comprising a fourth optical system in which a second scope and a second optical adapter are combined; and

one or more processors comprising hardware, wherein the one or more processors are configured to:

acquire;

a first parameter indicating optical characteristics of a first optical system in which a first scope and a first optical adapter are combined;

a second parameter indicating optical characteristics of a second optical system in which the first scope and the second optical adapter are combined; and

a third parameter indicating optical characteristics of a third optical system in which the second scope and the first optical adapter are combined;

access a storage storing a preexisting fourth parameter for correcting optical characteristics of the fourth optical system in which the second scope and the second optical adapter are combined;

determine whether to use the preexisting fourth parameter stored in the storage to correct the optical characteristics of the fourth optical system;

in response to determining to use the preexisting fourth parameter stored in the storage, correct the optical characteristics of the fourth optical system using the preexisting fourth parameter stored in the storage;

in response to determining not to use the preexisting fourth parameter stored in the storage, estimate a new fourth parameter for correction the optical characteristics of the fourth optical system using the first parameter, the second parameter, and the third parameter; and

correct the optical characteristics of the fourth optical system using the new fourth parameter estimated.

13. A method for calibrating an endoscope comprising a fourth optical system in which a second scope and a second optical adapter are combined, comprising:

acquiring a first parameter indicating optical characteristics of a first optical system in which a first scope and a first optical adapter are combined;

acquiring a second parameter indicating optical characteristics of a second optical system in which the first scope and the second optical adapter are combined;

acquiring a third parameter indicating optical characteristics of a third optical system in which a second scope and the first optical adapter are combined;

accessing a storage storing a preexisting fourth parameter for correcting optical characteristics of the fourth optical system in which the second scope and the second optical adapter are combined;

determining whether to use the preexisting fourth parameter stored in the storage to correct the optical characteristics of the fourth optical system;

in response to determining to use the preexisting fourth parameter stored in the storage, correcting the optical characteristics of the fourth optical system using the preexisting fourth parameter stored in the storage;

in response to determining not to use the preexisting fourth parameter stored in the storage, estimating a new fourth parameter for correcting the optical characteristics of the fourth optical system using the first parameter, the second parameter, and the third parameter; and

correcting the optical characteristics of the fourth optical system using the new fourth parameter estimated.

14. A non-transitory computer-readable storage medium storing an endoscope calibration program for calibrating an endoscope comprising a fourth optical system in which a second scope and a second optical adapter are combined, wherein the endoscope calibration program causes a computer to at least execute:

acquiring a first parameter indicating optical characteristics of a first optical system in which a first scope and a first optical adapter are combined;

acquiring a second parameter indicating optical characteristics of a second optical system in which the first scope and the second optical adapter are combined;

acquiring a third parameter indicating optical characteristics of a third optical system in which a second scope and the first optical adapter are combined;

accessing a storage storing a preexisting fourth parameter for correcting optical characteristics of the fourth optical system in which the second scope and the second optical adapter are combined;

determining whether to use the preexisting fourth parameter stored in the storage to correct the optical characteristics of the fourth optical system;

in response to determining to use the preexisting fourth parameter stored in the storage, correcting the optical characteristics of the fourth optical system using the preexisting fourth parameter stored in the storage;

in response to determining not to use the preexisting fourth parameter stored in the storage, estimating a new fourth parameter for correcting the optical characteristics of the fourth optical system using the first parameter, the second parameter, and the third parameter; and

correcting the optical characteristics of the fourth optical system using the new fourth parameter estimated.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2022
From: OLYMPUS CORPORATION
To: EVIDENT CORPORATION
Reel/Frame 060691/0945 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 6, 2022
From: MIYAYASHIKI, HIDEHIRO
To: OLYMPUS CORPORATION
Reel/Frame 058563/0644 →
Priority Claims (1)
JP 2021-012689 · Jan 29, 2021 · national
Continuity (1)
Related Publication 20220240756A1 · Aug 4, 2022
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