IP Library › Granted Patent US 10,143,361
Granted Patent B2
US 10,143,361 · App. 15/418,929 · Granted Dec 4, 2018

Endoscope system having rotatable elongated part and bending part controlled to bend based on rotation of elongated part

Inventor: Shintaro Inoue (Tokyo, JP)
Assignee: OLYMPUS CORPORATION
A61B1/0052A61B1/00006A61B1/0008A61B1/00149A61B1/045A61B1/05A61B1/051G02B23/2476A61B1/00039
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Quick Facts
Patent No.
US 10,143,361
App. No.
15/418,929
Granted
Dec 4, 2018
Kind
B2
Abstract

An endoscope system is provided with an operation part, an elongated part, an imaging part, a control part, a display part, a rotation operation input part, and a rotation coupling part that rotates an imaging field of view in the imaging part around the optical axis in accordance with the rotation amount provided to the control part, wherein the control part outputs to the display part an image which has been captured by the imaging part and is brought into a state in which the field of view is rotated by the rotation coupling part.

Claims (52)

1. An endoscope system comprising:

an operation part;

an elongated part configured to rotate relative to the operation part around a longitudinal axis of the elongated part, wherein a distal part of the elongated part is configured to be actively bent by a bending force generated by a first actuator;

an image sensor arranged in the distal part of the elongated part, wherein the image sensor has an optical axis, and wherein the image sensor is configured to capture an image of an object within a field of view of the image sensor;

a sensor configured to detect an amount of rotation of the elongated part around the longitudinal axis; and

a controller configured to:

receive an instruction to bend the distal part of the elongated part in a first direction;

control the first actuator to generate the bending force to bend the distal part of the elongated part in the first direction; and

when the distal part of the elongated part has been bent in the first direction,

receive the amount of rotation of the elongated part around the longitudinal axis detected by the sensor;

determine a second direction to bend the distal part of the elongated part in accordance with the amount of rotation of the elongated part around the longitudinal axis detected by the sensor to offset a rotation of the field of view of the image sensor caused by rotation of the elongated part around the longitudinal axis of the elongated part; and

control the first actuator to generate the bending force to bend the distal part of the elongated part in the second direction.

2. The endoscope system according to claim 1 , further comprising:

a switch configured to switch the elongated part between a state in which it is possible for the elongated part to rotate relative to the operation part, and a state in which it is impossible for the elongated part to rotate relative to the operation part.

3. The endoscope system according to claim 1 , further comprising:

a supporting arm configured to hold the elongated part; and

a switch configured to switch the elongated part between a mode in which it is possible for the elongated part to rotate relative to the supporting arm, and a mode in which it is impossible for the elongated part to rotate relative to the supporting arm.

4. The endoscope system according to claim 1 , further comprising:

an input device configured to receive an operation corresponding to the instruction to bend the distal part of the elongated part in the first direction; and

a feedback mechanism configured to provide feedback to the input device wherein the feedback corresponds to a deviation from the first direction caused in accordance with the amount of rotation.

5. The endoscope system according to claim 1 , further comprising:

a second actuator arranged in the elongated part, wherein the second actuator is configured to be controlled to rotate the image sensor around the optical axis of the image sensor,

wherein the controller is configured to control the second actuator to rotate the image sensor around the optical axis of the image sensor in accordance with the amount of rotation of the elongated part around the longitudinal axis detected by the sensor.

6. The endoscope system according to claim 1 ,

wherein the controller is configured to rotate the image captured by the image sensor in accordance with the amount of rotation of the elongated part around the longitudinal axis detected by the sensor.

7. An endoscope system comprising:

an operation part;

an elongated part configured to rotate relative to the operation part around a longitudinal axis of the elongated part, wherein a distal part of the elongated part is configured to be actively bent by a bending force generated by a first actuator;

an image sensor arranged in the distal part of the elongated part, wherein the image sensor has an optical axis, and wherein the image sensor is configured to capture an image of an object within a field of view of the image sensor;

a second actuator arranged in the elongated part, wherein the second actuator is configured to be controlled to rotate the image sensor around the optical axis of the image sensor;

a sensor configured to detect an amount of rotation of the elongated part around the longitudinal axis; and

a controller configured to:

receive an instruction to bend the distal part of the elongated part in a first direction;

control the first actuator to generate the bending force to bend the distal part of the elongated part in the first direction;

when the distal part of the elongated part has been bent in the first direction,

receive the amount of rotation of the elongated part around the longitudinal axis detected by the sensor;

determine a second direction to bend the distal part of the elongated part in accordance with the amount of rotation of the elongated part around the longitudinal axis detected by the sensor to offset a rotation of the field of view of the image sensor caused by rotation of the elongated part around the longitudinal axis of the elongated part; and

control the first actuator to generate the bending force to bend the distal part of the elongated part in the second direction; and

control the second actuator to rotate the image sensor around the optical axis of the image sensor based on the amount of rotation of the elongated part around the longitudinal axis detected by the sensor.

8. An endoscope system comprising:

an operation part;

an elongated part configured to rotate relative to the operation part around a longitudinal axis of the elongated part, wherein a distal part of the elongated part is configured to be actively bent by a bending force generated by an actuator;

an image sensor arranged in the distal part of the elongated part, wherein the image sensor has an optical axis, and wherein the image sensor is configured to capture an image of an object within a field of view of the image sensor;

a sensor configured to detect an amount of rotation of the elongated part around the longitudinal axis; and

a controller configured to:

receive an instruction to bend the distal part of the elongated part in a first direction;

control the actuator to generate the bending force to bend the distal part of the elongated part in the first direction;

when the distal part of the elongated part has been bent in the first direction,

receive the amount of rotation of the elongated part around the longitudinal axis detected by the sensor;

determine a second direction to bend the distal part of the elongated part in accordance with the amount of rotation of the elongated part around the longitudinal axis detected by the sensor to offset a rotation of the field of view of the image sensor caused by rotation of the elongated part around the longitudinal axis of the elongated part; and

control the actuator to generate the bending force to bend the distal part of the elongated part in the second direction; and

rotate the image captured by the image sensor in accordance with the amount of rotation of the elongated part around the longitudinal axis detected by the sensor.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 30, 2017
From: INOUE, SHINTARO
To: OLYMPUS CORPORATION
Reel/Frame 041119/0539 →
Priority Claims (1)
JP 2014-257192 · Dec 19, 2014 · national
Continuity (2)
Continuation PCTJP2015083720 · Dec 1, 2015
Related Publication 20170135557A1 · May 18, 2017