IP Library Granted Patent US 10,524,635
Granted Patent B2
US 10,524,635 · App. 15/333,828 · Granted Jan 7, 2020

Endoscope, reception device, wireless endoscope system, image transmission method, image reception method, and non-transitory computer readable recording medium storing program

Inventor: Takahisa Endo (Tokyo, JP)
Assignee: OLYMPUS CORPORATION
A61B1/00016A61B1/00009A61B1/04G02B23/24G02B23/2484G06F11/14H04N5/2256G06F11/1443G06F11/221H04N2005/2255
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Quick Facts
Patent No.
US 10,524,635
App. No.
15/333,828
Granted
Jan 7, 2020
Kind
B2
Abstract

An endoscope includes an imaging unit configured to image a subject and output image data, a moving-image generation unit configured to generate moving-image data from the image data output from the imaging unit, a still-image generation unit configured to generate still-image data from the image data output from the imaging unit, a release instruction unit configured to receive an image-recording instruction from a user, a first wireless communication unit configured to sequentially change a wireless channel to transmit test data and transmit the still-image data to the reception device when the release instruction unit receives the image-recording instruction, a second wireless communication unit configured to transmit the moving-image data to the reception device using a wireless channel different from the wireless channel currently used by the first wireless communication unit, and a first setting unit configured to set a wireless channel determined from communication quality information.

Claims (33)

1. An endoscope, comprising:

an image sensor configured to image a subject and output image data;

a moving-image converter configured to generate moving-image data from the image data output from the image sensor;

a still-image converter configured to generate still-image data from the image data output from the image sensor;

a release instruction receiver configured to receive an image-recording instruction from a user;

a first wireless communicator configured to sequentially change a wireless channel to transmit test data used for detecting communication quality of each of a plurality of wireless channels to a reception device and transmit the still-image data to the reception device when the release instruction receiver receives the image-recording instruction;

a second wireless communicator configured to transmit the moving-image data to the reception device using a wireless channel different from the wireless channel currently used by the first wireless communicator; and

a first processor configured to set a wireless channel in the second wireless communicator, wherein the wireless channel is determined from communication quality information regarding the communication quality of the wireless channel used in the transmission of the test data,

wherein the communication quality information regarding the communication quality of the wireless channel used in the transmission of the test data is indicated by a communication data rate of the wireless channel used in the transmission of the test data.

2. The endoscope according to claim 1 , wherein the first wireless communicator sequentially changes the wireless channel at a previously designated time interval to transmit the still-image data to the reception device, when the release instruction receiver receives the image-recording instruction.

3. The endoscope according to claim 1 , wherein the first wireless communicator transmits the still-image data to the reception device using only one wireless channel, when the release instruction receiver receives the image-recording instruction.

4. The endoscope according to claim 1 ,

wherein the first wireless communicator or the second wireless communicator receives wireless channel information indicating a wireless channel determined from the communication quality information from the reception device, and

wherein the first processor sets the wireless channel indicated by the wireless channel information in the second wireless communicator.

5. The endoscope according to claim 1 ,

wherein the first wireless communicator or the second wireless communicator receives reception information indicating that the test data is received from the reception device, and

wherein the first processor generates the communication quality information on the basis of the reception information, determines a wireless channel on the basis of the generated communication quality information, and sets the determined wireless channel in the second wireless communicator.

6. The endoscope according to claim 1 , wherein the first processor sets the wireless channel determined from the communication quality information in the second wireless communicator, when the communication quality of the wireless channel used by the second wireless communicator is less than predetermined quality.

7. The endoscope according to claim 1 , wherein the first wireless communicator transmits information used for identifying the test data and the still-image data to the reception device.

8. A wireless endoscope system including an endoscope and a reception device,

wherein the endoscope incudes:

an image sensor configured to image a subject and output image data;

a moving-image converter configured to generate moving-image data from the image data output from the image sensor;

a still-image converter configured to generate still-image data from the image data output from the image sensor;

a release instruction receiver configured to receive an image-recording instruction from a user;

a first wireless communicator configured to sequentially change a wireless channel to transmit test data used for detecting communication quality of each of a plurality of wireless channels to a reception device and transmit the still-image data to the reception device when the release instruction receiver receives the image-recording instruction;

a second wireless communicator configured to transmit the moving-image data to the reception device using a wireless channel different from the wireless channel currently used by the first wireless communicator; and

a first processor configured to set a wireless channel in the second wireless communicator, the wireless channel being determined from communication quality information regarding the communication quality of the wireless channel used in the transmission of the test data, and

wherein the reception device includes:

a third wireless communicator configured to sequentially change a wireless channel to receive the test data and receive the still-image data;

a fourth wireless communicator configured to receive the moving-image data using a wireless channel different from the wireless channel used by the third wireless communication unit; and

a second processor configured to set a wireless channel determined from the communication quality information in the fourth wireless communication unit,

wherein the communication quality information regarding the communication quality of the wireless channel used in the transmission of the test data is indicated by a communication data rate of the wireless channel.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2016
From: ENDO, TAKAHISA
To: OLYMPUS CORPORATION
Reel/Frame 040175/0352 →
Priority Claims (1)
JP 2014-110594 · May 28, 2014 · national
Continuity (2)
Continuation PCTJP2015061954 · Apr 20, 2015
Related Publication 20170035272A1 · Feb 9, 2017
Cited By (1)
US 12,582,306