IP Library › Granted Patent US 9,489,748
Granted Patent B2
US 9,489,748 · App. 14/479,879 · Granted Nov 8, 2016

Image processing apparatus and method, image processing system, and non-transitory computer readable medium

Inventor: Makoto Sasaki (Kanagawa, JP)
Assignee: FUJI XEROX CO., LTD.
G06T7/408G06T7/0081H04N1/60H04N9/643H04N9/68G06T2207/10024G06T2207/20141
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Quick Facts
Patent No.
US 9,489,748
App. No.
14/479,879
Granted
Nov 8, 2016
Kind
B2
Abstract

An image processing apparatus includes the following elements. An image information obtaining unit obtains image information concerning a first image. A position information obtaining unit obtains first position information indicating a representative position of a specified region which has been specified by a user from the first image as an image region to be subjected to image processing. A region detector detects the specified region from the first position information. An image processor performs image processing on the specified region.

Claims (50)

1. An image processing apparatus comprising:

a processor and a memory configured to execute:

an image information obtaining unit configured to obtain a first image information concerning a first image and a second image information concerning a second image;

a region detector configured to detect a specified region from the first image information and a model region from the second image information;

a parameter calculator configured to calculate an amount of characteristic of the specified region from the first image information and an amount of characteristic of the model region from the second image information, the parameter calculator further calculating the parameter for adjusting an image quality of the specified region to an image quality of the model region on the basis of both of the amount of characteristic of the specified region and that of the model region;

an image processor configured to perform image processing on the specified region for adjusting the image quality of the specified region to the image quality of the model region, on the basis of the calculated parameter; and

a display configured to display a first image, corresponding to the first image information, and a second image, corresponding to the second image information, at a same time, wherein

in response to a user input to the display in a direction of the first image, the image quality is approximated as the specified region, and in response to the user input to the display in a direction of the second image, the image quality is approximated as the model region.

2. The image processing apparatus according to claim 1 , wherein:

a plurality of specified regions are provided at a same time; and

the image processing apparatus further comprises a region switching unit configured to switch between the plurality of specified regions.

3. An image processing method comprising:

obtaining a first image information concerning a first image and a second image information concerning a second image;

detecting a specified region from the first image information and a model region from the second image information;

calculating an amount of characteristic of the specified region from the first image information and an amount of characteristic of the model region from the second image information and calculating the parameter for adjusting an image quality of the specified region to an image quality of the model region on the basis of both of the amount of characteristic of the specified region and that of the model region;

performing image processing on the specified region for adjusting the image quality of the specified region to the image quality of the model region, on the basis of the calculated parameter;

displaying the first image and the second image on a display at a same time, wherein

in response to a user input to the display in a direction of the first image, the image quality is approximated as the specified region, and in response to the user input to the display in a direction of the second image, the image quality is approximated as the model region.

4. An image processing system comprising:

a display device configured to display a first image;

an image processing apparatus configured to perform image processing on image information concerning the first image displayed on the display device; and

an input device configured to receive an instruction from a user concerning image processing into the image processing apparatus,

the image processing apparatus including

an image information obtaining unit configured to obtain a first image information concerning the first image and a second image information concerning a second image,

a region detector configured to detect a specified region from the first image information and a model region from the second image information,

a parameter calculator configured to calculate an amount of characteristic of the specified region from the first image information and an amount of characteristic of the model region from the second image information, the parameter calculator further calculating the parameter for adjusting an image quality of the specified region to an image quality of the model region on the basis of both of the amount of characteristic of the specified region and that of the model region, and

an image processor configured to perform image processing on the specified region for adjusting the image quality of the specified region to the image quality of the model region, on the basis of the calculated parameter; wherein

the display device is configured to display the first image and the second image at a same time, and

in response to a user input to the display device in a direction of the first image, the image quality is approximated as the specified region, and in response to the user input to the display in a direction of the second image, the image quality is approximated as the model region.

5. A non-transitory computer readable medium storing a program causing a computer to execute a process, the process comprising:

obtaining a first image information concerning a first image and a second image information concerning a second image;

detecting a specified region from the first image information and a model region from the second image information;

calculating an amount of characteristic of the specified region from the first image information and an amount of characteristic of the model region from the second image information and calculating the parameter for adjusting an image quality of the specified region to an image quality of the model region on the basis of both of the amount of characteristic of the specified region and that of the model region; and

performing image processing on the specified region for adjusting the image quality of the specified region to the image quality of the model region, on the basis of the calculated parameter; and

displaying the first image and the second image on a display at a same time, wherein

in response to a user input to the display in a direction of the first image, the image quality is approximated as the specified region, and in response to the user input to the display in a direction of the second image, the image quality is approximated as the model region.

6. The image processing apparatus according to claim 2 , wherein the plurality of specified regions are displayed at a same time.

7. The image processing apparatus according to claim 1 , further comprising:

a position information obtaining unit configured to obtain the first position information indicating a representative position of a specified region which has been specified by a user from the first image as an image region to be subjected to image processing, wherein

the position information obtaining unit is further configured to obtain the second position information indicating a representative position of the model region which has been specified by the user from the second image as an image region serving as the model used for image processing to be performed on the specified region of the first image.

8. The image processing method according to claim 3 , further comprising:

obtaining the first position information indicating a representative position of a specified region which has been specified by a user from the first image as an image region to be subjected to image processing, wherein

the obtaining includes obtaining the second position information indicating a representative position of the model region which has been specified by the user from the second image as an image region serving as the model used for image processing to be performed on the specified region of the first image.

9. The image processing apparatus according to claim 4 , wherein the image processing apparatus further includes:

a position information obtaining unit configured to obtain the first position information indicating a representative position of a specified region which has been specified by a user from the first image as an image region to be subjected to image processing, wherein

the position information obtaining unit is further configured to obtain the second position information indicating a representative position of the model region which has been specified by the user from the second image as an image region serving as the model used for image processing to be performed on the specified region of the first image.

10. The non-transitory computer readable medium according to claim 5 , further comprising:

obtaining the first position information indicating a representative position of a specified region which has been specified by a user from the first image as an image region to be subjected to image processing, wherein

the obtaining includes obtaining the second position information indicating a representative position of the model region which has been specified by the user from the second image as an image region serving as the model used for image processing to be performed on the specified region of the first image.

11. The image processing apparatus according to claim 1 , wherein the first image is display on a left side of the display and the second image is displayed on a right side of the display.

Assignments (2)
CHANGE OF NAME Recorded Aug 12, 2021
From: FUJI XEROX CO., LTD.
To: FUJIFILM BUSINESS INNOVATION CORP.
Reel/Frame 058287/0056 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2014
From: SASAKI, MAKOTO
To: FUJI XEROX CO., LTD.
Reel/Frame 033700/0424 →
Priority Claims (1)
JP 2014-039870 · Feb 28, 2014 · national
Continuity (1)
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