IP Library Granted Patent US 8,950,863
Granted Patent B2
US 8,950,863 · App. 13/410,566 · Granted Feb 10, 2015

Image photographing apparatus and image photographing method

Inventor: Tomoyuki Makihira (Tokyo, JP)
Assignee: Canon Kabushiki Kaisha
A61B3/102G01B9/02091A61B2017/00216G02B27/0093
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Quick Facts
Patent No.
US 8,950,863
App. No.
13/410,566
Granted
Feb 10, 2015
Kind
B2
Abstract

An image photographing apparatus includes; an acquiring unit configured to acquire an image of an eye to be inspected, a measuring unit configured to measure movement of the eye to be inspected based on the image, a predicting unit configured to predict the movement of the eye to be inspected based on a cycle of the movement of the eye to be inspected which has been measured by the measuring unit, and a control unit configured to control an acquisition position where the acquiring unit acquires the image based on the movement of the eye to be inspected which has been predicted by the predicting unit.

Claims (48)

1. An image photographing apparatus comprising:

a measuring unit for measuring a movement of an eye to be inspected;

an acquiring unit for acquiring an image of a fundus of the eye to be inspected;

a control unit for controlling an acquiring position of the acquiring unit at a time of acquiring the image of the fundus; and

a predicting unit for predicting the movement of the eye to be inspected based on a periodical movement of the eye to be inspected with respect to a fixation target, which movement has been measured by the measuring unit,

wherein the control unit controls the acquiring position based on the movement of the eye to be inspected which has been predicted by the predicting unit,

wherein the movement of the eye to be inspected with respect to the fixation target includes (a) a leaving movement in which a gazing position of the eye to be inspected leaves from the fixation target and (b) a returning movement in which the gazing position returns to the fixation target, and

wherein the predicting unit predicts the movement of the eye to be inspected based on the leaving movement and the returning movement.

2. The image photographing apparatus according to claim 1 , wherein the acquiring unit is one of (a) a fundus tomographic image photographing unit configured to photograph a tomographic image of the eye to be inspected and (b) a fundus image photographing unit configured to photograph a planar image of the eye to be inspected.

3. The image photographing apparatus according to claim 2 , further comprising a storing unit configured to store measured data about the movement of the eye to be inspected,

wherein the predicting unit is configured to predict the movement of the eye to be inspected using (a) the movement with respect to the fixation target and (b) the measured data stored in the storing unit.

4. The image photographing apparatus according to claim 1 , wherein the measuring unit comprises a fundus image photographing unit configured to photograph a fundus image of the eye to be inspected, and measures the movement of the eye to be inspected based on a plurality of fundus images photographed by the fundus image photographing unit.

5. The image photographing apparatus according to claim 4 , wherein the measuring unit measures the movement of the eye to be inspected by executing pattern matching on the plurality of fundus images.

6. The image photographing apparatus according to claim 5 , wherein the measuring unit further comprises an area setting unit configured to set an area of the fundus image to undergo pattern matching.

7. The image photographing apparatus according to claim 4 , further comprising a storing unit configured to store measured data about the movement of the eye to be inspected,

wherein the predicting unit is configured to predict the movement of the eye to be inspected using (a) the movement with respect to the fixation target and (b) the measured data stored in the storing unit.

8. The image photographing apparatus according to claim 1 , further comprising a storing unit configured to store measured data about the movement of the eye to be inspected,

wherein the predicting unit is configured to predict the movement of the eye to be inspected using (a) the movement with respect to the fixation target and (b) the measured data stored in the storing unit.

9. The image photographing apparatus according to claim 1 , wherein the measuring unit measures rotation of an eyeball.

10. The image photographing apparatus according to claim 1 , further comprising a fixation unit configured to stabilize fixation of the eye to be inspected.

11. The image photographing apparatus according to claim 10 , further comprising a determining unit configured to determine a difference between a lighting position in the fixation unit and a fixation position at which the eye to be inspected is fixed,

wherein the predicting unit uses the difference for the prediction.

12. The image photographing apparatus according to claim 1 , wherein the measuring unit further comprises a calculating unit configured to calculate a difference between the predicted position and the acquiring position where the acquiring unit acquires the image.

13. The image photographing apparatus according to claim 1 , wherein the measuring unit determines a cycle of the movement of the eye to be inspected, and the predicting unit predicts the movement of the eye to be inspected based on the cycle.

14. An image photographing method comprising:

measuring a movement of an eye to be inspected;

acquiring an image of a fundus of the eye to be inspected, by an acquiring unit;

controlling an acquiring position of the acquiring step at a time of acquiring the image of the fundus; and

predicting the movement of the eye to be inspected based on a periodical movement of the eye to be inspected with respect to a fixation target, which movement which has been measured in the measuring step,

wherein the controlling step controls the acquiring position based on the movement of the eye to be inspected which has been predicted,

wherein the movement of the eye to be inspected with respect to the fixation target includes (a) a leaving movement in which a gazing position of the eye to be inspected leaves from the fixation target and (b) a returning movement in which the gazing position returns to the fixation target, and

wherein the predicting step predicts the movement of the eye to be inspected based on the leaving movement and the returning movement.

15. A non-transitory computer-readable recording medium that records a program which causes a computer to execute the respective steps of an image photographing method comprising:

measuring a movement of an eye to be inspected;

acquiring an image of a fundus of the eye to be inspected, by an acquiring unit;

controlling an acquiring position of the acquiring step at a time of acquiring the image of the fundus; and

predicting the movement of the eye to be inspected based on a periodical movement of the eye to be inspected with respect to a fixation target, which movement has been measured in the measuring step,

wherein the controlling step controls the acquiring position based on the movement of the eye to be inspected which has been predicted,

wherein the movement of the eye to be inspected with respect to the fixation target includes (a) a leaving movement in which a gazing position of the eye to be inspected leaves from the fixation target and (b) a returning movement in which the gazing position returns to the fixation target, and

wherein the predicting step predicts the movement of the eye to be inspected based on the leaving movement and the returning movement.

16. An apparatus comprising:

a measuring unit configured to measure a movement of an eye to be inspected;

an acquiring unit configured to acquire an image of a fundus of the eye to be inspected;

a control unit configured to control an acquiring position of the acquiring unit at a time of acquiring the image of the fundus; and

a predicting unit configured to predict the movement of the eye to be inspected based on a periodical movement of the eye to be inspected with respect to a fixation target, which movement has been measured by the measuring unit,

wherein the control unit controls the acquiring position based on the movement of the eye to be inspected which has been predicted by the predicting unit,

wherein the movement of the eye to be inspected with respect to the fixation target includes (a) a leaving movement in which a gazing position of the eye to be inspected leaves from the fixation target and (b) a returning movement in which the gazing position returns to the fixation target, and

wherein the predicting unit predicts the movement of the eye to be inspected based on the leaving movement and the returning movement.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2012
From: MAKIHIRA, TOMOYUKI
To: CANON KABUSHIKI KAISHA
Reel/Frame 028363/0078 →
Priority Claims (1)
JP 2011-052297 · Mar 10, 2011 · national
Continuity (1)
Related Publication 20120229765A1 · Sep 13, 2012