Abstract:
Disclosed herein is an ultrasonic imaging apparatus and a control method thereof. The ultrasonic imaging apparatus includes an acquisition unit configured to acquire a volume data of an object and a process configured to determine whether an acquisition position of the volume data is within an allowable range by using pre-stored landmark information and configured to acquire a plurality of reference planes from the volume data when the acquisition position of the volume data is within the allowable range.
Abstract:
Disclosed herein is an ultrasonic image processing method and apparatus. The ultrasonic image processing method includes acquiring volume data by radiating ultrasonic waves to an area around the uterus, extracting at least one object candidate group based on the acquired volume data, and displaying the at least one extracted object candidate group on a screen. The ultrasonic image processing apparatus includes a data acquisition unit acquiring volume data of an area around the uterus using ultrasonic waves, a data processing unit extracting at least one object candidate group based on the acquired volume data, and a display unit displaying the at least one extracted object candidate group on a screen.
Abstract:
Disclosed herein is an imaging apparatus including: an image producer configured to produce an image of an object; and an image information generator configured to identify the object, to receive geometry change information for the image of the object, and to generate extraction information corresponding to a geometry image of the object changed according to the geometry change information. Accordingly, it is possible to intuitively display a user's desired information.
Abstract:
Disclosed herein is an ultrasonic imaging apparatus and a control method thereof. The ultrasonic imaging apparatus includes an acquisition unit configured to acquire a volume data of an object and a process configured to determine whether an acquisition position of the volume data is within an allowable range by using pre-stored landmark information and configured to acquire a plurality of reference planes from the volume data when the acquisition position of the volume data is within the allowable range.
Abstract:
A 3D ultrasound image generating apparatus and method includes a volume-data generator to generate 3-dimensional (3D) volume data based on at least one cross-sectional image with respect to a body tissue of a subject, and a controller that generates the final 3D image having the adjusted 3D effect by volume rendering the 3D volume data based on the input stereo-depth value when a stereo-depth value used to adjust the 3D effect of a final 3D image generated based on the 3D volume data is input.
Abstract:
Disclosed herein are an ultrasonic imaging apparatus of successively displaying a plurality of slice images of an object at predetermined frame rate, and a control method of the ultrasonic imaging apparatus. According to an embodiment of the ultrasonic imaging apparatus, the ultrasonic imaging apparatus may include: an image processor configured to extract a target in an object based on volume data of the object; a controller configured to determine a region of interest in the object, based on the extracted target; and a display unit configured to successively display a plurality of slice images of the object, including the region of interest.
Abstract:
Disclosed herein is an imaging apparatus and a controlling method thereof, the imaging apparatus includes an image processing unit generating volume images of an object including a region of interest and extracting a reference plane of the volume images and an area setting unit automatically setting a distance from the reference plane, wherein the image processing unit may generate a 3D data of a region of interest based on a cross sectional data of the reference plane and a cross sectional data contained in a plurality of cross sectional images of the volume images existing in the distance.
Abstract:
Disclosed herein is a medical imaging apparatus including a volume data generation unit to generate volume data of an object containing a target site to be inspected, a position calculation unit to detect the target site from the volume data of the object and to calculate a center of the target site, a marker data generation unit to generate marker data, wherein the marker data are volume data of a volume marker located at a position corresponding to the center of the target site, and a synthesized data generation unit to generate synthesized data by synthesizing the volume data of the object and the marker data.According to the medical imaging apparatus and a control method therefor, depth or direction information regarding the target site inside the object may be acquired during volume navigation, and thus, a stereoscopic structure of the target site may be identified.