Abstract:
A method for controlling a temperature of a tissue and a temperature controlling apparatus using the method. According to the method, a tissue parameter of a target tissue is obtained in advance and used to determine an optimum intensity of ultrasound irradiation in order to maintain the target tissue at a target temperature.
Abstract:
An apparatus and a method are provided to generate an ultrasound to be transmitted from an ultrasound irradiation device. The apparatus and the method include acquiring a medical image including anatomical information about a subject, and calculating characteristics of a tissue in the subject, which may affect propagation of the ultrasound based on the medical image. The apparatus and method also determine a parameter of the ultrasound to create a focal point on the subject using the calculated characteristics, and generate the ultrasound according to the determined parameter.
Abstract:
Provided is a method of generating ultrasound that forms focus points in a region of interest. Additional embodiments include related apparatuses and system embodiments. The method includes: setting focus patterns that each indicate focus points to be formed by radiating therapeutic ultrasound to a region of interest of an object; calculating a parameter of the therapeutic ultrasound based on characteristics of tissue in the region of interest existing on a path through which the therapeutic ultrasound moves; and generating therapeutic ultrasound set at different frequencies to form the focus patterns, based on the calculated parameter.
Abstract:
A method of generating therapeutic ultrasound that forms multi-foci by a therapeutic ultrasound probe, the method including: obtaining a medical image including anatomical information of a region of interest in a subject; calculating, by using the medical image, characteristics which influence traveling of therapeutic ultrasound with respect to tissues included in the region of interest; calculating, by using the calculated characteristics, a parameter of the therapeutic ultrasound for forming multi-foci in the region of interest; and generating the therapeutic ultrasound according to the calculated parameter.
Abstract:
An ultrasound probe includes a therapeutic ultrasound transducer, a slot disposed in the therapeutic ultrasound transducer, and a first diagnostic ultrasound transducer disposed in the slot and configured to move along the slot.
Abstract:
Provided are an ultrasound system and methods that deliver medication through skin by using multiple frequencies. The method to deliver medication through skin include irradiating the skin with ultrasound having a first frequency to cavitate a skin tissue; irradiating the skin with ultrasound having a second frequency, which is lower than the first frequency, to collapse the cavitated tissue; and delivering the medication through the collapsed tissue, wherein a single transducer is configured to produce the ultrasound having the first frequency and the ultrasound having the second frequency.