摘要:
According to the present invention, there is provided an imaging apparatus for diagnosis which includes first generating means for generating a closed curve indicating a blood vessel wall by extracting a position of the blood vessel wall using an ultrasonic cross-sectional image at a predetermined position in an axial direction, second generating means for generating a closed curve indicating a boundary of a blood flow region by extracting a boundary position of the blood flow region using an optical cross-sectional image at the predetermined position, and setting means for setting a region between the closed curve generated by the first generating means and the closed curve generated by the second generating means as the region of interest in the ultrasonic cross-sectional image or the optical cross-sectional image, in a case where the ultrasonic cross-sectional image and the optical cross-sectional image are aligned and overlapped with each other at the predetermined position.
摘要:
Apparatus are provided for monitoring a condition of a tissue based on a measurement of an electrical property of the tissue. In an example, the electrical property of the tissue is performed using an apparatus disposed above the tissue, where the apparatus includes at least two conductive structures, each having a non-linear configuration, where the at least two conductive structures are disposed substantially parallel to each other. In another example, the electrical property of the tissue is performed using an apparatus disposed above the tissue, where the apparatus includes at least one inductor structure.
摘要:
According to one embodiment, a biological optical measurement apparatus includes a light emission unit, plural detectors, an image acquisition unit, and a calculation unit. The light emission unit is arranged on a surface of a subject and configured to substantially vertically emit light from an emission surface of the light emission unit to the surface of the subject. The plural detectors are arranged on a surface of a subject and configured to substantially vertically emit light from an emission surface of the light emission unit to the surface of the subject. The image acquisition unit acquires an image with respect to the subject.
摘要:
The invention relates to a method and an ultrasonic imaging apparatus (20) for imaging a specular object (such as a biopsy needle) and a target anatomy in a tissue, whereby the specular object remains visible even when its location deviates from a target plane (21) including the target anatomy.
摘要:
According to one embodiment, a biological optical measurement apparatus includes a light emission unit, plural detectors, an image acquisition unit, and a calculation unit. The light emission unit is arranged on a surface of a subject and configured to substantially vertically emit light from an emission surface of the light emission unit to the surface of the subject. The plural detectors are arranged on a surface of a subject and configured to substantially vertically emit light from an emission surface of the light emission unit to the surface of the subject. The image acquisition unit acquires an image with respect to the subject.
摘要:
A configuration is provided for firmly fixing a transmitting and receiving unit for IVUS and a transmitting and receiving unit for OCT in a probe of an imaging apparatus for diagnosis in which space saving is achieved. According to the present invention, the probe includes a cylindrical housing 223 in which an ultrasonic wave transmitting and receiving unit 310 is arranged on a distal side and a light transmitting and receiving unit 320 is arranged on a proximal side. Two signal wires 311 of which one ends are connected to the ultrasonic wave transmitting and receiving unit 310 and which extend toward the proximal side substantially parallel to each other are arranged in the housing 223 so as to cause the distance between the two signal wires to be smaller than a width W of a ball lens portion 322 configuring the light transmitting and receiving unit 320 below the light transmitting and receiving unit 320.
摘要:
The invention relates to an ultrasonic measuring device (100) comprising an ultrasonic array (10) that is configured to detect ultrasonic signals, and a housing (20), which comprises an acoustic window portion (21) and a housing wall (22), wherein the ultrasonic array (10) is arranged in the housing (20) in acoustic contact with the acoustic window portion (21) and wherein the acoustic window portion (21) is configured to adhere to a surface of the object (1) to be examined. The invention further relates to an examination apparatus, which comprises at least one such ultrasonic measuring device (100), and to a method for ultrasonic signal detection, in particular for ultrasound-based imaging.
摘要:
An ultrasonic imaging support apparatus for supporting imaging performed by an ultrasonic probe that acquires an ultrasonic image of a subject includes a specification means configured to specify a position inside the subject in a three dimensional image, an identification means configured to identify a position on a body surface of the subject based on the specified position, and a display control means configured to display a position where the ultrasonic image acquired by the ultrasonic probe is captured and the identified position on a display means.
摘要:
A bedside controller includes an integrally formed housing and self-contained mounting structure disposed on the housing. The mounting structure includes a mounting channel defined in the housing and a retaining clamp disposed above the mounting channel and configured to releasably secure a mounting platform within the mounting channel such that the bedside controller is mounted to the mounting platform. The bedside controller also includes a touch-sensitive display disposed within a surface of the housing and configured to display images and receive user input on the surface, a processor disposed within the housing, a communication module disposed within the housing, communicatively coupled to the processor, and configured to transmit and receive medical data, and a battery disposed within the integrally formed housing and electrically coupled to the touch-sensitive display, the processor, and the communication module.