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202 results about "Ultrasound angiography" patented technology

Angiography only reveals the edge of the atheroma that protrudes into the lumen. Intravascular ultrasound image of a coronary artery (left), with color-coding on the right, delineating the lumen (yellow), external elastic membrane (blue) and the atherosclerotic plaque burden (green).

Apparatus and methods for imaging and attenuation correction

Imaging apparatus, is provided, comprising a first device, for obtaining a first image, by a first modality, selected from the group consisting of SPECT, PET, CT, an extracorporeal gamma scan, an extracorporeal beta scan, x-rays, an intracorporeal gamma scan, an intracorporeal beta scan, an intravascular gamma scan, an intravascular beta scan, and a combination thereof, and a second device, for obtaining a second, structural image, by a second modality, selected from the group consisting of a three-dimensional ultrasound, an MRI operative by an internal magnetic field, an extracorporeal ultrasound, an extracorporeal MRI operative by an external magnetic field, an intracorporeal ultrasound, an intracorporeal MRI operative by an external magnetic field, an intravascular ultrasound, and a combination thereof, and wherein the apparatus further includes a computerized system, configured to construct an attenuation map, for the first image, based on the second, structural image. Additionally, the computerized system is configured to display an attenuation-corrected first image as well as a superposition of the attenuation-corrected first image and the second, structural image. Furthermore, the apparatus is operative to guide an in-vivo instrument based on the superposition.
Owner:SPECTRUM DYNAMICS MEDICAL LTD

Method and system for stabilizing a series of intravascular ultrasound images and extracting vessel lumen from the images

InactiveUS20110033098A1Accurate and effective diagnosticsAccurate and effective and therapeuticUltrasonic/sonic/infrasonic diagnosticsImage enhancement3d shapesSonification
A method and system for generating stabilized intravascular ultrasonic images are provided. The system may include a probe instrument, such as a catheter, connected to a processor and a post-processor. The method of using the system to stabilize images and the method for stabilizing images involve the process by which the processor and post-processor stabilize the image. A computer readable medium containing executable instructions for controlling a computer containing the processor and post-processor to perform the method of stabilizing images is also provided. The probe instrument, which has a transmitter for transmitting ultrasonic signals and a receiver for receiving reflected ultrasonic signals that contain information about a tubular environment, such as a body lumen, preferably is a catheter. The processor and post-processor are capable of converting inputted signals into one or more, preferably a series of, images and the post-processor, which determines the center of the environment at each reflection position, detects the edges of the tubular environment and aligns the image center with the environment center thereby limiting the drift of images, which may occur due to movement of the environment, and stabilizing the images. The processor may also be programmed to filter images or series of images to improve the image stabilization and remove motion interference and/or may be programmed to extract the 3D shape of the environment. The method and device are of particular use where motion causes image drift, for example, the imaging a body lumen, in particular a vascular lumen, where image drift may occur due to heart beat or blood flow.
Owner:MEDINOL LTD

Method for intravascular ultrasound multi-slice shear wave elastography

InactiveCN104055541AAchieve early diagnosisStrengthening Early Diagnosis CapabilitiesOrgan movement/changes detectionSurgeryPulse beamMulti slice
The invention discloses a method for intravascular ultrasound multi-slice shear wave elastography. The method comprises the following steps of recording an original ultrasound echo signal of a tissue to be detected; enabling an interventional ultrasound array probe to generate acoustic radiation force by virtue of a short-pulse signal controlled by a computer; emitting ultrasonic pulse beams for many times to accept and detect a propagation process of shear waves generated by the acoustic radiation force; analyzing the propagation speed of the shear waves in the tissue to be detected to obtain a wave speed distribution image of the shear waves in the tissue; performing wave speed mapping on the shear waves at each position in the tissue to be detected to obtain a quantitative elastic image of the intravascular tissue. The method has the advantages of real time performance, quantification, high speed, high resolution and the like; a multi-array element intravascular transducer array is used for performing vascular wall tissue elastic information quantitative analysis to excite and track the shear waves; the further popularization and application of intravascular elastography are favorably promoted, and the early diagnosis capability of people in cardiovascular diseases is enhanced.
Owner:SUZHOU INST OF BIOMEDICAL ENG & TECH CHINESE ACADEMY OF SCI

Vascular four-dimensional reconstruction method in NOT gate-controlled ICUS (intravascular ultrasound) image sequence

The invention discloses a vascular four-dimensional reconstruction method in a NOT gate-controlled ICUS (intravascular ultrasound) image sequence. The method comprises the following steps: accurately positioning an ultrasonic catheter retracement path by utilizing a pair of approximate orthorhombic CAG (chronic atrophic gastritis) image sequences collected with an ICUS image synchronously; carrying out four-dimensional reconstruction on a morphological structure of a target vessel section containing possibly existing plaques through combining the cross section information of a vessel lomen extracted from the ICUS image; and reproducing true forms of coronary vessels at each time phase in a cardiac cycle. With the adoption of the vascular four-dimensional reconstruction method in the NOT gate-controlled ICUS image sequence, the four-dimensional reconstruction of the morphological structure of a coronary artery target vessel section containing the possibly existing plaques is realized, the true forms of the target vessel section at different time phases in the cardiac cycle can be comprehensively and truly reflected; and more reliable accordance can be provided for clinical diagnosis and treatment of coronary arteriesarteriosclerosis osteolytic lesions and research of biomechanical characteristics of coronary artery vascular tissues and the like. The method does not need an ECG-gating acquisition device, and also does not need ECG signals, so that the interventional examination time is greatly shortened, and the requirements on the original image data are reduced.
Owner:NORTH CHINA ELECTRIC POWER UNIV (BAODING)
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