Patent classifications
A61B6/4447
Imaging support apparatus, method, and program for detecting an abnormal site in a medical image
An abnormal site detection unit detects an abnormal site included in a medical image acquired based on radiation transmitted through a subject. A position specifying unit generates positional information for specifying a position of the abnormal site based on a feature point of the subject included in the medical image in a case where the abnormal site is detected in the medical image. An information generation unit generates additional imaging instruction information, including information that indicates a type of additional imaging based on the abnormal site and information that indicates the position of the abnormal site based on the positional information, for instructing at least one additional imaging.
MEASUREMENT SYSTEM AND METHOD FOR OPERATING A MEASUREMENT SYSTEM
A method for operating a measurement system (100) comprises: generating a beam of electromagnetic radiation (25) directed along a central ray (27) using a radiation source (19); moving the radiation source (19) relative to an object region (35) so that the central ray (27) is directed onto a radiation detector (31) during the movement; wherein the moving of the radiation source (19) relative to the object region (35) comprises: rotating the radiation source (19) about a first axis of rotation (D1), wherein the radiation source (19) is disposed eccentrically to the first axis of rotation (D1); rotating the radiation source (19) about a second axis of rotation (D2), wherein the first axis of rotation (D1) and the second axis of rotation (D2) together enclose an acute angle (α) amounting to at most 80°.
MULTI-AXIS MEDICAL IMAGING
Provided herein is technology relating to radiology and radiotherapy and particularly, but not exclusively, to apparatuses, methods, and systems for multi-axis medical imaging of patients in vertical and horizontal positions.
COMPUTED TOMOGRAPHY (CT) MACHINE SYSTEM AND STATE MONITORING METHOD
A computed tomography (CT) machine system and a state monitoring method are described. The CT machine system comprises a drum-shaped component, a 3D camera, and a control system. The drum-shaped component comprises a cylindrical body, with the center of the cylindrical body being provided with a hollow portion which is rotationally symmetrical about the central axis of the cylindrical body, a rotating component disposed in the cylindrical body rotating about the central axis, a plurality of trigger marks arranged in the rotating component, and a window provided in the cylindrical body. The 3D camera generates image data that is transferred to the control system, from which the control system determines state data of the CT machine. The 3D camera captures an image of the trigger marks through the window to generate marked image data.
Multi-mode cone beam CT radiotherapy simulator and treatment machine with a flat panel imager
A multi-mode cone beam computed tomography radiotherapy simulator and treatment machine is disclosed. The radiotherapy simulator and treatment machine both include a rotatable gantry on which is positioned a cone-beam radiation source and a flat panel imager. The flat panel imager captures x-ray image data to generate cone-beam CT volumetric images used to generate a therapy patient position setup and a treatment plan.
System and method for mobile imaging
An imaging system is disclosed. The imaging system is operable to acquire and/or generate image data at positions relative to a subject. The imaging system includes a drive system configured to move the imaging system.
Medical diagnostic-imaging apparatus
A medical diagnostic-imaging apparatus according to an embodiment includes a gantry device and a processing circuitry. The gantry device includes an opening in which a subject is inserted. The processing circuitry is configured to set an inserting range indicating a range in which the subject is inserted into the opening by move of the subject or by move of the gantry device based on a scan plan. The processing circuitry is configured to acquire a position of the subject in the inserting range as first position information. The processing circuitry is configured to determine whether the subject interferes with the gantry device based on the first position information.
Cone-beam computed tomography imaging devices, systems, and methods
Cone-beam computer tomography systems, devices, and methods for image acquisition of large target volumes using partial scans.
Medical systems and methods
Medical systems and methods are provided in the present disclosure. The medical system may include a first medical device mounted on a first gantry. The first medical device may be configured to perform a first operation on a first region of an object. The medical system may also include a second medical device mounted on a second gantry. The second medical device may be configured to perform a second operation on a second region of the object. The second gantry may rotate relative to the first gantry. The first region may at least partially overlap the second region.
COUNTING RESPONSE AND BEAM HARDENING CALIBRATION METHOD FOR A FULL SIZE PHOTON-COUNTING CT SYSTEM
A method and a system for providing calibration for a polychromatic photon counting detector forward counting model. Measurements with multiple materials and known path lengths are used to calibrate the photon counting detector counting response of the forward model. The flux independent weighted bin response function is estimated using the expectation maximization method, and then used to estimate the pileup correction terms at plural tube voltage settings for each detector pixel. The beam hardening corrections are then applied to the measured projection data sinogram, and the corrected sinogram is reconstructed to the counting image at the selected single energy.