Abstract:
Radiographic images for different imaging directions taken by applying radiation to a subject from the different imaging directions are obtained, and a plurality of first tomographic images having a first slice thickness are generated based on the obtained plurality of radiographic images and a plurality of second tomographic images having a second slice thickness that is greater than the first slice thickness are generated based on the radiographic images. Then, MinIP processing is applied to the first tomographic images to generate a MinIP image, and MIP processing is applied to the second tomographic images to generate a MIP image. Then, combining processing is performed using the MinIP image and the MIP image to generate a composite image.
Abstract:
An adiological image detection apparatus 3 includes a phosphor 60 that contains a fluorescent material which emits fluorescence by radiation exposure, and a sensor panel 61 which is provided to be in close contact with the phosphor, and detects the fluorescence emitted from the phosphor. The phosphor includes a columnar section that is formed by a group of columnar crystals 82 formed by growing crystals of the fluorescent material in a columnar shape, a radiation incident plane is provided in the sensor panel at a side opposite to the phosphor, and the sensor panel has flexibility and is curved to locate a curvature center at the radiation incident plane side.
Abstract:
Disclosed is a radiation imaging device configuring a radiation imaging system. Specifically disclosed is a radiation imaging device wherein external force action mechanisms are capable of applying external force to the peripheral sections of a radiation conversion panel, or applying the external force while being laminated on the radiation conversion panel, or pressing the radiation conversion panel against the inner wall of a panel containing unit, which contains the radiation conversion panel, at least in imaging when radiation is applied.
Abstract:
A test apparatus comprising at least one processor, wherein the processor is configured to acquire a determination result as to whether or not there is an abnormal tendency in first biological information, the determination result being determined based on a monitoring result of the first biological information of a user, determine, as a test candidate to be recommended for the user, at least one test candidate for acquiring second biological information associated with the first biological information in a case where the determination result corresponds to the abnormal tendency, present the determined test candidate to the user, receive selection of the presented test candidate, and present a guide according to the selected test candidate to the user.
Abstract:
A test support apparatus including at least one processor, wherein the processor is configured to determine whether or not there is an abnormal tendency in first biological information of a user by monitoring the first biological information, determine, as plural action candidates to be recommended for the user, plural action candidates including at least one test candidate for acquiring second biological information associated with the first biological information in a case where there is the abnormal tendency in the first biological information, and present the plurality of action candidates to the user.
Abstract:
A test support apparatus including at least one processor, wherein the processor is configured to predict a timing at which a postprandial hyperglycemic spike occurs by monitoring a variation in a blood glucose equivalent value of a user that correlates with a blood glucose value, and provide a notification of at least one blood sampling timing for measuring the blood glucose value based on a result of the prediction.
Abstract:
Provided are a regenerative medicine support system, a regenerative medicine support method, and a regenerative medicine support program capable of obtaining an appropriate treatment policy according to a target animal that is a target of regenerative medicine. The regenerative medicine support system includes a CPU and a storage unit that stores a command executable by the CPU in an information processing apparatus. The CPU collects a plurality of pieces of treatment record information including content of treatment based on a regenerative medicine and a treatment result by the treatment for each breed of an animal that is a target of the treatment, acquires breed information indicating the breed of the target animal that is the target of the treatment, and provides a treatment policy of the target animal, which is derived on the basis of the treatment record information in which the breed represented by the breed information is the treatment target among the plurality of pieces of collected treatment record information.
Abstract:
A medical care support device includes: an acquisition unit that acquires medical information including medical image data obtained by capturing a digestive tract of a subject; a derivation unit that derives presence or absence of a foreign object in the digestive tract, based on the medical information and a learned model learned in advance using plural pieces of learning medical information including the medical image data in which a label according to a kind of the foreign object is assigned to the foreign object in the digestive tract according to each organ of the digestive tract, and derives at least one of position, size, or kind of the foreign object if the foreign object is present; and an output unit that outputs removal information of the foreign object according to the at least one of position, size, or kind of the foreign object, based on a result of the derivation.
Abstract:
A medical care support device includes an acquisition unit that acquires medical information including medical image data representing a medical image obtained by imaging a bone of a subject and age information representing an age of the subject in a case where the medical image is imaged, a derivation unit that derives presence or absence of a fracture in a growth plate of the subject, based on the medical information acquired by the acquisition unit and a learned model learned in advance using a plurality of pieces of learning medical information including the medical image data and the age information, and a warning information output unit that outputs warning information representing a warning in a case where the growth plate of the subject is fractured.
Abstract:
There are provided a sample acquisition information management device, a sample acquisition information management system, and a sample acquisition information management method that allow a subject who is to collect a sample by oneself to reliably perform a sample acquisition operation. Each of the sample acquisition information management device and the sample acquisition information management system includes an image acquisition unit (16) that acquires an image and a video of a sample acquisition operation of a subject using a sample examination kit, an output unit (18) that outputs acquisition means information and operation check information, and a processing unit (20) that determines whether or not the image or the video acquired by the image acquisition unit (16) corresponds to a correct sample acquisition operation and controls display of the acquisition means information and the operation check information. Further, the sample acquisition information management method uses the sample acquisition information management system.