Patent classifications
A61B5/6835
CAMERA DEVICE
The camera device includes a camera member, a stand and an AI member. The camera member includes a camera and a body-temperature sensing member. The stand supports the camera member, and engages the camera. The AI member is electrically connected to the camera and the body-temperature sensing member, and controls the stand to move the camera according to an image captured by the camera and a temperature value detected by the body-temperature sensing member. The camera device may provide monitoring to a crowd of people within a specific region. The AI member determines the number of people based on the captured image and the detected temperature. When there is a large group of people, the camera is moved backward to cover more people. When there is a small group of people, the camera is moved forward to capture clearer images, thereby achieving effective monitoring.
Physiological monitoring device attachment assembly
An assembly for enabling a caregiver to secure a physiological monitoring device to an arm of a user can include the physiological monitoring device a cradle configured to removably secure to the physiological monitoring device and to the user's arm. The physiological monitoring device can include a first connector port configured to electrically connect to a first cable and a first locking tab movable between an extended position and a retracted position. The cradle can include a base, first and second sidewalls, a back wall connected to the base and the first and second sidewalls. The cradle can further include a first opening in the back wall configured to receive the first connector port and a second opening in the first sidewall configured to receive the first locking tab when the physiological monitoring device is secured to the cradle and the first locking tab is in the extended position.
MOTION STABILIZATION BY A HANDHELD TOOL
Systems and methods for tracking unintentional muscle movements of a user and stabilizing a handheld tool while it is being used by the user are described. The method may include detecting motion of a handle of the handheld tool manipulated by a user while the user is performing a task with a user-assistive device attached to an attachment arm of the handheld tool. Furthermore, the method may include storing the detected motion in a memory of the handheld tool as motion data. The method may also include controlling, based on the motion data, a motion-generating mechanism of the handheld tool that moves the attachment arm relative to the handle in a single degree of freedom in a direction of the detected motion of the handle.
APPARATUS AND METHOD FOR ASSESSING LAXITY OF A JOINT
An apparatus for evaluating motions of a joint is provided that is designed for determining stability of an anatomical joint. The apparatus includes a support frame, a fixation assembly for securing a first body segment of a joint, and a displacement assembly mounted to the support frame. The fixation assembly includes an axis of rotation moveable relative to the support frame. The displacement assembly includes a first frame pivotably mounted to the support frame and rotatably connected to a first end of the fixation assembly, and a second frame pivotably mounted to the support frame and rotatably connected to a second end of the fixation assembly. The apparatus can further include a pivot joint pivotably supporting the support frame whereby the support frame defines and is laterally pivotable within a support frame pivot plane.
APPARATUS AND METHOD FOR ASSESSING LAXITY OF A JOINT
An apparatus for evaluating motions of a joint is provided that is designed for determining stability of an anatomical joint. The apparatus includes a support frame, a fixation assembly for securing a first body segment of a joint, and a displacement assembly mounted to the support frame. The fixation assembly includes an axis of rotation movable relative to the support frame. The displacement assembly includes a first frame pivotably mounted to the support frame and rotatably connected to a first end of the fixation assembly, and a second frame pivotably mounted to the support frame and rotatably connected to a second end of the fixation assembly.
Non-invasive imaging systems and methods of use
Some embodiments of the present disclosure are directed to ultraweak photon emission imaging systems and methods. In some embodiments, a method comprises acquiring an ultraweak photon emission image of a target area of a patient for detection of a pathological condition; wherein the target area comprises an area of interest and a portion surrounding the area of interest, wherein acquiring the image comprises: enhancing formation of reactive oxygen species and/or reactive nitrogen species in the target area, wherein enhancing formation of the reactive oxygen species and/or the reactive nitrogen species comprises applying low level light illumination to the target area from 1 second to 60 minutes so as to achieve a total power output from 1 mW to 10,000 W using an average power density from 0.1 W/cm.sup.2 to 1 W/cm.sup.2; and imaging the target area, wherein imaging the target area comprises a total exposure time from 1 second to 60 minutes.
FLEXIBLE ELECTRICAL MEASUREMENT APPARATUS
An electrical measurement apparatus, comprising, a flexible circuit, the flexible circuit comprising electrical circuitry carried by a flexible substrate, the circuitry comprising one or more electrodes. The electrodes comprise a central portion and a plurality of legs extending radially outwards from the central portion in a spaced apart relationship. At least one electrical contact is located on each one of said plurality of legs; and the one or more electrodes are configured such that the plurality of electrical contacts of the one or more electrodes contact a user's head in use.
Two piece sensor assembly and method of use
Disclosed herein is a two-piece sensor assembly that includes an attachment collar configured to attach to a body surface of a patient and comprising at least one opening, and a skin sensor configured to seat into the at least one opening in the attachment collar. The skin sensor includes at least one radiation source configured to irradiate the body surface with at least one interrogation light, and at least one detector configured to detect at least one response light incident from the direction of the body surface.
3D SHOULDER MOTION MEASUREMENT DEVICE AND SCAPULAR ANGLE LOCATOR
Examples of systems, devices, and methods as described in this disclosure include a shoulder motion measurement system comprising a mounting device comprising a receptacle configured to hold an electronic device at a fixed orientation relative to a scapula of a patient, wherein the mounting device comprises one or more structures configured for handling by a user when aligning the shoulder motion measurement system against the patient.
Body coil for magnetic resonance imaging
A body coil for magnetic resonance imaging includes one or more coil elements incorporated in a shell material. The body coil has a rectangular basic shape. Two opposing edge sections of the body coil may be pivoted along one pivot axis, respectively, relative to a middle section. For this purpose, movement elements that effect pivoting are arranged on an edge section side.