A61B5/0057

Garment medical examination system
12262998 · 2025-04-01 ·

A medical diagnostic device that includes: electrocardiogram leads configured to make contact with a body of a user; a microphone configured to detect, record, transmit, or a combination thereof internal sounds from the body of the user; a blood pressure cuff; and a pulse oximeter, wherein the chair is configured to provide a medical physical examination of the user based upon medical data collected with the electrocardiogram leads, the microphone, the blood pressure cuff, the pulse oximeter, or a combination thereof.

Multi-dimensional broad-spectrum clinical in-situ testing equipment for evaluating mechanical properties of plantar soft tissue

The invention provides a multi-dimensional broad-spectrum clinical in-situ testing equipment designed to evaluate the material properties of plantar soft tissue. The equipment comprises the following features: 1. A testing table with a designated area corresponding to the sole of the foot; 2. A vertical reciprocating stress-strain testing unit mounted on the testing table, for applying vertical tensile and compressive stresses to the plantar and measuring the stress-strain responses; 3. A shear stress-strain testing unit, mounted on the testing table, for applying shear stresses to the plantar and measuring the stress-strain responses; 4. A torque stress-strain detection unit, positioned on the testing stage, for applying torque to the plantar and measuring the stress-strain responses; 5. A lifting mechanism that facilitates the vertical movement of the three testing units. In conclusion, the device is capable of multi-dimensional detection of the mechanical properties of plantar and features a compact structure and easy portability.

DETERMINATION OF STRUCTURAL CHARACTERISTICS OF AN OBJECT

The present invention relates generally to a system and method for measuring the structural characteristics of an object. The object is subjected to an energy application processes and provides an objective, quantitative measurement of structural characteristics of an object. The system may include a device, for example, a percussion instrument, capable of being reproducibly placed against the object undergoing such measurement for reproducible positioning. The system includes features for adjusting the energy applied to an energy application tool to compensate for the physical characteristics or type of the object, and/or for orientation of the device relative to the horizontal during measurement. The system also includes a disposable feature or assembly for minimizing cross-contamination between tests. The structural characteristics as defined herein may include vibration damping capacities, acoustic damping capacities, structural integrity or structural stability.

Device and method to detect and remove blood clots for treatment of ischemic stroke using force and electromagnetic sensing

A device can detect and retrieve a blood clot by advancing a catheter with a clot sensing element through a patient's vascular system. The catheter can map, using an electromagnetic sensor disposed at a distal end of the clot sensing element, the patient's vascular system. A force sensor can generate a position signal indicating the clot sensing element contacted the clot in the patient's vascular system. Once located, a blood clot retrieval device can be deployed through the catheter and a lumen in the clot sensing element to remove the clot from the patient's vascular system.

Determining structural characteristics of an object

The present invention relates generally to a system and method for measuring the structural characteristics of an object. The object is subjected to an energy application processes and provides an objective, quantitative measurement of structural characteristics of an object. The system may include a device, for example, a percussion instrument, capable of being reproducibly placed against the object undergoing such measurement for reproducible positioning. The system does not include an external on/off switch or any remote on/off switching mechanism. The system also includes a disposable feature or assembly for minimizing cross-contamination between tests. The structural characteristics as defined herein may include vibration damping capacities, acoustic damping capacities, structural integrity or structural stability.

DETERMINATION OF STRUCTURAL CHARACTERISTICS OF AN OBJECT

The present invention relates generally to a system and method for measuring the structural characteristics of an object. The object is subjected to an energy application processes and provides an objective, quantitative measurement of structural characteristics of an object. The system may include a device, for example, a percussion instrument, capable of being reproducibly placed against the object undergoing such measurement for reproducible positioning. The system includes features for adjusting the energy applied to an energy application tool to compensate for the physical characteristics or type of the object, and/or for orientation of the device relative to the horizontal during measurement. The system also includes a disposable feature or assembly for minimizing cross-contamination between tests. The structural characteristics as defined herein may include vibration damping capacities, acoustic damping capacities, structural integrity or structural stability.

Imaging-based reflex measurements for sedation depth monitoring
12414737 · 2025-09-16 · ·

The present invention relates to sedation assessment. In order to facilitate sedation depth monitoring in an autonomous imaging setting, it is proposed to use the imaging modality itself to measure the response to suitable reflexes in order to determine the depth of sedation wherein suitable reflexes include, but are not limited to, the pupil reflex, so-called superficial reflexes and the withdrawal reflexes. In one embodiment, the pupil reflex may be measured in an MRI system by repeated interleaving of dedicated iris MR imaging with the conventional scan protocol. In another embodiment, superficial reflexes in response to stroking of the skin may be measured. This may involve a dedicated actuator that may be closely integrated with the imaging modality, e.g. an MR receive coil applied to the patient. Alternatively, remote haptic systems may be used. The reflex is then acquired with a suitable diagnostic imaging method. In another embodiment, the withdrawal reflex in response to pain may be measured. This may involve an actuator that induces sudden stitching pain or very local temperature-induced pain and that is closely integrated with the imaging modality, e.g. a pinching device integrated with a patient support or an MR receive coil applied to the patient. The reflex is then acquired with a suitable diagnostic imaging method.

SYSTEM AND METHOD FOR NON-INVASIVE ASSESSMENT AND TREATMENT OF INFLAMMATORY CONDITIONS
20250318731 · 2025-10-16 · ·

The present disclosure provides methods and systems for monitoring of physiological parameters of a patient. More specifically, the present disclosure provides non-invasive assessment and treatment of inflammatory conditions in patients.

Measuring device intended to be placed in contact with a tissue and method for analyzing the measured tissue data
12490900 · 2025-12-09 · ·

A measuring device intended for being placed in contact with a tissue and a method for analysing the measured tissue data. A measuring device intended for being placed in contact with a tissue, and including an indenter configured to cause a deformation of the tissue, a strain gauge configured to measure a force of resistance of the tissue to the deformation caused by the indenter; and a position sensor configured to measure an indentation depth representative of a movement of the indenter. A method for analysing tissue data relating to a tissue, the method being implemented by computer and including a step of associating a measurement of the indentation depth and a measurement of the force of resistance to the deformation corresponding to the indentation depth.

System and method for determining optimal angle for a foot
12502100 · 2025-12-23 ·

An assembly and a method is described. The assembly includes a platform, a motive source, a sensor, a controller and a computerized system. The computerized system has logic configured to cause a processor to send a signal to the controller to cause the motive source to move the platform through at least a portion of a range of inclination angles and to receive data indicating at least one of muscle activity, movement, and ground reaction force applied to the platform at a determined angle, and to cause the processor to analyze the data to determine an orthotic angle for a user's foot.