Abstract:
The present disclosure provides a cervical traction pillow includes a cervical traction pillow main body and a massage device. The cervical traction pillow main body is a flexible cervical traction pillow main body with a narrow upper part and a wide lower part, so as to form a neck brace traction portion at an upper end and a base at a lower end, a first back portion connected between the neck brace traction portion and the base, and two first side portions opposite and connected to the neck brace traction portion, the base, and the back portion. The neck brace traction portion and a bottom surface of the base are connected in an acute angle. The massage device is arranged on the cervical traction pillow main body.
Abstract:
A laryngeal nerve exciting system includes a collar holding a bridge, or a neckband, pressing soft tissue nerve exciters against a patient's neck providing a source of vibrations to stimulate the laryngeal nerve through the larynx. At least one exciter, and preferably two exciters, provide vibrations at preferably 70 Hz to 110 Hz and sufficiently strong to penetrate to the laryngeal nerve. The exciters may be held by the collar circling the neck, or by the neck band partially circling the neck. The therapy system includes a Personal Digital Assistant (PDA) and software which wirelessly connects, monitors, and triggers the device. The system may be used to treat dysphagia, chronic cough, and spasmodic dysphonia.
Abstract:
A lung gas exchange device includes a front housing, at least one strap configured to affix the front housing to an anterior neck of a user, a vibration device positioned within the front housing, a wear plate configured to transfer vibration from the vibration device to the anterior neck of the user, a power source configured to provide power to the vibration device, a power control mechanism configured to allow a user to turn on and off the vibration device; and a central processing unit board connected to the power control mechanism, the power source, and the vibration device.
Abstract:
In one or more embodiments, the present invention provide a versatile travel pillow that provides support to the user's head, neck, and shoulders, prevents the user from sliding sideways with respect to the seat, can be quickly and easily secured to the headrest or armrest of a seat or chair, and can be quickly and easily moved from one vehicle seat to another.
Abstract:
A device for assisting a caregiver in delivering therapy to a patient, the device comprising a user interface configured to deliver prompts to a caregiver to assist the caregiver in delivering therapy to a patient; at least one sensor configured to detect the caregiver's progress in delivering the therapy, wherein the sensor is other than an electrode in an electrical contact with the body; a memory in which a plurality of different prompts are stored; a processor configured to determine which of the different prompts should be selected for delivery based on the progress detected by the sensor.
Abstract:
A physical therapy and rehabilitation robot with an artificial intelligence for treating congenital or acquired joint, muscle, musculoskeletal system disorders and diseases affecting the locomotor system, minimizing the problems, handicaps or disabilities of the locomotor system, facilitating the daily life and minimizing dependence of a person on others for living, wherein it includes the following: a control panel, a head fastening element, a back fastening element, a leg-hip connection element, an arm exercise mechanism, an arm-shoulder connection mechanism and a leg exercise mechanism.
Abstract:
A method of rehabilitation using an actuator type that includes a movement mechanism capable of applying a force that interacts with a motion of a patient's limb in a volume of at least 30 cm in diameter, in at least three degrees of freedom of motion of the actuator and capable of preventing substantial motion in any point in any direction in said volume, in which a same movement mechanism is used at two different places of rehabilitation.
Abstract:
Embodiments may include a traction system, for example a cervical traction system for a neck of a user. Systems may include a housing assembly, plate assembly, handle assembly, and cable assembly. The housing assembly may include a drive assembly. The plate assembly may be operatively connected to the drive assembly. The handle assembly may be operatively connected to the drive assembly. The handle assembly may be configured to actuate movement of the plate assembly relative to the housing assembly. Embodiments may be configured to apply traction to the neck thereby providing a distraction distance or force to a portion of the cervical spine.
Abstract:
A device for assisting a caregiver in delivering therapy to a patient, the device comprising a user interface configured to deliver prompts to a caregiver to assist the caregiver in delivering therapy to a patient; at least one sensor configured to detect the caregiver's progress in delivering the therapy, wherein the sensor is other than an electrode in an electrical contact with the body; a memory in which a plurality of different prompts are stored; a processor configured to determine which of the different prompts should be selected for delivery based on the progress detected by the sensor.
Abstract:
A method of rehabilitation using an actuator type that includes a movement mechanism capable of applying a force that interacts with a motion of a patient's limb in a volume of at least 30 cm in diameter, in at least three degrees of freedom of motion of the actuator and capable of preventing substantial motion in any point in any direction in said volume, comprising: exercising a patient at a first place of rehabilitation selected from a bed, a wheel-chair, a clinic and a home, using an actuator of said actuator type which interacts with a motion of said patient; and second exercising said patient at a second place of rehabilitation selected from a bed, a wheel-chair, a clinic and a home using a second actuator of said actuator type which interacts with a motion of said patient; wherein said first exercising and said second exercising utilize a same movement mechanism design for moving the actuators.