Abstract:
A device for passive therapeutic exercise comprises at least one pedal for supporting a foot during a swivelling motion of the foot, the pedal being pivotally mounted on a shaft, the pedal arranged on a side of a drive housing on a revolving shaft extending from the side wall of the drive housing, the revolving shaft coupled with a drive mechanism arranged in the drive housing to create a forced swinging movement of the pedal around an axis of the shaft, whereas the axis of swinging movement of the pedal is arranged under the pedal adjacent to the perpendicular projection of the ankle joint to the pedal, whereas the drive housing may be provided with outriggers to adjust the inclination of the drive housing towards the base, and a mechanism to switch operations on and off, and regulate the size of range and speed of the pedal swinging movement.
Abstract:
A vacuum therapy apparatus includes a vacuum chamber configured to receive an organ to be treated, a vacuum pump coupled to the vacuum chamber and configured to draw air from the vacuum chamber so that blood is drawn into the organ, a controller configured to cause the vacuum pump to undergo an operating cycle in which the organ is changed from a flaccid to an erectile state and then back to an flaccid state, causing tissues of the organ to expand and contract, and a memory provided on a detachable part of the apparatus and configured to store information regarding at least one operating cycle under which the apparatus has operated.
Abstract:
Described herein are methods for determining a target musculoskeletal activity cycle (MSKC) to cardiac cycle (CC) timing relationship. The method may include detecting a first characteristic of a signal responsive to a CC timing of a user that repeats at a frequency that corresponds to a heart rate of the user; detecting a second characteristic of a signal responsive to a rhythmic musculoskeletal cycle activity (MSKC) timing of the user that repeats at a frequency that corresponds to the MSKC rate of the user; determining a value representative of an actual timing relationship between the first characteristic and the second characteristic; detecting a third characteristic of a signal corresponding to a physiological metric that varies with the actual timing relationship between the first and second characteristics; and determining a target value representative of a preferred timing relationship between the first and second characteristics.
Abstract:
The modular adult toy includes a base module with a housing having a first connection half at one end; and at least one shaft module. Each shaft module includes a body having a second connection half at one end and a first connection half at an opposite end. There is a head module having a body having a second connection half at one end. Each of the first connection halves are configured to be releasably connectable with any second connection half.
Abstract:
Described here are devices, systems, and methods for treating one or more conditions (such as dry eye) or improving ocular health by providing stimulation to nasal or sinus tissue. Generally, the devices may be handheld or implantable. In some variations, the handheld devices may have a stimulator body and a stimulator probe having one or more nasal insertion prongs. When the devices and systems are used to treat dry eye, nasal or sinus tissue may be stimulated to increase tear production, reduce the symptoms of dry eye, and/or improve ocular surface health.
Abstract:
A multimodal haptic device operating as a closed-loop system, the device including a pipeline configured to allow a closed-loop flow of a fluid medium, a manifold operatively connected to the pipeline, the manifold having a pump and a valve to control and regulate a flow of the fluid medium along the pipeline, and a display unit operatively connected to the pipeline, the display unit having a tactile display and a valve operatively connected to the tactile display for regulating an efflux of the fluid medium from the tactile display into the pipeline.
Abstract:
A device for sexual stimulation includes: a support structure defining a centerline; a first vibratory actuator including a first motor, a first output shaft, and a first eccentric mass coupled to the first output shaft, the first vibratory actuator elastically coupled to the support structure opposite the first eccentric mass in a cantilever configuration; a second vibratory actuator including a second motor, a second output shaft, and a second eccentric mass coupled to the second output shaft, the second vibratory actuator elastically coupled to the support structure opposite the second eccentric mass in a cantilever configuration, the first vibratory actuator and the second vibratory actuator substantially parallel and arranged on opposing sides of the centerline; and a sheath including a first section arranged over the first vibratory actuator, a second section arranged over the second vibratory actuator, and a third section arranged over a portion of the support structure.
Abstract:
Described here are devices, systems, and methods for treating one or more conditions (such as dry eye) or improving ocular health by providing stimulation to nasal or sinus tissue. Generally, the devices may be handheld or implantable. In some variations, the handheld devices may have a stimulator body and a stimulator probe having one or more nasal insertion prongs. When the devices and systems are used to treat dry eye, nasal or sinus tissue may be stimulated to increase tear production, reduce the symptoms of dry eye, and/or improve ocular surface health.
Abstract:
The disclosure relates to a system including a processor configured to generate stimulation control signals in response to a detection of a respiratory disorder. The system further includes at least one kinesthetic effector with a vibrating electromechanical transducer applied to a site on a patient's skin for delivering a kinesthetic stimulation energy determined by the control signals. The processor is further configured to determine the effectiveness of a stimulation by detecting a disappearance of the respiratory disorder. The processor is further configured to determine a therapy by selecting a stimulation strategy among several stimulation strategies according to a type of expected or detected disorder.
Abstract:
Embodiments of the present invention provide an apparatus for performing quantum reflex integration. A signal generator (106) is configured and disposed to generate an output pattern (220). In embodiments, the pattern may comprise discrete frequency pulses spanning a given frequency range. In some embodiments, the frequency ranges from 1 Hz to 2000 Hz. Embodiments may further comprise a transducer (116) coupled to the signal generator (106), such that the transducer (116) outputs a response that corresponds to the output pattern (220). The transducer may include, but is not limited to, a speaker (114), and an electromagnetic coil. Embodiments may further comprise one or more cold lasers (110). In some embodiments, multiple lasers may be used. Embodiments may include lasers of different wavelengths. In some embodiments, the lasers may include a red laser, a violet laser, and an infrared laser.