Abstract:
The present disclosure relates generally to the field of television program optimization for user exercise. In various embodiments, systems, methods and computer program products are provided.
Abstract:
Devices and systems are described including a walking aid including a linear rod, a hand grip disposed in proximity to a first end of the linear rod, two or more extendable and retractable load-bearing feet at a second end of the linear rod, at least one first sensor configured to detect a parameter of a walking surface, at least one second sensor configured to detect a parameter of the walking aid, a controller including input circuitry configured to receive information regarding the detected parameter of the walking surface from the at least one first sensor and actuation circuitry configured to actuate at least one of the two or more extendable and retractable load-bearing feet in response to the information regarding the detected parameter of the walking surface, and a transmission unit including circuitry configured to transmit the second sensor output to a computing device.
Abstract:
In one example, we describe a method and system for infant's development, which is a disc system, with various combinations and extensions. The brain is the only organ that constantly reorganizes itself based on experiences or lack thereof. Babies are born with millions of neurons. Through a process called “pruning”, certain ‘circuits’ are fine-tuned through repeated practice and stimulation. This occurs from birth, throughout early childhood. The purpose of the SensiMo Disc is to provide an infant, e.g., typically, up to the 25 lbs. and/or 29 inches long, sensorimotor stimulation, while lying in a prone or supine position, with minimal active movement of the head or extremities. As the child lays supine or proneon, on the SensiMo disc, the child's tactile, vestibular, and proprioceptive systems are stimulated. This helps develop the child's sensorimotor system. Many other variations and combinations, plus advantages, are discussed.
Abstract:
Sex paraphernalia comprising a platform assembly 7 (Rabbutt™) which has a dildo 11 on one side facing one way and a rabbit 13 on the other side facing the other way, configured so that, when Pants with a crotch opening (Rabbutt Hole Pants™) as disclosed herein, or a strap-on dildo harness, are worn by a lady user with the rabbit side of the assembly inside facing her clitoris and the dildo sticking out through the opening, she may insert the dildo into a partner with the rabbit pleasing her clitoris while she bangs away. Pants may have cutouts for spanking or caressing. Pants may be suitable for outdoor wearing (without the platform assemble) to attract a sex partner who is in-the-know, or to raise questions from others like, what's the hole for? Jackets suitable with Pants may complete the ensemble. Embodiments also lend themselves to a lone lady for masturbation.
Abstract:
A system and method for determining CPR induced chest compression depth using two sensors while accounting for different orientations of the two sensors.
Abstract:
Apparatus and associated methods relate to a knee-position control system having a knee engagement pad, a lower-leg control member and an upper-leg control member, the knee engagement pad configured to naturally position a user's knee in response to movement of a foot-rest of a natural-gait therapy system. In an illustrative embodiment, the upper-leg control member may pivot about a point substantially axially coincident with a user's hip. In some embodiments, the upper-leg control member may be pivotally coupled to the lower-leg control member at a pivot point substantially axially coincident with a user's knee. The lower-leg control member may be pivotably coupled to the foot rest at a pivot point substantially axially coincident with a user's ankle. The knee-position control system may advantageously position a user's knee in a natural position relative to both the user's ankle and the user's hip, in response to movement of the user's foot.
Abstract:
A personal massage apparatus includes a personal massager and can also include a controller for controlling the operation of the massager. The massager includes a motor or other motion-causing device and can also include an interface (e.g., a wireless interface) to the controller (where such a controller is included). The controller is a remote control that can include a motion sensor (e.g., an accelerometer) for detecting motion of the controller (e.g., changes in orientation). The massager can also have a motion sensor for detecting motion of the massager. Circuitry in the controller and/or massager converts the detected motion of the controller or massager into control signals for the controller or massager. The operation of the controller or massager (e.g., the output motor power, a vibration pattern, or another massage setting) is adjusted based on the detected motion of the controller or massager.
Abstract:
A method of operating an exoskeleton device includes: receiving sensor information; connecting a clutch system to a pulley system in; determining whether to engage a drive train gear to the clutch system based on the sensor information; engaging the drive train gear through the clutch system when determined to engage the drive train gear; and powering a first motor to drive the drive train gear for controlling a joint or segment of exoskeleton device.
Abstract:
In some embodiments, a kit may include systems allowing for clearing a biological airway. The kit may include an inner wearable system worn, during use, on a torso of a subject. The kit may include a plurality of engines which when activated apply an oscillation force to at least one treatment area of the subject. At least one of the plurality of engines may be releasably couplable to the inner wearable system. The oscillation force may be applied to at least one of the treatment areas of the subject such that the oscillation force mobilizes, during use, at least some secretions in an airway within the subject at least adjacent the treatment area. The kit may include an outer wearable system worn, during use, on a torso of a subject which when activated, adjusts the oscillation force. The kit may include one or more batteries and/or a control unit.
Abstract:
An adjustable foundation includes a base frame and an articulating frame movably supported by the base frame for longitudinal movement with respect to the base frame. A mattress platform is positioned on the articulating frame. A concealing assembly is positioned below the mattress platform and at least partially conceals the base frame. The concealing assembly is attached to the articulating frame for simultaneous longitudinal movement therewith.