Abstract:
A manually propelled vehicle includes a vehicle body; a wheel for moving the vehicle body; a force sensor that detects an operating force and outputs sensor data; a distance measuring sensor that measures a distance between the manually propelled vehicle and a user and outputs sensor data; and a controller including a processor that receives the sensor data of the force sensor and the sensor data of the distance measuring sensor and a wheel drive controller that controls driving and braking of the wheel based on an output of the processor.
Abstract:
The present invention relates to massage assembly structured for mounting on a vertical supporting surface during a massaging procedure. The massage assembly includes an elongated housing mounted on the supporting surface in a substantially vertical orientation. A contact assembly is movably disposed on the housing and is operative to apply a massaging pressure to predetermined body portions of the user. A sensor assembly is disposed and structured to determine at least one area of engagement between the housing and the user's body. A drive assembly is connected in driving relation to the contact assembly. The sensor assembly is connected to the drive assembly and is operative to determine at least one area of application of the contact assembly on the predetermined body portion.
Abstract:
The present invention relates to a vehicle (1) intended for use in the transportation of at least one person, comprised of at least one frame (2), at least one steering device (3), at least one seating device (25), at least one driving device (4) and at least one control device (5) for engagement and disengagement of the driving force of the vehicle. A unique feature of the present invention is that the control device (5) for the engagement and disengagement of the driving device (4) consists of the vehicle's seating device (25) and that the driving device (4) is engaged when the person sits on the seating device (25) and is disengaged when the person stands up from the seating device (25).
Abstract:
A skin treatment apparatus (1) for treating a skin surface, comprising: a hand held base body (10); a rotor head (20), movably connected to the base body (10), and including at least one skin contacting element (22); a motor (30), operably connected to both the base body (10) and the rotor head (20), and configured to rotatably drive the rotor head (20) relative to the base body (10) around a rotation axis (L); at least one motion sensor (40), configured to generate a movement signal reflecting a path of relative movement between the motion sensor and the skin surface; and a control unit (50), operably connected to the at least one motion sensor (40) and the motor (30), and configured to control the motor (30) to rotatably drive the rotor head (20) in dependence of the movement signal of the at least one motion sensor (40).
Abstract:
Provided is a mobile body configured to prevent a main body thereof from overturning in a case of being used in a state where an auxiliary wheel is not provided or the auxiliary wheel is not in contact with the ground. In a first control mode, by performing inverted pendulum control all the time, a posture of a main body portion (10) is maintained to be constant. For example, in the case where a user operates a changeover switch, a controller (21) shifts to a second control mode in which the rotation of main wheels (11) is driven and controlled so that an angle of the main body portion (10) with respect to the vertical direction becomes θ1′ which is greater than θ1. In the second control mode, the main wheels (11) and an auxiliary wheel (13) are in contact with the ground.
Abstract:
This disclosure provides systems and methods for non-invasive treatment to a region of interest with improved efficiency. The systems and methods can include a treatment device having an energy source and a rolling member. The rolling member can include a wall disposed between the energy source and the region of interest. Treatment can be provided at a first location, followed by moving the treatment device, then energy transmission can be terminated if coupling between the energy source and the region of interest is interrupted or treatment can be provided at a second location if the coupling between the energy source and the region of interest is uninterrupted.
Abstract:
A manually propelled vehicle includes a vehicle body; a wheel for moving the vehicle body; a force sensor that detects an operating force and outputs sensor data; a distance measuring sensor that measures a distance between the manually propelled vehicle and a user and outputs sensor data; and a controller including a processor that receives the sensor data of the force sensor and the sensor data of the distance measuring sensor and a wheel drive controller that controls driving and braking of the wheel based on an output of the processor.
Abstract:
A walking assistance moving vehicle includes a walking assistance moving vehicle main body with wheels, a distance sensor, an inclination sensor, and a controller. The distance sensor senses distance between the walking assistance moving vehicle main body and an object ahead of the walking assistance moving vehicle main body. The inclination sensor senses inclination of the walking assistance moving vehicle main body. The controller distinguishes between a first state in which the walking assistance moving vehicle moves on a sloped ground and a second state in which at least one of the wheels is off a ground based on the distance sensed by the distance sensor and the inclination sensed by the inclination sensor. The controller further controls the walking assistance moving vehicle main body according to a result of distinguishing between the first state and the second state.
Abstract:
A spinal three-dimensional orthopedic equipment comprises a frame, a front board member and a drive device for driving the front board member fixed on the frame, a back board member and a middle board member as well as their drive devices fixed on the frame, a head holding device fixed on the middle board member for holding the patient's head, and a drawing and holding device for drawing and holding the head and neck of the patient. The head holding device comprises a splint connected to the middle board member immovably, two sliding grooves are provided on the splint, and two head holding clips and a mandible tray connected to the sliding pieces mounted in the two sliding grooves respectively, which can slide along the sliding grooves. The spinal orthopedic equipment also comprises a front board member fast lifting device, and a drive device for controlling the lifting device.
Abstract:
Devices, systems and methods are described which control blood pressure and nervous system activity by stimulating baroreceptors. By selectively and controllably activating baroreceptors and/or nerves, the present invention reduces blood pressure and alters the sympathetic nervous system; thereby minimizing deleterious effects on the heart, vasculature and other organs and tissues. A baroreceptor activation device or other sensory activation device is positioned near a dermal bone to provide the treatment.