Abstract:
An intelligent, self-propelled assistive walking and cargo-carrying device that utilizes various sensors to monitor the intended movement and balance of its pedestrian user and the device in relation to the surrounding terrain to ensure stability, provides the capability to ascend or descend stairs and uneven terrain via removable motorized treads, and can enhance the pedestrian user's ability to comprehend and interact with the environment through hearing amplification, range-finding, and interaction with personally-worn smart devices (e.g., smart phones, smart watches, smart bands, etc.). The embodiment can be controlled by the user through pressure-sensitive grips and controls, voice, detected motion of the user, or remotely through wireless connection. The embodiment can be programmed to be user-specific and to follow a pre-determined path or to arrive at a target location.
Abstract:
An apparatus for treating a tennis elbow by percutaneous intervention, includes: a body having an actuating element, a fixing part arranged to fixably position the body, a positioning device connected to the body, including a positioning part moveable by the actuating element, a holder releasably connected to the positioning part, and including a top part for the releasable connection to the positioning part and a bottom part defining a support surface for supporting an elbow tendon region of a person to be treated, the support surface, the top and bottom parts being connected by one or more connecting members, the holder including a holder part with a number of penetration elements arranged thereon, wherein the top and bottom parts are spaced-apart at such a distance that, before penetration of the elbow tendon, the penetration tips of the penetration elements are covered by the bottom part.
Abstract:
An apparatus and a method for a walking aid are disclosed. The walking aid includes a walker having a frame configured to extend about a user of the walker to at least partially support the user and to facilitate the user progressing along a path from a current step to a next step while at least partially supported by the walker. A swivel mount is supported by the frame. A light source is connected to the swivel mount. The light source is configured to project a visual cue on a projection surface in the path between the current step and the next step to trigger the next step by the user. A controller is configured to adjust a visual property of the visual cue for use under indoor conditions and outdoor conditions.
Abstract:
A system for supporting and manipulating a leg of a patient including a base configured to be releasably secured to the ground, a first guide rail coupled to the base, wherein the first guide rail has a longitudinal axis, a boot coupled to the first guide rail, wherein the boot is configured to receive and retain at least a portion of a foot of the patient, and a drape hanger assembly coupled to the base, wherein the drape hanger assembly includes a pair of drape hangers oriented parallel to the longitudinal axis of the first elongate guide rail.
Abstract:
A walker assembly to assist a person in moving from a seated position to a standing position, including a frame having a base, the base being configured to support the walker assembly on a support surface and including a pair of opposed side members, and at least one stabilizer slidably received in one of the pair of opposed side members so that the at least one stabilizer is movable between a first position in which a distal end of the at least one stabilizer is disposed above the support surface and a second position in which the distal end of the stabilizer contacts the support surface.
Abstract:
A leg assist device having an abnormality management procedure which appropriately adapts to an abnormal situation is provided. The leg assist device is provided with a leg attachment and a controller. The leg attachment comprises upper and a lower links connected with a rotary joint, and an actuator. The upper link is to be attached to the upper leg of the user. The lower link is to be attached to the lower leg of the user. The actuator swings the lower link relative to the upper link. The controller outputs the commands so that the swing angle of the lower link follows a target trajectory. Further, the controller executes a first abnormality management process in which the controller shuts off torque transmission from the actuator to the user when the controller detects an abnormality before outputting the commands to the actuator.
Abstract:
A resuscitation device for automatic compression of victim's chest using a compression belt which exerts force evenly over the entire thoracic cavity. The belt is constricted and relaxed through a motorized spool assembly which repeatedly tightens the belt and relaxes the belt to provide repeated and rapid chest compression. An assembly includes various resuscitation devices including chest compression devices, defibrillation devices, and airway management devices, along with communications devices and senses with initiate communications with emergency medical personnel automatically upon use of the device.
Abstract:
A system includes a guidance device that provides feedback to a user to compress a patient's chest at a rate of between about 90 and 110 compressions per minute and at a depth of between about 4.5 centimeters to about 6 centimeters. The system includes a pressure regulation system having a pressure-responsive valve that is configured to be coupled to a patient's airway. The pressure-responsive valve is configured to remain closed during successive chest compressions in order to permit removal at least about 200 ml from the lungs in order to lower intracranial pressure to improve survival with favorable neurological function. The pressure-responsive valve is configured to remain closed until the negative pressure within the patient's airway reaches about −7 cm H2O, at which time the pressure-responsive valve is configured to open to provide respiratory gases to flow to the lungs through the pressure-responsive valve.
Abstract translation:系统包括引导装置,其向用户提供反馈,以每分钟约90至110次按压之间的速度和约4.5厘米至约6厘米之间的深度压缩患者的胸部。 该系统包括压力调节系统,其具有被配置为联接到患者气道的压力响应阀。 压力响应阀被配置为在连续的胸部按压期间保持关闭,以便允许从肺部移除至少约200ml,以便降低颅内压力以改善具有有利的神经功能的存活。 压力响应阀构造成保持关闭,直到患者气道内的负压达到约-7cm H 2 O,此时压力响应阀构造成打开以提供呼吸气体通过压力 - 响应阀。
Abstract:
A resuscitation device for automatic compression of victim's chest using a compression belt which exerts force evenly over the entire thoracic cavity. The belt is constricted and relaxed through a motorized spool assembly which repeatedly tightens the belt and relaxes the belt to provide repeated and rapid chest compression. An assembly includes various resuscitation devices including chest compression devices, defibrillation devices, and airway management devices, along with communications devices and senses with initiate communications with emergency medical personnel automatically upon use of the device.
Abstract:
A leg locomotion device includes a frame having a leg coupler configured to mount the frame to a user's leg, the frame also includes two frame components movable relative to one another in response to movement of the user's leg, an energy harvesting device coupled to the frame and configured to harvest energy from the movement of the two frame components during a first portion of a stride, an energy storage device coupled to the energy harvesting device, the energy storage device configured to store harvested energy over more than one stride, and an assist device coupled to the frame, coupled to the energy storage device to receive energy therefrom, and configured to move the frame components relative to one another to selectively assist with movement of the user's leg during a second portion of the stride.