Abstract:
특정사용량제한및/또는특정치료프로토콜에따라대상을치료하도록구성될수 있는원격허혈조절을수행하기위한시스템및 디바이스의실시예가본 명세서에기재되어있다. 특히, 일부실시예에서, RIC 디바이스는적어도 2개의부분, 즉대상의사지주위에끼워질수 있는팽창가능한커프와, 팽창가능한커프를동작시켜팽창및 수축시키고따라서치료프로토콜에따라사지의허혈및 재관류를교대시키는제어기를포함할수 있다. 팽창가능한커프는컴퓨터판독가능저장소를포함할수 있고, 저장소는사용량제한및/또는사용량제한에따라팽창가능한커프를동작시키고팽창가능한커프동작시특정치료프로토콜을수행하도록제어기를구성하기위한제어기에대한구성설정을포함할수 있다.
Abstract:
An electrotherapy system includes a control device, a pulse generator and an electrode pad unit. The control device receives a user input associated with one of twelve meridians of a human, and outputs a control signal associated with the one of the twelve meridians. The pulse generator generates an electrical stimulation signal according to a reference frequency of a reference signal and the one of the twelve meridians with which the control signal is associated. The electrode pad unit contacts a user at a location corresponding to the one of the twelve meridians, and is coupled to the pulse generator for introducing the electrical stimulation signal from the pulse generator to the user.
Abstract:
An adjustable supine cycling machine is an apparatus that efficiently exercises and strengthens abdominal muscles. The apparatus targets the all of the abdominal muscles from all angles. As the user pedals, the user may retract or extend his or her legs and tilt his or her legs in order to activate all the muscles of the abdominal region. The apparatus includes a leg-exercising device, a support base, a lifting arm, and a linear actuator. A spherical bearing allows the tilt of the leg-exercising device. The leg-exercising device is preferably a cycling machine. The lifting arm pivots the leg-exercising device about the support base and is controlled by the linear actuator. The apparatus preferably applies resistance to the rotary movement of the leg-exercising device in order to strengthen the abdominal muscles. The resistance is adjusted by a control unit.
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:
An apparatus comprises a vibrational transducer, a placement band, a driver module and a control module. The placement band is configured to hold the vibrational transducer adjacent to the skin surface overlying the cricoid cartilage and trachea region of a patient's neck. The driver module is configured to apply a drive signal to the vibrational transducer. The control module is configured to receive at least one input configured to provide vibrational operating information and control the driver module to cause the vibrational transducer to apply a vibratory stimulation in an amount determined, at least in part, by the vibrational operating information.
Abstract:
Wireless sensor network motes and radar & sensor-based systems receive sensed data, compare it to a predetermined standard and generate a signal to deploy a corresponding response.
Abstract:
An external defibrillator system is provided. The system includes: a graphical display; one or more sensors for obtaining data regarding chest compressions performed on a patient; and a controller configured to display on the graphical display numeric values for depth and/or rate of the chest compressions based upon the data from the one or more sensors. A method for using an external defibrillator including the steps of: obtaining data regarding chest compressions performed on a patient; and displaying on a graphical display screen of the defibrillator numeric values for depth and/or rate of the chest compressions based upon the data is also provided.
Abstract:
Technologies are disclosed herein for a low impedance detection system. The detection system includes an electrical insulation and an impedance measurement device. The impedance measurement device can be used to test the impedance of the system when the barrier is placed between the user of the barrier and a source of electrical power. In a defibrillation system, a rescuer can place the barrier over the patient. An electrical power source can deliver electrical shocks to the patient. The impedance measurement device can monitor impedances of the system across various frequencies to detect electrical conditions that might be harmful to the rescuer.
Abstract:
Time after time studies find that often, even when administered by trained professionals, cardiopulmonary resuscitation (CPR) compression rates and depth are inadequate. Too week, shallow or too forceful compressions may contribute to suboptimal patient outcome. Several parameters are crucial for optimal and properly-administered CPR. Crucial parameters include proper hand positioning on the patient's chest, depth of compression of 4-5 cm, and compression rate of 100 compressions per minute. The crucial parameters are often affected by patient parameters, and relative to the patient, rescuer parameters, such as patient thoracic volume; weight; age; gender; and rescuer's, relative to the patient's, parameters, such as weight, height; physical form, etc. Proposed is an automated CPR feedback device with user programmable settings for assisting with real-time feedback and subsequently correcting rescuers patient customized CPR technique.