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360results about How to "Wide range of fields" patented technology

Body support harness

InactiveUS7066181B2Superior fit and comfortWide areaElectrotherapyRestraining devicesCushioningEngineering
A torso support portion and a pair of thigh support portions are each formed of an outer layer of hard relatively stiff molded plastic material of limited flexibility and an inner layer of relatively soft cushioning material for distributing the weight of a patient over a large area. The torso support portion may comprise a rear panel adjustable secured between two body panels. Tightening straps serve to tighten the torso support portion about a patient with the parts of the torso support portion adjacent the front opposite free sides of the two body panels overlapping one another in operative position. A pair of tightening straps serve to tighten each of the thigh support portions about the thighs of a patient with the free sides of each thigh support portion spaced a substantial distance from one another in operative position. Four adjustable suspension straps are provided for suspending the torso support portion and provide a quick-release feature. Two adjustable groin straps are provided for stabilizing the torso support portion. Each of the thigh support portions is connected to the torso support portion in depending relationship therefrom by adjustable connecting straps. One of the thigh support portions is provided with a channel extending from the top edge to the bottom edge thereof portion for receiving a catheter. The thigh support portions are provided with outwardly facing fastening portions for fastening the thigh support portions to a powered gait orthosis device.
Owner:HEALTHSOUTH

Material characterization with model based sensors

InactiveUS20070069720A1Improve crack detection reliabilityImprove reliabilityMaterial magnetic variablesSensor arrayElectric field sensor
Nondestructive material condition monitoring and assessment is accomplished by placing, mounting, or scanning magnetic and electric field sensors and sensor arrays over material surfaces. The material condition can be inferred directly from material property estimates, such as the magnetic permeability, dielectric permittivity, electrical property, or thickness, or from a correlation with these properties. Hidden cracks in multiple layer structures in the presence of fasteners are detected by combining multiple frequency magnetic field measurements and comparing the result to characteristic signature responses. The threshold value for indicating a crack is adjusted based on a high frequency measurement that accounts for fastener type. The condition of engine disk slot is determined without removal of the disk from the engine by placing near the disk a fixture that contains a sensor for scanning through the slot and means for recording position within the slot. Inflatable support structures can be placed behind the sensor to improve and a guide can be used to align sensor with the slot and for rotating the disk. The condition of an interface between a conducting substrate and a coating is assessed by placing a magnetic field sensor on the opposite side of the substrate from the coating and monitoring at least one model parameter for the material system, with the model parameter correlated to the interfacial condition. The model parameter is typically a magnetic permeability that reflects the residual stress at the interface. Sensors embedded between material layers are protected from damage by placing shims on the faying surface. After determining the areas to be monitored and the areas likely to cause sensor damage, a shim thickness is determined and is then placed in at least one area not being monitored by a sensor. The condition of a test fluid is assessed through a dielectric sensor containing a contaminant-sensitive material layer. The properties of the layer are monitored with the dielectric sensor and correlated to contaminant level.
Owner:JENTEK SENSORS
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