Abstract:
An endotracheal-oximeter device is presented which includes a flexible conduit having a pair of light emitters, a detector, a control circuit, a display unit and a power source attached to the conduit. The flexible conduit has an airway passing between an upper and lower end. The detector is mounted directly onto the conduit so that the detector is already optically aligned to receive the first and second EMF emissions from the pair of light emitters so as to produce a detector signal in response to the received first and second EMF emissions. The endotracheal-oximeter system includes an endotracheal tube and a monitoring station. The endotracheal tube of the system is composed of the flexible conduit having the pair of light emitters, the detector, the control circuit, the power source and a transmitter. The monitoring station of the system includes an antenna, a receiver circuit, and the display unit. The method of using includes the steps of activating, aligning, enabling, forcing, getting, inspecting, obtaining, securing and sliding.
Abstract:
A positioning system having an emitter unit, a plurality of detector units, a computer and a software package is described. The emitter unit is configured to emit an emitter signal. Each detector unit is configured to output a detector signal in response to detecting the emitter signal. The computer is coupled to the emitter unit and to the detector units. The software package is installed in the computer that directs the computer to perform a number of functions such as controlling the emitter unit, controlling the detector units, inputting positional information into the computer, and estimating a relative position of the emitter unit relative to a target site within a given workspace. An associated method is also described in which the method includes the steps of calculating, directing, displaying, estimating, identifying, inputting, inserting, mounting, and obtaining.
Abstract:
A standalone smart disposable diaper, kit and method of using same are presented for use in indicating a need to change the device when soiled. The standalone smart disposable diaper includes an inner panel, an outer panel, an absorbent pad, an absorbent composition, at least one pair of detector electrodes interposed between the inner and outer panels; a circuit coupled to the detector electrodes; a signaling beacon coupled to the circuit; and a power supply coupled to the detector electrodes, to the circuit and to the beacon. The kit includes detector electrodes, the circuit, the beacon and the power supply operatively coupled to the detector electrodes, the circuit and the beacon. The method of using the kit to convert a standard disposable diaper into a standalone smart disposable diaper device includes the steps of acquiring, allowing, inserting, observing, obtaining, removing, taping, and wearing.
Abstract:
A surgical tool device, a kit and a method are described which provide a novel dual frequency LED/electrode scheme for use in manipulating nerve and innervated structures. The surgical tool device includes a probe assembly coupled to a handle assembly. The probe assembly has a low frequency light emitting diode (LED), a high frequency LED, and a stimulator electrode. The low frequency LED is used to promote healing and the high frequency LED is to aid in promoting a microbe free surgical area. The handle assembly has a system on a chip (SOC) electrically coupled to the low frequency LED, to the high frequency LED, and to the stimulator electrode. The kit includes the unattached components of the device and may also include an detector electrode probe along with an optional monitoring system. The method includes the steps of adjoining, affixing, attaching, and obtaining.
Abstract:
An osteogenic stimulus device having at least a pair of electrode coupled to a working circuit is presented for use in applying a therapeutic electrical signal to, in, around, and across an osseous structure to aid in the healing and bone growth process in which the therapeutic electrical signal is a function of the electrical impedance of the fractured bone. The working circuit of the osteogenic stimulus device includes an impedance measurement sub-circuit, a therapeutic application sub-circuit, and a switch sub-circuit. The kit for the osteogenic stimulus device includes the uncoupled components of the device. The method of using the osteogenic stimulus device includes the acts of activating, applying, assessing, coupling, joining, mounting, obtaining, and removing.
Abstract:
A ventilating mouthguard device, kit and method of using same is presented for use in providing a user an auxiliary boost of air while wearing the mouthguard. The ventilating mouthguard device includes a base plate, an on/off switch, a power supply and a fan. The base plate has an air passageway traversing all the way thought the base plate so that outside air can easily channeled into the mouth of the user. The on/off switch is electrically coupled to the power supply and to the fan. The fan is positioned so that it is in fluid communications within the air passageway in order to push air into the mouth of the user. The kit includes the unconnected components of the ventilating mouthguard device. The method includes the steps of applying, coupling, covering, curing, mixing, mounting, obtaining, preparing, removing, selecting, and turning.
Abstract:
This invention presents a standalone osteogenic stimulus device and a method of using the device. The standalone osteogenic stimulus device includes a housing in which a pair of electrodes and a power supply are attached to the housing. The pair of electrodes and the power supply are coupled together to provide a therapeutic electric signal across the electrode pair. The device may be mounted in any osseous structure such as a fractured bone, a cracked bone, a weakened bone, a decalcified bone, a diseased bone, and even in a void where a portion of bone in order to simulate the healing process of the osseous structure. The method includes the acts of charging, closing, mounting, obtaining, opening, and sterilizing.
Abstract:
Methods and systems are provided for neurophysiological assessment, specifically nerve and nerve root conduction frequencies, latencies and amplitudes, with respect to surgical intervention and insult. Real-time trends in waveforms are captured, and warnings of pathological changes reported, displayed and audibilized.
Abstract:
A CPAP-oximeter hybrid device and an associated method of using are presented for use in automatically adjusting or automatically controlling an air ventilation flow rate as a function of an estimated oxygen level in a patient using the device. The CPAP-oximeter hybrid device includes the interconnected components of a mouthpiece; a first and second EMF emitter; a detector; a housing unit, a blower and a control circuit. The method of using the CPAP-oximeter hybrid device includes the steps of adjusting, allowing, inserting, obtaining, reviewing, removing, setting, switching, and transferring.
Abstract:
A stand along continuous pressure airwave pressure (CPAP) device and associated method are described for use in treating and/or diagnosing sleep apnea disorders. The CPAP device includes the interconnected components of a mouthpiece, a housing, an airway, a blower, a cover, a control circuit and an on/off switch. The method includes the steps of allowing, attaching, biting, coupling, detaching, downloading, moisturizing, obtaining, pressing, sleeping, and withdrawing.