Patent classifications
A61N1/16
System, and process, and device for emission or augmentation of energy affecting the human body
A chip may be programmed to emit and/or augment energy tuned to interact with bodily functions through transdermal contact. The chip may be programmed by using a pair of Tesla pancake coils, each coupled to a spherical electrode and driven to create an energetic field between the electrodes. Embodiments may include systems that include the programmed chip in a fabric body. The systems may be wearable so that the effects of the programmed chip may be applied to selected areas of the human body. Some embodiments may be useful for augmenting healing of ailments.
Cell, tissue and organ protection using a magnetic field
Methods and apparatus are provided for applying low magnetic fields (<400 G) to mammalian cells, tissues and organs for protection from the damaging effects of ionizing radiation and other oxygen dependent injuries that involve the radical pair mechanism. The magnetic fields are generated by fixed magnets or active magnets and used to enhance the survival of healthy cells during radiation treatment for cancer, to protect workers from radiation within nuclear power plants, to protect astronauts from radiation during long space voyages, to increase working time in exposed environments, to provide a safe room in hazardous locations, and to protect normal tissue during radiation treatment and in medical imaging modalities that use ionizing radiation (X-ray, CT, mammography). The method described herein may also be used to mitigate the damaging effects of reperfusion, stroke, oxygen toxicity, inflammation, autoimmune disease, and the like by applying protective magnetic fields.
Cell, tissue and organ protection using a magnetic field
Methods and apparatus are provided for applying low magnetic fields (<400 G) to mammalian cells, tissues and organs for protection from the damaging effects of ionizing radiation and other oxygen dependent injuries that involve the radical pair mechanism. The magnetic fields are generated by fixed magnets or active magnets and used to enhance the survival of healthy cells during radiation treatment for cancer, to protect workers from radiation within nuclear power plants, to protect astronauts from radiation during long space voyages, to increase working time in exposed environments, to provide a safe room in hazardous locations, and to protect normal tissue during radiation treatment and in medical imaging modalities that use ionizing radiation (X-ray, CT, mammography). The method described herein may also be used to mitigate the damaging effects of reperfusion, stroke, oxygen toxicity, inflammation, autoimmune disease, and the like by applying protective magnetic fields.
SYSTEM, AND PROCESS, AND DEVICE FOR EMISSION OR AUGMENTATION OF ENERGY AFFECTING THE HUMAN BODY
A chip may be programmed to emit and/or augment energy tuned to interact with bodily functions through transdermal contact. The chip may be programmed by using a pair of Tesla pancake coils, each coupled to a spherical electrode and driven to create an energetic field between the electrodes. Embodiments may include systems that include the programmed chip in a fabric body. The systems may be wearable so that the effects of the programmed chip may be applied to selected areas of the human body. Some embodiments may be useful for augmenting healing of ailments.
STATIC ELECTRICITY REMOVAL BOOTH
The present invention relates to a static electricity removal booth, and more specifically to a static electricity removal booth which measures and displays the amount of static electricity accumulated in a human body before entrance into or exit from an explosion-proof area where an inflammable, such as gunpowder, refined petroleum or inflammable gas, is handled, allows an enterer to enter the inside of the static electricity removal booth when a voltage equal to or higher than an allowable value is measured, removes the bodily static electricity by bringing sprayed moisture including a conductive material into contact with the enterer in an omnidirectional manner, and then allows the enterer to enter the explosion-proof area, thereby preventing an explosion accident attributable to human body-accumulated static electricity from occurring.
Chip for transdermal emission or augmentation of energy
A hologram chip may be programmed to emit and/or augment energy tuned to interact with bodily functions through transdermal contact. The chip may be programmed by using a pair of Tesla pancake coils, each coupled to a spherical electrode and driven to create an energetic field between the electrodes. Embodiments may include systems that include the programmed hologram chip in a fabric body. The systems may be wearable so that the effects of the programmed chip may be applied to selected areas of the human body. Some embodiments may be useful for augmenting healing of ailments.
RADIO FREQUENCY SHIELDED TEXTILES
The invention is a method to modify textiles with a printing and lamination method to produce textile materials with integrated RF shielding. The shielding modifications are comprised of a network of interconnected surface patterns of periodic unit geometries organized in an arrangement to reflect RF waveforms over a range of frequencies below the 10 GHz; to shield the majority or incident RF radiation. Use of this invention enables permanent transfer of many RF shielding patterns on most textile materials for production of RF shielded consumer and industrial clothing as well as object and personal coverings.
Negative Potential Generation Device
A negative potential generating device which includes an insulating box, an AC/DC converter, a booster, a second wire and an insulating lid is presented. The insulating box has a side wall, and an inner surface of the side wall has a blind hole. The AC/DC converter is arranged inside the insulating box, and electrically connected with a plug through a first wire. The booster is arranged inside the insulating box and electrically connected with the AC/DC converter. One side of the second wire is electrically connected with the booster, another side of the second wire is exposed and inserted into the blind hole and contacts with an inner wall surface of the blind hole. The insulating lid covers the insulating box. The device is easy to carry and generates negative potential anytime and anywhere after connecting to a power supply, making it easier and more convenient to use.
Negative Potential Generation Device
A negative potential generating device which includes an insulating box, an AC/DC converter, a booster, a second wire and an insulating lid is presented. The insulating box has a side wall, and an inner surface of the side wall has a blind hole. The AC/DC converter is arranged inside the insulating box, and electrically connected with a plug through a first wire. The booster is arranged inside the insulating box and electrically connected with the AC/DC converter. One side of the second wire is electrically connected with the booster, another side of the second wire is exposed and inserted into the blind hole and contacts with an inner wall surface of the blind hole. The insulating lid covers the insulating box. The device is easy to carry and generates negative potential anytime and anywhere after connecting to a power supply, making it easier and more convenient to use.
APPARATUS FOR TREATING NEUROLOGICAL DISORDERS BY ELECTROSTIMULATION AND METHOD FOR PROCESSING NEURAL SIGNALS COLLECTED BY THE SAID APPARATUS
Disclosed herein are apparatuses and methods for treating neurological disorders by electro-stimulation. The apparatus (10) for treating neurological disorders includes at least one electrode (12) implantable in the brain of a patient, and a processing and stimulation device (14) connected to the at least one electrode (12). The processing and stimulation device (14) may include a stimulation module (16) configured to generate a stimulation signal to be sent to the at least one electrode (12), and an acquisition module (20) that measures cerebral activity coming from the brain of the patient. The acquisition module (20) may have a front-end block (27) configured to amplify the potential difference of its input signals (V.sub.1a, V.sub.2a) and to filter a stimulus artifact and may include a multi-stage fully-differential switched capacitor circuit (e.g., an integrated circuit) configured for discrete-time signal processing.