Data:patents.json: Difference between revisions

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[
[
{
  "name": "WO2020060606A1 - Cryptocurrency system using body activity data",
  "url": "https://patents.google.com/patent/WO2020060606A1/en",
  "author": "Dustin Abramson, Derrick Fu, Joseph Edwin Johnson, Jr., Microsoft Technology Licensing, Llc",
  "date": "2019-06-20, 2020-03-26",
  "description": "\n    Human body activity associated with a task provided to a user may be used in a mining process of a cryptocurrency system. A server may provide a task to a device of a user which is communicatively coupled to the server. A sensor communicatively coupled to or comprised in the device of the user may sense body activity of the user. Body activity data may be generated based on the sensed body activity of the user. The cryptocurrency system communicatively coupled to the device of the user may verify if the body activity data satisfies one or more conditions set by the cryptocurrency system, and award cryptocurrency to the user whose body activity data is verified. \n  \n  "
},
  {
  {
   "name": "US5760692A - Intra-oral tracking device",
   "name": "US5760692A - Intra-oral tracking device",

Revision as of 10:57, 27 June 2025

[

{
 "name": "WO2020060606A1 - Cryptocurrency system using body activity data",
 "url": "https://patents.google.com/patent/WO2020060606A1/en",
 "author": "Dustin Abramson, Derrick Fu, Joseph Edwin Johnson, Jr., Microsoft Technology Licensing, Llc",
 "date": "2019-06-20, 2020-03-26",
 "description": "\n     Human body activity associated with a task provided to a user may be used in a mining process of a cryptocurrency system. A server may provide a task to a device of a user which is communicatively coupled to the server. A sensor communicatively coupled to or comprised in the device of the user may sense body activity of the user. Body activity data may be generated based on the sensed body activity of the user. The cryptocurrency system communicatively coupled to the device of the user may verify if the body activity data satisfies one or more conditions set by the cryptocurrency system, and award cryptocurrency to the user whose body activity data is verified. \n   \n   "
},
{
 "name": "US5760692A - Intra-oral tracking device",
 "url": "https://patents.google.com/patent/US5760692A/en",
 "author": "Douglas A. Block, Individual",
 "date": "1996-10-18, 1998-06-02",
 "description": "An intra-oral tracking device adapted for use in association with a tooth having a buccal surface and a lingual surface, the apparatus comprises a tooth mounting member having an inner surface and an outer surface, the inner surface including adhesive material; a remote transmitter-receiver assembly including means to transmit and receive electronic signals, the transmitter-receiver being affixed to the outer surface of the tooth mounting member, the remote transmitter-receiver assembly positioned adjacent to the buccal surface of the tooth; and a base transmitter-receiver device including means to transmit and receive electronic signals, the device including a transmission button and a display screen, in an operative orientation a user depressing the transmission button of the base transmitter-receiver device to activate the remote transmitter-receiver, activation of the remote transmitter-receiver device causing the transmission of electrical signals for receipt by the base transmitter-receiver device, the base transmitter-receiver device thereby displaying the location of the remote transmitter-receiver assembly to enable a user to locate a lost individual."
},
{
 "name": "US11354666B1 - Smart Dust Usage",
 "url": "https://patents.google.com/patent/US11354666B1/en",
 "author": "Rameshchandra Bhaskar Ketharaju, Sarath Chava, Prasad N. Sivalanka, Madhu V. Vempati, Wells Fargo Bank NA",
 "date": "2016-05-26, 2022-06-07",
 "description": "Systems and methods that facilitate authenticating a user making a payment using microelectromechanical systems (MEMs) devices (i.e., smart dust). The MEMs devices may have sensors that collect data and transfer it to a base station device. The MEMs devices can collect sensor data, including biometric data and/or capture images of the person. The MEMs can also collect sensor data such as audio data, optical data, temperature data, pressure data, and motion data and compare it to data associated with a user profile to determine that the person making the payment is the same person associated with the user profile. Once the person's identity has been confirmed, and thus authenticated, the payment request can be confirmed and payment made, via either the mobile device or credit card."
},
 {
 "name": "US3393279A - Nervous system excitation device",
 "url": "https://patents.google.com/patent/US3393279A/en",
 "author": "Flanagan Gillis Patrick, Listening Inc",
 "date": "1962-03-13, 1968-07-16",
 "description": "A method of transmitting audio information to a subject's brain through their nervous system. The method involves the following steps: (1) generating a radio frequency (RF) signal with a frequency higher than the highest frequency of the audio information to be transmitted; (2) modulating this RF signal with the audio information; and (3) applying the modulated RF signal to a pair of insulated electrodes placed in contact with the subject’s skin. The strength of the electromagnetic field at the skin surface is sufficient to cause the perception of the audio information within the subject’s brain, without causing any physical discomfort." 
 },
 {
 "name": "US4877027A - Hearing System",
 "url": "https://nanoworldorder.com/wiki/Patent_US4877027A",
 "author": "Wayne B. Brunkan",
 "date": "1988",
 "description": "A 1988 patent describing how audio can be inserted directly into a person's head, using modulated microwaves, bypassing the ears. Explains a method to produce a Voice to Skull (V2K) effect using a modulated microwave frequency."
 },
 {
 "name": "US3951134 - Apparatus and method for remotely monitoring and altering brain waves",
 "url": "https://nanoworldorder.com/wiki/Patent_US3951134",
 "author": "Robert G. Malech",
 "date": "1974",
 "description": "Remote Mind Reading and Mind Control in 1976!"
 },
 {
 "name": "US5755230A - Wireless EEG system for effective auditory evoked response",
 "url": "https://nanoworldorder.com/wiki/Patent_US5755230A",
 "author": "Robert N. Schmidt, James R. Buckett, Steven P. Hendrix",
 "date": "1995",
 "description": "Outlines a non-invasive method for Remote Neural Monitoring and Remote Neural Modulation (RNM), i.e. utilizing frequency to read (and write) the brain waves of a subject."
 },
 {
 "name": "WO2005055579A1 - System for producing artificial telepathy",
 "url": "https://patents.google.com/patent/WO2005055579A1/en",
 "author": "Lynne Moody, Miles Phillips Moody",
 "date": "2004-01-06",
 "description": "A proposed device enables artificial telepathy by allowing users to communicate without visible connections, using a mobile phone engine linked to a public network and low-power transponders implanted in the body. These implants, connected to transducers for speech input and output via bone conduction or neural interfaces, could eventually be fully implanted, incorporating speech recognition and visual image transfer for seamless, invisible communication."
 },
{
 "name": "US6011991A - Communication system and method including brain wave analysis and/or use of brain activity",
 "url": "https://patents.google.com/patent/US6011991A/en",
 "author": "Aris Mardirossian, Technology Patents LLC",
 "date": "1998-12-07",
 "description": "A system and method for enabling human beings to communicate by way of their monitored brain activity. The brain activity of an individual is monitored and transmitted to a remote location (e.g. by satellite). At the remote location, the monitored brain activity is compared with pre-recorded normalized brain activity curves, waveforms, or patterns to determine if a match or substantial match is found. If such a match is found, then the computer at the remote location determines that the individual was attempting to communicate the word, phrase, or thought corresponding to the matched stored normalized signal."
},
{
 "name": "US5458142A - Device for monitoring a magnetic field emanating from an organism",
 "url": "https://patents.google.com/patent/US5458142A",
 "author": "Edward J. Farmer, Diane J. Hovey, Individual",
 "date": "1993-03-19, 1995-10-17",
 "description": "A diagnostic and therapeutic instrument for use in the treatment of living organisms is provided including a sensor for detecting magnetic fields emanating from the living organism. The sensor is located proximate to the organism and is formed from a ferromagnetic core surrounded by a multi-turn fine wire coil. The sensor is coupled to signal processing which amplifies a signal from the sensor and filters out portions of the signal which represent background magnetic fields emanating from other sources. The signal from the sensor is utilizable to detect abnormalities in the field emanating from the organism indicative of the organism's well-being. The signal can also be utilized to excite a magnetic field radiator which outputs a field complementary to the field emanating from the organism."
},
{
 "name": "US20200275874A1 - Methods and Automatic System to Identify Who is Victims of Abuse Voice to Skull & Remote Neural Monitoring Technology and Identify Who is Remote Attacker or Operator Using Device of Voice to Skull & Remote Neural Monitoring \n     ",
 "url": "https://patents.google.com/patent/US20200275874A1/en",
 "author": "Da Li, Individual",
 "date": "2019-08-31, 2020-09-03",
 "description": "\n     A method to identify victim of abuse and remote operator using voice to skull and remote neural monitoring, comprising the steps of: using a database in a computer consisting of one or more of disgusting items, funny items, anti-political trend and anti-religious belief items, countries and races items, foreign clubs or organizations items, languages and dialects items, and scientific knowledge items, tested person selecting one item which only causes the remote operator to have psychological response and does not cause the tested person to have psychological response, instructing the tested person to launch imaginary psychological attack, assigning test questions based on the imaginary psychological attack and obtaining answers from the tested person in response to the test questions, then using polygraph meter to analysis the answers and assigning true or false status to the answers."
},
{
 "name": "Intra-oral tracking device",
 "url": "https://patents.google.com/patent/US5760692A/en",
 "author": "Douglas A. Block, Individual",
 "date": "1996-10-18, 1998-06-02",
 "description": "An intra-oral tracking device adapted for use in association with a tooth having a buccal surface and a lingual surface, the apparatus comprises a tooth mounting member having an inner surface and an outer surface, the inner surface including adhesive material; a remote transmitter-receiver assembly including means to transmit and receive electronic signals, the transmitter-receiver being affixed to the outer surface of the tooth mounting member, the remote transmitter-receiver assembly positioned adjacent to the buccal surface of the tooth; and a base transmitter-receiver device including means to transmit and receive electronic signals, the device including a transmission button and a display screen, in an operative orientation a user depressing the transmission button of the base transmitter-receiver device to activate the remote transmitter-receiver, activation of the remote transmitter-receiver device causing the transmission of electrical signals for receipt by the base transmitter-receiver device, the base transmitter-receiver device thereby displaying the location of the remote transmitter-receiver assembly to enable a user to locate a lost individual. \n   \n   "
}

]