Patent No. 5458142 Device for monitoring a magnetic field emanating from an organism
Patent No. 5458142
Device for monitoring a magnetic field emanating from an organism (Farmer, et al., Oct 17, 1995)
Abstract
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.
Notes:
Device
for monitoring a magnetic field emanating from an organism. Filed March 1993,
granted October 1995. References the 3951134 patent for remote monitoring. Device
that may aid in detecting the so-called retransmission in that patent. Goes
into 'aura' and 'therapeutic touch' type BS, but the sensing device and filtering
means may be useful in detecting the psychotronic attacks. The patent also mentions
using electromagnetic radiation to effect (attack) someone. Again notice the
absence of EEG or other monitoring equipment. If used with said EEG and appropriate
computer programs (mentioned in other patents) could be used as a psychotronic
weapon with evoked potentials.
SUMMARY
OF THE INVENTION
Monitoring Device
A method, system, and apparatus are described for monitoring the physical and
emotional state, and the changes in the physical and emotional state, of a living
organism by means of the electromagnetic emissions of the organism.
A sensor designed for monitoring extremely low level, low frequency electromagnetic
signals is used to detect emissions from the organism under test. Since emissions
of this type attenuate rapidly with increasing distance, and since the emissions
associated with injuries vary with location on the organism relative to the
injury, the sensor is mounted in such as way to permit positioning about the
organism.
The output of the sensor is connected to an instrumentation amplifier by means
of two-conductor shielded cable.
The instrumentation amplifier incorporates a differential input, high gain,
high impedance, low noise and a guard output. The differential input reduces
common mode noise from the sensor and interconnecting cable. The high gain minimizes
attenuation of the signal resulting from loading of the sensor and interconnecting
wiring. The low noise minimizes the noise contributed to the amplifier's output
by the internal circuits of the amplifier, and the guard output is used to drive
the shield of the interconnecting wiring to lower signal loss from the two conductors
to the shield.
The output of the instrumentation amplifier is connected to a series of low
pass filters. These filters attenuate signals with frequencies above those of
primary interest, particularly power line frequencies (e.g., 60 Hz or 50 Hz.).
The output of the low pass filters is passed to an analog to digital converter.
This converter has sufficient dynamic range to resolve all amplitudes of interest
and sufficient bandwidth to pass all frequencies of interest.
The output of the analog to digital converter is read by a computer program
for further processing. This additional processing includes display and measurement
of the waveform and measurement and display of the frequency components of the
waveform.
The data pertaining to the frequency components taken separately and in conjunction
with their relative amplitudes can be used to infer the physical and emotional
condition of the organism under test. The changes in the waveform, its constituent
frequencies and their amplitudes can be used to infer changes in the emotional
and physical state of the organism.
Therapeutic Device
A method, system, and apparatus are described for modifying the physical and
emotional state of a living organism by means of the electromagnetic emissions.
A radiator designed for producing low level, low frequency electromagnetic signals
is used to provide emissions complementary to the emissions from the organism
under test. Since emissions of this type attenuate rapidly with increasing distance,
and since the emissions associated with injuries vary with location on the organism
relative to the injury, the sensor is mounted in such a way as to permit positioning
about the organism.
The radiator is connected to an amplifier by means of two-conductor shielded
cable.
The amplifier is used to generate signals complementary to the signals characteristic
of physical or emotional irregularities radiated from the organism.
The amplifier is driven by a function generator that can produce a series of
selectable frequencies with selectable amplitudes, said frequencies and amplitudes
having been selected for their therapeutic value.
The amplifier may also be driven by a phase-adjusted and filtered signal derived
from the sensor described above. In this configuration the specific frequency
components indicative of a physical or emotional difficulty are isolated by
filtering, modified in phase and amplitude, and then fed to the radiator. This
combination of sensor, processor, radiator forms a closed loop (feedback) system
providing self-regulation of the therapeutic process.
OBJECTS OF THE INVENTION
Accordingly, it is a primary object of the present invention to provide a method
of monitoring the electromagnetic emissions of living organisms.
Another object of the invention is to provide a method of monitoring a living
organism that does not require physical contact with the organism or the injection
of chemicals or substances of any kind.
Another object of the invention is to provide a method of monitoring a living
organism that does not subject the organism to externally generated signals
of any kind (e.g., x-rays, ultrasound, magnetic fields, heat).
Another object of the invention is to provide an indication of the changes in
the physical condition of an organism.
Another object of the invention is to provide an indication of the changes in
the emotional condition of an organism.
Another object is to provide a means of diagnosing the physical condition of
an organism.
Another object is to provide biofeedback for assisting in the teaching of therapeutic
touch.
Another object is to provide a means of detecting changes in the emotional state
of an organism due to physical stress.
Another object is to provide a means of detecting changes in the emotional state
of an organism due to emotional stress.
A second primary object of the present invention is to provide an instrumentality
for providing therapeutic electromagnetic signals.
Another object is to provide an electromagnetic field with the proper frequency
components of the proper amplitude to counterbalance the signals characteristic
of specific emotional or physical problems.
Another object is to provide an electromagnetic field with the proper frequency
components of the proper amplitude and phase to counterbalance signals indicative
of specific emotional or physical conditions as monitored at the same time by
the sensor system described above, thus providing a closed-loop self-regulating
therapeutic system.
Viewed from a first vantage point, it is an object of the present invention
to provide a device for monitoring a magnetic field emanating from an organism,
comprising in combination: sensor means proximate the organism; a signal emanating
from the sensor means; an amplifier receiving the signal from the sensor means
and amplifying the signal; a filter receiving the signal and filtering out components
of the signal which are not indicative of the organism's magnetic field; and
an output means coupled to the filter.
Viewed from a second vantage point it is a further object of the present invention
to provide a magnetic field sensor for sensing magnetic fields originating from
an organism, including a coil of conductive material having a first end and
a second end, the material wrapped a plurality of times about a core, the core
comprised of a material having a high permeability to magnetic flux; and an
output device coupled to the coil and sensitive to a potential difference between
the first end and the second end, the potential difference comprising a signal.
Viewed from a third vantage point it is a further object of the present invention
to provide a method for harnessing magnetic fields surrounding an organism including
the steps of forming an organism interface proximate the organism by placing
a wire winding onto a ferromagnetic loop and adjacent the organism, and amplifying
a signal associated with the loop reflective of the organism effecting the wire
and loop whereby the magnetic fields surrounding the organism can be used for
diagnosis or treatment of the organism.
These and other objects will be made manifest when considering the following
detailed specification when taken in conjunction with the appended drawing figures.
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Moreover,
having thus described the invention, it should be apparent that numerous structural
modifications and adaptations may be resorted to without departing from the
scope and fair meaning of the instant invention as set forth hereinabove and
as described hereinbelow by the claims.
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