Method for the production of a biofunctional stimulating device, corresponding biofunctional stimulating device and corresponding use

EP4587104A1Inactive Publication Date: 2025-07-23PARODI JEAN PAUL
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Patent Information

Application Number
EP2023783023
Authority / Receiving Office
EP · EP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2022-09-13
Filing Date
2023-09-11
Publication Date
2025-07-23
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Current understanding of DNA limited to genetic information transfer, with 95% considered 'junk DNA', fails to recognize the role of biophotons in conveying vitality and physiological processes, necessitating a device that mimics DNA's communicative properties to transmit energy-vibration stimuli for rebalancing living organisms.

Method used

A biofunctional stimulating device made of graphene, printed in a three-dimensional form with two identical spirals imprinted with a desired frequency, mimicking DNA's structure to transmit energy-vibration stimuli, associated with a support for contact with living beings, such as cushions or insoles.

Benefits of technology

Activates sensory receptors, amplifies nervous system responses, and induces biofunctional stimulations by mimicking DNA's communicative properties, effectively guiding cellular processes and promoting rebalancing in living organisms.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a method for the production of a stimulating device comprising the following steps: - providing a material comprising graphene configured for three-dimensional printing; - providing a three-dimensional printer; - printing a monoblock of said material by means of the printer; - the printed monoblock has two identical spirals, having the same winding direction, arranged in a single plane, and joined together, wherein the spirals have all their coils arranged in the plane.
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Description

[0001] METHOD FOR THE PRODUCTION OF A BIOFUNCTIONAL

[0002] STIMULATING DEVICE, CORRESPONDING BIOFUNCTIONAL

[0003] STIMULATING DEVICE AND CORRESPONDING USE

[0004] The present invention relates to a method for the production of a biofunctional stimulating device, a corresponding biofunctional stimulating device and a corresponding use. The invention was particularly studied for re-harmonizing our energy system through energy-vibration stimuli.

[0005] The most recent theories of quantum biology are based on the observation of the biophotonic emissions of the DNA in each living system.

[0006] In the mechanical conception of science, the DNA was exclusively considered as the structure which contains the genetic information required for synthetizing proteins, obtained by copying by contact the genes which are the base of the identity of the living organisms. Actually, it is known that the transfer of the genetic information is performed only by a small functional portion of the DNA (about 5%) while the remaining 95% was considered as "junk DNA" as it appeared inactive in the scope of the scientific interpretation mechanical model .

[0007] The most recent and advanced quantum biology research understood the crucial role of the emission of biophotons of the DNA, also referred to as "Antenna", in conferring vitality to the living systems, as an interactive guide of both genetic and epigenetic information signals organized in order to convey all the physiological and neurological cellular processes.

[0008] In such context of quantum innovation of biology, it should be noted that each DNA, as it acts in an aqueous system, while irradiating biophotons, widens its own quantum coherence domain, through the capacity of the synchronic coupling of H bridges of water, by which the natural properties of transferring and storing the water information signals, which are received by various molecular-resonant receptors just in order to actuate ordered enzymatic and metabolic functionalities, are activated .

[0009] All these signals, transmitted in the form of energy, always show an information in a helicoidal form. Therefore, biophotons are a new form of "biological energy" structured as quantum coherence and active in an aqueous system associated with DNA-Antenna.

[0010] An object of the present invention is to make a biofunctional stimulating device which imitates the communicative properties of the spiral structure of the DNA in order to transmit energy-vibration stimuli to a living organism for guiding it towards a desired rebalancing .

[0011] A further object of the present invention is to stimulate said living organism with predetermined information.

[0012] Another further object of the present invention is to provide a biofunctional stimulating device applicable to various types of support.

[0013] Another further object of the present invention is to provide a biofunctional stimulating device being easy and inexpensive to make.

[0014] According to a first general aspect, the present invention relates to a method for the production of a stimulating device comprising the following steps:

[0015] - providing a material comprising graphene configured for three-dimensional printing;

[0016] - providing a three-dimensional printer;

[0017] - printing a monoblock of said material by means of the printer;

[0018] - the printed monoblock has two identical spirals, having the same winding direction, arranged in a single plane, and joined together, wherein the spirals have all their coils arranged in the plane.

[0019] Preferably, the method includes the step of imprinting at least a desired frequency in the monoblock by exposing it to an electromagnetic signal at that frequency.

[0020] According to some preferred embodiments, the method includes the step of associating the imprinted monoblock with a support configured for contact with a living being .

[0021] According to a second general aspect, the present invention relates to a stimulating device characterized in that it comprises a monoblock made of a material comprising graphene;

[0022] - the monoblock has two identical spirals, having the same winding direction, arranged in a single plane and joined together, wherein the spirals have all their coils arranged in the plane.

[0023] Preferably, the monoblock is a frequency memory in which at least one imprinted frequency is contained.

[0024] According to some embodiments, the device is associated with a support configured for contact with a living being .

[0025] According to a third general aspect, the present invention relates to a stimulating assembly comprising a device of the above-mentioned type, associated with a support configured for contact with a living being. Preferably, the support is a cushion or a plantar insole. According to a fourth general aspect, the present invention relates to the use of a stimulating device of the above-mentioned type, characterized in that it is applied to a living organism, by proximity or contact. Further features and advantages of the present invention will be more apparent from the following detailed description of preferred embodiments thereof, made with reference to the attached drawings and given for indicative and non-limiting purposes. In such drawings:

[0026] - figure 1 schematically shows a preferred embodiment of a biofunctional stimulating device according to the present invention in a perspective view;

[0027] - figure 2 shows a cushion which incorporates a plurality of devices according to the preceding figure;

[0028] - figure 3 shows an insole which incorporates a plurality of devices according to figure 1.

[0029] With reference to figure 1, a biofunctional stimulating device overall indicated by reference number 1, and for the sake of simplicity also referred to as "device" below, is illustrated.

[0030] The device 1 comprises a monoblock made of a graphenebased material. It is not excluded that the material is graphene in the pure form, but more preferably comprises one or more components through which it is configured for use in three-dimensional printing.

[0031] The graphene monoblock is shaped to form two identical spirals 5 and 10, having the same winding direction, arranged in a single plane P, and joined together.

[0032] The spirals 5 and 10 have all their coils arranged in the plane P .

[0033] The method for the production of the device 1 includes the following steps:

[0034] - providing the material comprising graphene configured for three-dimensional printing; it is preferably a material with homogeneous features, i.e. without stratifications, having graphene as the main component;

[0035] - providing a three-dimensional printer;

[0036] - printing a monoblock of said material by means of the printer;

[0037] - the printed monoblock has two identical spirals 5 and 10, having the same winding direction, arranged in a single plane P, and joined together, wherein the spirals 5 and 10 have all their coils arranged in the plane P;

[0038] - preferably imprinting at least a desired frequency in the monoblock by exposing it to an electromagnetic signal at that frequency; in such case, the monoblock has the function of a frequency memory in which said desired frequency is imprinted; the imprinting for example can be performed by treating the monoblock 1 by a bioresonance instrument known as BICOM® capable of transmitting specific electromagnetic waves at desired intensity and frequency;

[0039] - interrupting the exposition of the monoblock at that frequency ;

[0040] - associating the imprinted monoblock with a support 20, 30 configured for contact with a living being, obtaining a stimulating assembly 50, 51.

[0041] For example, the support is a plantar insole 20, or a cushion 30. The support can for example contain the device 1 between two sheets 15 of electrically non- conductive material, for example a tissue. Each support can be coupled, for example contain, more than one device 1. Preferably, the support is configured to support at least one device at the passage of at least one meridian or acupuncture point in the human body.

[0042] For example, in the case of a seating cushion 30, the device 1 can be arranged in the specific point of passage of the sciatic nerve.

[0043] In the case of a plantar insole 20 the device 1 can be arranged in the point of plantar reflexology comprising both the sciatic nerve and the intestine. An insole configured to fit only a part of the sole of the foot is illustrated in figure, however embodiments configured to fit the entire sole are not excluded.

[0044] In use, the device 1 is applied to a living organism, by proximity or contact, and induces thereon stimulations, referred to as "biofunctional", primarily given by the form and the material with which it was constructed. The device 1 indeed imitates the DNA-Antenna and thus acts as an "antenna" for receiving and reflecting biophotons. In the case where the monoblock 1 is also imprinted, the stimulus will also comprise the transmission of the imprinted frequency to the organism.

[0045] It was shown that the device 1 once reached by the frequency spectrum of the living organism, preferably a human body, is capable of optimally activating the sensory receptors of such organism, emitting a response in the form of a pulse which reaches the peripheral nervous system, amplifying the response of the central nervous system.

[0046] These afferent and efferent reactivation signals were highlighted mainly by the postural tests performed with the baropodomet ric platform, as well as by other bioresonance instruments. In the understanding of the object of the present invention, the term "comprising" and the derivatives thereof, as used here, are intended as open termination terms which specify the presence of the stated features, elements, components, groups, integers, and / or steps, but do not exclude the presence of other non-stated features, elements, components, groups, integers, and / or steps. The above is also applied to words having similar meanings such as the terms "comprised", "have" and the derivatives thereof. Furthermore, the terms "part", "section", "portion", "member", or "element" when used in the singular can have the double meaning of a single part or a plurality of parts. As used here for describing the embodiment ( s ) above, the following directional terms "forward", "backward", "over", "below", "vertical", "horizontal", "under" and "transverse", as well as any other similar directional term, refer to the embodiment described in the operating position. Finally, degree terms such as "substantially", "about" and "approximately" as used here mean a reasonable amount of deviation of the term modified such that the final result is not significantly changed.

[0047] While only selected embodiments for illustrating the present invention were selected, it will be clear for those skilled in the art from this description that various modifications and variants can be apported without departing from the scope of the invention as defined in the attached claims. For example, the size, form, position, or orientation of the various components can be modified depending on requirements and / or desires. The components shown as directly connected to or contacting each other can have intermediate structures arranged therebetween. The functions of an element can be performed by two and vice versa. The structures and functions of an embodiment can be adopted in another embodiment. It is not necessary that all the advantages are present in a particular embodiment at the same time. Each feature being original compared to the prior art, alone or in combination with other features, should also be considered as a separate description of further inventions by the Applicant, including the structural and / or functional concepts incorporated by such features. Therefore, the preceding descriptions of the embodiments according to the present invention are provided only for illustrative purpose and not for the purpose of limiting the invention as defined by the attached claims and their equivalents.

Claims

CLAIMS1) Method for the production of a stimulating device (1) includes the following steps:- providing a material comprising graphene configured for three-dimensional printing;- providing a three-dimensional printer;- printing a monoblock of said material by means of the printer;- the printed monoblock has two identical spirals (5, 10) , having the same winding direction, arranged in a single plane (P) , and joined together, wherein the spirals (5, 10) have all their coils arranged in the plane (P) .2) Method according to claim 1 characterized in that it comprises the step of imprinting at least a desired frequency in the monoblock by exposing it to an electromagnetic signal at that frequency.3) Method according to claim 1 or 2 characterized by the fact of associating the imprinted monoblock with a support (20, 30) configured for contact with a living being .4) Stimulating device characterized in that it comprises a monoblock made of a material comprising graphene;- the monoblock has two identical spirals (5, 10) , having the same winding direction, arranged in a single plane (P) , and joined together, wherein the spirals (5, 10) have all their coils arranged in the plane (P) .5) Device according to claim 4 characterized in that the monoblock is a frequency memory in which at least one imprinted frequency is contained.6) Device according to claim 4 or 5 characterized in that the imprinted monoblock is associated with a support(20, 30) configured for contact with a living being.7) Stimulating assembly comprising a device according to any one of claims 4 to 6, associated with a support (20, 30) configured for contact with a living being. 8) Assembly according to claim 7, characterized in that the support is a cushion (30) or a plantar insole (20) .9) Use of a stimulating device according to any one of claims 4 to 6, characterized in that it is applied to a living organism, by proximity or contact.