System and method for interfering autonomous consciousness in dream by using external environment

Through the synergistic effect of multiple control mechanisms and physiological monitoring equipment, the effectiveness and safety issues of dream interference have been resolved, achieving efficient and controllable interference with dreams, adapting to various application scenarios, and promoting the development of dream interference technology.

CN121868656APending Publication Date: 2026-04-17范贤鑫
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
范贤鑫
Filing Date
2024-04-09
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

How to effectively and safely interfere with the autonomous consciousness within dreams using existing technologies still requires in-depth research, especially how to conduct efficient and controllable interference through the external environment.

Method used

A system was designed, which includes multiple control mechanisms such as temperature, airflow, sound, humidity, light, and odor. The control system coordinates these mechanisms to physically interfere with the organism, and is equipped with physiological monitoring equipment to monitor the organism's state in real time and optimize the interference parameters to achieve specific dream interference.

Benefits of technology

It achieves efficient guidance and intervention of dreams, ensuring safety and flexibility, adapting to different application scenarios, improving the effectiveness and reliability of dream intervention, and providing support for research and practice in related fields.

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Abstract

The invention discloses a system and a method for interfering autonomous consciousness in a dream by using an external environment, and relates to the technical field of mental interference equipment. The system comprises an experiment table arranged in an independent environment, a temperature control mechanism is arranged on the periphery of the experiment table, and the temperature control mechanism regulates and controls the temperature of the independent environment in a partitioned mode; the air flowing mechanism adjusts the air flow speed in multiple directions and multiple gears; the sound control mechanism is used for adjusting the direction and the volume of the played sound source; one or more of the temperature control mechanism, the air flow mechanism and the sound control mechanism physically interfere with the living body after the living body falls asleep; and the control system is used for controlling the operation of all the mechanisms and regulating and controlling the cooperation among all the mechanisms. The system can guide and interfere the dream of the living body through the physical interference means of each mechanism, so that the specific treatment, training or research purpose is achieved, and the system has wide application prospects.
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Description

Technical Field

[0001] This invention relates to the field of mental intervention equipment technology, and in particular to a system and method for interfering with autonomous consciousness within dreams using the external environment. Background Technology

[0002] In the interdisciplinary field of neuroscience and cognitive science, the study of dreams and self-awareness has always been a hot topic. With the advancement of technology, especially the development of brain-computer interface (BMI) technology, people have begun to explore the possibility of interfering with self-awareness in dreams through the external environment.

[0003] Dreams, as an important psychological phenomenon in human sleep, are an important process for the brain to integrate information and consolidate memories during REM (rapid eye movement) sleep. Self-awareness refers to an individual's active control and regulation of their own thoughts, emotions, and behaviors. Although dreams and self-awareness are both higher functions of the brain, in traditional concepts, dreams are considered a private realm that cannot be directly interfered with by the outside world.

[0004] However, in recent years, with the development of neuroimaging technology, researchers have been able to more accurately observe and locate brain regions related to dreams. At the same time, the advancement of BMI technology has enabled people to communicate directly with the brain in non-invasive or invasive ways, which provides a possible technical means to use the external environment to interfere with the autonomous consciousness in dreams.

[0005] Against this backdrop, some research teams have begun exploring the use of physical stimuli such as sound, light, and magnetic fields, combined with BMI technology, to intervene in dreams. For example, specific sound stimuli can guide the emotional direction in dreams; adjusting the intensity and color of light can influence the visual content of dreams; and magnetic field stimulation can attempt to regulate the autonomous consciousness within dreams. Therefore, specific external stimuli can, to some extent, influence the content of dreams and the experience of autonomous consciousness.

[0006] Although these preliminary explorations have yielded some results, how to use the external environment to more effectively interfere with autonomous consciousness within dreams, and the potential long-term effects of such interference, remain issues that require in-depth research. Therefore, developing an efficient, safe, and controllable system and method for interfering with autonomous consciousness within dreams using the external environment has significant scientific value and application prospects.

[0007] Based on this, the applicant proposed a system and method for interfering with autonomous consciousness within dreams using the external environment to solve the above technical problems. Summary of the Invention

[0008] This invention addresses the shortcomings of existing technologies by providing a system and method for interfering with autonomous consciousness within dreams using the external environment.

[0009] The present invention is solved by the following technical solution: A system for interfering with autonomous consciousness within a dream state using the external environment includes an experimental table set up in an independent environment, with various features arranged around the table. A temperature control mechanism that regulates the temperature of the independent environment in zones; An airflow mechanism, wherein the airflow speed is adjusted in multiple directions and at multiple speeds; A sound control mechanism that adjusts the position and volume of the sound source being played. One or more of the temperature control mechanism, the airflow mechanism, and the sound control mechanism physically interfere with the organism after it has entered sleep. It also includes a control system, which is used to control the operation of the above-mentioned mechanisms and regulate the coordination between them.

[0010] Preferably, the experimental platform is equipped with a biological physiological monitoring device, which is used to monitor the physiological state of the organism in real time and feed the monitoring data back to the control system.

[0011] Preferably, the biological physiological monitoring device includes an electroencephalogram (EEG) device, a heart rate and / or blood pressure monitoring wristband.

[0012] Preferably, the temperature control mechanism includes an air conditioning system, which is connected to a plurality of air outlets, each of which is equipped with a temperature regulating controller, which is used to regulate the air outlet temperature of the corresponding air outlet.

[0013] Preferably, the airflow mechanism includes several fans, which are arranged at different positions and angles around the experimental platform, and each fan is equipped with several wind speed settings.

[0014] Preferably, the sound control mechanism includes several audio devices and a playback control device electrically or wirelessly connected to them. The audio devices are arranged in different positions around the experimental table, and the playback control device is used to adjust the audio played by the audio devices and their playback volume.

[0015] Preferably, it also includes a humidity control mechanism, which regulates the humidity under simulated ecological environments.

[0016] Preferably, the humidity control mechanism includes several humidity sensors mounted on the experimental platform, as well as a steam generator and an exhaust fan. The steam generator is used to increase the humidity in the independent environment, and the exhaust fan is used to extract the high-humidity air from the independent environment to reduce the humidity in the independent environment.

[0017] Preferably, it also includes a lighting adjustment mechanism that controls the color and brightness of light within the independent environment.

[0018] Preferably, the lighting adjustment mechanism includes a main light with stepless dimming and color adjustment functions and an ambient light group with several flashing patterns.

[0019] Preferably, it also includes an odor releaser, which is used to release a corresponding gas to simulate the odor in different scenarios.

[0020] Preferably, the odor releaser includes an outlet and a gas storage module, and the control system is equipped with a flow regulator, which is used to regulate the flow rate of the released gas to adjust the odor concentration.

[0021] A method for interfering with autonomous consciousness within dreams using the external environment includes the following steps: Step A: Place the organism on the experimental platform, connect the organism's physiological monitoring equipment and record the monitoring data. At the same time, start the operation of each mechanism through the control system and adjust it to a suitable initial environment. Step B: Set the dream plan through the control system, configure the operating parameters of each mechanism, and wait for the start signal; Step C: The biological physiological monitoring equipment detects that the organism has entered the REM (Rapid Eye Movement) sleep stage and sends an activation signal to the control system; Step D: The control system controls each mechanism to operate according to the operating parameters, thereby physically interfering with the organism. At the same time, the organism's physiological monitoring equipment records the monitoring data and feeds it back to the control system. Step E: After the organism's physiological monitoring equipment detects that the organism has awakened, the control system controls each mechanism to readjust to the initial environment in preparation for the next intervention. At the same time, the dream data subjectively fed back by the organism is recorded in the control system and compared with the set dream plan to optimize the operating parameters of each mechanism under the dream plan. Step F: Repeat steps A to E according to the optimized operating parameters of each mechanism in step E. After obtaining sufficient data, fit the optimal parameters of the interference environment of the corresponding dream scheme.

[0022] The beneficial effects of this invention are as follows: First, this invention provides a system for interfering with autonomous consciousness in dreams using the external environment. This system can guide and interfere with the dreams of organisms through various physical interference methods such as temperature control mechanism, air flow mechanism, and sound control mechanism, thereby achieving specific therapeutic, training or research purposes. It has broad application prospects in the fields of psychology, neuroscience, and medicine. Secondly, the system of the present invention monitors the physiological state of the organism in real time through biological physiological monitoring equipment, which can ensure the safety of the organism during the dream interference process and avoid risks caused by improper interference; Furthermore, the system of the present invention also has high flexibility and scalability. Through the coordinated control of the various mechanisms by the control system, it is easy to configure and switch different dream schemes. At the same time, the system can also add more interference mechanisms and devices according to actual needs to achieve more comprehensive and in-depth interference with dreams. This flexibility and scalability enable the system of the present invention to adapt to application scenarios with different fields and different needs. Finally, this invention also provides a method for interfering with autonomous consciousness within dreams using this system. This method achieves interference with and data analysis of a biological dream through a series of steps. By continuously optimizing the operating parameters of each mechanism, the optimal parameters of the interference environment for the corresponding dream scheme can be gradually fitted, thereby improving the effectiveness and reliability of dream interference. The application of this method will help promote the development and application of dream interference technology and provide strong support for research and practice in related fields. Attached Figure Description

[0023] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be discussed below. Obviously, the technical solutions described in conjunction with the accompanying drawings are only some embodiments of the present invention. For those skilled in the art, other embodiments and their accompanying drawings can be obtained based on the embodiments shown in these drawings without creative effort.

[0024] Figure 1 This is a three-dimensional structural schematic diagram of Embodiment 2 of the present invention.

[0025] Figure 2 This is a three-dimensional structural schematic diagram of Embodiment 2 of the present invention.

[0026] Figure 3 This is a three-dimensional structural schematic diagram of Embodiment 2 of the present invention.

[0027] Figure 4 This is a three-dimensional structural diagram of the control system of the present invention.

[0028] In the diagram: 1. Experimental bench; 2. Temperature control mechanism; 21. Air conditioning system; 22. Air outlet; 23. Temperature regulator; 3. Air flow mechanism; 31. Fan; 4. Sound control mechanism; 41. Audio equipment; 42. Playback control device; 5. Control system; 6. Biological physiological monitoring device; 7. Humidity control mechanism; 71. Humidity sensor; 72. Steam engine; 73. Exhaust fan; 8. Lighting adjustment mechanism; 81. Main light; 82. Ambient lighting group; 9. Odor releaser; 91. Air outlet; 92. Gas storage module; 93. Flow regulator. Detailed Implementation

[0029] The technical solutions of various embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments described in the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention. Example 1:

[0030] This invention discloses a system for interfering with autonomous consciousness within a dream state using the external environment. The system includes an experimental platform 1 set up in an independent environment. A biological physiological monitoring device 6 is installed on the experimental platform 1. The biological physiological monitoring device 6 is used to monitor the physiological state of the organism in real time and feeds the monitoring data back to the control system 5. The biological physiological monitoring device 6 includes an electroencephalogram (EEG) device and a heart rate and / or blood pressure monitoring wristband. The experimental platform 1 is surrounded by [missing information - likely related to equipment or equipment]. Temperature control mechanism 2, wherein the temperature control mechanism 2 regulates the temperature of the independent environment in zones, the temperature control mechanism 2 includes an air conditioning system 21, the air conditioning system 21 is connected to a plurality of air outlets 22, each of the air outlets 22 is provided with a temperature regulating controller 23, the temperature regulating controller 23 is used to regulate the air outlet temperature of the corresponding air outlet 22; Airflow mechanism 3, which adjusts airflow speed in multiple directions and at multiple speeds, includes several fans 31, which are arranged at different positions and angles around the experimental platform 1, and each fan 31 is equipped with several wind speeds. The sound control mechanism 4 adjusts the position and volume of the sound source. The sound control mechanism 4 includes several audio devices 41 and a playback control device 42 electrically or wirelessly connected to them. The audio devices 41 are arranged in different positions around the experimental table 1. The playback control device 42 is used to adjust the audio played by the audio devices 41 and its playback volume. One or more of the temperature control mechanism 2, the air flow mechanism 3, and the sound control mechanism 4 physically interfere with the organism after it enters sleep. It also includes a control system 5, which is used to control the operation of the above-mentioned mechanisms and regulate the coordination between the above-mentioned mechanisms. Example 2:

[0031] like Figures 1 to 4 As shown, this invention discloses a system for interfering with autonomous consciousness within a dream state using the external environment. The system includes an experimental platform 1 set up in an independent environment. A biological physiological monitoring device 6 is installed on the experimental platform 1. This device 6 monitors the physiological state of the organism in real time and feeds the monitoring data back to the control system 5. The biological physiological monitoring device 6 includes an electroencephalogram (EEG) device and a heart rate and / or blood pressure monitoring wristband. The experimental platform 1 is surrounded by [missing information - likely related to equipment or devices]. Temperature control mechanism 2, wherein the temperature control mechanism 2 regulates the temperature of the independent environment in zones, the temperature control mechanism 2 includes an air conditioning system 21, the air conditioning system 21 is connected to a plurality of air outlets 22, each of the air outlets 22 is provided with a temperature regulating controller 23, the temperature regulating controller 23 is used to regulate the air outlet temperature of the corresponding air outlet 22; Airflow mechanism 3, which adjusts airflow speed in multiple directions and at multiple speeds, includes several fans 31, which are arranged at different positions and angles around the experimental platform 1, and each fan 31 is equipped with several wind speeds. The sound control mechanism 4 adjusts the position and volume of the sound source. The sound control mechanism 4 includes several audio devices 41 and a playback control device 42 electrically or wirelessly connected to them. The audio devices 41 are arranged in different positions around the experimental table 1. The playback control device 42 is used to adjust the audio played by the audio devices 41 and its playback volume. It also includes a humidity control mechanism 7, which regulates the humidity under simulated ecological environments. The humidity control mechanism 7 includes several humidity sensors 71 installed on the experimental platform 1, as well as a steam engine 72 and an exhaust fan 73. The steam engine 72 is used to increase the humidity in the independent environment, and the exhaust fan 73 is used to extract the high humidity air in the independent environment to reduce the humidity in the independent environment.

[0032] It also includes a lighting adjustment mechanism 8, which controls the color and brightness of light in the independent environment. The lighting adjustment mechanism 8 includes a main light 81 with stepless dimming and color adjustment functions and an ambient light group 82 with several flashing patterns.

[0033] It also includes an odor releaser 9, which is used to release corresponding gases to simulate the odors in different scenarios. The odor releaser 9 includes an outlet 91 and a gas storage module 92. The control system 5 is equipped with a flow regulator 93, which is used to regulate the flow rate of the released gas to adjust the odor concentration.

[0034] One or more of the temperature control mechanism 2, the air flow mechanism 3, the sound control mechanism 4, the humidity control mechanism 7, the light adjustment mechanism 8, and the odor releaser 9 physically interfere with the organism after it enters sleep.

[0035] It also includes a control system 5, which is used to control the operation of the above-mentioned mechanisms and regulate the coordination between the above-mentioned mechanisms. Example 3:

[0036] The present invention discloses a method for interfering with autonomous consciousness within a dream state using the external environment, comprising the following steps: Step A: Placing the organism on an experimental table 1, connecting the organism's physiological monitoring device 6 and recording the monitoring data, while simultaneously activating each mechanism through the control system 5 to adjust to a suitable initial environment; Step B: Setting the dream scheme through the control system 5, configuring the operating parameters of each mechanism, and waiting for the activation signal; Step C: Detecting that the organism has entered the REM (Rapid Eye Movement) sleep stage, the biological physiological monitoring device 6 sends an activation signal to the control system 5; Step D: Controlling each mechanism according to the operating parameters through the control system 5. The system operates to physically interfere with the organism, while the organism's physiological monitoring device 6 records the monitoring data and feeds it back to the control system 5; Step E: After the organism's physiological monitoring device 6 detects that it has regained consciousness, the control system 5 controls each mechanism to readjust to the initial environment in preparation for the next intervention. At the same time, the control system 5 records the dream data subjectively fed back by the organism and compares it with the set dream scheme to optimize the operating parameters of each mechanism under the dream scheme; Step F: Repeat steps A to E according to the optimized operating parameters of each mechanism in step E. After obtaining sufficient data, fit the optimal parameters of the interference environment for the corresponding dream scheme.

[0037] This method achieves the interference and data analysis of a organism's dream through a series of steps. By continuously optimizing the operating parameters of each mechanism, the optimal parameters of the interference environment for the corresponding dream scheme can be gradually fitted, thereby improving the effect and reliability of dream interference. The application of this method will help promote the development and application of dream interference technology and provide strong support for research and practice in related fields.

[0038] Based on Embodiment 1 or Embodiment 2, the system of the present invention that uses the external environment to interfere with autonomous consciousness in dreams can also add more interference mechanisms and devices according to actual needs to achieve more comprehensive and in-depth interference with dreams. This flexibility and scalability enable the system of the present invention to adapt to application scenarios with different fields and different needs.

[0039] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered illustrative and non-limiting in all respects. The scope of the invention is defined by the appended claims, not by the foregoing description, and thus all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the invention. No reference numerals in the claims should be construed as limiting the scope of the claims.

[0040] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A system for interfering with autonomous consciousness within dreams by utilizing the external environment, characterized in that: Includes an experimental platform (1) set up in an independent environment, wherein the experimental platform (1) is surrounded by... Temperature control mechanism (2), wherein the temperature control mechanism (2) regulates the temperature of the independent environment in zones; Airflow mechanism (3), wherein the airflow mechanism (3) adjusts the airflow speed in multiple directions and at multiple levels; The sound control mechanism (4) adjusts the position and volume of the sound source being played. One or more of the temperature control mechanism (2), the air flow mechanism (3), and the sound control mechanism (4) physically interfere with the organism after it enters sleep; It also includes a control system (5), which is used to control the operation of the above-mentioned mechanisms and regulate the coordination between the above-mentioned mechanisms.

2. The system for interfering with autonomous consciousness within a dream state using the external environment, as described in claim 1, is characterized in that: The experimental platform (1) is equipped with a biological physiological monitoring device (6), which is used to monitor the physiological state of the organism in real time and feed the monitoring data back to the control system (5).

3. A system for interfering with autonomous consciousness within a dream state using the external environment, as described in claim 2, is characterized in that: The biological physiological monitoring device (6) includes an electroencephalogram (EEG) instrument and a heart rate and / or blood pressure monitoring wristband.

4. A system for interfering with autonomous consciousness within a dream state using the external environment, as described in claim 1, characterized in that: The temperature control mechanism (2) includes an air conditioning system (21), which is connected to a plurality of air outlets (22). Each air outlet (22) is equipped with a temperature regulating controller (23), which is used to regulate the air outlet temperature of the corresponding air outlet (22).

5. A system for interfering with autonomous consciousness within a dream state using the external environment, as described in claim 1, characterized in that: The airflow mechanism (3) includes several fans (31), which are arranged at different positions and angles around the experimental platform (1), and each fan (31) is equipped with several wind speed settings.

6. A system for interfering with autonomous consciousness within a dream state using the external environment, as described in claim 1, characterized in that: The sound control mechanism (4) includes several audio devices (41) and a playback control device (42) electrically or wirelessly connected to them. The audio devices (41) are arranged in different positions around the experimental table (1). The playback control device (42) is used to adjust the audio played by the audio devices (41) and their playback volume.

7. A system for interfering with autonomous consciousness within a dream state using the external environment, as described in claim 1, characterized in that: It also includes a humidity control mechanism (7), which regulates the humidity under simulated ecological environments. The humidity control mechanism (7) includes several humidity sensors (71) set on the experimental platform (1), and also includes a steam engine (72) and an exhaust fan (73). The steam engine (72) is used to increase the humidity in the independent environment, and the exhaust fan (73) is used to extract the high humidity air in the independent environment to reduce the humidity in the independent environment.

8. A system for interfering with autonomous consciousness within a dream state using the external environment, as described in claim 1, characterized in that: It also includes a lighting adjustment mechanism (8), which controls the color and brightness of light in the independent environment. The lighting adjustment mechanism (8) includes a main light (81) with stepless dimming and color adjustment function and an ambient light group (82) with several flashing patterns.

9. A system for interfering with autonomous consciousness within a dream state using the external environment, as described in claim 1, characterized in that: It also includes an odor release device (9), which is used to release corresponding gases to simulate the odors in different scenarios. The odor release device (9) includes an outlet (91) and a gas storage module (92). The control system (5) is equipped with a flow regulator (93), which is used to regulate the flow rate of the released gas to adjust the odor concentration.

10. A method for interfering with autonomous consciousness within a dream state using the system described in any one of claims 2 to 9, characterized in that: It includes the following steps: Step A: Place the organism on the experimental table (1), connect the organism physiological monitoring equipment (6) and record the monitoring data. At the same time, start the operation of each mechanism through the control system (5) and adjust it to a suitable initial environment. Step B: Set the dream scheme through the control system (5), configure the operating parameters of each mechanism, and wait for the start signal; Step C: The biological physiological monitoring device (6) detects that the organism has entered the REM (rapid eye movement) sleep stage and sends an activation signal to the control system (5); Step D: Control each mechanism to operate according to the operating parameters through the control system (5), thereby physically interfering with the organism. At the same time, the organism's physiological monitoring equipment (6) records the monitoring data and feeds it back to the control system (5). Step E: After the organism awakens, the physiological monitoring device (6) controls each mechanism to readjust to the initial environment in preparation for the next intervention. At the same time, the dream data of the organism's subjective feedback is recorded in the control system (5) and compared with the set dream scheme to optimize the operating parameters of each mechanism under the dream scheme. Step F: Repeat steps A to E according to the optimized operating parameters of each mechanism in step E. After obtaining sufficient data, fit the optimal parameters of the interference environment of the corresponding dream scheme.