A painting production surface that responds to color and texture according to the artist's physiological reactions.

TR202609080A2Pending Publication Date: 2026-06-22ISTANBUL GELISIM UNIVSI
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Patent Information

Authority / Receiving Office
TR · TR
Patent Type
Applications
Current Assignee / Owner
ISTANBUL GELISIM UNIVSI
Filing Date
2026-06-08
Publication Date
2026-06-22

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Abstract

This invention relates to a painting surface that responds to color and texture according to the artist's physiological responses, and can be used in the visual arts sector, digital art technologies sector, creative industries sector, smart materials and pigment technologies sector, human-machine interaction sector, interactive exhibition and museum technologies sector, art education sector, experimental art applications sector, biometric data technologies sector, art engineering sector, neuroaesthetic research sector, and art therapy applications sector; its characteristic feature is:The system consists of a biometric data sensor module (1) that detects the artist's physiological data, a data collection and preprocessing unit (2) that processes the said biometric data, a data transfer interface (3) that transmits the processed data, a sensitive pigment and / or smart paint layer (4) that creates a physical and visual response based on the biometric data, a responsive image production surface (5) that converts these changes into visual output, a carrier surface body (6) that provides surface stability by physically holding the system components together, a power supply unit (7) that provides the necessary energy to the system, which includes a battery and / or external power supply, and a system control and synchronization module (8) that manages the simultaneous operation of the system components.
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Description

1 TARIFF COLOR AND TEXTURE ACCORDING TO THE ARTIST'S PHYSIOLOGICAL RESPONSES RESPONSE IMAGE PRODUCTION SURFACE Technological Field: This invention is relevant to the visual arts sector, the digital art technologies sector, and the creative industries. the smart materials and pigment technologies sector, human-machine interaction sector, interactive exhibition and museum technologies sector, art education sector, experimental 10 art applications sector, biometric data technologies sector, art engineering in the sector of neuroaesthetic research and art therapy applications. paintings that respond to color and texture according to the physiological responses of the artist who can be used. It is related to the production surface. State of the Art: Traditional production systems used in the fields of painting and visual arts, in general It consists of passive tools and surfaces that rely on the artist's physical intervention. Brush, The visual result obtained in paint, pigment, canvas and similar surface systems; 20 It is shaped by the artist's manual dexterity, intuitive approach, and personal methods of expression. In these systems, the artist's emotional state or bodily reactions are only indirectly reflected. This is reflected in the work in a measurable and technical way, and these reactions are not technically feasible. a way to transform it into a traceable or controllable data input No structure found. 25 In well-known digital art applications, emotion-based production processes are mostly used. predefined algorithms, software parameters, or generative design This is carried out through these tools. In such systems, the artist's biometric or Physiological data is available to a limited extent, and the data used is mostly digital. 30 limited to screen outputs, animation systems, or virtual visualization environments. This remains the case, especially in the majority of studies based on EEG data or biofeedback. 2 It is processed at the digital production layer, and the physical picture surface and paint behavior It does not establish a direct control mechanism over it. Therefore, the current Digital solutions transfer the artist's real-time physiological state to the physical art surface. It fails to offer an integrated structure capable of transferring this information. Some research on transforming biofeedback data into artistic production Robotic plotting systems for heart rhythm or HRV data, plotter-based mechanisms or is known to be visualized through digital output systems. However These solutions integrate physiological data directly into the behavior of the physical paint layer. It does not include a surface architecture that handles biometric data. In current systems, biometric data 10 It is mostly used as an auxiliary or external control input, but paint physical characteristics such as density, pigment distribution, drying time, or surface texture There is no technical framework that allows for the instantaneous modification of parameters. This situation allows biometric data to be directly applied to physical surfaces in the art production process. This prevents its effective use. 15 In patent literature, the production of visual output or animation from EEG signals various brain-computer interface-based systems for conversion visualization of biofeedback data in augmented reality environments Solutions are available. However, in these systems, data is mostly stored on digital interfaces. 20 is being processed and there is a direct mechanism that governs the behavior of paint depending on the physical art surface. There is no production mechanism. In addition, thermochromic products available on the market... or pigment systems sensitive to environmental variables such as temperature, UV radiation, or It responds to similar physical environmental conditions and incorporates the artist's biometric data. It does not have a structure that can change surface behavior by sensing it. Therefore, 25 Current systems detect the artist's physiological state in real time and this An integrated, interactive system capable of transferring data directly to the physical image production surface. It does not offer a technically controllable solution. Description of the invention: 30 3 With this invention, the artist's physiological data can be directly incorporated into the art production process. It becomes possible to transfer it to the production surface, thus eliminating the need for traditional systems. The one-way surface structure found is eliminated. Art in current techniques. While the surfaces previously only served a passive load-bearing function, thanks to the developed structure, the surface can now function as a carrier. real 5 based on biometric parameters such as heart rhythm, breathing pattern, stress level. It acquires the characteristic of an active production component capable of responding in a timely manner. This situation, not only the artist's conscious physical interventions, but also his bodily... It also ensures that their reactions are included in the production process as technical data. The invention utilizes biometric data sensor modules, sensitive pigments, and 10 Thanks to the integration between the paint layers, physiological data is directly transmitted to the surface. This can be transformed into behavior such as color intensity, paint flow, and texture distribution. or physical parameters such as drying time depend on real-time data inputs It can change. This data-driven surface behavior is not found in known techniques. Thanks to this approach, the production process is more controlled, measurable and technically 15 It acquires a controllable structure. Another advantage offered by the invention is that the resulting works are biometrically identical to the artist. It is about becoming unique. Traditional methods involve similar techniques and similar applications. While these methods can produce repeatable results, production based on physiological data 20 Thanks to its mechanism, each work depends on the artist's momentary physical state. This structure differentiates the works. This reduces the copyability of the works and ensures originality. It increases its value. It also reflects the artist's unconscious physiological responses. Inclusion in production ensures that the visual output is personalized not only aesthetically but also biometrically. It ensures that it carries a character. 25 With invention, the trial-and-error approach encountered in art production processes changed. Losses can also be reduced. In current systems, paint behavior is largely... While managed through manual interventions and experience-based estimations, the developed system Because it can automatically control the surface parameters, the process is faster and 30 It can progress in a controlled manner. Thus, time efficiency is achieved in the production process. 4 and the need for the artist to constantly manually control the surface behavior. is being reduced. Thanks to controlled pigment and dye management, efficiency is also achieved in material usage. This can be achieved. In traditional methods, faulty paint applications and uncontrolled surface treatment can occur. 5 Material losses can occur due to spreading or the use of unnecessary layers. The invention involves directing surface behavior based on biometric data. It contributes to more controlled use of dyes and pigments, and It offers a technical infrastructure that can reduce production costs. The invention also relates to art technologies, experimental art practices, art education, and interactive arts. New application possibilities in exhibition systems and interdisciplinary research fields. This is particularly due to the strengthening of art-technology integration. human-machine interaction, neuroaesthetics, psychology, biometric data processing, and smart devices. an infrastructure suitable for collaboration between different disciplines such as materials technologies 15 This is ensured. In this respect, the system is not only a method of artistic production, but also a multidisciplinary technology solution that is scalable and commercializable over time It carries. Explanation of the Figures: 20 The invention will be described by referring to the attached figures, so that the features of the invention can be explained. It will be understood and appreciated more clearly, but the purpose of this invention is this obvious It is not about limiting it with regulations. On the contrary, the invention is defined by the accompanying claims. all alternatives, modifications and 25 that can be included within the defined area The aim is to cover their equivalences. The details shown are only for the present invention. It is shown to illustrate the preferred arrangements and both the methods shaping, as well as the rules and conceptual features of the invention, in the most useful way. It should be understood that they are presented to provide a readily understandable definition. This in the drawings; 30 Figure 1 shows a schematic view of the system. Illustrations that will help understand this invention are shown in the attached image. They are numbered and their names are given below. References Explanation: 5 1. Biometric Data Sensor Module 2. Data Collection and Preprocessing Unit 3. Data Transfer Interface 4. Sensitive Pigment and / or Smart Dye Layer 10 5. Responsive Image Generation Surface 6. Carrier Surface Body 7. Power Supply Unit 8. System Control and Synchronization Module Description of the Invention: The invention is a biometric data sensor module (1) that detects the physiological data of the artist, word The subject is the data collection and preprocessing unit (2) which processes biometric data, processed data Data transfer interface (3), physical and visual response based on biometric data 20 The sensitive pigment and / or smart dye layer (4) that forms these changes Responsive image generation surface (5) which converts into visual output, system components carrier surface body (6) which provides surface stability by physically holding it together. energy that provides the necessary power to the system, including battery and / or external power supply System 25 that manages the simultaneous operation of the power supply unit (7) and system components. It consists of a control and synchronization module (8). The invention involves measuring heart rate, respiratory rate, stress level and / or similar physiological parameters. biometric data sensor configured to detect in real time It has module (1). 30 6 The invention relates to raw physiological data from a biometric data sensor module (1). Data collection and preprocessing that filters and converts data into usable control signals. It has unit (2). The invention involves transferring processed biometric data into a sensitive pigment and / or smart paint layer (4) 5 It has a data transfer interface (3) that transmits data via wired and / or wireless. The invention consists of a biometric data sensor module (1), data collection and preprocessing unit (2), data The transfer interface (3) and the sensitive pigment and / or smart paint layer (4) are equal 10 providing real-time data communication and biometric data at specified times and intervals System control that manages the transfer of density parameters in accordance with the parameters. It includes the synchronization module (8). The invention allows for the modification of color intensity, paint spread, surface texture, and other features based on biometric data. sensitive pigments and / or smart paints that alter paint flow and / or drying time It includes layer (4). The invention relates to physical changes occurring in the sensitized pigment and / or smart dye layer (4). Responsive image generation that transforms changes into visible and lasting visual output 20 It has a surface (5). The invention allows the artist to continuously record the physiological changes that occur throughout the production process. It has a tracking biometric data sensor module (1). Detailed Description of the Invention: The invention involves the perception of physiological data generated during the artist's painting production process. processing, transfer and visualization of this data on the image production surface. It is based on the principle of bringing about change. 30 7 When the system starts working, the biometric data sensor module (1) of the artist's production physiological data such as heart rate, breathing rhythm and stress level that occur during this time It detects. The biometric data sensor module (1) detects the artist's production action throughout the process. It tracks their changing physiological responses in real time and uses this data in raw form. It transmits the biometric data to the data collection and preprocessing unit (2). 5 Data collection and preprocessing unit (2) receives raw data from biometric data sensor module (1) It analyzes and filters the data and converts it into usable signals for the system. It transforms. At this stage, the data represents the artist's immediate physiological state. 10 by regulating and sensitive pigment and / or smart paint layer (4) They are transformed into usable control inputs. Processed biometric data is transmitted to the sensitive pigment via the data transfer interface (3). and / or is transmitted to the smart paint layer (4). The data transmission interface (3) is the said The transmission is carried out via wired or wireless means, and the processed data is produced. 15 This ensures that it reaches the pigment system simultaneously with the process. This transmission During this time, the system control and synchronization module (8) ensures accurate timing of the data. It manages the transfer of information within an appropriate intensity and harmonious work schedule. System control and synchronization module (8), biometric data sensor module (1), data 20 collection and preprocessing unit (2), data transfer interface (3) and sensitive pigment and / or This module creates a simultaneous working order between the smart paint layer (4). (8), changes in the artist’s physiological data without delay and in a controlled manner It enables the image to be reflected onto the production surface. Sensitive pigment and / or smart paint layer (4), via data transfer interface (3) physical and visual response based on biometric data provided to him / her This layer (4) is formed according to the changes in the artist's physiological condition. parameters such as color intensity, texture spread, paint flow, and surface behavior It changes the behavior of paint and pigments. Thus, the behavior of paint and pigments changes with manual application alone. not bound by; technically according to the artist's bodily reactions. It is being redirected. 8 Responsive image production surface (5), in the sensitive pigment and / or smart paint layer (4) converts the changes that occur into visible visual output. Responsive The painting production surface (5) depends on the artist's brush movements and biometric data. It brings together pigment responses and visual variations throughout the production process. It enables the formation of structures on the surface. Carrier surface body (6) reacts with sensitive pigment and / or smart paint layer (4) supporting the image production surface (5) and the physical integrity of the system It protects the carrier surface body (6), layer 10 formed during production. It ensures that the interactions take place on a stable surface and the system It allows its components to work together. Power supply unit (7), biometric data sensor module (1), data collection and pre- processing unit (2), data transfer interface (3) and system control and synchronization 15 It provides the energy required for the operation of the module (8). The energy supply unit (7), It can be configured as a battery or external power supply, and the system's production process It supports uninterrupted operation throughout. During the development of the invention, when the artist began production, the biometric data sensor 20 module (1) detects physiological responses, data collection and preprocessing unit (2) this converting data into processed signals, data transmission interface (3) transmitting signals to the sensitive pigment and / or smart paint layer (4), system control and the synchronization module (8) ensures that all these operations are carried out simultaneously. It provides. The sensitive pigment and / or smart paint layer (4) depends on the data it receives. Color, texture and paint behavior on the image production surface (5) that reacts as It causes changes; the carrier surface body (6) is stable for these changes. It enables this to happen in the structure. As a result of this working arrangement, the painting production process involves the artist's conscious physical movements. 30 an interactive structure in which immediate physiological responses work together It is transforming. Thus, the resulting visual output reflects the artist's physiological state during the production process. 9 It takes shape depending on the situation and is a personalized, measurable, and interactive work. It acquires this quality. 10 20 30

Claims

REQUESTS 1- The invention involves producing paintings that respond to color and texture according to the artist's physiological responses. It relates to its surface and its characteristic is;  Biometric data sensor module (1) that detects the artist's physiological data, 5  data collection and preprocessing unit (2) that processes the biometric data in question, Data transfer interface (3) which transfers the processed data,  A sensor that generates physical and visual responses based on biometric data. pigment and / or smart paint layer (4),  Responsive image generation that converts these changes into visual output 10 surface (5),  Surface stability by physically holding system components together. providing carrier surface body (6),  provides the necessary energy to the system, which includes a battery and / or external power supply. energy supply unit (7) and 15  System control that manages the simultaneous operation of system components. It consists of a synchronization module (8). 2- According to Claim 1, a painting that responds to color and texture according to the artist's physiological responses. It is a production surface, and its feature is; heart rate, breathing rhythm, stress level and / or similar 20 configured to detect physiological parameters in real time It is characterized by having a biometric data sensor module (1). 3- According to Claim 1, a painting that responds to color and texture according to the artist's physiological responses. It is a production surface and its feature is; raw 25 from the biometric data sensor module (1). Data that filters physiological data and converts it into usable control signals. It is characterized by having a collection and preprocessing unit (2). 4- According to Claim 1, a painting that responds to color and texture according to the artist's physiological responses. It is a production surface, characterized by its ability to process biometric data using sensitive pigments and / or smart 30. data transfer interface (3) which transmits to the paint layer (4) via wired and / or wireless It is characterized by having 11 5- According to Claim 1, a painting that responds to color and texture according to the artist's physiological responses. It is a production surface and its feature is; biometric data sensor module (1), data collection and pre processing unit (2), data transfer interface (3) and sensitive pigment and / or smart dye enabling simultaneous data communication between layers (4) and biometric data 5 transfer in accordance with the specified timing and intensity parameters It is characterized by having a governing system control and synchronization module (8). It is done. 6- According to Claim 1, the painting that responds to color and texture according to the artist's physiological responses is 10. It is a production surface, and its characteristics include color intensity and paint color depending on biometric data. Sensitive pigment that alters spread, surface texture, paint flow and / or drying time. and / or is characterized by having a smart paint layer (4). 7- According to Claim 1, the painting that responds to color and texture according to the artist's physiological responses is 15. It is a production surface and its feature is; sensitive pigment and / or smart paint layer (4) a response that converts the physical changes that occur into a visible and lasting visual output It is characterized by having a picture production surface (5). 8- According to Claim 1, the painting that responds to color and texture according to the artist's physiological responses is 20. It is a production surface, and its characteristic feature is the physiological changes that occur during the artist's production process. having a biometric data sensor module (1) that constantly monitors changes It is characterized by... 30