AN INTEGRATED SYSTEM AND METHOD FOR EVALUATING PHYSIOLOGICAL EVENTS AND GENERATING TECHNICAL INFORMATION.
Patent Information
- Application Number
- TR202613463
- Authority / Receiving Office
- TR · TR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2026-08-09
- Publication Date
- 2026-09-21
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Abstract
Description
1 TARIFF EVALUATION OF PHYSIOLOGICAL EVENTS AND GENERATION OF TECHNICAL INFORMATION INTEGRATED SYSTEM AND METHOD FOR THIS PURPOSE Technical area 5 This invention describes the measurable physiological events (2) occurring in the human body (1). obtaining, evaluating and obtaining the physical effects (3) that it creates from the evaluations, technical information about the physiological condition (13) is produced It relates to systems and methods aimed at this. The invention is based on (2) 10 measurable physiological events occurring in the human body (1). physical effects (3), different perception (4), data acquisition (5), data processing (6), evaluation (7) and analysis (8) approaches, alone or considering them together, and applying the information obtained to the individual's specific needs. creation of models (9), evaluation of temporal changes (10), monitoring of physiological status and technical information about physiological status or 15 Basic integrated system architecture (16) for the purpose of producing technical output (13) It includes being carried out within. State of the art Measurable physiological events (2) occurring in the human body (1) Various systems and methods have been developed for its evaluation. These 20 systems, physical effects (3) generated by measurable physiological events (2) different for the purpose of perception, recording, processing and evaluation sensing (4) technologies, electronic systems and computational methods It benefits from it. In current practices, the measurement, evaluation (7) and analysis (8) processes 25 mostly a particular sensor, a particular type of signal, a particular evaluation (7) This is carried out based on a specific method or technical solution. Therefore, different measurable physiological events (2) or the same measurable physiological obtained from measurements (14) carried out at different times regarding the incident (2). Systems approaches for evaluating information together are limited. 30 It can remain. In addition, data acquisition (5), data processing (6), evaluation (7) and conclusion The creation processes are often considered as independent technical components. 2 is taken and the measurable effects of these components occur in the human body (1). basic integrated system which takes physiological events (2) as its starting point Solutions are needed to evaluate them together within the architecture (16). It is located. Therefore, 5 of the measurable physiological events occurring in the human body (1) (2) obtaining the physical effects it creates (3) reliably, different including measurements taken at times (14) to be able to assess and obtain information about physiological status from these assessments integrated systems that enable the production of technical information or technical output (13) It is needed. 10 The purpose of the invention The purpose of this invention is to detect measurable physiological (1) occurrences in the human body. obtaining (3) the physical effects (2) of the events in a reliable manner, evaluation and information about physiological status from these evaluations basic integrated system that enables the production of technical information or technical output (13) 15 its architecture (16) is to create. Another purpose of the invention is to enable the data obtained to be taken from a single measurement or from different sources. together with the data obtained from the measurements carried out at times (14) basic integrated system architecture that allows evaluation (16) to create. 20 Another purpose of the invention is to improve different sensing (4), data acquisition (5), data processing (6), Basic integrated system of evaluation (7) and analysis (8) approaches architecture (16) allows it to be implemented alone or together within it. to provide. Another aim of the invention is to create 25 personalized solutions by evaluating the data obtained. to create reference models (9), temporal changes (10) monitoring, assessment of physiological condition and physiological status basic information or technical output (13) that enables the production of technical information or technical output about it to create an integrated system architecture (16). Another purpose of the invention is to process the data obtained. 30 Technical information created as a result of evaluation and analysis (8), authorized data in accordance with the determined access permission and scope of authorization (18) Basic integrated system architecture (16) that enables access (17) to create. 3 Description of the invention Measurable physiological events (2) occurring in the human body (1) are the life As a natural consequence, it creates physical effects (3). These physical effects (3); which can be evaluated alone or together, and is physiological 5 is doing. The invention describes measurable physiological events (2) occurring in the human body (1). basic integrated system architecture which takes as starting point (16) It is based on the basic integrated system architecture (16); the measurable obtaining (3) physical effects resulting from (2) physiological events, 10 perception (4), data acquisition (5), data processing (6), evaluation (7), analysis (8) and from these, technical information or technical output about physiological status (13) It has been designed to include its production. The data obtained within the scope of the invention may relate to a single measurement or to different measurements. together with the data obtained from the measurements carried out at times (14) 15 can be evaluated. Thus, individual-specific reference models (9) can be created, Temporal changes (10) can be monitored and temporal change assessment (10) realizable. The invention involves a specific sensing (4) method, a specific electronic structure, a specific data not limited to processing (6) method or a particular evaluation (7) technique, 20 different techniques that implement the basic integrated system architecture (16) (15) can be implemented. Explanation of the figures Figure 1 shows measurable physiological events (2) occurring in the human body (1). until technical information or technical output (13) about the physiological condition is produced 25 It shows the basic process flow that is carried out. Figure 2, sensing (4), data acquisition (5), data processing (6), evaluation (7) and analysis (8) shows the flow of operations between the processes. Figure 3 shows the individual-specific reference model (9) and temporal variation as a result of the analysis (8). assessment (10), risk assessment (11) and health history 30 the creation of information regarding the updating (12) and physiological It shows the structure for generating technical information about the situation (13). Figure 4 shows the individual reference of measurements taken at different times (14). model (9) and temporal change assessment (10) 4 by evaluating the physiological condition, technical information about (13) is produced. It shows the structure in that direction. Figure 5 shows the different technical implementations (15) of sensing (4), data acquisition (5), data can be applied in the processing (6), evaluation (7) and analysis (8) processes and 5 for the production of technical information or technical output (13) about physiological condition It shows the structure. Figure 6 shows the technical information or technical output about the physiological condition (13), authorized data in accordance with the determined access permission and scope of authorization (18) to provide access (17) and to the authorized recipient (19) access It shows the structure. 10 Figure 7 shows measurable physiological events (2) occurring in the human body (1). from the beginning to the production of technical information about the physiological condition (13) It shows the integrated system flow. Figure 8 shows the basic integrated system architecture with different technical implementations (15). (16) shows the relationship between them. 15 Detailed description of the invention The invention relates to measurable physiological events (2) occurring in the human body (1). obtaining the physical effects (3) that it creates reliably assessment and technical information about physiological status based on these assessments. basic integrated system for producing information or technical output (13) 20 It is based on its architecture (16). Basic integrated system architecture (16); from measurable physiological events (2) (3) perception of resulting physical effects (4), data acquisition (5), data processing (6), evaluation (7), analysis (8) and information obtained about the physiological condition a process that includes converting into technical information or technical output (13) 25 It forms the whole. Sensing (4), data acquisition (5), data processing (6) used within the scope of the invention, evaluation (7) and analysis (8) approaches alone or together applicable. These processes are within the same basic integrated system architecture (16). It can be fulfilled with different technical implementations (15). 30 The data obtained within the scope of the invention may relate to a single measurement or to different measurements. together with the data obtained from the measurements carried out at times (14) can be evaluated. Thus, individual-specific reference models (9) can be created, Temporal changes (10) can be monitored and evaluation (7) results are continuous It can be updated accordingly. Obtained as a result of evaluations carried out by the system. information; production of technical information or technical output (13) about physiological status, The creation of individual-specific reference models (9), temporal changes (10) 5 determination, risk assessments (11) and health history It can be used for updating (12). Data obtained within the scope of the invention and the processing of this data, technical information created as a result of evaluation and analysis (8) Authorized data access (17) can be provided. 10 Authorized data access (17) refers to the data and technical information that is subject to access. allowing access to all or a specific part of it Access can be realized within the scope of the specified access permission and authorization (18) This is done accordingly, with different types of data and technical information for each. It may be possible to create access scopes. 15 The scope of access permission and authorization created within the scope of the invention (18) may be changed. or may be revoked. Modification or revocation of access permission or authorization scope. If obtained, access to data and technical information will be subject to current access permission and It can be carried out in accordance with the scope of authority (18). Authorized data access (17); to individual-specific reference models (9), 20 temporal changes (10), risk assessments (11), physiological condition technical information or technical output (13) and health history about Access to the information forming the basis for updating (12) either alone or together It can be implemented in a way that will allow it to be provided. Authorized recipient (19), specified access permission and scope of authorization (18) 25 It refers to the party to whom access to data or technical information is granted. Authorized data access (17); a specific recipient type, access method, communication The method is not limited to electronic structure or different technical implementation (15), with different technical implementations that perform the same access and authorization function It is feasible. 30 The invention involves a specific sensing (4) method, a specific electronic structure, a specific data processing (6) method, a specific evaluation (7) technique or different techniques not limited to implementation (15), but also the basic integrated system architecture (16) This can also be achieved through different applications. 6 The working principle of the invention The working principle of the invention is based on measurable occurrences in the human body (1). (3) obtaining the physical effects created by (2) physiological events reliably the evaluation of data obtained from these effects and physiological It is based on the production of technical information about the situation (13). 5 Data obtained within the scope of the basic integrated system architecture (16) are a single It may be from the measurement, or from measurements taken at different times (14) It can also be evaluated together with the data obtained. Evaluation (7) processes, different technical processes required by the basic integrated system architecture (16) This can be done using. 10 As a result of these evaluations, individual reference models (9) can be created, temporal changes in physiological state (10) can be determined, risk (11) assessments can be made and the health history updated (12) Technical information that will form the basis can be produced. Data obtained within the scope of the invention and the evaluation of this data 15 Access to the resulting technical information, subject to specified access permissions and authorizations. It can be carried out in accordance with the scope (18). The access permission and authorization in question The scope (18) may be changed or withdrawn. Working principle of the invention; sensing (4) technology used, data acquisition (5), electronic structure, data processing (6) technique or evaluation (7) approach 20 independently implementing the basic integrated system architecture (16) It is based on. Application examples The invention relates to measurable physiological events (2) occurring in the human body (1). different application for evaluating the physical effects (3) it creates 25 This can be done in various ways. In one application, the system measures what happens in the human body (1) obtaining (3) physical effects resulting from (2) physiological events, It can be carried out for the purpose of evaluation and analysis (8). In another implementation form, the system processes data from a single measurement into 30 as can be evaluated from measurements taken at different times (14) By evaluating the data obtained together, individual-specific reference models (9) can create and determine temporal changes (10). 7 In another application form, the system uses different sensing (4), data acquisition (5), data processing (6), evaluation (7) and analysis (8) approaches are integrated on the same basic basis to be used alone or together within the system architecture (16) realizable. In another application form, the system uses the obtained data and 5 of these data created as a result of processing, evaluation and analysis (8) technical information, in accordance with the specified access permission and authorization scope (18) Authorized data access (17) can be provided. Access The scope of permission and authorization (18) may be changed or revoked. The technical components used, application methods, and different techniques are 10. (15) implementations may vary, but these changes are fundamental It does not change the integrated system architecture (16). The application methods described here are given only as examples and the invention with different applications that realize the basic integrated system architecture (16) It is feasible. 15 List of Reference Numbers 1. The human body 2. Measurable physiological events 3 Physical effects 20 4 Detection Data acquisition 6 Data processing 7 Reviews 8 Analysis 25 9. Individualized reference model Temporal change assessment 11 Risk assessment 12. Updating the health history 13. Technical information / technical output regarding physiological status 30 14. Measurements taken at different times / temporal measurement data. Different technical implementation / application methods 16. Basic integrated system architectures 17 Authorized data access 18. Access permission and scope of authorization 35 19 Authorized recipients
Claims
8 REQUESTS 1. Evaluation of measurable physiological events (2) occurring in the human body (1) and It is an integrated system for generating technical information (13) about physiological status, and its feature is; at least one measurable physiological event occurring in the human body (1) resulting in (2) at least one 5 sensing component (4) which senses the physical effect (3), data obtaining from the said physical effect (3) acquisition component (5), data processing component (6) which processes the acquired data, and which evaluates the processed data. evaluation component (7), analysis component (8) which analyzes the data in question and evaluation or Basic integrated systems that produce technical information or technical output about physiological status as a result of analysis (13) It includes the system architecture (16). 10 2. According to claim 1, it is a system whose characteristic is that it contains data from a single measurement or from different times. structured to evaluate the data obtained from the measurements (14) It includes the evaluation component (7) and the analysis component (8).
3. The system according to claim 1 or 2, and its characteristic is that it consists of measurements taken at different times (14) Evaluation that creates at least one reference model specific to the individual (9) by processing the data obtained 15 It includes component (7) and analysis component (8).
4. The system is defined according to any of the previous requests, and its characteristic is that it is performed at different times. Comparing the data obtained from the measurements (14) the temporal changes in physiological state (10) The determining evaluation component is (7).
5. The system, according to any of the previous requirements, has the characteristic of; the data obtained or 20 of them. Assessment component (7) which creates a risk assessment (11) by processing the generated technical information and It includes the analysis component (8).
6. The system, according to any of the previous requirements, is characterized by its ability to collect or utilize the data obtained. by processing the generated technical information, it produces the technical information essential for updating the health history (12). It includes an evaluation component (7) and an analysis component (8). 25 7. The system is based on any of the previous requirements and its features are: sensing (4), data acquisition (5), data one or more of the components of processing (6), evaluation (7) and analysis (8) alone or Basic integrated system architecture structured to enable them to work together (16) It includes.
8. The system is based on any of the previous requirements and its feature is; different technical implementations (15) 30 in the components of sensing (4), data acquisition (5), data processing (6), evaluation (7) or analysis (8) It includes a basic integrated system architecture (16) suitable for implementation.
9. The system is defined according to any of the previous requirements; its characteristic is that it is based on the data obtained and the relevant technical information generated as a result of processing, evaluating or analyzing data It includes the authorized data access component (17) which manages access. 35 10. The system is in accordance with claim 9 and its feature is that the authorized data access component (17) has the specified access. It is arranged to be carried out in accordance with the access permission and scope of authorization (18).
11. The system is defined as being in accordance with claim 9 or 10, and its characteristic is that it provides access to all of the data or technical information subject to access. Authorized data which stores the scope of access permission and authorization (18) defining a specific part of it. It includes the access component (17). 40 9 12. A system according to any of claims 9-11, characterized by having different types of data and technical information. It includes access permission and authorization scope (18) records that define the scope of access.
13. The system is according to any of the requests 9-12, and its feature is; access permission and scope of authority (18) It includes an authorized data access component (17) that modifies or retrieves records.
14. The system is defined according to any of the requirements 9-13, and its characteristic is that it has access to current data and technical information. It includes an authorized data access component (17) which manages access permission and scope of authorization (18).
15. A system according to any of claims 9-14, and its characteristic is; individual-specific reference models (9), temporal change information (10), risk assessments (11), technical information about physiological status (13) and access to one or more of the essential information for updating the health history (12). It includes the managing authorized data access component (17). 10 16. The system is defined according to any of the requests 9-15, and its characteristic is that it is within the scope of the specified access permission and authorization. (18) communicates with at least one authorized recipient (19) who has access to data or technical information. It includes the authorized data access component (17).
17. A system according to any of claims 9-16, characterized by: different receiver types, access methods, Access via communication methods, electronic structures or different technical implementations (15) 15 It includes an authorized data access component (17) that is designed to provide.
18. Evaluation of measurable physiological events (2) occurring in the human body (1) and It is a method for generating technical information about physiological status (13), and its characteristic is; human at least one physical (2) resulting from at least one measurable physiological event (1) occurring in the body (3) perception of the effect (4), obtaining data from the physical effect (3) (5), 20 of the obtained data processing (6), evaluation of data (7), analysis of data (8) and the said technical information or technical output about physiological status as a result of evaluation or analysis (13) It includes the stages of production.
19. A method according to claim 18, characterized by its use of data from a single measurement and / or at different times. As a result of evaluating the data obtained from the measurements (14) together (7), the individual was given 25 the creation of a specific reference model (9) or temporal changes in physiological state (10) It includes the determination phase.
20. The method according to claim 18 or 19, its characteristic is; as a result of evaluation (7) and / or analysis (8). technical information for risk assessment (11) or updating of health history (12) It includes the production phase. 30 21. A method according to either of claims 18-20, characterized by its application to the data obtained and their processing. Technical information created as a result of processing (6), evaluation (7) and analysis (8), Authorized data access in accordance with the scope of the determined access permission and authorization (18) (17) It includes the provision stage.
22. The method according to Request 21, its feature is; changing or reversing the scope of access permission and authorization (18) 35 obtaining and accessing data or technical information in accordance with current access permission and authorization scope (18) It includes the implementation phase.