A system and methodology for structuring, transforming into processable biophysical data, and managing physical representations of biophysical events obtained from the human body within a technology-independent biophysical information acquisition architecture.
Patent Information
- Application Number
- TR202613111
- Authority / Receiving Office
- TR · TR
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2026-08-03
- Publication Date
- 2026-09-21
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Abstract
Description
1 TARIFF Invention Title Technology of physical representations of biophysical phenomena obtained from the human body. structuring and processing within an independent biophysical information acquisition architecture. Systems and methods for converting and managing biophysical data 5 Technical Area This invention provides a physical explanation of the biophysical events occurring in the human body (1). The representations must be obtained through at least one biophysical sensing unit (2), The subject is the technology-independent biophysical information model of physical representations (10). structuring and converting into processable biophysical data (12), technical context knowledge 10 (11) system for associating, storing and re-evaluating and relates to methods. The invention relates to biomedical engineering, biophysical measurement systems, and biophysical data processing. Their architectures fall within the technical fields of health informatics and digital health technologies. State of the Art 15 For the evaluation of biophysical events occurring in the human body. In current techniques; the heart, respiratory system, vascular system, muscular system and others Different sensing methods are used to perceive physical effects originating from biological structures. Technologies such as microphones, piezoelectric sensors, and MEMS are used for this purpose. base sensors, optical detection systems, ultrasonic detection systems, radar 20 base-based sensing systems, electromagnetic sensing systems, and similar different techniques Solutions have been developed. Current technical solutions use physical representations derived from biophysical phenomena. It is mostly processed within data structures specific to the sensing technology used, and is being evaluated. Therefore, 25 obtained using different sensing technologies. A common technical structure cannot be established among physical representations, from different systems. It becomes difficult to evaluate and compare the data obtained together. In addition, physical representations obtained in current systems are often based on measurement. It is used in assessments regarding the moment it was carried out, and the measurement 30 A technology-independent data structure is not being created. The current technique includes physical representation along with measurement time, measurement session, and anatomical information. measurement area, detection method used, device information, quality indicators, environmental conditions and similar technical contextual information within a common architecture There is no integrated system for its structuring. 35 Therefore, biophysical measurements taken at different times from the same individual... linking them in accordance with common technical criteria, long-term technical 2 preserving its integrity, allowing for re-analysis and different evaluations. Its usability by these methods remains limited. Furthermore, current technical solutions are mostly based on a specific sensing technology, a specific... hardware architecture, a specific data processing method, or a particular analysis approach is the basis Since it was developed by taking into account the new 5 that may emerge in line with technological developments. the ability to use sensing methods in an integrated manner within the same technical framework a technology-independent biophysical information acquisition architecture that enables this It does not offer. Therefore, the perception used involves physical representations derived from the human body. structuring it according to common technical rules, regardless of the technology, 10 converting into processable biophysical data, with technical context information (11) its association, long-term storage, re-evaluation, and different a technology independent that enables its use by analytical methods A biophysical information acquisition architecture is needed. Purpose of the Invention 15 The purpose of this invention is to provide information about the biophysical events occurring in the human body (1). physical representations, regardless of the sensing technology used. a system that enables the structuring within an independent biophysical information model (10) and developing methods. Another purpose of the invention is; acoustic sensing element (3), mechanical or vibroacoustic 20 sensing element (4), optical sensing element (5), electromagnetic sensing element (6), ultrasonic sensing element (7) or other biophysical sensing units (2) physical representations obtained using common technical rules The aim is to convert it into processable biophysical data (12). One of the aims of the invention is to provide physical representations solely as a result of measurement. not the evaluation; measurement time, measurement session, anatomical measurement area, the detection method used, device information, quality parameters and other technical context (11) is to ensure that their information is structured together with physical representations. Another aim of the invention is to process the generated biophysical data (12) local data in storage unit (13) or remote data storage system or cloud infrastructure 30 (15) the ability to store, processable data obtained at different times from the same individual can be technically correlated with biophysical data (12) and re-evaluated if necessary The aim is to enable evaluation. One of the aims of the invention is to process the generated biophysical data (12); existing In addition to analysis methods, future analysis algorithms and decision support systems will be developed. 35 systems, machine learning methods, artificial intelligence-based assessment systems and other calculation methods can be used through the unit of analysis (17) The aim is to ensure that it is structured in this way. 3 Another aim of the invention is to provide electronic equipment to a specific biophysical sensing unit (2). to its structure, communication unit (14), data processing unit (16), data storage structure or can be implemented with different technologies, not dependent on the analysis unit (17). The goal is to create a scalable biophysical information acquisition architecture. Another purpose of the invention is to process biophysical data (12) belonging to the same individual using technical methods. by maintaining its integrity and being comparable over a long period of time, the correlation and continuity of biophysical changes The goal is to provide a sustainable technical infrastructure that enables evaluation. Explanation of the Figures Figure 1 shows the general architecture of the biophysical information acquisition system within the scope of the invention. It shows. Figure 2 shows an example anatomical diagram of biophysical events occurring in the human body (1). It shows the sources. Figure 3 shows different sensing technologies within the same biophysical information acquisition architecture. It shows that they are used together. 15 Figure 4 shows an example of sensing that can be used in the detection of biophysical events. It shows the elements (3, 4, 5, 6, 7). Figure 5 shows the perception of biophysical data and its presentation on the user interface (18). It shows the sample data acquisition chain up to that point. Figure 6 shows the technology-independent analysis of data obtained from different sensing technologies. It shows the conversion to a biophysical information model (10). Figure 7 shows biophysical data obtained at different times from the same individual. It demonstrates the correlation, processing, and evaluation of these processes. Figure 8 shows that the system can be expanded with new sensing technologies and analysis methods. It shows its architecture. 25 Detailed Description of the Invention The invention relates to physical biophysical events occurring in the human body (1). representations are technology-independent, regardless of the sensing technology used. It is based on the principle of structuring within the biophysical information model (10). Within the scope of the invention, the human body (1); heart, respiratory system, vascular system, muscular system 30 or other biological structures in the human body where the biophysical event occurs It refers to the anatomical region where these biophysical events occur. mechanical, acoustic, vibrational, pressure, optical, electromagnetic, ultrasonic, thermal or This can manifest in the form of similar physical effects. Physical representations of biophysical events occurring in the human body (1) are at least 35 Biophysical sensing is obtained through a small biophysical sensing unit (2). 4 unit (2) works either with or without contact depending on the nature of the biophysical event. It can be a sensing element. Biophysical sensing unit (2); acoustic sensing element (3), mechanical or vibroacoustic sensing element (4), optical sensing element (5), electromagnetic sensing element (6), ultrasonic sensing element (7) or 5 in place of the same technical function one of the other sensing technologies that can be brought, or a combination of them. It can be implemented as follows. Biophysical sensing unit (2), in addition to these, electrical, magnetic, thermal or also capable of using at least one of the biochemical sensing technologies It can be configured. Multiple sensing technologies can be used individually or in combination. They can be used in combination. Acoustic sensing element (3) detects heart sounds occurring in the human body (1), It can obtain breath sounds or similar acoustic physical representations. Mechanical or vibroacoustic sensing element (4), mechanical occurring in the human body (1) It is capable of obtaining physical representations of movements, vibrations, or vibroacoustic images. Optics 15 sensing element (5), electromagnetic sensing element (6) and ultrasonic sensing element (7) obtains physical representations in accordance with its own working principles. It is available for use. The type of biophysical sensing element (2) used in the invention, working The principle, electronic structure, or manufacturing method does not constitute the essence of the invention. 20 The technical solution of the invention is a physical solution obtained using different sensing technologies. structuring representations in accordance with common technical rules and technology independence biophysical data (12) compatible with biophysical information model (10) It is a transformation. Physical representations obtained by the biophysical sensing unit (2) sensor data 25 The data is transferred to the collection unit (8). The sensor data collection unit (8) is a single biophysical obtained from sensing element (2) or from more than one biophysical sensing element (2) It is able to collect physical representations obtained from different sensory elements. physical representations obtained within the same measurement session or in different measurement sessions It is possible. 30 Physical representations collected by the sensor data acquisition unit (8) are converted into data. It is transferred to the unit (9). The data conversion unit (9) receives the data in different formats. physical representations compatible with the technology-independent biophysical information model (10) It converts it into a data structure. Thus, different sensing technologies and different measurement methods can be used. Physical representations obtained using devices or different data acquisition methods 35 They are made interoperable and comparable. Physical representation within the data structure created by the data conversion unit (9), It is associated with at least one piece of technical context information (11). Technical context information (11); measurement time, measurement session, anatomical measurement area, detection method used, device ID, software or hardware version, quality indicators, environmental conditions, and It may also include other technical information as needed. Technical context information (11); user information, measurement condition information, measurement acquisition the sequence and unique identifier for each measurement, as well as time and session information. It can include. Thus, the source of processable biophysical data (12) is the acquisition of 5 The conditions and measurement session can be correlated in a traceable manner. Physical representation and technical context knowledge (11) technology-independent biophysical knowledge biophysical data (12) that can be processed as a result of its association within the model (10) is created. Processable biophysical data (12); can be stored, associated, 10 that can be compared, re-evaluated, and analyzed using different methods It is a structured set of technical data that is available. Processable biophysical data (12), local data storage located within the device in the unit (13), remote data storage system or cloud infrastructure (15) or the same stored in other data storage media serving technical purposes It can be done. The local data storage unit (13) stores biophysical data on the device 15 storage within the remote data storage system or cloud infrastructure (15) storing biophysical data in a networked computing environment It can provide. Processable biophysical data (12) can be singled as raw data, processed data or analysis data. They can be stored individually or together. Stored data and related technical information 20 context information (11), retrospective inquiry, comparison and reanalysis It can be used in the processes. The data processing unit (16) verifies the accuracy of the data. at least one verification process to confirm its integrity and consistency is able to accomplish this. Processable biophysical data (12), local data storage unit (13), remote data storage 25 system or cloud infrastructure (15), data processing unit (16), analysis unit (17) and user transfer between interface (18) via communication unit (14) It can be realized. Communication unit (14), different devices, software platforms, to protect data integrity between information processing systems or communication networks It can provide data transfer in this way. 30 The communication unit (14) processes biophysical data (12) and analysis results. securely, in real-time, asynchronous, or both transmission methods. This enables transmission using standardized data structures. using different devices, hardware, computing systems, software, networks and 35 Interoperability and data integrity will be preserved across platforms It can be accomplished. Processable biophysical data belonging to the same individual (12), performed at different times Measurement sessions can be correlated based on common technical criteria. Thanks to this association, past and current processable biophysical data (12) 6 biophysical data can be compared, re-analyzed, and preserved for a long period of time. Technical integrity of the period can be preserved. Processable biophysical data (12) can be processed by the data processing unit (16). Data processing unit (16); processable biophysical data (12) for subsequent evaluation processes being able to prepare 5 obtained at different times or with different sensing technologies This enables the data to be used together and the information obtained to be sent to the analysis unit. (17) can transfer. The analysis unit (17) processes biophysical data (12); decision support systems, statistical evaluation methods, rule-based analysis systems, machine learning algorithms, artificial intelligence-based analysis systems, or other 10 that will be developed in the future It can be evaluated through calculation methods. The analysis unit (17) is a single It can evaluate the processable biophysical data (12) obtained from the measurement, as well as among the processable biophysical data obtained at different times belonging to the individual (12) It can also determine relationships and changes. The analysis unit (17) processes the biophysical data (12) using at least one reference dataset, 15 historical measurement data, individual reference model, population reference model, clinical with a reference model or predefined evaluation criteria It can make comparisons. Analysis results include numerical values, classification, trends, and risks. It can be created in the form of an indicator or graphical representation, and depends on these. as a warning, recommendation, classification, prioritization or evaluation output 20 It can be produced. The results obtained as a result of the evaluations carried out by the analysis unit (17) The analysis results are for the purpose of evaluating the current biophysical state only. It may not be usable. From the analysis results in question; processable biophysical data (12), technical context information (11), past evaluation results and individual 25 New evaluation taking into account the relationships between biophysical reference models. Information can be generated. New evaluation information is generated. can be stored, linked to the existing biophysical information structure, and subsequently... in the processes of measurement, comparison, analysis and evaluation It is available. 30 The evaluation results generated by the analysis unit (17) are presented on the user interface. (18) can be presented via the user interface (18), processable biophysical data (12), analysis results or evaluation outputs derived from them It can be displayed in numerical, classified, trending, or graphical form. Figure 1 shows the biophysical perception of a biophysical event occurring in the human body (1). Detection by unit (2), the physical representation obtained is sent to the sensor data collection unit (8) and transfer to the data conversion unit (9) and technology-independent biophysical information The configuration within model (10) is shown. Figure 2 shows the biophysical effects originating from different anatomical regions in the human body (1). Example structure for obtaining events via biophysical sensing unit (2) 40 7 It is shown. In the structure in question, an acoustic sensing element (3) can be used. It serves as an example of one of the perceptual elements. In Figures 3 and 4; acoustic sensing element (3), mechanical or vibroacoustic sensing element (4), optical sensing element (5), electromagnetic sensing element (6) and Biophysical sensing of different sensing technologies such as ultrasonic sensing element (7) 5 by including the unit (2) and the sensor data acquisition unit (8) into the common structure data conversion from sensor data collection unit (8) to data conversion unit (9) The transfer is shown. In Figure 5, data obtained from the human body (1) by the biophysical sensing unit (2) 10 to remote data storage system or cloud infrastructure via communication unit (14) (15) sample data acquisition regarding transfer and presentation in the user interface (18) The chain is shown. In Figure 6, different sensing technologies are shown; acoustic sensing element (3), mechanical or vibroacoustic sensing element (4), optical sensing element (5), electromagnetic Physical 15 obtained through sensing element (6) and ultrasonic sensing element (7) Transformation of representations into a technology-independent biophysical information model (10), technical associating contextual information (11) and generating processable biophysical data (12) It is shown. In Figure 7, data stored in a remote data storage system or cloud infrastructure (15) and the same Processing of data obtained at different times belonging to the individual in the data processing unit (16), 20 evaluation in the analysis unit (17) and presentation in the user interface (18) It is shown. In Figure 8, the acoustic sensing element (3) is a mechanical or vibroacoustic sensing element. (4) and different sensing technologies such as optical sensing element (5) are technology independent. Inclusion in the common structure with the biophysical information model (10) and the resulting processable 25 biophysical data (12) local data storage unit (13) and communication unit (14) Extensible architecture for use in various technical applications. It is shown. The biophysical information acquisition architecture described within the scope of the invention; a specific biophysical sensing unit (2), electronic hardware structure, communication unit (14), data 30 not dependent on the processing unit (16), data storage structure or analysis unit (17), with different technical applications in line with the same technical principles This can be achieved. The scope of protection of the invention is exemplified by the example described here. not limited to applications but within the scope of the technical specifications defined in the requests. It also includes equivalent applications that achieve the same technical result. 35 Industrial Applicability This invention provides a physical explanation of the biophysical events occurring in the human body (1). obtaining, structuring, and processing representations into biophysical data (12) health and It can be used in biomedical applications. 40 8 The invention relates to portable healthcare devices, desktop systems, wearable technologies, and remote control systems. patient monitoring systems, home health care applications, clinical evaluation systems, hospital information systems, research infrastructures, digital health platforms, and in the future It is applicable in the development of biophysical information acquisition systems. The biophysical information acquisition architecture described within the scope of the invention utilizes five different biophysical methods. sensing units (2), electronic equipment, communication units (14), data processing Since it is designed to be implemented with units (16) and software platforms, an expandable system that can be used for a long time, regardless of technological advancements. It creates technical infrastructure. The invention provides common technical solutions for existing and future biophysical analysis systems. industrially, enabling collaboration in accordance with these principles It offers a system and method that can be produced and implemented. List of Reference Marks 1. The human body / anatomical region where the biophysical event occurs. 2 Biophysical sensing units 15 3 Acoustic sensing elements 4 Mechanical / Vibroacoustic sensing elements Optical sensing element 6 Electromagnetic sensing elements 7 Ultrasonic sensing elements 20 8 Sensor data acquisition units 9 Data conversion units Technology-independent biophysical information model 11. Technical context information 12 Processable biophysical data 25 13 Local data storage units 14 Communication units Remote data storage system / Cloud infrastructure 16 Data processing units 17 Analysis units 30 18 User interface
Claims
9 REQUESTS 1. Physical aspects relating to biophysical events occurring in the human body (1). representations, regardless of the perception technology used. representation within an independent biophysical information model (10), technical 5 associating context information (11) with processable biophysical data (12) transformation, storage, management and re-evaluation It is a biophysical information acquisition system that provides information about biophysical phenomena. at least one biophysical sensing unit (2) that obtains physical representations, (10) converting at least one data conversion unit (9), converted biophysical 10 at least one data processing unit that associates the data with technical context information (11) (16), at least one local data storage that enables the storage of biophysical data unit (13) and / or at least one remote data storage system or cloud its infrastructure (15), at least one analysis that enables the analysis of biophysical data. unit (17) and at least one unit that enables data transfer between said units. biophysical information acquisition system including communication unit (14).
2. According to Claim 1, it is a biophysical information acquisition system and biophysical sensing. unit (2), physical representations of biophysical events, contact or contactless biophysical characterized by its structure in such a way as to obtain Information acquisition system. 20 3. A biophysical information acquisition system according to claim 1 or 2, and biophysical sensing unit (2), mechanical, acoustic, vibroacoustic, optical, electromagnetic, electrical, magnetic, ultrasonic, thermal, biochemical or any of these will use at least one of the sensing technologies based on a combination of A biophysical information acquisition system characterized by its structure in this way. 25 4. A biophysical information acquisition system according to any of claims 1 to 3, and data conversion unit (9), obtained from biophysical sensing unit (2) will transform physical representations into a standardized biophysical data structure. A biophysical information acquisition system characterized by its structured form.
5. A biophysical information acquisition system according to any of claims 1 to 4, and data The processing unit (16) biophysical data includes at least one time information, at least one session information, at least one device information, at least one user information, or at least one It is characterized by being structured in a way that associates it with measurement condition information. biophysical information acquisition system. 5 6. A biophysical information acquisition system, local, according to any of claims 1 to 5. data storage unit (13) and / or remote data storage system or cloud infrastructure (15), biophysical data raw data, processed data or analysis data by structuring it to be stored individually or together with others. A characterized biophysical information acquisition system. 10 7. A biophysical information acquisition system according to any of claims 1 to 6, The analysis unit (17) has at least one reference data set, past biophysical data. measurement data, an individual reference model, or a predefined model. It is characterized by being structured in a way that allows comparison with the evaluation criteria. biophysical information acquisition system. 15 8. A biophysical information acquisition system according to any of claims 1 to 7, the communication unit (14) transmits biophysical data to at least one external device, at least one to the server, at least one cloud-based platform, or at least one analytics system It is characterized by being configured to ensure secure data transfer. biophysical information acquisition system. 20 9. A biophysical information acquisition system according to any of claims 1 to 8, The analysis unit (17) numerical values of the results obtained from biophysical data, classification, trend, risk indicator, graphical representation or any of these It is characterized by being structured in such a way as to form a combination. biophysical information acquisition system. 25 10. A biophysical information acquisition system according to any of claims 1 to 9, and data processing unit (16) to ensure traceability of biophysical data At least one unique identifier, time information, and session for each measurement. by structuring its knowledge in a way that relates it to biophysical data A characterized biophysical information acquisition system. 30 11 11. A biophysical information acquisition system according to any of claims 1 to 10, data conversion unit (9), obtained from biophysical sensing unit (2) biophysical data, regardless of the sensing technology used a standard data compatible with the technology-independent biophysical information model (10) 5 characterized by being structured in a way that will transform it into its structure. biophysical information acquisition system.
12. A biophysical information acquisition system according to any of claims 1 to 11, biophysical analysis unit (17) obtained from a single measurement of the same individual. will evaluate data and / or multiple data collected at different times By comparing the biophysical data obtained from the measurements, a time-dependent analysis is possible. It is characterized by being structured in a way that will identify biophysical changes. biophysical information acquisition system.
13. A biophysical information acquisition system according to any of claims 1 to 12, the analysis unit (17), biophysical data individual-specific reference model, community reference model, clinical reference model or any of these 15 characterized by being structured in a way that allows comparison with a combination of factors. biophysical information acquisition system.
14. A biophysical information acquisition system according to any of claims 1 to 13, and data the integrity and traceability of biophysical data of the processing unit (16) 20 A biophysical information acquisition system characterized by its structured form.
15. A biophysical information acquisition system according to any of claims 1 to 14, analysis unit (17), according to the results obtained from biophysical data, at least one warning, recommendation, classification, prioritization or evaluation output biophysical information characterized by its structure in a way that will generate 25 acquisition system.
16. A biophysical information acquisition system according to any of claims 1 to 15, communication unit (14), biophysical data and analysis results real will support synchronous, asynchronous, or both data transfer methods. 30 characterized by being structured in a way that allows it to be transmitted in this manner biophysical information acquisition system. 12 17. A biophysical information acquisition system according to any of claims 1 to 16, data processing unit (16), obtained using different sensing technologies biophysical data within the technology-independent biophysical information model (10) biophysical systems characterized by being structured in a way that allows them to be managed together. Information acquisition system. 5 18. A biophysical information acquisition system according to any of claims 1 to 17, the system, new sensing technologies, new data processing methods, new analysis algorithms or new communication technologies can be added to the system. Characterized by its modular structure that provides biophysical information acquisition system. 10 19. A biophysical information acquisition system according to any of claims 1 to 18, statistical analysis of biophysical data, rule of analysis unit (17). based assessment, machine learning, artificial intelligence, or any of these to conduct an evaluation using a combination A biophysical information acquisition system characterized by its structuring. 15 20. A biophysical information acquisition system according to any of claims 1 to 19, biophysical analysis unit (17) obtained at different times from the same individual Determining the temporal variations of the biophysical state by identifying changes between data. characterized by being structured in a way that will evaluate its development biophysical information acquisition system. 20 21. A biophysical information acquisition system according to any of claims 1 to 20, data processing unit (16) from biophysical data source detection technology They will independently store, manage, and distribute data within a common data structure. by structuring it in a way that it can be reused by analysis units A characterized biophysical information acquisition system. 25 22. A biophysical information acquisition system according to any of claims 1 to 21, The analysis unit (17) obtains the results from biophysical data belonging to the same individual. individual biophysical findings by correlating them with previous assessment results by structuring it in a way that will enable the creation of a change profile. A characterized biophysical information acquisition system. 30 13 23. A biophysical information acquisition system according to any of claims 1 to 22, data processing unit (16), sequence of biophysical data acquisition, measurement recording the time, measurement conditions and related technical information. biophysical information characterized by being structured in a way that provides acquisition system. 5 24. A biophysical information acquisition system according to any of claims 1 to 23, The analysis unit (17) alone can analyze the results obtained from biophysical data. or by evaluating them together to determine the individual's biophysical condition by structuring it in such a way as to generate at least one evaluation outcome. A characterized biophysical information acquisition system. 10 25. A biophysical information acquisition system according to any of claims 1 to 24, communication unit (14), using standardized data structures biophysical data and related analysis results from different devices, among hardware, computing systems, software, and software platforms 15 A biophysical information acquisition system characterized by its structuring.
26. A biophysical information acquisition system according to any of claims 1 to 25, and data the processing unit (16) ensures the accuracy, integrity and of biophysical data. will perform at least one verification process to confirm its consistency A biophysical information acquisition system characterized by its structure in this way. 20 27. A biophysical information acquisition system according to any of claims 1 to 26, local data storage unit (13) and / or remote data storage system or cloud infrastructure (15), biophysical data and related technical context information (11), retrospective inquiry, comparison and re-analysis by structuring it in a way that will allow it to be stored in a way that will enable it to be done 25 A characterized biophysical information acquisition system. 14 28. A biophysical information acquisition system according to any of claims 1 to 27, evaluation of biophysical data obtained from the analysis unit (17) results are sent to the data processing unit (16) for use in subsequent analyses. will transmit the biophysical information that the system has generated over time. 5 characterized by being structured in a way that ensures the continuity of its accumulation. biophysical information acquisition system.
29. A biophysical information acquisition system according to any of claims 1 to 28, data processing unit (16), biophysical data and the related technical context will manage and analyze their information (11) in a way that is interrelated to each other. by structuring it in a way that will allow it to be used together by 10 A characterized biophysical information acquisition system.
30. A biophysical information acquisition system according to any of claims 1 to 29, The analysis unit (17) analyzes biophysical data to a single biophysical parameter or based on the combined evaluation of multiple biophysical parameters biophysical information characterized by its structured ability to analyze 15 acquisition system.
31. A biophysical information acquisition system according to any of claims 1 to 30, data processing unit (16), biophysical data and related analysis will allow the results to be linked to past records belonging to the same individual. A biophysical information acquisition system characterized by its structure in this way. 20 32. A biophysical information acquisition system according to any of claims 1 to 31, The analysis unit (17) obtains biophysical data from the same individual at different times. By evaluating the obtained measurements together, biophysical change trends biophysical information characterized by its structure that determines acquisition system. 25 33. A biophysical information acquisition system according to any of claims 1 to 32, data conversion unit (9), at different times, different devices or different Biophysical data obtained using sensing technologies can be processed together within the independent biophysical information model (10). Biophysical knowledge acquisition, characterized by its structure in a way that will bring about 30 system.
34. A biophysical information acquisition system according to any of claims 1 to 33, and data processing unit (16), biophysical data and related technical context (11) the reuse of information in future analyses biophysical, characterized by its structure that will enable Information acquisition system. 5 35. A biophysical information acquisition system that collects data according to any of claims 1 to 34. biophysical data of the processing unit (16) and the related technical context information (11), regardless of the sensing technology used. In an independent biophysical information model (10) associated with biophysical information characterized by being structured in a way that will manage it 10 acquisition system.
36. A biophysical information acquisition system according to any of claims 1 to 35, The previous analysis results of the biophysical data of the same individual (17) by evaluating it together with the others, determining the change in the biophysical state and 15 characterized by being structured in a way that allows for evaluation. biophysical information acquisition system.
37. A biophysical information acquisition system according to any of claims 1 to 36, data processing unit (16), biophysical data and the related technical context their information (11), measurements taken at different times belonging to the same individual 20 A biophysical information acquisition system characterized by its structuring.
38. A biophysical information acquisition system according to any of claims 1 to 37, The biophysical data of the analysis unit (17) are obtained at different times from the same individual. long-term biophysical changes by correlating them with the obtained measurement results. biophysical 25 characterized by its structuring in a way that will create a model Information acquisition system. 16 39. A biophysical information acquisition system according to any of claims 1 to 38, local data storage unit (13) and / or remote data storage system or the cloud infrastructure (15), biophysical data, the analysis results related to them and technical context information (11), retrospective review, reassessment and together they will enable comparative analysis 5 biophysical information characterized by its structure in a way that allows it to be stored. acquisition system.
40. A biophysical information acquisition system according to any of claims 1 to 39, The analysis unit (17) analyzes the results obtained from biophysical data for the individual. Using past assessment results together, the biophysical status is 10 by structuring it in a way that will determine its continuity and its change over time A characterized biophysical information acquisition system.
41. A biophysical information acquisition system according to any of claims 1 to 40, and data the processing unit (16), biophysical data and the analysis results thereof and technical context information (11) technology independent biophysical information model (10) 15 by structuring it in a way that will enable it to manage by relating it within its scope. A characterized biophysical information acquisition system.
42. A biophysical information acquisition system according to any of claims 1 to 41, data conversion unit (9), different sensing of biophysical data regardless of whether they were obtained from technology-independent 20 will convert and analyze in accordance with the biophysical information model (10). by structuring it in such a way that it can be evaluated together A characterized biophysical information acquisition system.
43. A biophysical information acquisition system according to any of claims 1 to 42, The analysis unit (17) analyzes biophysical data with the individual's biophysical history 25 by evaluating them together, identifying time-dependent changes and individual to enable the creation of a biophysical reference model A biophysical information acquisition system characterized by its structuring. 17 44. A biophysical information acquisition system according to any of claims 1 to 43, communication unit (14), biophysical data, technical data related to said data context information (11) and analysis results, technology-independent biophysical information by preserving the relationships and data integrity within the scope of model (10) different devices, software, systems, networks, platforms or computing environments 5 biophysics characterized by its structure that allows transfer between them Information acquisition system.
45. A biophysical information acquisition system according to any of claims 1 to 44, and data processing unit (16), biophysical data, technical context information (11) and analysis results form an integrated record structure relating to the same biophysical event 10 by structuring it in a way that allows it to be managed by being linked within it A characterized biophysical information acquisition system.
46. A biophysical information acquisition system according to any of claims 1 to 45, biophysical analysis unit (17) obtained at different times from the same individual data within the scope of technology-independent biophysical information model (10) 15 by evaluating, they will identify individual biophysical change patterns. A biophysical information acquisition system characterized by its structured form.
47. A biophysical information acquisition system according to any of claims 1 to 46, local data storage unit (13) and / or remote data storage system or cloud infrastructure (15), biophysical data, technical context information (11), analysis 20 the results and the relationships between them, in subsequent evaluation processes to store and manage in a way that can be reused A biophysical information acquisition system characterized by its structuring.
48. A biophysical information acquisition system according to any of claims 1 to 47, The analysis unit (17) analyzes biophysical data from the past biophysical data of the same individual. data, technical context information (11) and analysis results together with by evaluating and enabling the monitoring of individual biophysical status A biophysical information acquisition system characterized by its structuring. 18 49. A biophysical information acquisition system according to any of claims 1 to 48, data processing unit (16), obtained at different times belonging to the same individual biophysical data, technical context information (11) and analysis thereof by correlating it with its results, it will create a holistic biophysical history. A biophysical information acquisition system characterized by its structure in this way. 5 50. A biophysical information acquisition system according to any of claims 1 to 49, analysis unit (17), technology-independent biophysical information model (10) within this scope, biophysical data obtained from the same individual at different times and technical context information of the data in question (11), relationships between them by protecting and evaluating together, and through these relationships, the individual's biophysical 10 in this case, to determine the changes that occur over time A biophysical information acquisition system characterized by its structuring.
51. A biophysical information acquisition system according to any of claims 1 to 50, The analysis unit (17) combines past and current biophysical data of the same individual. by evaluating the individual biophysical reference model with new measurements 15 characterized by being structured in a way that allows it to be updated accordingly. biophysical information acquisition system.
52. A biophysical information acquisition system according to any of claims 1 to 51, analysis unit (17), technology-independent biophysical information model (10) Using biophysical data associated within this scope, 20 individuals belonging to the same person Similarities, differences, and time-dependent biophysical patterns between measurements characterized by its structure that will identify changes biophysical information acquisition system.
53. A biophysical information acquisition system according to any of claims 1 to 52, analysis unit (17), technology independent biophysical information model (10) 25 Using biophysical data managed within this scope, different sensing technologies, biophysical results obtained from different measurement times or different measurement conditions They will evaluate the data together and as a result of these evaluations, a single by structuring it in a way that will create a biophysical status assessment A characterized biophysical information acquisition system. 30 19 54. A biophysical information acquisition system according to any of claims 1 to 53, and data processing unit (16), biophysical data, technical context information (11), analysis by preserving the relationships between the results and the individual biophysical reference model this information will be re-evaluated in subsequent assessment processes. 5 characterized by being structured in a way that allows its use. biophysical information acquisition system.
55. A biophysical information acquisition system according to any of claims 1 to 54, The analysis unit (17) uses past biophysical data of the same individual, current biophysical data and individual biophysical reference model by evaluating and determining changes in the biophysical state 10 A biophysical information acquisition system characterized by its structuring.
56. A biophysical information acquisition system according to any of claims 1 to 55, local data storage unit (13) and / or remote data storage system or cloud infrastructure (15), biophysical data, technical context information (11), analysis their results and the individual biophysical reference model in relation to each other 15 to store and reuse in subsequent analyses A biophysical information acquisition system characterized by its structuring.
57. A biophysical information acquisition system according to any of claims 1 to 56, data processing unit (16) as new biophysical data are obtained biophysical 20 by relating the data to past biophysical information of the same individual characterized by being structured in a way that ensures information continuity. biophysical information acquisition system.
58. A biophysical information acquisition system according to any of claims 1 to 57, biophysical analysis unit (17) obtained at different times from the same individual by evaluating the data together with the individual biophysical reference model 25 to determine the continuity and time-dependent change in the biophysical state A biophysical information acquisition system characterized by its structuring.
59. A biophysical information acquisition system according to any of claims 1 to 58, data processing unit (16), biophysical data and their technical context information (11), analysis results and individual biophysical reference model integrated within the framework of the technology-independent biophysical information model (10) biophysical information characterized by being structured in a way that allows it to manage 5 acquisition system.
60. A biophysical information acquisition system according to any of claims 1 to 59, local data storage unit (13) and / or remote data storage system or cloud infrastructure (15), biophysical data created at different times belonging to the same individual by storing the records in a way that preserves the relationships between them, biophysical information 10 in a way that will allow its past to be examined retrospectively A biophysical information acquisition system characterized by its structuring.
61. A biophysical information acquisition system according to any of claims 1 to 60, analysis unit (17), past and current biophysical data and individual By using a biophysical reference model together, individualized biophysical 15 Characterized by being structured in a way that identifies patterns of change. biophysical information acquisition system.
62. A biophysical information acquisition system according to any of claims 1 to 61, data conversion unit (9), different sensing technologies, devices or data biophysical data generated using acquisition methods, the aforementioned 20 technology regardless of formal differences specific to the data sources a uniform data structure compatible with the independent biophysical information model (10) will transform and enable the combined processing, comparison, and characterized by being structured in a way that allows for its evaluation. biophysical information acquisition system. 25 63. A biophysical information acquisition system according to any of claims 1 to 62, past and current biophysical data of the same individual of the analysis unit (17). time-dependent change compared with an individual biophysical reference model It is characterized by being structured in a way that will determine its direction and tendency towards change. biophysical information acquisition system. 30 21 64. A biophysical information acquisition system according to any of claims 1 to 63, and data the processing unit (16) adds new biophysical data to the existing biophysical information structure relationships between previous records and new records during addition biophysical information characterized by being structured in a way that protects it. acquisition system. 5 65. A biophysical information acquisition system according to any of claims 1 to 64, local data storage unit (13) and / or remote data storage system or cloud infrastructure (15), biophysical data, technical context information (11), analysis results and individual biophysical reference model along with time data 10 by storing it, it will enable the creation of an individual's biophysical information history. A biophysical information acquisition system characterized by its structured form.
66. A biophysical information acquisition system according to any of claims 1 to 65, and data biophysical records created at different times by the processing unit (16) by preserving the relationships between them and evaluating the records together biophysical 15 characterized by its structure that will enable Information acquisition system.
67. A biophysical information acquisition system according to any of claims 1 to 66, data conversion unit (9), different perception of the same biophysical event Biophysical data obtained from technologies or devices are technology-independent. by representing it in a data structure compatible with the biophysical information model (10) 20 in a way that makes them comparable and analyzable A biophysical information acquisition system characterized by its structuring.
68. A biophysical information acquisition system according to any of claims 1 to 67, past evaluation of biophysical data of the same individual by the analysis unit (17). By using the results together with the individual biophysical reference model, over time 25 characterized by its structure that can assess related changes. biophysical information acquisition system. 22 69. A biophysical information acquisition system according to any of claims 1 to 68, data processing unit (16), biophysical data, technical context information (11), the analysis results and the individual biophysical reference model are related to each other and by structuring it to manage in a way that can be updated with new measurements. A characterized biophysical information acquisition system. 5 70. A biophysical information acquisition system according to any of claims 1 to 69, time-dependent analysis unit (17) of biophysical data individual biophysical reference model by evaluating changes will update and use the updated reference model in the next 10 characterized by being structured for use in evaluation processes. biophysical information acquisition system.
71. A biophysical information acquisition system according to any of claims 1 to 70, communication unit (14), biophysical data, technical context information (11), data on analysis results and individual biophysical reference models 15 while maintaining its integrity biophysical knowledge acquisition characterized by its structure in a way that allows it to transmit information. system.
72. A biophysical information acquisition system according to any of claims 1 to 71, data processing unit (16), technology independent biophysical information model (10) biophysical data and technical context information created within the scope of (11), 20 analysis results and individual biophysical reference model life cycle will manage by relating throughout, based on the results of new measurements to update the information and maintain its relationship with past records A biophysical information acquisition system characterized by its structuring.
73. A biophysical information acquisition system according to any of claims 1 to 72, 25 past and current biophysical data of the same individual of the analysis unit (17). By comparing them, they will identify biophysical change patterns and determine the identified patterns of change in the development of individual biophysical reference models biophysical information characterized by being structured in a way that allows its use acquisition system. 30 23 74. A biophysical information acquisition system according to any of claims 1 to 73, and data processing unit (16), biophysical data, technical context information (11), analysis by preserving the relationships between the results and the individual biophysical reference model the integrated management of the information in question and subsequent 5 that will allow it to be reused in evaluation processes A biophysical information acquisition system characterized by its structuring.
75. A biophysical information acquisition system according to any of claims 1 to 74, The analysis unit (17) combines past and current biophysical data of the same individual. By evaluating them, it will determine time-dependent biophysical change trends. The identified change trends are compared to the individual biophysical reference model 10 will be used in its development and in relation to the aforementioned changing trends and individual future biophysical research by utilizing a biophysical reference model to generate assessment information for predicting changes A biophysical information acquisition system characterized by its structuring.
76. A biophysical information acquisition system according to any of claims 1 to 75, data 15 processing unit (16), technology independent biophysical information model (10) biophysical data and technical context information created within the scope of (11), analysis results and individual biophysical reference model, new biophysical The system will update and correlate the data as it is added. 20 characterized by its structure that ensures biophysical information continuity. biophysical information acquisition system.
77. A biophysical information acquisition system according to any of claims 1 to 76, data processing unit (16), technology independent biophysical information model (10) biophysical data and technical context information created within the scope of (11), analysis results, individual biophysical reference models and the 25 differences between them will manage relationships consistently throughout their lifecycle, with each new measurement will update the information in question and preserve past records biophysical information characterized by being structured in a way that provides acquisition system. 24 78. A biophysical information acquisition system according to any of claims 1 to 77, analysis unit (17), technology-independent biophysical information model (10) using biophysical data associated within this scope, belonging to the same individual the continuous change of the biophysical state over time will dynamically evaluate the individual biophysical reference model. will update and use the evaluation results for the next measurement. data processing unit (16) for use in comparison and analysis operations biophysical knowledge acquisition characterized by its structure in a way that allows it to transmit information. system.
79. A biophysical information acquisition system according to any of claims 1 to 78, 10 data conversion unit (9), different sensing technologies at different times, obtained using different measuring devices or different data acquisition methods biophysical data obtained, technology-independent biophysical information model (10) within this framework, it will correlate and analyze data within a single data integrity unit. by structuring it in such a way that it can be processed together by 15 A characterized biophysical information acquisition system.
80. A biophysical information acquisition system according to any of claims 1 to 79, data processing unit (16), performed at different times on the same individual Biophysical data generated within the scope of measurements, technical context information. (11), 20 between analysis results and individual biophysical reference model will protect relationships, based on new measurements of the relevant information components. consistency between past and current records during the update process. structured in a way that will sustain and ensure the continuity of biophysical information. A biophysical information acquisition system characterized by...
81. A biophysical information acquisition system according to any of claims 1 to 80, 25 data processing unit (16), technology independent biophysical information model (10) biophysical data and technical context information associated within the scope (11), analysis results and individual biophysical reference models in a single integrated system by managing this information within a biophysical information structure, and making new measurements based on that information. updating it, associating it with past records, and the next measurement, 30 to enable its reuse in comparison and analysis processes A biophysical information acquisition system characterized by its structuring.
82. A biophysical information acquisition system according to any of claims 1 to 81, analysis unit (17), technology-independent biophysical information model (10) Using biophysical data managed within this scope, the history and will identify relationships between current biophysical data, biophysical change will create patterns, develop an individual biophysical reference model, and 5 the evaluation results obtained in subsequent measurement and analysis processes Configure to transfer data to the data processing unit (16) for use A biophysical information acquisition system characterized by...
83. A biophysical information acquisition system according to any of claims 1 to 82, analysis unit (17), technology independent biophysical information model (10) 10 using biophysical data associated with the scope, the biophysical characteristics of the individual assessment of the situation, identification of biophysical change trends, continuous updating and obtaining of the individual biophysical reference model subsequent measurement, comparison and analysis of the evaluation results obtained by structuring it in a way that will allow it to be reused in the processes 15 A characterized biophysical information acquisition system.
84. A biophysical information acquisition system according to any of claims 1 to 83, and data processing unit (16), technology independent biophysical information model (10) biophysical data and technical context information created within the scope of (11), analysis results and individual biophysical reference models in a single integrated 20 by relating and managing it within the biophysical information structure and the aforementioned ensuring the preservation, updating, and retrieval of information throughout its lifecycle. characterized by being structured in a way that allows its use biophysical information acquisition system.
85. A biophysical information acquisition system according to any of claims 1 to 84, with data 25 conversion unit (9), biophysical data, different sensing technologies, different obtained using measuring devices or different data acquisition methods even if they are within the scope of the technology-independent biophysical information model (10) a uniform data structure that can be processed, compared, and analyzed together biophysical information characterized by its structure that will transform 30 acquisition system. 26 86. A biophysical information acquisition system according to any of claims 1 to 85, and data processing unit (16), technology independent biophysical information model (10) biophysical data and technical context information created within the scope of (11), analysis results and the individual biophysical reference model, with each new measurement It will update by associating, maintaining its connection with past records, and 5 reuse in subsequent measurement, comparison and analysis processes. biophysical information characterized by being structured in a way that provides acquisition system.
87. A biophysical information acquisition system according to any of claims 1 to 86, analysis unit (17), technology independent biophysical information model (10) 10 biophysical data and technical context information associated within the scope (11), past analysis results and the individual biophysical reference model together by evaluating the continuity and change of the biophysical state of the same individual. trends and biophysical information to be used in future assessments biophysical 15 characterized by its structure that will create an accumulation Information acquisition system.
88. A biophysical information acquisition system according to any of claims 1 to 87, analysis unit (17), technology-independent biophysical information model (10) current biophysical data generated within this scope, past data of the same individual biophysical data, previous evaluation results, technical context information (11) 20 and by evaluating the individual in conjunction with the individual biophysical reference model will continuously monitor its biophysical state over different measurement time intervals and time-dependent biophysical status within the scope of this monitoring characterized by its structure that will identify changes biophysical information acquisition system. 25 89. A biophysical information acquisition system according to any of claims 1 to 88, data conversion unit (9), technology independent biophysical information model (10) biophysical data generated within this scope, sensing technology used, Regardless of the measuring device or data acquisition method, the same semantic meaning will represent the whole and be comparable by the unit of analysis 30 characterized by being structured in a way that allows it to be processed in this manner. biophysical information acquisition system. 27 90. A biophysical information acquisition system according to any of claims 1 to 89, data processing unit (16), technology independent biophysical information model (10) biophysical data and technical context information created within the scope of (11), analysis results and individual biophysical reference model belonging to the same individual It will manage in a way that establishes a link between past and current records, word 5 the subject is to preserve relationships and update them with new measures. A biophysical information acquisition system characterized by its structuring.
91. A biophysical information acquisition system according to any of claims 1 to 90, data processing unit (16), technology independent biophysical information model (10) biophysical data and technical context information created within the scope of (11), 10 analysis results and individual biophysical reference model integrated by managing it, the biophysical information history of the same individual is preserved, each new updating with measurements and subsequent measurements, comparisons, and analyses. to ensure its reuse in evaluation processes A biophysical information acquisition system characterized by its structuring. 15 92. A biophysical information acquisition system according to any of claims 1 to 91, communication unit (14), technology independent biophysical information model (10) biophysical data and technical context information created within the scope of (11), analysis results and individual biophysical reference model data integrity different devices, different software platforms, different computing 20 in a way that will be protected in a way that will transfer data between systems or different communication networks A biophysical information acquisition system characterized by its structuring.
93. A biophysical information acquisition system according to any of claims 1 to 92, analysis unit (17), technology-independent biophysical information model (10) biophysical data managed within the scope of, technical context information (11), past 25 together with the assessment results and the individual biophysical reference model by evaluating, then subsequent measurement, comparison, analysis and evaluation. to generate new evaluation information that can be used in the processes A biophysical information acquisition system characterized by its structuring. 28 94. A biophysical information acquisition system according to any of claims 1 to 93, within the scope of the system’s technology-independent biophysical information model (10) The biophysical data generated, the time of measurement, and the application conditions, measurement parameters and relevant technical context information (11) It will store the data by associating them, so that 5 different files belonging to the same individual can be stored together. meaningful comparison of biophysical data obtained over time, by structuring it in a way that allows for its evaluation and interpretation. A characterized biophysical information acquisition system.
95. A biophysical information acquisition system according to any of claims 1 to 94, analysis unit (17), technology independent biophysical information model (10) 10 The biophysical data generated within this scope is based on only a single measurement result. not based on, but on, past biophysical data belonging to the same individual, individual biophysical by evaluating it together with the reference model and time-dependent change data This will enable the analysis of the biophysical state on a continuous basis. A biophysical information acquisition system characterized by its structure in this way. 15 96. A biophysical information acquisition system according to any of claims 1 to 95, and data processing unit (16), technology independent biophysical information model (10) biophysical data generated within this scope, from the same individual at different times chronological biophysical information by correlating it with the measurements performed. will create the history, continuously update that history, and the analysis unit 20 re-determined by the aim of identifying biophysical changes characterized by being structured in a way that allows its use biophysical information acquisition system.
97. A biophysical information acquisition system according to any of claims 1 to 96, analysis unit (17), technology independent biophysical information model (10) 25 biophysical data generated within this scope, individual biophysical reference model, past biophysical knowledge history and technical context information (11) by evaluating them together, the biophysical change trends of the same individual will identify these trends and subsequent measurement, comparison, analysis and (16) 30 to the data processing unit for use in evaluation processes biophysical knowledge acquisition characterized by its structure in a way that allows it to transmit information. system. 29 98. A biophysical information acquisition system according to any of claims 1 to 97, data processing unit (16), technology independent biophysical information model (10) biophysical data generated within this scope, individual biophysical reference model, together with technical context information (11) and past analysis results will store this information in an integrated manner, and automatically update it with new measurements. This will ensure that the system is updated accordingly and allows for subsequent measurement and comparison. will allow it to be reused in analysis and evaluation processes A biophysical information acquisition system characterized by its structured form.
99. A biophysical information acquisition system according to any of claims 1 to 98, analysis unit (17), technology independent biophysical information model (10) 10 biophysical data generated within this scope, past biophysical data of the same individual information history, individual biophysical reference model, technical context information (11) and by evaluating it together with the previous analysis results, the biophysical state the obtained will determine the continuity, the direction of change and the trend of change. The evaluation results will be used by the system for subsequent measurement, comparison, analysis, and 15 (16) to the data processing unit for use in evaluation processes biophysical knowledge acquisition characterized by its structure in a way that allows it to transmit information. system.
100. A biophysical information acquisition system according to any of claims 1 to 99, data processing unit (16), technology independent biophysical information model (10) 20 biophysical data generated within this scope, individual biophysical reference model, technical context information (11), past analysis results and biophysical information It will manage by relating it to its past throughout its life cycle, the new Based on the measurements, we will update this information and the system will then... In the processes of measurement, comparison, analysis and evaluation, again 25 characterized by being structured in a way that allows its use biophysical information acquisition system.
101. A biophysical information acquisition system according to any of claims 1 to 100, analysis unit (17), technology-independent biophysical information model (10) biophysical data generated within this scope, individual biophysical reference model, biophysical knowledge history, technical context information (11) and system along with the evaluation results previously created by 5 By working in an integrated manner, each new measurement result provides individual biophysical insights. updating the reference model and the system's increasing information over time in a way that will enable him to maintain his analytical skills, which have developed through his accumulated knowledge A biophysical information acquisition system characterized by its structuring.
102. A biophysical information acquisition system according to any of claims 1 to 101, 10 analysis unit (17), technology-independent biophysical information model (10) biophysical data generated within this scope, obtained at different times biophysical data, individual biophysical reference model, biophysical information biophysical by evaluating the history and technical context information (11) The results of this evaluation will determine the continuity of the changes. will transfer the results to the data processing unit (16) and the subsequent measurement of these results, reuse in comparison, analysis and evaluation processes biophysical information characterized by being structured in a way that provides acquisition system.
103. A biophysical information acquisition system according to any of claims 1 to 102, 20 data processing unit (16), technology independent biophysical information model (10) biophysical data generated within this scope, individual biophysical reference model, biophysical knowledge background, technical context information (11) and analysis results together with a single information system, it will manage and implement new measurements. As a result, the aforementioned information integrity will be updated and the 25 obtained the information for subsequent measurement, comparison, analysis and evaluation by the system by structuring it in a way that will allow its reuse in the processes A characterized biophysical information acquisition system. 31 104. A biophysical information acquisition system according to any of claims 1 to 103, within the scope of the system’s technology-independent biophysical information model (10) generated biophysical data, individual biophysical reference model, biophysical information history, technical context information (11) and analysis results together with continuous by updating it, it will create an integrated biophysical information infrastructure, word 5 the subject is updating and enriching the infrastructure with each new measurement. will provide and the accumulated knowledge will be used for subsequent measurement, comparison, analysis, allow for reuse in evaluation and decision support processes biophysical knowledge acquisition characterized by its structure in a way that provides system. 10