MODULAR CLINICAL PROCEDURE VERIFICATION AND ERROR LOCKING SYSTEM INTEGRATED WITH DIGITAL PATIENT WRISTBAND

TR202613228A2Pending Publication Date: 2026-08-21FIRAT UNIVSI REKTORLUGU
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Patent Information

Application Number
TR202613228
Authority / Receiving Office
TR · TR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2026-08-05
Publication Date
2026-08-21

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Abstract

The invention relates to a modular clinical procedure verification and error locking system integrated with a digital patient wristband. The system includes a digital patient wristband containing a QR code / data matrix field carrying patient-specific identification data and an RFID / NFC chip, a mobile scanning and verification terminal, a central clinical decision support engine, medical devices, and a hospital information system. The central clinical decision support engine processes patient identification data, clinical data, procedure data, and data from medical devices, activating the relevant module from among surgical procedure, drug administration, blood transfusion, or intensive care modules. If a discrepancy or critical risk data is identified based on the cross-check results obtained from the modules, a lock signal is transmitted to the mobile scanning terminal and / or the relevant clinical procedure device. Identity reading, verification, approval, lock, and re-verification data are stored as immutable time-stamped records.
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Description

1 TARIFF MODULAR CLINICAL PROCEDURE INTEGRATED WITH DIGITAL PATIENT WRISTBAND VERIFICATION AND FAIL-LOCKING SYSTEM TECHNICAL AREA 5 The invention is for patient identification and clinical procedures used in healthcare. This relates to the technical field of patient safety systems. Specifically, integration with digital patient wristbands. Employees in surgical procedures, drug administration, blood transfusions, and intensive care processes. Verifying patient identification data with clinical procedure data and in case of discrepancies It relates to modular clinical safety systems that lock down the relevant clinical procedure. 10 STATE OF THE ART Accurate patient identification in healthcare facilities and Barcodes are used to match the correct patient with the clinical procedure to be performed. QR code, RFID and NFC-based patient wristbands are used. These wristbands, 15 keeping patient identification information electronically and healthcare personnel This allows access via a reader terminal. In known systems, patient wristbands are used for patient identity verification and medication administration. monitoring, blood and blood product tracking, physiological data monitoring, patient status It is used in processes such as identification and the creation of clinical warnings. 20 In addition, data collected from the patient's wristband is transferred to the hospital information system. the data is evaluated in a central processing unit and in certain situations Systems that provide audio or visual warnings to healthcare personnel are also known. In the document with publication number CN114048971A, which is included in the known art; a Digital 25 including PDA handheld terminal, central control unit and patient information wristband. The nursing management system is explained. In this system, doctors and nurses... Communication is established between the patient and the medication; patient and medication verification processes are carried out. This is being implemented. However, this system is primarily based on nursing. It is related to managing processes and verifying patient and drug information. Surgical procedures, drug administration, blood transfusions, and intensive care processes share 30 common elements. It does not include a modular structure that is controlled via a security layer. In the document with publication number CN120510989A, which is included in the known art; The patient's QR code information and the drug's information are scanned, and the obtained information is... 2 A drug control system is described that is compared with physician orders. This The system checks information such as the drug's name, dosage, pharmaceutical form, and expiration date. However, this system requires verification specific to the drug administration process. it performs verification results from different clinical process modules. five partners who jointly evaluate and, in case of discrepancy, can block the clinical process flow. It does not offer a security structure. In the document with publication number CN109346166A, which is included in the known art, it is stated that... a smart medical wristband that measures the patient's vital signs and analyzes the measurement data in depth A central processing unit that analyzes using learning-based methods is described. The collected data is displayed on a screen and entered into the hospital information system. is transmitted. However, this system is primarily based on physiological data. Clinical monitoring and analysis will be carried out using patient identification data. cross-checking and verification of the transaction data at the time of processing. Depending on the situation, it does not involve generating a physical or digital lock signal. Existing systems generally provide identification for a specific clinical process. It performs verification, data monitoring, or alert generation functions. Surgery Procedures, drug administration, blood transfusions, and intensive care processes are mostly It is carried out through independent systems and obtained from different systems. The collected data is also checked by healthcare personnel. Furthermore, in a significant portion of known systems, the validation process takes 20 days of the clinical trial. This is done at the beginning, and during the process, patient data or Verification process depending on changes in transaction conditions It is not repeated dynamically. The identified discrepancies are mostly vocal. or is communicated to the staff in the form of a visual warning; directly preventing the continuation of the incorrect procedure. There is no common fault-locking mechanism that prevents this. 25 Therefore, the hospital uses the unique identification data obtained from the digital patient wristband. current clinical data obtained from the information system and the procedure to be performed cross-checking with data, relevant according to the type of clinical procedure to be performed Activating the verification module, verification obtained from different clinical modules evaluating the results within a common security layer and a mismatch 30 If identified, an integrated system applies a key signal to the relevant clinical process flow. A clinical procedure validation system is needed. 3 THE TECHNICAL PROBLEM THAT IS INTENDED TO BE SOLVED The fundamental technical problem that the invention aims to solve is patient identity verification. related to surgical procedures, drug administration, blood transfusions, and intensive care processes Because the data is processed in independent systems, patient identification data The clinical procedure data to be performed will be integrated and dynamic at the time of the procedure. 5 The inability to verify this. In known systems, verification processes are mostly clinical procedures. Performed at the beginning and as a one-time event, varying throughout the process. re-evaluation of patient data, clinical conditions, and procedural data This makes it difficult. A common control of data obtained from different clinical units is necessary. 10 The inability to integrate them into the structure means that healthcare personnel have to use multiple data sources. This leads to manual checking and delayed identification of discrepancies. is happening. Another technical problem is the link between patient identification data and medications, blood products, and surgical procedures. or identifying a discrepancy between data obtained from intensive care devices 15 in this case, a common lockdown that directly prevents the continuation of the incorrect clinical procedure. The problem is the lack of a structure. Incompatibilities in existing systems are mostly audio-related. or notification in the form of a visual warning, the process is carried out without user intervention. to be stopped or kept locked until re-verification is complete It does not provide. 20 The invention also includes verification and risk assessment from different clinical process modules. the data will be evaluated together in a central processing unit. Automatic activation of the relevant control module according to the type of clinical procedure. and all verification, approval, warning and locking processes have an immutable time. A technical solution was developed to address the need to store them in the form of stamped records. It places. In this context, the technical problem involves patient identification data, current clinical data, and modular systems that establish continuous data links between transaction data, specific to the transaction type. perform checks and clinical procedures depending on the identified discrepancy. It is the creation of an integrated system structure that applies a lock signal to the terminal. 30 4 A BRIEF DESCRIPTION OF THE INVENTION Known techniques include patient identification, surgical procedures, drug administration, and blood tests. Transfusion and intensive care processes are mostly independent systems. This is carried out through this system. Therefore, patient identification data, current clinical data, and Data related to the process to be performed is simultaneously transmitted within a common control structure. cannot be assessed as such; the identified discrepancies are mostly only The user is notified. Furthermore, the clinical procedure is subject to reconfirmation until completion. a common interlocking structure that technically enables it to be stopped It is not available. The invention is a digital solution designed to overcome the aforementioned technical problems. A modular clinical procedure validation and error lockout system integrated with patient wristbands. The system offers a digital patient wristband, mobile scanning, and verification system. terminal, hospital information system integration interface, central clinical decision support engine, clinical process modules, common safety and fault interlocking layer with time It includes a stamped registration and tracking unit. 15 The digital patient wristband is an optical device that carries unique patient identification data. RFID and / or NFC communication via a readable QR code or data matrix field It includes an integrated wireless communication chip that enables mobile scanning and verification. The terminal processes the identification data from the digital patient wristband optically and / or wirelessly. It reads the data and transmits it to the central clinical decision support engine. 20 The hospital information system integration interface corresponds to the read identification data. incoming electronic health records, laboratory findings, allergy information, by retrieving active treatment plans and physician orders from hospital data systems It transmits the information to the central clinical decision support engine. The central clinical decision support engine identifies the type of clinical procedure to be performed. by determining the surgical procedure safety module, drug administration verification module, blood either the transfusion control module or the intensive care risk analysis module, whichever is relevant. It is being implemented. The implemented clinical procedure module includes patient identification data, up-to-date clinical data obtained from the hospital information system and information about the procedure to be performed It cross-checks the transaction data. 30 Surgical procedure safety module; surgical side or area, surgical approval. records, preoperative preparation status, and surgical team authorization data. It evaluates the drug administration validation module; drug name, dosage, administration method. the form and timing of application, as well as the patient's allergy and active treatment data. It compares patient identification and blood group. The blood transfusion control module... data relating to the blood product to be administered and the cross-matching results. It is matching. The intensive care risk analysis module, on the other hand, is a patient-connected monitor, 5 real-time physiological data obtained from medical devices such as ventilators and infusion pumps It evaluates the patient by associating it with their identification data. Cross-checking results obtained from clinical procedure modules indicate common safety. and is passed to the error locking layer. This is based on patient ID, clinical procedure, or... 10 Identifying a mismatch or critical risk data regarding the product or drug to be administered in the case of a common security and fault-locking layer, mobile scanning and verification. It sends a lock signal to the terminal and / or the relevant clinical process system. Lock The clinical procedure flow is suspended by the signal, and the procedure is performed by authorized personnel. It remains locked until re-verification is performed. Identity reading, data transfer, cross-checking, verification, approval, warning, locking 15 and re-verification processes in the timestamped recording and tracking unit They are stored in the form of cryptographic and immutable timestamped records. Hospital Information System (HIS); existing electronic health records (EHR), bi-directional communication with laboratory information systems (LIS) and pharmacy management systems. directional) and standardization (HL7 20) that enables uninterrupted data exchange. etc.) and is the communication layer. Thanks to this technical structure, clinical settings can be run independently of each other. Data related to the processes are combined within a common system architecture, The verification module specific to the process to be performed is automatically activated. Clinical procedures are being carried out instead of simply reporting any identified discrepancies. 25 The flow is technically locked. Thus, patient identification data and current clinical data are blocked. and a dynamic, transaction-based validation cycle between transaction data. is being created. 6 DESCRIPTION OF THE FIGURES Figure 1 shows a digital patient wristband, a mobile scanning terminal, and patient-attached medical devices. data transmission between the central clinical decision support engine and the hospital information system. This is a system view showing feedback and alarm connections. Figure 2 shows the integration of data from the digital patient wristband into the hospital information system. that it is transferred to the central clinical decision support engine via the interface; central clinical Decision support engine's surgical procedure safety module, drug administration verification. module, blood transfusion control module and intensive care risk analysis module communication; module outputs to a common safety and fault locking layer and time This is a flowchart of the system architecture where the stamped data is transferred to the recording and monitoring unit. 10 Figure 3 shows the scanning of the digital patient wristband, and the conversion of patient data into doctor's orders. acquisition, commissioning of the relevant clinical procedure module, data cross-checking and Dynamic risk scoring is performed, and clinical action is taken according to the identified discrepancy. locking or generating a secure confirmation signal and timestamping transaction records Workflow showing the stages of storage in the recording and monitoring unit 15 It is a diagram. Explanations of the reference numbers in the figures; 1. Digital patient wristband a. QR code / data matrix field 20 b. RFID / NFC chip 2. Central clinical decision support engine 3. Medical devices 4. Hospital information system 5. Mobile scanning and verification terminal 25 a. Scanning unit b. Screen and warning lights DETAILED DESCRIPTION OF THE INVENTION The invention is a modular clinical procedure verification and error correction system integrated with a digital patient wristband. It relates to a locking system. The system that is the subject of the invention; patient identification data, patient information current clinical data, procedure data related to the clinical procedure to be performed, and patient-related data. 7 an integrated technique that establishes a data link between data obtained from medical devices It has architecture. The basic structure of the invention is a digital patient wristband (1), a central clinical decision support engine (2), at least one medical device (3), a hospital information system (4) and a mobile It includes a scanning and verification terminal (5). 5 Digital patient wristband (1) is a device that can be worn on the patient's wrist and is patient-specific. It is a wearable hardware element that carries unique identification data. Digital patient The wristband (1) contains a QR code / data matrix area (1a) and an RFID / NFC chip (1b). The QR code / data matrix area (1a) is located on the outer surface of the digital patient wristband (1). It is the data field and optically readable data field. In the QR code / data matrix field (1a), EN 10 at least patient-specific unique identification data or patient information in the hospital information system Data is available that allows access to the record. RFID / NFC chip (1b) is placed inside the digital patient wristband (1) and close the field enables reading patient-specific identification data via wireless communication. It is an electronic communication element. Thus, the identity on the digital patient wristband (1) 15 data is transmitted optically via the QR code / data matrix area (1a) and RFID / NFC chip (1b) It can be read contactless via the device. Mobile scanning and verification terminal (5), by healthcare personnel to read the identification data on the portable and digital patient wristband (1) It is a handheld terminal used. Mobile scanning and verification terminal (5), a scan 20 The unit includes (5a) a display and warning lights (5b). Scanning unit (5a), QR code / data matrix on digital patient wristband (1) reading the area (1a) optically and communicating wirelessly with the RFID / NFC chip (1b) It establishes the scanning unit (5a), a barcode reader, optical reader, in an application. It includes at least one of the following: an RFID reader and an NFC reader. 25 Mobile scanning and verification terminal (5), by scanning unit (5a) The read identity data is transmitted to a central location via a wired or wireless data transmission connection. transfer to the clinical decision support engine (2) and / or hospital information system (4). Wireless data transmission can be via Wi-Fi, Bluetooth, RFID, NFC, or methods used within the hospital. This can be done via a wireless network protocol. 30 8 The display and warning lights (5b) indicate the read status of the digital patient wristband (1), the result of identity verification, approval for the clinical procedure to be performed or the discrepancy status and the warning received from the central clinical decision support engine (2) or relays key information to healthcare personnel. In one application, the screen and warning lights (5b), a touch graphic display, green 5 It includes a warning light and a red warning light. Clinical procedure data and patient. If a match is found between the data, a green warning light is activated; A red warning light will be activated if a discrepancy or critical risk data is identified. It is activated. The mobile scanning and verification terminal (5) also provides an audible alert. It may include an alarm element that generates a signal. 10 Hospital information system (4) contains electronic health records of the patient, laboratory findings, allergy information, active treatment plans, doctor's orders, and It is a data server containing records of clinical procedures performed. Hospital information system (4) reads the unique from the digital patient wristband (1) Identifying the patient record corresponding to the identity data and processing the relevant patient data 15 It transfers to the central clinical decision support engine (2). Hospital information system (4) There is bidirectional data transmission between the central clinical decision support engine (2). Hospital information system (4), electronic health record system, laboratory information The system can exchange data with the pharmacy management system. data exchange, HL7 standard in an application or 20 in hospital information systems This is carried out via another data communication standard. Medical devices (3) operate depending on the patient and the patient's physiological data. Medical devices (3) include devices that generate device operating data; a patient head monitor, ventilator, infusion pump or a combination of these It is possible. 25 Data received from medical devices (3); pulse, oxygen saturation, body temperature, respiratory data, ventilator operation data, infusion rate, administered medication It can include the amount and at least one of the device alarm data. Medical devices (3) transmit patient and device data via wired or wireless data transmission. It transmits the data through the lines to the central clinical decision support engine (2). The central 30 clinical decision support engine (2), data from medical devices (3) digital patient 9 It matches the identification data obtained from the wristband (1). Thus, medical devices The incoming data is then linked to the correct patient records. The central clinical decision support engine (2) is the central data processing unit of the system. Central clinical decision support engine (2), identity from digital patient wristband (1) data, patient data obtained from the hospital information system (4), mobile scanning and 5 Transaction data received from verification terminal (5) and from medical devices (3) It processes patient and device data. Central clinical decision support engine (2), depending on the type of clinical procedure to be performed According to a surgical procedure safety module, drug administration verification module, blood transfusion control module or intensive care risk analysis module 10 It enables it. Surgical procedure safety module; patient identification data, surgical side or regional information, surgical consent records, preoperative preparation data, and surgical team. It performs cross-checking between authorization data. The drug administration verification module includes patient identification data and information about the drug to be administered. from the hospital information system (4) with information on name, dose, form of administration and time of administration Cross-checking allergy information received, active treatment plan, and doctor's orders. It is carrying out. Blood transfusion control module; patient data taken from digital patient wristband (1) Identity data, patient's blood group data, identification of the blood product to be administered 20 data, donor blood group data, biocompatibility data, and cross-comparison. They are evaluating the results together. Intensive care risk analysis module; instantaneous physiological data from medical devices (3) data, device operating data and identification data from the digital patient wristband (1) It evaluates by matching. 25 Central clinical decision support engine (2), taken from the relevant clinical procedure module According to cross-checking results, a confirmation data, non-conformity data, or critical risk. It produces data. In one application, a central clinical decision support engine (2) obtains The data obtained corresponds to one of the following risk levels: low, medium, high, and critical. It is classified as risk level data. 30 The system is a common one that receives results from clinical process modules. It includes a safety and fault locking layer. Common safety and fault locking. layer, patient identity, clinical procedure to be performed, drug to be administered, a discrepancy regarding the data of the blood product or medical device to be administered It generates a lock signal when detected. 5 The generated key signal is sent to the Mobile scanning and verification terminal (5) and / or the relevant is transmitted to the clinical processing device. Transmitted to the mobile scanning and verification terminal (5) visual and / or audible warning via lock signal, display and warning lights (5b) This creates a problem and prevents the granting of clinical procedure approval. In an application, the lock signal is the mobile scanning and verification terminal (5) 10 It displays an error message on the screen, activates a red warning light, and emits an audible signal. This triggers an alarm. The clinical procedure requires re-identification by authorized personnel. It remains locked until verification or transaction validation is completed. As a result of the evaluation made by the central clinical decision support engine (2) Mobile scanning and verification 15 unless a discrepancy or critical risk is identified. A secure confirmation signal is transmitted to terminal (5). The secure confirmation signal Upon receipt, confirmation information is displayed on the screen and warning lights (5b) and green The warning light is activated. The system also handles identity verification, data transfer, cross-checking, and risk assessment. A 20 that records leveling, approval, warning, locking, and re-verification data. It includes a timestamped recording and tracking structure. This structure is within the system. The transactions performed are recorded along with the transaction time and user identification data. It is receiving. In an application, records are kept using cryptographic methods and are immutable over time. It is stored with the stamp. Registration data is stored in the hospital information system (4) 25 can be transferred or a registry data connected to a central clinical decision support engine (2) It can be held in place at the base. Figure 1 shows the system described in the invention in a hospital room or clinical application. The hardware layout in the area is shown. Digital patient monitor on the patient's wrist. There is a wristband (1). Digital patient wristband (1), with a barcode / data 30 on its outer surface. Mobile scanning via the matrix area (1a) and its integrated RFID / NFC chip (1b) It is read by the verification terminal (5). 11 Scanning unit (5a) of mobile scanning and verification terminal (5), barcode / data It receives optical scanning data from the matrix area (1a) and with the RFID / NFC chip (1b) It establishes wireless data communication. The identity data read is for mobile scanning and verification. It is transferred from the terminal (5) to the central clinical decision support engine (2). Medical devices (3) centralize physiological data from the patient and device data. transmits to the clinical decision support engine (2). The central clinical decision support engine (2), together with the patient records taken from the hospital information system (4) is evaluating. Feedback, confirmation, alarm generated by the central clinical decision support engine (2) or key data is transmitted to the mobile scanning and verification terminal (5) and the screen and 10 This information is transmitted to healthcare personnel via warning lights (5b). Figure 2 shows the functional data flow of the system that is the subject of the invention. Identity data obtained from the digital patient wristband is integrated into the hospital information system. It is transferred from there to the central clinical decision support engine. Central clinical decision The assist engine, depending on the type of clinical procedure to be performed, provides surgical procedure safety 15. module, drug administration verification module, blood transfusion control module or It exchanges data with the intensive care risk analysis module. Verification and analysis results obtained from clinical process modules are shared. It is transferred to the safety and fault locking layer. Common safety and fault The locking layer will trigger error 20 if a mismatch or critical risk data is identified. or generates key data. Central clinical decision support engine and common safety and fault locking. Data processing, verification, approval, and locking operations are performed at the layer. It is transferred to a timestamped recording and tracking structure. Figure 3 shows the 25 steps performed by the system described in the invention during clinical proceedings. The verification and lockout process is shown. System operation, digital patient. by reading the wristband (1) by the mobile scanning and verification terminal (5) It starts. After the reading process, the patient is sent via the hospital information system (4). Current data and doctor's requests are being collected. Central clinical decision support engine (2) 30 types of clinical procedures to be performed It identifies and activates the relevant clinical procedure module. Patient identification data, 12 Clinical data, procedural data and, if any, data from medical devices (3) are cross-checked. This is being done and risk level data is being generated. Cross-checking reveals discrepancies or critical risk data. In this state, a lock signal is generated. The clinical procedure begins upon the generation of the lock signal. is stopped or locked and mobile scanning and verification terminal (5) 5 visual and / or audible fault warning via screen and warning lights (5b) is being created. Safe confirmation signal if no discrepancies or critical risk data are found. It is being produced and clinically approved. In both cases, authentication is required. Data cross-checking, risk level, approval and lockout data are timestamped on 10 pages. The process is being recorded and completed. In one application of the system described in the invention, a patient is given a blood transfusion. Before the procedure, healthcare personnel should use the mobile screening and verification terminal (5) Using the mobile scanning and verification terminal, it scans the digital patient wristband (1). (5) scanning unit (5a), QR code / data matrix on digital patient wristband (1) 15 It retrieves patient-specific identification data from the field (1a) and / or RFID / NFC chip (1b). The scanned identity data is transmitted to the hospital information system (4). Hospital information system (4), the patient’s current blood group from the patient record that matches the said identity data, Transfusion request, cross-matching result, and blood type planned for administration. It transfers the records relating to its product to the central clinical decision support engine (2). 20 Healthcare professionals will analyze the identification data on the blood bag to be used. The mobile scanning and verification terminal (5) reads with its scanning unit (5a). Central clinical decision support engine (2); patient identification from digital patient wristband (1) data, current clinical records and blood taken from the hospital information system (4) It compares the product data taken from the bag within the same validation cycle. 25 During the comparison, patient identity, patient blood type, blood product group, Product identification data, transfusion request, and cross-matching result together. This is evaluated. If the data in question are consistent with each other, the central clinic... Decision support engine (2), secure approval to mobile scanning and verification terminal (5) sends the signal. The safe confirmation signal is sent via the display and warning lights (5b) 30 It is shown to the staff and the transfusion procedure can be started. 13 The patient's blood type does not match the blood product; the blood product must be a different type. the patient being allocated a transfusion, or the absence of a valid transfusion request, or If the cross-comparison result is inappropriate, a central clinical decision will be made. The support engine (2) generates a mismatch data. Depending on the generated mismatch data As such, a lock signal is sent to the mobile scanning and verification terminal (5). 5 Upon receiving the lock signal, the screen of the mobile scanning and verification terminal (5) and fault notification is generated on the warning lights (5b), red warning light and / or An audible alarm is activated and transfusion consent is not given. The procedure must be performed by authorized personnel. The blood product is re-read and verified using the patient's wristband. It remains locked until completion. 10 Identity card reading, blood product reading, data comparison, verification, discrepancy. Locking and re-verification processes; transaction time and user ID data. They are recorded together with a timestamp. Thus, it is not just a warning notification. will not be created; the blood transfusion process flow will not be established until the incompatibility is resolved. Its progress is technically hampered. 15 The system described in the invention is suitable for hospitals, health centers, operating rooms, and pharmaceutical facilities. in application units, blood transfusion units and intensive care units It is feasible. The system is a central server that communicates data with the hospital information system. hardware, digital patient wristband, mobile scanning terminal and patient-attached medical devices It can be established using the system's clinical process modules, the hospital's existing electronic 20 to establish data communication with health records and medical device infrastructure It is configurable. 30

Claims

14 REQUESTS 1. Modular clinical procedure verification and error detection integrated with digital patient wristband. It has a locking system; its feature is: - an optically readable 5 that carries unique patient-specific identification data. A chip (1b) that enables RFID / NFC communication with a QR code / data matrix area (1a) digital patient wristband (1), - optically scan the QR code / data matrix field (1a) on the digital patient wristband (1). Scanning that reads and establishes contactless data communication with RFID / NFC chip (1b) Mobile scanning unit (5a) with screen and warning lights (5b) and 10 verification terminal (5), - Electronic health records, laboratory findings, and allergy reports belonging to the patient. hospital information including patient details, active treatment plans, and doctor's orders system (4), - patient's physiological data and device operating data central clinic 15 at least one medical device (3) that transmits to the decision support engine (2), - mobile scanning and verification terminal (5), hospital information system (4) and medical on the central server hardware which is in data communication with device (3) working central clinical decision support engine (2),  Surgical procedure safety defined in the central clinical decision support engine (2) 20 module, drug administration verification module, blood transfusion control module and intensive care risk analysis module, - joint security and obtaining the cross-check results of the modules in question fault locking layer and - ID reading, module activation, cross-checking, locking and resetting 25 verification data along with transaction time and user ID data. storing in cryptographic and immutable timestamped records timestamped recording and tracking unit includes and - Central clinical decision support engine (2), mobile screening and validation 30 patient identification data received from terminal (5) from hospital information system (4) clinical data obtained and the procedure to be performed clinical procedure to be performed to cross-check with data Activating the module corresponding to its type, common safety and fault patient identification as a result of the cross-checking of the locking layer a discrepancy between the data, clinical data and procedural data If determined, a lock will be placed on the mobile scanning and verification terminal (5). transmitting the signal and the mobile scanning and verification terminal (5) in question 5 Authorized re-verification of clinical procedure approval based on key signal. It is characterized by blocking access until the data is retrieved.

2. Modular clinical procedure validation integrated with digital patient wristband according to Claim 1. and error locking system, its feature is; scanning unit (5a), barcode / data 10 with an RFID / NFC chip (1b) and an optical reader that reads the matrix area (1a). by including an RFID / NFC reader that establishes contactless data communication It is characteristic.

3. Modular clinical procedure validation integrated with digital patient wristband according to Claim 1. and it has an error locking system, the feature of which is; central clinical decision support engine. (2), transaction data received from mobile scanning and verification terminal (5) patient 15 cross-identity data and clinical data from the hospital information system (4) It is characterized by its ability to control.

4. Modular clinical procedure validation integrated with digital patient wristband according to Claim 1. and it has an error locking system, the feature of which is the surgical procedure safety module. patient identification data and surgical side or region data, surgical consent 20 records, preoperative preparation data, and surgical team authorization. It is characterized by its ability to cross-check its data.

5. Modular clinical procedure validation integrated with digital patient wristband according to Claim 1. and it has an error locking system, the feature of which is; drug administration verification module, 25 cross-reference patient allergy information, active treatment plan, and doctor's orders. It is characterized by its ability to control.

6. Modular clinical procedure validation integrated with digital patient wristband according to Claim 1. and has an error locking system, the feature of which is that the blood transfusion control module, patient identification data, patient's blood type data, and the blood product to be administered 30 identification and blood group data, transfusion request and cross-linking It is characterized by evaluating the comparison results together. 16 7. Modular clinical procedure validation integrated with digital patient wristband according to Claim 1. and error locking system, its feature is; medical devices (3) a patient bedside It must include at least one of the following: monitor, ventilator and infusion pump, and intensive the maintenance risk analysis module of physiological data from the medical devices (3) 5 by matching the data with the identification data obtained from the digital patient wristband (1) It is characteristic.

8. Modular clinical procedure validation integrated with digital patient wristband according to Claim 1. and fault locking system, its feature is; common safety and fault locking. The lock signal received from the layer is displayed on the mobile scanning terminal (5) screen and generating visual and / or audible fault warnings in the warning lights (5b) and mobile 10 Authorized to give clinical procedure approval in the scanning and verification terminal (5) It is characterized by blocking the system until re-verification data is received.

9. Modular clinical procedure validation integrated with digital patient wristband according to Claim 1. It has a fault locking system, and its feature is time-stamped recording and monitoring. Unit ID reading, data cross-checking, confirmation, locking and resetting 15 verification data along with transaction time and user ID data. by storing them in the form of cryptographic and immutable time-stamped records It is characteristic. 25