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1.
Santa Tecla, La Libertad; ITCA Editores; ene. 2020. 42 p. ^c28 cm.ilus., tab., graf..
Monography in Spanish | LILACS, BISSAL | ID: biblio-1222448

ABSTRACT

El software desarrollado en este proyecto tiene como propósito controlar y ejecutar medidas de prevención hacia enfermedades definidas. Por medio del estudio de gestión de controles médicos, se diseñó la automatización de los procesos de la Unidad de Salud de Conchagua. El software cuenta con un módulo de gestión de citas en el cual se pueden agendar las consultas y controles de los pacientes, permitiendo además reprogramarlas en casos de ser requerido. De igual forma le permite al médico contar con una vista a manera de agenda en la que puede verificar si un día en concreto tiene pacientes ya registrados para atender. Con la implementación del sistema, la Unidad de Salud de Conchagua, La Unión, contará con una plataforma que incluirá la información del niño o la niña como nombre completo, edad, residencia, entre otros datos importantes, además tendrá la capacidad de almacenar más de 1,000,000 de expedientes clínicos.


The software developed in this project was made with the purpose to control and execute preventive measures towards defined diseases. Through the study of management of medical controls, the automation of the processes of Unidad de Salud de Conchagua was designed. The software has an appointment management module in which patient consultations and controls can be scheduled, also allowing them to be reprogrammed when necessary. In the same way, it allows the doctor to have a view in the way of an agenda in which he can verify if a specific day has patients already registered to attend. With the implementation of the system, the Unidad de Salud de Conchagua, will have a platform that will include the child's information such as full name, age, residence, among other important data, and will also have the capacity to store more than 1,000,000 clinical records.


Subject(s)
Appointments and Schedules , Software , Records , Referral and Consultation , Automation
2.
Military Medical Sciences ; (12): 841-844, 2017.
Article in Chinese | WPRIM | ID: wpr-694267

ABSTRACT

Objective To store and use the military electronic health record ( EHR) data effectively , and to improve the flexibility, scalability, and statistical query performance of data storage .Methods The military EHR data access patterns were analyzed,a military EHR storage model using MongoDB document database was designed ,and the storage model was optimized by storing the whole document and the reduced summary document separately .Results The storage model was used in the military EHR system , which can meet the demands of document query and statistical query at the same time . The optimized model improves the statistical query performance without losing scalability .Conclusion This model can meet the daily needs of the EHR system and is of practical application value.

3.
Chinese Medical Equipment Journal ; (6): 20-23, 2017.
Article in Chinese | WPRIM | ID: wpr-662093

ABSTRACT

Objective To design a data acquisition and monitoring system to facilitate the maintenance of the ventilator.Methods The system was composed of two modules of data acquisition and monitoring.The data acquisition module used MSP430F149 SCM as the master control chip to realize real-time acquisition and storage of operation data,and the monitoring module adopted STM32 SCM as the master control chip to implement equipment monitoring,server serial port conversion and data communication.Wireless data transmission between the two modules was executed with wireless NRF24L01 module.Results The system realized real-time acquisition and storage of the ventilator log,and transmitted acquired data to the server.Conclusion The system eliminates the deficiencies of manual operation and implements basic risk analysis,and facilitates the engineer to monitor and maintain the ventilator.

4.
Chinese Medical Equipment Journal ; (6): 20-23, 2017.
Article in Chinese | WPRIM | ID: wpr-659373

ABSTRACT

Objective To design a data acquisition and monitoring system to facilitate the maintenance of the ventilator.Methods The system was composed of two modules of data acquisition and monitoring.The data acquisition module used MSP430F149 SCM as the master control chip to realize real-time acquisition and storage of operation data,and the monitoring module adopted STM32 SCM as the master control chip to implement equipment monitoring,server serial port conversion and data communication.Wireless data transmission between the two modules was executed with wireless NRF24L01 module.Results The system realized real-time acquisition and storage of the ventilator log,and transmitted acquired data to the server.Conclusion The system eliminates the deficiencies of manual operation and implements basic risk analysis,and facilitates the engineer to monitor and maintain the ventilator.

5.
Japanese Journal of Pharmacoepidemiology ; : 31-34, 2013.
Article in Japanese | WPRIM | ID: wpr-374834

ABSTRACT

Appropriate observational studies with sufficient external validity are apparently warranted to assess comparative effectiveness and safety of treatment with approved drugs in real world clinical practice. This kind of study must register patients consecutively without any arbitrariness, assess outcome carefully, (e.g. cardiovascular events) and automatically extract clinical data including results from laboratory tests and prescribed drugs. Clinical trials for the assessment of efficacy of newly developing drugs may also need such patients' registry. Data storage system by SS-MIX may be appropriate for this purpose. (Jpn J Pharmacoepidemiol 2013;18(1):31-34)

6.
Chinese Journal of Clinical Pharmacology and Therapeutics ; (12)2004.
Article in Chinese | WPRIM | ID: wpr-557226

ABSTRACT

The goal of this work is to understand the difference between vertical structure and horizontal structure on data management. We take adverse event report as an example to find out the relationship between the storage space and the factors related to the trail. From the study we find out the difference of storage space between horizontal structure and vertical structure goes up with the increase of the storage space of each adverse event record and the number of adverse event allowed to record in the horizontal structure and goes down with the increase of the happening rate and the average times of the adverse event. When using the most widely used study design, vertical structure always takes less storage space than the horizontal structure. This vertical structure database is more suitable for the data management than the horizontal structure database.

7.
Journal of Third Military Medical University ; (24)2003.
Article in Chinese | WPRIM | ID: wpr-556667

ABSTRACT

Objective To find a solution to the long-term storage of enormous amount of imaging data in hospital picture archiving communication system (PACS). Methods Medical imaging data collected by devices of Digital Imaging and Communications in Medicine-3 (DICOM3) and non-DICOM3 were transformed into the storage format, metadata instance, and expression pattern of digital images standardized by DICOM3. Based on the requirements of data utilization and storage system and the optimal principle of function and value, the reasonable flow of imaging data in PACS network were scientifically allocated by application of on-line, near-line, and off-line storage patterns and by reasonable allocation of the volume and clusters of storage devices. Results The PACS storage system established by our method, characterized by super capacity of error tolerance, permanent unrestricted storage, quick in retrieval, and quick, convenient and reliable in storage and reading, could meet the requirements of long-term storage and management of enormous amount of medical imaging data. Conclusion Grading storage is the effective method for long-term storage of enormous amount of medical imaging data in PACS.

8.
Chinese Medical Equipment Journal ; (6)1989.
Article in Chinese | WPRIM | ID: wpr-590561

ABSTRACT

External hard disk with USB interface is used to storage CT raw data so as to solve the question that CT raw data cannot be storage for long time. This method benefits CT clinical work and scientific research. Compression and storage of CT raw data will play an important role in CT data storage.

9.
Korean Journal of Pathology ; : 410-415, 1989.
Article in Korean | WPRIM | ID: wpr-49205

ABSTRACT

The authors developed a computer program for use in report printing as well as data storage and retrieval system at the surgical pathology and its efficacy was evaluated at the Department of Pathology, Seoul National University Hospital. This program used IBM PC XT and was written in DBASE III plus language. The main features of the program included an automatic coding and decoding of the diagnosis, automatic searching of the previous biopsy during gross dictation, powerful word processing function and flexibility of the program. The data storage was carried out during the typewriting of the report, so that the typist's workload became markedly reduced. Two kinds of data files wer stored in the hard disk ; the temporary file contained full informations and the permanent file contained the core data only. Searching of a specific case was performed by pathology accession number, chart number, patient's name or by SNOMED code within a second. All the cases were arranged by copied to the diskette during the daily service automatically, with which data were easily restored in case of hard disk failure. The advantages of this program using a persosnal computer were discussed with comparison to those of larger computer system. Based on the experience of 8 months usage in Seoul National University, we assume that this program gives a sufficient solution to the surgical pathology service of many institutes where a large computer system with well designed software is not available yet.


Subject(s)
Biopsy
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