IT Technologies in Health Care Institutions in Russia: Application with a Digital Interactive Map

Capa

Citar

Texto integral

Acesso aberto Acesso aberto
Acesso é fechado Acesso está concedido
Acesso é fechado Somente assinantes

Resumo

IT technologies are currently one of the priority areas for the development of the healthcare sector. In the context of global information and development of the digital economy, digitalization is able to ensure the availability and decent quality of services provided without increasing the cost. The purpose of this study is to study the processes of informatization affecting medical companies and determine the role of information technologies on the base of the applications in health care institutions in Russia. The object of the study is the medical institutions of the healthcare sector, and the subject of study is the information and digital technologies used in the practice of companies. The role of information technologies in the activities of a medical institution is determined on the example of application for distribution of ambulances from a distribution center (DC). Key elements of the digital transformation of healthcare institutions (development of the author of the study) are advised in the article. The use of digital technologies in the practice of managing a medical institution is not an end in itself. The analysis made it possible to make sure that the most important tool for improving the efficiency of management, the implementation of goals and purposes, a means of adaptation in the activities of medical institutions in the context of global informatization and digitalization of the economy is the active use of information and digital technologies.

Texto integral

Acesso é fechado

Sobre autores

Viacheslav Bandylo

School of Computer and Artificial intelligence at Changzhou University

Autor responsável pela correspondência
Email: viacheslav.bandylo@yandex.ru

master degree student at the School of Computer and Artificial intelligence at Changzhou University

República da China, Changzhou

Linhong Deng

Institute of Biomedical Engineering and Health Sciencesof at Changzhou University

Email: dlh@cczu.edu.cn

PhD, Professor; Dean at the Institute of Biomedical Engineering and Health Sciences at Changzhou University

República da China, Changzhou

Bibliografia

  1. Bhargava H.K., Mishra A.N. Electronic medical records and physician productivity: Evidence from panel data analysis. Manag. Sci. 2020. No. 60. Pp. 2543–2562. DOI: https://doi.org/10.1287/mnsc.2020.1934
  2. Deloitte Consulting LLP. Blockchain: Opportunities for health care. 2021. URL: https://www2.deloitte.com/us/en/pages/public-sector/articles/blockchain-opportunities-for-health-care.html (data of accesses: 15.09.2022).
  3. Hydari M.Z., Telang R., Marella W.M. Saving patient Ryan–Can advanced electronic medical records make patient care safer? Manage Sci. Articles in Advance. 2021. No. 1–19. DOI: https://doi.org/10.1287/mnsc.2021.3042
  4. Li C., Wang L., Sun S., Xia C. Identification of influential spreaders based on classified neighbors in real-world complex networks. Appl. Math. Comput. 2021. No. 320. Pp. 512–523. DOI: https://doi.org/10.1016/j.amc.2022.10.001
  5. Li X.-B., Qin J. Anonymizing and sharing medical text records. Inf. Syst. Res. 2021. No. 28. Pp. 332–352. DOI: https://doi.org/10.1287/isre.2021.0676
  6. Sutherland I.E. The ultimate display Multimedia: From Wagner to virtual reality. IFIP Congress, 1965. Pp. 506–508.
  7. VR treatment on drug addicts shows success. Global Times. 2017. URL: http://www.globaltimes.cn/content/1060528.shtml
  8. Weech S., Kenny S., Barnett-Cowan M. Presence and cybersickness in virtual reality are negatively related. A Review. Frontiers in Psychology. 2019. No. 10 (158). P. 1.
  9. Xu Z., Wei X., Luo X. et al. Knowle: A semantic link network based system for organizing large scale online news events. Future Gener. Comp. Sys. 2020. No. 43–44. Pp. 40–50. DOI: https://doi.org/10.1016/j.future.2021.04.002
  10. Zheng C., Xia C., Guo Q., Dehmer M. Interplay between SIR-based disease spreading and awareness diffusion on multiplex networks. J. Parallel Distr. Com. 2021. No. 115. Pp. 20–28. DOI: https://doi.org/10.1016/j.jpdc.2021.01.001

Arquivos suplementares

Arquivos suplementares
Ação
1. JATS XML
2. Fig. 1. Ambulance location and road network

Baixar (713KB)
3. Fig. 2. Pseudocode of the algorithm used in the application

Baixar (99KB)
4. Fig. 3. Key elements of the digital transformation of healthcare institutions (development of the author of the study)

Baixar (64KB)
5. Fig. 4. Algorithm based on the cascade model of implementation of information systems

Baixar (145KB)
6. Fig. 5. Web Service Architecture

Baixar (124KB)
7. Fig. 6. Example of Activity with multiple Fragments

Baixar (21KB)
8. Fig. 7. Web Service Architecture

Baixar (421KB)
9. Fig. 8. Detailed route network to find the shortest route from the accommodation station to the D3 (in km)

Baixar (96KB)
10. Fig. 9. Distance from DC to DC

Baixar (10KB)
11. Fig. 10. DC in A1 and B1

Baixar (24KB)
12. Fig. 11. B1 – A9 and C1

Baixar (31KB)
13. Fig. 12. Final preferred node from D1 to C1, D3 and C2

Baixar (76KB)


Este site utiliza cookies

Ao continuar usando nosso site, você concorda com o procedimento de cookies que mantêm o site funcionando normalmente.

Informação sobre cookies