Early Medical Technology in Reducing The Mortality Rate in Toll Road Accidents

Authors

  • Reza Aditya Digambiro Universitas Trisakti Jakarta, Indonesia
  • Rully Indrawan Institut Transportasi dan Logistik Trisakti, Jakarta, Indonesia
  • Siti Maemunah Institut Transportasi dan Logistik Trisakti, Jakarta, Indonesia
  • Tjuk Sukardimand Institut Transportasi dan Logistik Trisakti, Jakarta, Indonesia

DOI:

https://doi.org/10.31933/dijemss.v5i4.2632

Keywords:

Traffic Accidents, Technology Systems, Mortality Rate, Emergency Response, Toll Roads

Abstract

Purpose: The research aims to know whether the technological system is effective in bringing improvement to early medical response toward traffic accidents on toll roads in Indonesia, particularly in an attempt to bring down the mortality rate caused by traffic accidents on toll roads.  Methods: The current study holds a research design of a mixed-methods approach that mainly adopts the use of qualitative and quantitative measures of structural equation modeling (SEM. Data collected involved survey, interviews, and field observations that focused on perception of accident risk on toll roads and the effect of technology on early medical handling.  Result: The findings have therefore confirmed that the traffic accident risk perception on the toll roads is generally perceived low, with a mean perception score averaging at 2.65. On the other side, a positive picture is painted regarding the role of technology in improving timeliness and effectiveness of medical responses: its contribution to early medical handling (3.06) and the impact it can have on the reduction in rates of deaths (2.96). Conclusion: The findings highlight the urgent need for increased public awareness and the development of technology-based emergency strategies. Targeted technological interventions, particularly those enhancing early medical response, could significantly reduce toll road accident fatalities.

References

ALMUSAYLI, A., ZIA, T., & QAZI, E. U. H. (2024). DRONE FORENSICS: AN INNOVATIVE APPROACH TO THE FORENSIC INVESTIGATION OF DRONE ACCIDENTS BASED ON DIGITAL TWIN TECHNOLOGY. TECHNOLOGIES, 12(1). HTTPS://DOI.ORG/10.3390/TECHNOLOGIES12010011

AYU ANDANI, I. G., GEURS, K., & PUELLO, L. L. P. (2019). EFFECTS OF TOLL ROAD CONSTRUCTION ON LOCAL ROAD PROJECTS IN INDONESIA. JOURNAL OF TRANSPORT AND LAND USE, 12(1), 179–199. HTTPS://DOI.ORG/10.5198/JTLU.2019.1258

BALASUBRAMANIAN, S. B., BALAJI, P., MUNSHI, A., ALMUKADI, W., PRABHU, T. N., VENKATACHALAM, K., & ABOUHAWWASH, M. (2023). MACHINE LEARNING BASED IOT SYSTEM FOR SECURE TRAFFIC MANAGEMENT AND ACCIDENT DETECTION IN SMART CITIES. PEERJ COMPUTER SCIENCE, 9, 1–25. HTTPS://DOI.ORG/10.7717/PEERJ-CS.1259

BERHANU, Y., ALEMAYEHU, E., & SCHRÖDER, D. (2023). EXAMINING CAR ACCIDENT PREDICTION TECHNIQUES AND ROAD TRAFFIC CONGESTION: A COMPARATIVE ANALYSIS OF ROAD SAFETY AND PREVENTION OF WORLD CHALLENGES IN LOW-INCOME AND HIGH-INCOME COUNTRIES. IN JOURNAL OF ADVANCED TRANSPORTATION (VOL. 2023). HINDAWI LIMITED. HTTPS://DOI.ORG/10.1155/2023/6643412

BHELE, R., & RAJCHAL, P. (2023). ACCIDENT ANALYSIS AND IDENTIFICATION OF BLACK SPOTS ON ROAD SECTION FROM SANGA TO DHULIKHEL IN ARANIKO HIGHWAY. JOURNAL OF TRANSPORTATION SYSTEMS, 8(3), 18–32. HTTPS://DOI.ORG/10.46610/JOTS.2023.V08I03.003

CAO, Y., XU, C., AZIZ, N. M., & KAMARUZZAMAN, S. N. (2023). BIM–GIS INTEGRATED UTILIZATION IN URBAN DISASTER MANAGEMENT: THE CONTRIBUTIONS, CHALLENGES, AND FUTURE DIRECTIONS. IN REMOTE SENSING (VOL. 15, ISSUE 5). MDPI. HTTPS://DOI.ORG/10.3390/RS15051331

COSTA, D. G., BITTENCOURT, J. C. N., OLIVEIRA, F., PEIXOTO, J. P. J., & JESUS, T. C. (2024). ACHIEVING SUSTAINABLE SMART CITIES THROUGH GEOSPATIAL DATA-DRIVEN APPROACHES. IN SUSTAINABILITY (SWITZERLAND) (VOL. 16, ISSUE 2). MULTIDISCIPLINARY DIGITAL PUBLISHING INSTITUTE (MDPI). HTTPS://DOI.ORG/10.3390/SU16020640

FAKHRUDDIN, A., & L GULTOM, Y. M. (2021). NUMBER 2 ARTICLE 6 12-1-2021 PART OF THE GEOGRAPHY COMMONS RECOMMENDED CITATION RECOMMENDED CITATION FAKHRUDDIN. JOURNAL OF GEOGRAPHY OF TROPICAL ENVIRONMENTS) TROPICAL ENVIRONMENTS), 5(2). HTTPS://DOI.ORG/10.7454/JGLITROP.V5I2.125

HAGHI, M., BENIS, A., & DESERNO, T. M. (2022). ACCIDENT & EMERGENCY INFORMATICS AND ONE DIGITAL HEALTH. YEARBOOK OF MEDICAL INFORMATICS, 31(1), 40–46. HTTPS://DOI.ORG/10.1055/S-0042-1742506

HUABBANGYANG, T., KLAIAUNGTHONG, R., JANSANGA, D., AINTHARASONGKHO, A., HANLAKORN, T., SAKCHAROEN, R., KAMSOM, A., & SOION, T. (2021). SURVIVAL RATES AND FACTORS RELATED TO THE SURVIVAL OF TRAFFIC ACCIDENT PATIENTS TRANSPORTED BY EMERGENCY MEDICAL SERVICES. OPEN ACCESS EMERGENCY MEDICINE, 13, 575–586. HTTPS://DOI.ORG/10.2147/OAEM.S344705

KRICHEN, M., ABDALZAHER, M. S., ELWEKEIL, M., & FOUDA, M. M. (2024). MANAGING NATURAL DISASTERS: AN ANALYSIS OF TECHNOLOGICAL ADVANCEMENTS, OPPORTUNITIES, AND CHALLENGES. IN INTERNET OF THINGS AND CYBER-PHYSICAL SYSTEMS (VOL. 4, PP. 99–109). KEAI COMMUNICATIONS CO. HTTPS://DOI.ORG/10.1016/J.IOTCPS.2023.09.002

KUMAR SAMANTA, P. (2017). AN ANALYSIS OF ROADWAY SERVICE INDICATORS: A COMPARATIVE STUDY OF SIX TOLL ROADS IN PUNE REGION. HTTPS://WWW.RESEARCHGATE.NET/PUBLICATION/337415968

MOHAMED, M., ALOSMAN, K., MOHAMED KING ABDUL AZIZ UNIVERSITY, M., ARABIA, S., & ALOSMAN KING ABDUL AZIZ UNIVERSITY, K. (2024). AN IOT-ENABLED FRAMEWORK FOR SMART CITY INFRASTRUCTURE MANAGEMENT. HTTPS://DOI.ORG/10.36227/TECHRXIV.170906134.46169506/V1

MUSA, A. A., MALAMI, S. I., ALANAZI, F., OUNAIES, W., ALSHAMMARI, M., & HARUNA, S. I. (2023). SUSTAINABLE TRAFFIC MANAGEMENT FOR SMART CITIES USING INTERNET-OF-THINGS-ORIENTED INTELLIGENT TRANSPORTATION SYSTEMS (ITS): CHALLENGES AND RECOMMENDATIONS. SUSTAINABILITY (SWITZERLAND), 15(13). HTTPS://DOI.ORG/10.3390/SU15139859

NAWIR, D., BAKRI, M. D., & SYARIF, I. A. (2023). CENTRAL GOVERNMENT ROLE IN ROAD INFRASTRUCTURE DEVELOPMENT AND ECONOMIC GROWTH IN THE FORM OF FUTURE STUDY: THE CASE OF INDONESIA. CITY, TERRITORY AND ARCHITECTURE, 10(1). HTTPS://DOI.ORG/10.1186/S40410-022-00188-9

SANTOSO, G. P., & MAULINA, D. (2019). HUMAN ERRORS IN TRAFFIC ACCIDENTS: DIFFERENCES BETWEEN CAR DRIVERS AND MOTORCYCLISTS’ EXPERIENCE. PSYCHOLOGICAL RESEARCH ON URBAN SOCIETY, 2(2), 118. HTTPS://DOI.ORG/10.7454/PROUST.V2I2.69

SATRIA, R., TSOI, K. H., CASTRO, M., & LOO, B. P. Y. (2020). A COMBINED APPROACH TO ADDRESS ROAD TRAFFIC CRASHES BEYOND CITIES: HOT ZONE IDENTIFICATION AND COUNTERMEASURES IN INDONESIA. SUSTAINABILITY (SWITZERLAND), 12(5), 1–18. HTTPS://DOI.ORG/10.3390/SU12051801

SELVAKUMAR, N. (2023). TRANSFORMING EMERGENCY MEDICAL SERVICES WITH ELECTRIC AMBULANCE TECHNOLOGY. INTERNATIONAL JOURNAL FOR RESEARCH IN APPLIED SCIENCE AND ENGINEERING TECHNOLOGY, 11(12), 23–26. HTTPS://DOI.ORG/10.22214/IJRASET.2023.57201

SHAFAPOURTEHRANY, M., BATUR, M., SHABANI, F., PRADHAN, B., KALANTAR, B., & ÖZENER, H. (2023). A COMPREHENSIVE REVIEW OF GEOSPATIAL TECHNOLOGY APPLICATIONS IN EARTHQUAKE PREPAREDNESS, EMERGENCY MANAGEMENT, AND DAMAGE ASSESSMENT. IN REMOTE SENSING (VOL. 15, ISSUE 7). MDPI. HTTPS://DOI.ORG/10.3390/RS15071939

SHAH, S. A. R., AHMAD, N., SHEN, Y., PIRDAVANI, A., BASHEER, M. A., & BRIJS, T. (2018). ROAD SAFETY RISK ASSESSMENT: AN ANALYSIS OF TRANSPORT POLICY AND MANAGEMENT FOR LOW-, MIDDLE-, AND HIGH-INCOME ASIAN COUNTRIES. SUSTAINABILITY (SWITZERLAND), 10(2). HTTPS://DOI.ORG/10.3390/SU10020389

YUDO, R., TJAHJONO, P. T., SIREGAR, A. A., NEGARA, K., INDONESIA, R., & TRUNOJOYO NO, J. (2020). ANALYSIS OF HIGH-FATALITY ACCIDENT ON TOLL ROAD AND ITS COUNTERMEASURES (CASE STUDY: TOL CIPULARANG KM 91). In Journal of Indonesia Road Safety (Vol. 3, Issue 2).

Published

2024-05-22

How to Cite

Reza Aditya Digambiro, Rully Indrawan, Siti Maemunah, & Tjuk Sukardimand. (2024). Early Medical Technology in Reducing The Mortality Rate in Toll Road Accidents. Dinasti International Journal of Education Management And Social Science, 5(4), 818–826. https://doi.org/10.31933/dijemss.v5i4.2632