Telemedicine in Rural Areas: Bridging the Service Gap Health through Technology
Abstract
The gap in healthcare access between urban and rural areas has become a significant issue, especially in developing countries. Geographic challenges, a shortage of healthcare workers, and limited infrastructure are the main barriers for rural communities in obtaining adequate healthcare services. Telemedicine technology has emerged as a potential solution to bridge this gap by enabling remote healthcare access through digital platforms. This research aims to analyze the effectiveness of telemedicine in improving healthcare access in rural areas. The research method used is a qualitative approach with in-depth interviews and case studies in several villages that have adopted telemedicine technology. The data collected were analyzed using thematic analysis to identify key patterns related to the benefits and challenges of telemedicine implementation.The research findings indicate that telemedicine can reduce geographical barriers and enhance access to healthcare services, particularly in medical consultations and chronic condition monitoring. However, the study also reveals several challenges in its implementation, such as limited digital infrastructure, low technological literacy, and cultural resistance to new technology in some rural communities. In conclusion, telemedicine offers a promising solution to bridge the healthcare access gap in rural areas, but effective implementation requires adequate infrastructure support, community training, and supportive policies. Further research is recommended to explore ways to overcome these challenges to improve the acceptance and effectiveness of telemedicine in rural regions.
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References
Abdollahi, A., Roghani-Mamaqani, H., Razavi, B., & Salami-Kalajahi, M. (2020). Photoluminescent and Chromic Nanomaterials for Anticounterfeiting Technologies: Recent Advances and Future Challenges. ACS Nano, 14(11), 14417–14492. https://doi.org/10.1021/acsnano.0c07289
Aleluia, J., & Ferrão, P. (2016). Characterization of urban waste management practices in developing Asian countries: A new analytical framework based on waste characteristics and urban dimension. Waste Management, 58, 415–429. https://doi.org/10.1016/j.wasman.2016.05.008
Azargohar, R., Nanda, S., Dalai, A. K., & Kozinski, J. A. (2019). Physico-chemistry of biochars produced through steam gasification and hydro-thermal gasification of canola hull and canola meal pellets. Biomass and Bioenergy, 120, 458–470. https://doi.org/10.1016/j.biombioe.2018.12.011
Balat, H., & K?rtay, E. (2010). Hydrogen from biomass – Present scenario and future prospects. International Journal of Hydrogen Energy, 35(14), 7416–7426. https://doi.org/10.1016/j.ijhydene.2010.04.137
Batllevell, M., & Hanf, K. (2008). The fairness of PAYT systems: Some guidelines for decision-makers. Waste Management, 28(12), 2793–2800. https://doi.org/10.1016/j.wasman.2008.02.031
Brillas, E. (2020). A review on the photoelectro-Fenton process as efficient electrochemical advanced oxidation for wastewater remediation. Treatment with UV light, sunlight, and coupling with conventional and other photo-assisted advanced technologies. Chemosphere, 250, 126198. https://doi.org/10.1016/j.chemosphere.2020.126198
Collins, M. N., Ren, G., Young, K., Pina, S., Reis, R. L., & Oliveira, J. M. (2021). Scaffold Fabrication Technologies and Structure/Function Properties in Bone Tissue Engineering. Advanced Functional Materials, 31(21), 2010609. https://doi.org/10.1002/adfm.202010609
Eke, J., Yusuf, A., Giwa, A., & Sodiq, A. (2020). The global status of desalination: An assessment of current desalination technologies, plants and capacity. Desalination, 495, 114633. https://doi.org/10.1016/j.desal.2020.114633
Fairfield, K. M., Black, A. W., Ziller, E. C., Murray, K., Lucas, F. L., Waterston, L. B., Korsen, N., Ineza, D., & Han, P. K. J. (2020). Area Deprivation Index and Rurality in Relation to Lung Cancer Prevalence and Mortality in a Rural State. JNCI Cancer Spectrum, 4(4), pkaa011. https://doi.org/10.1093/jncics/pkaa011
Fan, L., Tu, Z., & Chan, S. H. (2021). Recent development of hydrogen and fuel cell technologies: A review. Energy Reports, 7, 8421–8446. https://doi.org/10.1016/j.egyr.2021.08.003
Filipczak, N., Pan, J., Yalamarty, S. S. K., & Torchilin, V. P. (2020). Recent advancements in liposome technology. Advanced Drug Delivery Reviews, 156, 4–22. https://doi.org/10.1016/j.addr.2020.06.022
Fu, X., & Zhou, Y. (2023). Collaborative Optimization of PV Greenhouses and Clean Energy Systems in Rural Areas. IEEE Transactions on Sustainable Energy, 14(1), 642–656. https://doi.org/10.1109/TSTE.2022.3223684
Guo, Y., Wen, M., Li, G., & An, T. (2021). Recent advances in VOC elimination by catalytic oxidation technology onto various nanoparticles catalysts: A critical review. Applied Catalysis B: Environmental, 281, 119447. https://doi.org/10.1016/j.apcatb.2020.119447
Haider, R., Wen, Y., Ma, Z.-F., Wilkinson, D. P., Zhang, L., Yuan, X., Song, S., & Zhang, J. (2021). High temperature proton exchange membrane fuel cells: Progress in advanced materials and key technologies. Chemical Society Reviews, 50(2), 1138–1187. https://doi.org/10.1039/D0CS00296H
Javaid, M., Haleem, A., Vaishya, R., Bahl, S., Suman, R., & Vaish, A. (2020). Industry 4.0 technologies and their applications in fighting COVID-19 pandemic. Diabetes & Metabolic Syndrome: Clinical Research & Reviews, 14(4), 419–422. https://doi.org/10.1016/j.dsx.2020.04.032
Jaziri, N., Boughamoura, A., Müller, J., Mezghani, B., Tounsi, F., & Ismail, M. (2020). A comprehensive review of Thermoelectric Generators: Technologies and common applications. Energy Reports, 6, 264–287. https://doi.org/10.1016/j.egyr.2019.12.011
Kalaj, M., & Cohen, S. M. (2020). Postsynthetic Modification: An Enabling Technology for the Advancement of Metal–Organic Frameworks. ACS Central Science, 6(7), 1046–1057. https://doi.org/10.1021/acscentsci.0c00690
Khan, W. Z., Rehman, M. H., Zangoti, H. M., Afzal, M. K., Armi, N., & Salah, K. (2020). Industrial internet of things: Recent advances, enabling technologies and open challenges. Computers & Electrical Engineering, 81, 106522. https://doi.org/10.1016/j.compeleceng.2019.106522
Lezoche, M., Hernandez, J. E., Alemany Díaz, M. D. M. E., Panetto, H., & Kacprzyk, J. (2020). Agri-food 4.0: A survey of the supply chains and technologies for the future agriculture. Computers in Industry, 117, 103187. https://doi.org/10.1016/j.compind.2020.103187
Longo, F., Padovano, A., & Umbrello, S. (2020). Value-Oriented and Ethical Technology Engineering in Industry 5.0: A Human-Centric Perspective for the Design of the Factory of the Future. Applied Sciences, 10(12), 4182. https://doi.org/10.3390/app10124182
Luo, J., Gao, W., & Wang, Z. L. (2021). The Triboelectric Nanogenerator as an Innovative Technology toward Intelligent Sports. Advanced Materials, 33(17), 2004178. https://doi.org/10.1002/adma.202004178
Luo, Y., Abidian, M. R., Ahn, J.-H., Akinwande, D., Andrews, A. M., Antonietti, M., Bao, Z., Berggren, M., Berkey, C. A., Bettinger, C. J., Chen, J., Chen, P., Cheng, W., Cheng, X., Choi, S.-J., Chortos, A., Dagdeviren, C., Dauskardt, R. H., Di, C., … Chen, X. (2023). Technology Roadmap for Flexible Sensors. ACS Nano, 17(6), 5211–5295. https://doi.org/10.1021/acsnano.2c12606
Lv, C., Shao, C., & Lee, C.-C. (2021). Green technology innovation and financial development: Do environmental regulation and innovation output matter? Energy Economics, 98, 105237. https://doi.org/10.1016/j.eneco.2021.105237
Martín Martín, J. M., Salinas Fernández, J. A., Rodríguez Martín, J. A., & Ostos Rey, M. D. S. (2020). Analysis of Tourism Seasonality as a Factor Limiting the Sustainable Development of Rural Areas. Journal of Hospitality & Tourism Research, 44(1), 45–75. https://doi.org/10.1177/1096348019876688
Megía, P. J., Vizcaíno, A. J., Calles, J. A., & Carrero, A. (2021). Hydrogen Production Technologies: From Fossil Fuels toward Renewable Sources. A Mini Review. Energy & Fuels, 35(20), 16403–16415. https://doi.org/10.1021/acs.energyfuels.1c02501
Min, X., Xiao, J., Fang, M., Wang, W. (Alex), Zhao, Y., Liu, Y., Abdelkader, Amr. M., Xi, K., Kumar, R. V., & Huang, Z. (2021). Potassium-ion batteries: Outlook on present and future technologies. Energy & Environmental Science, 14(4), 2186–2243. https://doi.org/10.1039/D0EE02917C
Ren, W., Lin, G., Clarke, C., Zhou, J., & Jin, D. (2020). Optical Nanomaterials and Enabling Technologies for High?Security?Level Anticounterfeiting. Advanced Materials, 32(18), 1901430. https://doi.org/10.1002/adma.201901430
Rezania, S., Oryani, B., Cho, J., Talaiekhozani, A., Sabbagh, F., Hashemi, B., Rupani, P. F., & Mohammadi, A. A. (2020). Different pretreatment technologies of lignocellulosic biomass for bioethanol production: An overview. Energy, 199, 117457. https://doi.org/10.1016/j.energy.2020.117457
Rissman, J., Bataille, C., Masanet, E., Aden, N., Morrow, W. R., Zhou, N., Elliott, N., Dell, R., Heeren, N., Huckestein, B., Cresko, J., Miller, S. A., Roy, J., Fennell, P., Cremmins, B., Koch Blank, T., Hone, D., Williams, E. D., De La Rue Du Can, S., … Helseth, J. (2020). Technologies and policies to decarbonize global industry: Review and assessment of mitigation drivers through 2070. Applied Energy, 266, 114848. https://doi.org/10.1016/j.apenergy.2020.114848
Saadi, M. A. S. R., Maguire, A., Pottackal, N. T., Thakur, M. S. H., Ikram, M. Md., Hart, A. J., Ajayan, P. M., & Rahman, M. M. (2022). Direct Ink Writing: A 3D Printing Technology for Diverse Materials. Advanced Materials, 34(28), 2108855. https://doi.org/10.1002/adma.202108855
Shiva Kumar, S., & Lim, H. (2022). An overview of water electrolysis technologies for green hydrogen production. Energy Reports, 8, 13793–13813. https://doi.org/10.1016/j.egyr.2022.10.127
Sun, X., He, M., & Li, Z. (2020). Novel engineered wood and bamboo composites for structural applications: State-of-art of manufacturing technology and mechanical performance evaluation. Construction and Building Materials, 249, 118751. https://doi.org/10.1016/j.conbuildmat.2020.118751
Uyanna, O., & Najafi, H. (2020). Thermal protection systems for space vehicles: A review on technology development, current challenges and future prospects. Acta Astronautica, 176, 341–356. https://doi.org/10.1016/j.actaastro.2020.06.047
Wang, Y., & Li, P. (2022). Appraisal of shallow groundwater quality with human health risk assessment in different seasons in rural areas of the Guanzhong Plain (China). Environmental Research, 207, 112210. https://doi.org/10.1016/j.envres.2021.112210
White, M. T., Bianchi, G., Chai, L., Tassou, S. A., & Sayma, A. I. (2021). Review of supercritical CO 2 technologies and systems for power generation. Applied Thermal Engineering, 185, 116447. https://doi.org/10.1016/j.applthermaleng.2020.116447
Xiang, W., Zhang, X., Chen, J., Zou, W., He, F., Hu, X., Tsang, D. C. W., Ok, Y. S., & Gao, B. (2020). Biochar technology in wastewater treatment: A critical review. Chemosphere, 252, 126539. https://doi.org/10.1016/j.chemosphere.2020.126539
Zhang, L.-C., Chen, L.-Y., & Wang, L. (2020). Surface Modification of Titanium and Titanium Alloys: Technologies, Developments, and Future Interests. Advanced Engineering Materials, 22(5), 1901258. https://doi.org/10.1002/adem.201901258
Zhou, L., Fu, J., & He, Y. (2020). A Review of 3D Printing Technologies for Soft Polymer Materials. Advanced Functional Materials, 30(28), 2000187. https://doi.org/10.1002/adfm.202000187
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Copyright (c) 2025 Ahmad Hariri, Haziq Idris, Surya Syarifuddin, Roya Zahir

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