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INNOVATIVE TECHNOLOGICAL APPROACHES IN INDUSTRIAL OCCUPATIONAL HEALTH AND SAFETY: AN EXTENSIVE REVİEW

Year 2023, Volume: 10 Issue: 4, 1200 - 1217, 18.10.2023

Abstract

Technological transformations in the industrial sector have enabled the design and implementation of advanced devices that continuously monitor health and safety parameters of employees. This study addresses the new technological approaches and methodologies that have the capacity to meticulously track risk scenarios, vital indicators, physical parameters, employee locations, and individual behavioral tendencies within work processes. Using the PRISMA ScR method, this comprehensive review has gathered information from 99 scientific articles related to these technological shifts. The functional characteristics and applicabilities of devices aimed at optimizing the compliance of workers to health and safety standards were identified. The findings revealed significant contributions of technology in gathering and transmitting information. This information can be utilized to provide alerts and feedback for employees to adopt more conscious and safe behavioral patterns. Furthermore, recent technological advancements have been observed to produce devices that minimize operational risks by automating manual procedures.

References

  • Ahmad, Z., Patle, D., & Rangaiah, G. (2016). Operator training simulator for biodiesel synthesis from waste cooking oil. Process Safety and Environmental Protection, 99, 55–68.
  • Alsadik, B., & Khalaf, Y. H. (2022). Potential Use of Drone Ultra-High-Definition Videos for Detailed 3D City Modeling. ISPRS International Journal of Geo-Information, 11(1), 34.
  • Álvarez, E., Cubero-Atieza, A., Ruiz-Martinez, P., Vaquero-Abellán, M., Redel, M., & Aparicio-Martinez, P. (2020). Bibliometric Study of Technology and Occupational Health in Healthcare Sector: A Worldwide Trend to the Future. Environmental Research and Public Health, 17, 6732.
  • Araguillin, J. X., Escarabay, K. E., Trujillo, M. F., & Rosales, A. (2018). Mobile Application for Ergonomic Analysis of the Sitting Posture of the Torso. In Proceedings of the International Conference on Information Systems and Computer Science (INCISCOS), pp. 42–48.
  • Ariza, A., & Baltao, J. (2015). Ergonomic evaluation and design of a mobile application for maternal and infant health for smartphone users among lower-income class Filipinos. In Proceedings of the 6th International Conference on Applied Human Factors and Ergonomics (AHFE 2015) and the Affiliated Conferences, Volume 3, pp. 266–275.
  • Bastani, K., Kim, S., Kong, Z., Nussbaum, M. A., & Huang, W. (2016). Online classification and sensor selection optimization with applications to human material handling tasks using wearable sensing technologies. Biomechatronics, 46, 485–497.
  • Beverly, E., Hommema, L., Coates, K., Duncan, G., Gable, B., Gutman, T., Love, M., Love, C., Pershing, M., Stevens, N., & A tranquil virtual reality experience to reduce subjective stress among COVID-19 frontline healthcare workers. PLoS ONE, 17, e0262703.
  • Bottani, E., & Vignali, G. (2019). Augmented reality technology in the manufacturing industry: A review of the last decade. IISE Transactions, 51(3), 284–310.
  • Carrillo, R., Moscoso, M., Taype, A., Ruiz, A., & Bernabe, A. (2018). The use of unmanned aerial vehicles for health purposes: A systematic review of experimental studies. Global Health, Epidemiology and Genomics, 3, e13.
  • Chen, D., Cai, Y., Qian, X., Ansari, R., Xu, W., Chu, K. C., Huang, M. C., & Bring Gait Lab to Everyday Life: Gait Analysis in Terms of Activities of Daily Living. IEEE Internet of Things Journal, 7, 1298–1312.
  • Chen, M., Ma, Y., Song, J., Lai, C.-F., & Hu, B. (2016). Smart Clothing: Connecting Human with Clouds and Big Data for Sustainable Health Monitoring. Mobile Networks and Applications, 21, 825–845.
  • Chihming, W., Zexin, J., Songqing, H., & Zhongwei, Y. (2020). Investigation on the Eye-tracking Technology in Hazard Identification of Building Construction Engineering. Proceedings of the 2nd IEEE International Conference on Architecture, Construction, Environment and Hydraulics, 25–27 Aralık 2020, Hsinchu, Tayvan.
  • Choi, B., Hwang, S., & Lee, S. (2017). What drives construction workers’ acceptance of wearable technologies in the workplace? Indoor localization and wearable health devices for occupational safety and health. Automation in Construction, 84, 31–41.
  • Claesson, A., Fredman, D., Svensson, L., Ringh, M., Hollenberg, J., Nordberg, P., Rosenqvist, M., Djarv, T., Österberg, S., Lennartsson, J., et al. (2016). Unmanned aerial vehicles (drones) in out-of-hospital-cardiac arrest. Scandinavian Journal of Trauma, Resuscitation and Emergency Medicine, 24, 124.
  • Cochrane, C., Hertleer, C., & Schwarz-Pfeiffer, A. (2016). Smart Textiles and Their Applications. In Smart Textiles (s. 9–32). Woodhead Publishing.
  • De Fazio, R., Dinoi, L. M., De Vittorio, M., & Visconti, P. (2022). A Sensor-Based Drone for Pollutants Detection in Eco-Friendly Cities: Hardware Design and Data Analysis Application. Electronics, 11(1), 52.
  • Dhayaneshwar, K., Karthik, M., & Sharmila, B. (2017). Complete First Aid App. International Journal of Trendy Research in Engineering and Technology (IJTRET), 1, 3.
  • Dhinakaran, V., Gokhulabalan, B., Rahul Kumar, A., & Ravichandran, M. (2020). Advancement in materials for industrial safety helmets. Materials Today Proceedings, 27, 777–782.
  • Dillane, D., & Jo Anne, G. (2020). Comparison between OSHA-NIOSH Heat Safety Tool app and WBGT monitor to assess heat stress risk in agriculture. Journal of Occupational and Environmental Hygiene, 17, 181–192.
  • Duraisamy, J. (2020). Design and Analysis of Remotely Amphibious Drone. International Journal of Innovative Technology and Exploring Engineering, 9, 284–287.
  • Eriksen, M. B., & Frandsen, T. F. (2018). The impact of patient, intervention, comparison, outcome (PICO) as a search strategy tool on literature search quality: A systematic review. Journal of the Medical Library Association, 106(4), 420–431.
  • Ferrone, A., Napier, C., Menon, C., & Wearable technology to increase self-awareness of low back pain: A survey of technology needs among health care workers. Sensors, 21, 8412.
  • Flor, O., & Acosta-Vargas, P. (2023). Innovative Technologies for Safety and Health Occupational [Dataset]. Mendeley Data, V1. https://data.mendeley.com/datasets/gsm53nrgvb/1
  • Flores, E., & Da Silva, C. (2017). Innovation in the Workplace—Reinvigorating the Culture of Safety and Occupational Health: Contributions from a Literature Review. Engineering Science and Technology, an International Journal, 20, 372–380.
  • Fritzsche, L., Galibarov, P., Gärtner, C., Bornmann, J., Damsgaard, M., Wall, R., & Assessing the efficiency of exoskeletons in physical strain reduction by biomechanical simulation with AnyBody Modeling System. Wearable Technologies, 2, e6.
  • Gan, Y., Liu, S., & Zhu, W. (2011). Studies and Application of Heavy Equipment Fault Diagnosis System. Advanced Materials Research, 225, 399–402.
  • Godoy, J. C., Campos, I. J., Pérez, L. M., & Muñoz, L. R. (2018). Nonanthropomorphic exoskeleton with legs based on eight-bar linkages. International Journal of Advanced Robotic Systems, 15.
  • Google Play. (2023). Workers Health. https://play.google.com/store/apps/details?id=org.dreamonkey.workers_health.app&gl=US (Erişim tarihi: 20 Ocak 2023).
  • Grabowski, A., & Jankowski, J. (2015). Virtual Reality-based pilot training for underground coal miners. Safety Science, 72, 310–314.
  • Granger, S., & Turner, N. (2022). Adapting, adopting, and advancing change: A framework for future research in the psychology of occupational safety. Journal of Safety Research, 82, 38–47.
  • Gualandi, I., Tessarolo, M., Mariani, F., Possanzini, L., Scavetta, E., & Fraboni, B. (2021). Textile chemical sensors based on conductive polymers for the analysis of sweat. Polymers, 13, 894.
  • Guo, Y., Agrawal, S., Peeta, S., & Benedyk, I. (2021). Safety and health perceptions of location-based augmented reality gaming app and their implications. Accident Analysis & Prevention, 161, 106354.
  • Hayden, M., Barim, M., Weaver, D., Elliot, K., Flynn, M., Lincoln, J., & Occupational Safety and Health with Technological Developments in Livestock Farms: A Literature Review. International Journal of Environmental Research and Public Health, 19, 16440.
  • Hemavani, K., & Kumar, V. (2015). Temperature Programmable Suit using Thermoelectric Cooler/Heater. SSRG International Journal of Electronics and Engineering, 2(7).
  • Hiebert, B., Nouvet, E., Jeyabalan, V., & Donelle, L. (2022). The Application of Drones in Healthcare and Health-Related Services in North America: A Scoping Review. Drones, 4, 30.
  • Hoang, T., Greuter, S., Taylor, S., Aranda, G., & Mulvany, G. T. (2021). An Evaluation of Virtual Reality for Fear Arousal Safety Training in the Construction Industry. In Proceedings of the 2021 IEEE International Symposium on Mixed and Augmented Reality Adjunct (ISMAR-Adjunct) (s. 177–182). IEEE.
  • Hwang, S., & Lee, S. (2017). Wristband-type wearable health devices to measure construction workers’ physical demands. Automation in Construction, 80, 12–21.
  • INSST. (Çalışma Bakanlığı, Endüstriyel İş Güvenliği ve Sağlık Enstitüsü). (2023). Seguridad y Salud en el Trabajo con Nanomateriales. https://www.insst.es/documents/94886/514312/poster+sst+nanomateriales.pdf/443eb879-268b-4263-83ae-1db72ca11ce9?t=1605801005033 (Erişim tarihi: 10 Ocak 2023).
  • Jacobs, N., Roberts, B., Reamer, H., Mathis, C., Gaffney, S., & Neitzel, R. (2020). Noise exposures in different community settings measured by traditional dosimeter and smartphone app. Applied Acoustics, 167, 107408.
  • Jebelli, H., Choi, B., & Lee, S. H. (2019). Application of Wearable Biosensors to Construction Sites. I: Assessing Workers’ Stress. Journal of Biosensors and Bioelectronics, 145, 12.
  • Jebelli, H., Hwang, S., & Lee, S. (2018). EEG-based workers’ stress recognition at construction sites. Automation in Construction, 93, 315–324.
  • Johnsen, S., Bakken, T., Transeth, A., Holmstrøm, S., Merz, M., Grøtli, E. I., Jacobsen, S. R., & Storvold, R. (2020). Safety and security of drones in the oil and gas industry. In Proceedings of the 30th European Safety and Reliability Conference and the 15th Probabilistic Safety Assessment and Management Conference.
  • Jozef, S., & Ľudmila, B. (2013). Multifunctional fabric with Camouflage Print, Hydrophobic, Self-Cleaning and Antimicrobial Nanofinish. https://www.researchgate.net/publication/289041846_Multifunctional_fabric_with_camouflage_print_hydrophobic_self-cleaning_and_antimicrobial_nanofinish (Erişim tarihi: 12 Mayıs 2023).
  • Kaiser, M. S., Mahmud, M., Noor, M. B. T., Zenia, N. Z., Al Mamun, S., Mahmud, K. M. A., Azad, S., Aradhya, V. N. M., Stephan, P., Stephan, T., & iWorksafe: Towards Healthy Workplaces During COVID-19 With an Intelligent Phealth App for Industrial Settings. IEEE Access, 9, 13814–13828.
  • Kelm, A., Meins-Becker, A., & Helmus, M. (2019). Improving Occupational Health and Safety by Using Advanced Technologies and BIM. Proceedings of the International Structural Engineering and Construction, 20–25 Mayıs 2019, Chicago, IL, ABD.
  • Khairul, A., & Adel, A. (2022). Active Exoskeleton Control Systems: State of the Art. Procedia Engineering, 41, 988–994.
  • Khalid, M., & Knightly, E. (2022). Networked Drones for Industrial Emergency Events. Systems & Control Letters. doi:10.1016/j.sysconle.2022.103676
  • Kilshaw, A., & Jivan, S. (2021). Smartphone apps on burns first aid: A review of the advice. Burns, 47, 171–174.
  • Kim, J., Kim, N., Kwon, M., & Lee, J. (2017). Attachable Pulse Sensors Integrated with Inorganic Optoelectronic Devices for Monitoring Heart Rates at Various Body Locations. ACS Applied Materials & Interfaces, 9(31), 25700–25705.
  • Kim, Y., Yun, J., & Oh, T. (2022). Effectiveness Analysis for Smart Construction Safety Technology (SCST) by Test Bed Operation on Small- and Medium-Sized Construction Sites. Environmental Research and Public Health, 19, 5203.
  • Kinaneva, D., Hristov, G., Raychev, J., & Zahariev, P. (2019). Early Forest Fire Detection Using Drones and Artificial Intelligence. In Proceedings of the 2019 42nd International Convention on Information and Communication Technology, Electronics and Microelectronics (MIPRO), pp. 1060–1065.
  • Koźlak, M., Kurzeja, A., & Nawrat, A. (2013). Virtual Reality Technology for Military and Industry Training Programs. In A. Nawrat & Z. Kuś (Eds.), Vision Based Systems for UAV Applications (s. 481). Springer.
  • Le, Q., Pedro, A., & Park, C. (2015). A Social Virtual Reality-Based Construction Safety Education System for Experiential Learning. Journal of Intelligent & Robotic Systems, 79, 487–506.
  • Li, J. M., Molinaro, D. D., King, A. S., Mazumdar, A., & Young, A. J. (2022). Design and Validation of a Cable-Driven Asymmetric Back Exosuit. IEEE Transactions on Robotics, 38, 1489–1502.
  • Liu, P., Chen, A. Y., Huang, Y. N., Han, J. Y., Lai, J. S., Kang, S. C., Wu, T. H., Wen, M. C., & Tsai, M. H. (2014). A review of rotorcraft unmanned aerial vehicle (UAV) developments and applications in civil engineering. Smart Structures and Systems, 13, 1065–1094.
  • Masoud, G., & Esmaeili, B. (2016). Unmanned Aerial Systems (UAS) for Construction Safety Applications. In Proceedings of the 2016 Construction Research Congress, pp. 2642–2650.
  • Mayer, S., Lischke, L., & Wozniak, P. (2019). Drones for Search and Rescue. In Proceedings of the iHDI—International Workshop on Human-Drone Interaction, Glasgow, UK, 5 Mayıs 2019.
  • Mohammed, J., & Mahmud, J. (2020). Selection of a machine learning algorithm for OSHA fatalities. Proceedings of the 2020 IEEE Technology & Engineering Management Conference (TEMSCON), 3–6 Haziran 2020, Novi, MI, ABD.
  • Nahid, Y. L. (2021). Virtual and augmented reality technologies for emergency management in the built environments: A state-of-the-art review. Journal of Safety Science and Resilience, 2, 1–10.
  • Nakanishi, M., Taguchi, K.-I., & Okada, Y. (2010). Suggestions on the applicability of visual instructions with see-through head-mounted displays depending on the task. Applied Ergonomics, 42, 146–155.
  • Nazir, S., & Manca, D. (2014). Immersive Virtual Reality for Training and Decision Making: Preliminary Results of Experiments Performed With a Plant Simulator. SPE Economics & Management, 6, 165–172.
  • Niehaus, S., Hartwig, M., Rosen, P. H., & Wischniewski, S. (2022). An Occupational Safety and Health Perspective on Human in Control and AI. Frontiers in Artificial Intelligence, 8, 868382.
  • Nnaji, C., Awolusi, I., Park, J.W., & Albert, A. (2021). Wearable sensing devices: Towards the development of a personalized system for construction safety and health risk mitigation. Sensors, 21, 682.
  • Nooralishahi, P., Ibarra-Castanedo, C., Deane, S., López, F., Pant, S., Genest, M., Avdelidis, N. P., & Maldague, X. P. V. (2021). Drone-Based Non-Destructive Inspection of Industrial Sites: A Review and Case Studies. Drones, 5, 106.
  • Ometov, A., Shubina, V., Klus, L., Skibińska, J., Saafi, S., Pascacio, P., Flueratoru, L., Gaibor, D. Q., Chukhno, N., Chukhno, O., ve diğerleri. (2021). A Survey of Wearable Technology: History, State of the Art, and Current Challenges. Computer Networks, 193, 108074.
  • Papathoma-Koehle, M., Promper, C., Bojariu, R., Cica, R., Sik, A., Perge, K., László, P., Czikora, E. B., Dumitrescu, A.,
  • Turcus, C., et al. (2016). A common methodology for risk assessment and mapping for south-east Europe: An application for heat wave risk in Romania. Natural Hazards, 82, 89–109.
  • Park, H., Kim, K., Ghung, H., Jeong, S., Soh, J., Hyun, Y., & Kim, H. (2021). A Worker-Centered Personal Health Record App for Workplace Health Promotion Using National Health Care Data Sets: Design and Development Study. JMIR Public Health and Surveillance, 9, e29184.
  • Pattaraporn, K., Benjamas, S., & Orawit, T. (2018). First Aid Literacy Mobile Application Development. In Proceedings of the 8th International Conference on Information Communication and Management (ICICM ‘18), pp. 17–21.
  • Petz, P., Eibensteiner, F., & Langer, J. (2021). Sensor Shirt as Universal Platform for Real-Time Monitoring of Posture and Movements for Occupational Health and Ergonomics. Procedia Computer Science, 180, 200–207.
  • Poy, H. M., & Duffy, B. (2014). A Cloud-Enabled Building and Fire Emergency Evacuation Application. IEEE Cloud Computing, 1, 40–49.
  • PRISMA Statement. (2021). PRISMA for Scoping Reviews. http://www.prisma-statement.org/Extensions/ScopingReviews
  • Proffitt, R. (2023). Virtual Reality—Augmented Rehabilitation Lab. https://healthprofessions.missouri.edu/occupational-therapy/research/faculty-research-labs/virtual-reality-augmented-rehabilitation-lab/ (Erişim tarihi: 22 Ocak 2023).
  • Rajendran, S., Giridhar, S., Chaudhari, S., & Gupta, P. K. (2021). Technological advancements in occupational health and safety. Measurement and Sensors, 15, 100045.
  • Ranjan, A., Zhao, Y., & Misra, P. (2016). Opportunities and Challenges in Health Sensing for Extreme Industrial Environment: Perspectives from Underground Mines. IEEE Access, 4, 139181–139195.
  • Riccò, M., Ranzieri, S., Vezzosi, L., Balzarini, F., & Bragazzi, N. L. (2021). Wearable Exoskeletons on the Workplaces: Knowledge, Attitudes and Perspectives of Health and Safety Managers on the implementation of exoskeleton technology in Northern Italy. Acta Bio Medica, 92, e2021310.
  • Ricketts, M. (2015). Introduction to Sling Load Tension Calculations. Mitch Ricketts Northeastern State University.
  • Sadeghi, S., Soltanmohammadlou, N., & Nasirzadeh, F. (2021). Applications of wireless sensor networks to improve occupational safety and health in underground mines. Journal of Safety Research, 83, 8–25.
  • Schall, M., Sesek, R., & Cavuoto, L. (2018). Barriers to the Adoption of Wearable Sensors in the Workplace: A Survey of Occupational Safety and Health Professionals. Human Factors, 60, 351–362.
  • Simpson, L., Maharaj, M. M., & Mobbs, R. J. (2019). The role of wearables in spinal posture analysis: A systematic review. BMC Musculoskeletal Disorders, 20, 55.
  • Spies, C., Khalaf, A., & Hamam, Y. (2017). Development of a first aid smartphone app for use by untrained healthcare workers. African Journal of Information and Communication, 20, 31–47.
  • Sun, C., Buchholz, B., Quinn, M., Punnett, L., Galligan, C., & Gore, R. (2018). Ergonomic evaluation of slide boards used by home care aides to assist client transfers. Ergonomics, 61, 913–922.
  • Tamers, S. L., Streit, J., Pana-Cryan, R., Ray, T., Syron, L., Flynn, M. A., Castillo, D., Roth, G., Geraci, C., Guerin, R., ve diğerleri. (2020). Envisioning the future of work to safeguard the safety, health, and well-being of the workforce: A perspective from the CDC’s National Institute for Occupational Safety and Health. American Journal of Industrial Medicine, 63, 1065–1084.
  • Tarique, I., Briscoe, D. R., & Schuler, R. S. (2022). International Human Resource Management: Policies and Practices for Multinational Enterprises (6. baskı). Routledge.
  • Tender, M., Fuller, P., Vaughan, A., Long, M., Couto, J., Damien, P., Chow, V., Silva, F., Reis, F., & Reis, R. (2022). Lessons from implementation of Key Technological Developments to improve occupational safety and health processes in a complex UK-based construction project. IOP Conference Series: Earth and Environmental Science, 1101, 092016.
  • Thygerson, S., West, J., Rassbach, A., & Thygerson, A. (2012). iPhone Apps for First Aid: A Content Analysis. Journal of Consumer Health on the Internet, 16, 213–225.
  • Ulhaq, A., Born, J., Khan, A., Gomes, D. P. S., Chakraborty, S., & Paul, M. (2020). COVID-19 Control by Computer Vision Approaches: A Survey. IEEE Access, 8, 179437–179456.
  • Valero, E., Sivanathan, A., Bosché, F., Abdel-Wahab, M. (2016). Musculoskeletal disorders in construction: A review and a novel system for activity tracking with body area network. Applied Ergonomics, 54, 120–130.
  • Vukicevic, A., Macužic, I., Milicevic, V., & Shamina, L. (2021). Digital Training and Advanced Learning in Occupational Safety and Health Based on Modern and Affordable Technologies. Sustainability, 13, 13641.
  • Wahidi, S., Pribadi, T., Rajasa, W., & Arif, M. (2022). Virtual Reality Based Application for Safety Training at Shipyards. IOP Conference Series: Earth and Environmental Science, 972, 012025.
  • Wang, P., Zhang, X., Xing, S., Liu, T., & Zhang, C. (2019). Development and application of lifting and leveling system for space station. Journal of Physics: Conference Series, 1314, 012092.
  • Wang, Z., Wu, X., Zhang, Y., Chen, C., Liu, S., Liu, Y., Peng, A., & Ma, Y. (2021). A Semi-active Exoskeleton Based on EMGs Reduces Muscle Fatigue When Squatting. Frontiers in Neurorobotics, 15, 625479.
  • Xu, J., Lu, W., Wu, L., Lou, J., & Li, X. (2022). Balancing privacy and occupational safety and health in construction: A blockchain-enabled P-OSH deployment framework. Safety Science, 154, 105860.
  • Xu, Z., & Zheng, N. (2020). Incorporating Virtual Reality Technology in Safety Training Solution for Construction Site of Urban Cities. Sustainability, 13, 243.
  • Yang, L., Lu, K., Diaz-Olivares, J. A., Seoane, F., Lindecrantz, K., Forsman, M., Abtahi, F., & Eklund, J. A. E. (2018). Towards Smart Work Clothing for Automatic Risk Assessment of Physical Workload. IEEE Access, 6, 40059– 40072.
  • Yeung, A. W. K., Tosevska, A., Klager, E., Eibensteiner, F., Laxar, D., Stoyanov, J., Glisic, M., Zeiner, S., Kulnik, S. T., Crutzen, R., & Virtual and Augmented Reality Applications in Medicine: Analysis of the Scientific Literature. Journal of Medical Internet Research, 2, e25499.
  • Yeung, S. S. Y., Trappenburg, M. C., Meskers, C. G. M., Maier, A. B., & Reijnierse, E. M. (2020). The use of a portable metabolic monitoring device for measuring RMR in healthy adults. British Journal of Nutrition, 124, 1229–1240.
  • Zhang, M., Ghodrati, N., Poshdar, M., Seet, B., & Yongchareon, S. (2023). A construction accident prevention system based on the Internet of Things (IoT). Safety Science, 159, 106012.
  • Zhao, D., & Lucas, J. (2015). Virtual reality simulation for construction safety promotion. International Journal of Injury Control and Safety Promotion, 22, 57–67.
  • Zhao, W., Lun, R., Gordon, C., Fofana, A. B., Espy, D. D., Reinthal, M. A., Ekelman, B., Goodman, G. D., Niederriter, J. E., & Luo, X. (2017). A Human-Centered Activity Tracking System: Toward a Healthier Workplace. IEEE Transactions on Human-Machine Systems, 47, 343–355.
  • Zsofkovits, M., Cheng, S., Walder, F., & Heidenberger, K. (2012). Smartphone-Based Coordination Support for the Austrian Medical First Responder System. In Proceedings of the Third International Conference on Emerging Intelligent Data and Web Technologies, pp. 155–162.
  • Zwęgliński, T. (2020). The Use of Drones in Disaster Aerial Needs Reconnaissance and Damage Assessment—Three-Dimensional Modeling and Orthophoto Map Study. Sustainability, 12, 6080.

ENDÜSTRIYEL İŞ SAĞLIĞI VE GÜVENLIĞINDE YENILIKÇI TEKNOLOJIK YAKLAŞIMLAR: KAPSAMLI BIR İNCELEME

Year 2023, Volume: 10 Issue: 4, 1200 - 1217, 18.10.2023

Abstract

Endüstriyel alanda yaşanan teknolojik dönüşümler, çalışanların sağlık ve güvenlik parametrelerini sürekli izleyebilen ileri düzey cihazların tasarlanmasına ve uygulanmasına imkan tanımıştır. Bu çalışma, risk senaryolarını, vital göstergeleri, fiziksel parametreleri, çalışan konumlarını ve iş süreçleri içerisindeki bireysel davranış eğilimlerini detaylı şekilde takip etme kapasitesine sahip olan yeni teknolojik yaklaşımları ve metodolojileri ele almaktadır. PRISMA 2021 metodu kullanılarak yapılan bu kapsamlı inceleme, bu teknolojik dönüşümlere dair 99 bilimsel makale üzerinden bilgi toplamıştır. Çalışanların sağlık ve güvenlik standartlarına uyumluluğunu optimize etme amacı güden cihazların işlevsel özellikleri ve uygulanabilirlikleri tespit edilmiştir. Elde edilen bulgular, teknolojinin bilgi toplama ve transferi konusunda önemli katkılar sağladığını ortaya koymuştur. Bu bilgilerin, çalışanların daha bilinçli ve güvenli davranış biçimlerini benimsemeleri adına uyarılar ve geri dönütler sağlamak üzere kullanılabileceği belirlenmiştir. Ek olarak, son teknolojik gelişmelerin, manuel işlemleri otomatize ederek operasyonel riskleri minimize eden cihazlar ürettiği gözlemlenmiştir.

References

  • Ahmad, Z., Patle, D., & Rangaiah, G. (2016). Operator training simulator for biodiesel synthesis from waste cooking oil. Process Safety and Environmental Protection, 99, 55–68.
  • Alsadik, B., & Khalaf, Y. H. (2022). Potential Use of Drone Ultra-High-Definition Videos for Detailed 3D City Modeling. ISPRS International Journal of Geo-Information, 11(1), 34.
  • Álvarez, E., Cubero-Atieza, A., Ruiz-Martinez, P., Vaquero-Abellán, M., Redel, M., & Aparicio-Martinez, P. (2020). Bibliometric Study of Technology and Occupational Health in Healthcare Sector: A Worldwide Trend to the Future. Environmental Research and Public Health, 17, 6732.
  • Araguillin, J. X., Escarabay, K. E., Trujillo, M. F., & Rosales, A. (2018). Mobile Application for Ergonomic Analysis of the Sitting Posture of the Torso. In Proceedings of the International Conference on Information Systems and Computer Science (INCISCOS), pp. 42–48.
  • Ariza, A., & Baltao, J. (2015). Ergonomic evaluation and design of a mobile application for maternal and infant health for smartphone users among lower-income class Filipinos. In Proceedings of the 6th International Conference on Applied Human Factors and Ergonomics (AHFE 2015) and the Affiliated Conferences, Volume 3, pp. 266–275.
  • Bastani, K., Kim, S., Kong, Z., Nussbaum, M. A., & Huang, W. (2016). Online classification and sensor selection optimization with applications to human material handling tasks using wearable sensing technologies. Biomechatronics, 46, 485–497.
  • Beverly, E., Hommema, L., Coates, K., Duncan, G., Gable, B., Gutman, T., Love, M., Love, C., Pershing, M., Stevens, N., & A tranquil virtual reality experience to reduce subjective stress among COVID-19 frontline healthcare workers. PLoS ONE, 17, e0262703.
  • Bottani, E., & Vignali, G. (2019). Augmented reality technology in the manufacturing industry: A review of the last decade. IISE Transactions, 51(3), 284–310.
  • Carrillo, R., Moscoso, M., Taype, A., Ruiz, A., & Bernabe, A. (2018). The use of unmanned aerial vehicles for health purposes: A systematic review of experimental studies. Global Health, Epidemiology and Genomics, 3, e13.
  • Chen, D., Cai, Y., Qian, X., Ansari, R., Xu, W., Chu, K. C., Huang, M. C., & Bring Gait Lab to Everyday Life: Gait Analysis in Terms of Activities of Daily Living. IEEE Internet of Things Journal, 7, 1298–1312.
  • Chen, M., Ma, Y., Song, J., Lai, C.-F., & Hu, B. (2016). Smart Clothing: Connecting Human with Clouds and Big Data for Sustainable Health Monitoring. Mobile Networks and Applications, 21, 825–845.
  • Chihming, W., Zexin, J., Songqing, H., & Zhongwei, Y. (2020). Investigation on the Eye-tracking Technology in Hazard Identification of Building Construction Engineering. Proceedings of the 2nd IEEE International Conference on Architecture, Construction, Environment and Hydraulics, 25–27 Aralık 2020, Hsinchu, Tayvan.
  • Choi, B., Hwang, S., & Lee, S. (2017). What drives construction workers’ acceptance of wearable technologies in the workplace? Indoor localization and wearable health devices for occupational safety and health. Automation in Construction, 84, 31–41.
  • Claesson, A., Fredman, D., Svensson, L., Ringh, M., Hollenberg, J., Nordberg, P., Rosenqvist, M., Djarv, T., Österberg, S., Lennartsson, J., et al. (2016). Unmanned aerial vehicles (drones) in out-of-hospital-cardiac arrest. Scandinavian Journal of Trauma, Resuscitation and Emergency Medicine, 24, 124.
  • Cochrane, C., Hertleer, C., & Schwarz-Pfeiffer, A. (2016). Smart Textiles and Their Applications. In Smart Textiles (s. 9–32). Woodhead Publishing.
  • De Fazio, R., Dinoi, L. M., De Vittorio, M., & Visconti, P. (2022). A Sensor-Based Drone for Pollutants Detection in Eco-Friendly Cities: Hardware Design and Data Analysis Application. Electronics, 11(1), 52.
  • Dhayaneshwar, K., Karthik, M., & Sharmila, B. (2017). Complete First Aid App. International Journal of Trendy Research in Engineering and Technology (IJTRET), 1, 3.
  • Dhinakaran, V., Gokhulabalan, B., Rahul Kumar, A., & Ravichandran, M. (2020). Advancement in materials for industrial safety helmets. Materials Today Proceedings, 27, 777–782.
  • Dillane, D., & Jo Anne, G. (2020). Comparison between OSHA-NIOSH Heat Safety Tool app and WBGT monitor to assess heat stress risk in agriculture. Journal of Occupational and Environmental Hygiene, 17, 181–192.
  • Duraisamy, J. (2020). Design and Analysis of Remotely Amphibious Drone. International Journal of Innovative Technology and Exploring Engineering, 9, 284–287.
  • Eriksen, M. B., & Frandsen, T. F. (2018). The impact of patient, intervention, comparison, outcome (PICO) as a search strategy tool on literature search quality: A systematic review. Journal of the Medical Library Association, 106(4), 420–431.
  • Ferrone, A., Napier, C., Menon, C., & Wearable technology to increase self-awareness of low back pain: A survey of technology needs among health care workers. Sensors, 21, 8412.
  • Flor, O., & Acosta-Vargas, P. (2023). Innovative Technologies for Safety and Health Occupational [Dataset]. Mendeley Data, V1. https://data.mendeley.com/datasets/gsm53nrgvb/1
  • Flores, E., & Da Silva, C. (2017). Innovation in the Workplace—Reinvigorating the Culture of Safety and Occupational Health: Contributions from a Literature Review. Engineering Science and Technology, an International Journal, 20, 372–380.
  • Fritzsche, L., Galibarov, P., Gärtner, C., Bornmann, J., Damsgaard, M., Wall, R., & Assessing the efficiency of exoskeletons in physical strain reduction by biomechanical simulation with AnyBody Modeling System. Wearable Technologies, 2, e6.
  • Gan, Y., Liu, S., & Zhu, W. (2011). Studies and Application of Heavy Equipment Fault Diagnosis System. Advanced Materials Research, 225, 399–402.
  • Godoy, J. C., Campos, I. J., Pérez, L. M., & Muñoz, L. R. (2018). Nonanthropomorphic exoskeleton with legs based on eight-bar linkages. International Journal of Advanced Robotic Systems, 15.
  • Google Play. (2023). Workers Health. https://play.google.com/store/apps/details?id=org.dreamonkey.workers_health.app&gl=US (Erişim tarihi: 20 Ocak 2023).
  • Grabowski, A., & Jankowski, J. (2015). Virtual Reality-based pilot training for underground coal miners. Safety Science, 72, 310–314.
  • Granger, S., & Turner, N. (2022). Adapting, adopting, and advancing change: A framework for future research in the psychology of occupational safety. Journal of Safety Research, 82, 38–47.
  • Gualandi, I., Tessarolo, M., Mariani, F., Possanzini, L., Scavetta, E., & Fraboni, B. (2021). Textile chemical sensors based on conductive polymers for the analysis of sweat. Polymers, 13, 894.
  • Guo, Y., Agrawal, S., Peeta, S., & Benedyk, I. (2021). Safety and health perceptions of location-based augmented reality gaming app and their implications. Accident Analysis & Prevention, 161, 106354.
  • Hayden, M., Barim, M., Weaver, D., Elliot, K., Flynn, M., Lincoln, J., & Occupational Safety and Health with Technological Developments in Livestock Farms: A Literature Review. International Journal of Environmental Research and Public Health, 19, 16440.
  • Hemavani, K., & Kumar, V. (2015). Temperature Programmable Suit using Thermoelectric Cooler/Heater. SSRG International Journal of Electronics and Engineering, 2(7).
  • Hiebert, B., Nouvet, E., Jeyabalan, V., & Donelle, L. (2022). The Application of Drones in Healthcare and Health-Related Services in North America: A Scoping Review. Drones, 4, 30.
  • Hoang, T., Greuter, S., Taylor, S., Aranda, G., & Mulvany, G. T. (2021). An Evaluation of Virtual Reality for Fear Arousal Safety Training in the Construction Industry. In Proceedings of the 2021 IEEE International Symposium on Mixed and Augmented Reality Adjunct (ISMAR-Adjunct) (s. 177–182). IEEE.
  • Hwang, S., & Lee, S. (2017). Wristband-type wearable health devices to measure construction workers’ physical demands. Automation in Construction, 80, 12–21.
  • INSST. (Çalışma Bakanlığı, Endüstriyel İş Güvenliği ve Sağlık Enstitüsü). (2023). Seguridad y Salud en el Trabajo con Nanomateriales. https://www.insst.es/documents/94886/514312/poster+sst+nanomateriales.pdf/443eb879-268b-4263-83ae-1db72ca11ce9?t=1605801005033 (Erişim tarihi: 10 Ocak 2023).
  • Jacobs, N., Roberts, B., Reamer, H., Mathis, C., Gaffney, S., & Neitzel, R. (2020). Noise exposures in different community settings measured by traditional dosimeter and smartphone app. Applied Acoustics, 167, 107408.
  • Jebelli, H., Choi, B., & Lee, S. H. (2019). Application of Wearable Biosensors to Construction Sites. I: Assessing Workers’ Stress. Journal of Biosensors and Bioelectronics, 145, 12.
  • Jebelli, H., Hwang, S., & Lee, S. (2018). EEG-based workers’ stress recognition at construction sites. Automation in Construction, 93, 315–324.
  • Johnsen, S., Bakken, T., Transeth, A., Holmstrøm, S., Merz, M., Grøtli, E. I., Jacobsen, S. R., & Storvold, R. (2020). Safety and security of drones in the oil and gas industry. In Proceedings of the 30th European Safety and Reliability Conference and the 15th Probabilistic Safety Assessment and Management Conference.
  • Jozef, S., & Ľudmila, B. (2013). Multifunctional fabric with Camouflage Print, Hydrophobic, Self-Cleaning and Antimicrobial Nanofinish. https://www.researchgate.net/publication/289041846_Multifunctional_fabric_with_camouflage_print_hydrophobic_self-cleaning_and_antimicrobial_nanofinish (Erişim tarihi: 12 Mayıs 2023).
  • Kaiser, M. S., Mahmud, M., Noor, M. B. T., Zenia, N. Z., Al Mamun, S., Mahmud, K. M. A., Azad, S., Aradhya, V. N. M., Stephan, P., Stephan, T., & iWorksafe: Towards Healthy Workplaces During COVID-19 With an Intelligent Phealth App for Industrial Settings. IEEE Access, 9, 13814–13828.
  • Kelm, A., Meins-Becker, A., & Helmus, M. (2019). Improving Occupational Health and Safety by Using Advanced Technologies and BIM. Proceedings of the International Structural Engineering and Construction, 20–25 Mayıs 2019, Chicago, IL, ABD.
  • Khairul, A., & Adel, A. (2022). Active Exoskeleton Control Systems: State of the Art. Procedia Engineering, 41, 988–994.
  • Khalid, M., & Knightly, E. (2022). Networked Drones for Industrial Emergency Events. Systems & Control Letters. doi:10.1016/j.sysconle.2022.103676
  • Kilshaw, A., & Jivan, S. (2021). Smartphone apps on burns first aid: A review of the advice. Burns, 47, 171–174.
  • Kim, J., Kim, N., Kwon, M., & Lee, J. (2017). Attachable Pulse Sensors Integrated with Inorganic Optoelectronic Devices for Monitoring Heart Rates at Various Body Locations. ACS Applied Materials & Interfaces, 9(31), 25700–25705.
  • Kim, Y., Yun, J., & Oh, T. (2022). Effectiveness Analysis for Smart Construction Safety Technology (SCST) by Test Bed Operation on Small- and Medium-Sized Construction Sites. Environmental Research and Public Health, 19, 5203.
  • Kinaneva, D., Hristov, G., Raychev, J., & Zahariev, P. (2019). Early Forest Fire Detection Using Drones and Artificial Intelligence. In Proceedings of the 2019 42nd International Convention on Information and Communication Technology, Electronics and Microelectronics (MIPRO), pp. 1060–1065.
  • Koźlak, M., Kurzeja, A., & Nawrat, A. (2013). Virtual Reality Technology for Military and Industry Training Programs. In A. Nawrat & Z. Kuś (Eds.), Vision Based Systems for UAV Applications (s. 481). Springer.
  • Le, Q., Pedro, A., & Park, C. (2015). A Social Virtual Reality-Based Construction Safety Education System for Experiential Learning. Journal of Intelligent & Robotic Systems, 79, 487–506.
  • Li, J. M., Molinaro, D. D., King, A. S., Mazumdar, A., & Young, A. J. (2022). Design and Validation of a Cable-Driven Asymmetric Back Exosuit. IEEE Transactions on Robotics, 38, 1489–1502.
  • Liu, P., Chen, A. Y., Huang, Y. N., Han, J. Y., Lai, J. S., Kang, S. C., Wu, T. H., Wen, M. C., & Tsai, M. H. (2014). A review of rotorcraft unmanned aerial vehicle (UAV) developments and applications in civil engineering. Smart Structures and Systems, 13, 1065–1094.
  • Masoud, G., & Esmaeili, B. (2016). Unmanned Aerial Systems (UAS) for Construction Safety Applications. In Proceedings of the 2016 Construction Research Congress, pp. 2642–2650.
  • Mayer, S., Lischke, L., & Wozniak, P. (2019). Drones for Search and Rescue. In Proceedings of the iHDI—International Workshop on Human-Drone Interaction, Glasgow, UK, 5 Mayıs 2019.
  • Mohammed, J., & Mahmud, J. (2020). Selection of a machine learning algorithm for OSHA fatalities. Proceedings of the 2020 IEEE Technology & Engineering Management Conference (TEMSCON), 3–6 Haziran 2020, Novi, MI, ABD.
  • Nahid, Y. L. (2021). Virtual and augmented reality technologies for emergency management in the built environments: A state-of-the-art review. Journal of Safety Science and Resilience, 2, 1–10.
  • Nakanishi, M., Taguchi, K.-I., & Okada, Y. (2010). Suggestions on the applicability of visual instructions with see-through head-mounted displays depending on the task. Applied Ergonomics, 42, 146–155.
  • Nazir, S., & Manca, D. (2014). Immersive Virtual Reality for Training and Decision Making: Preliminary Results of Experiments Performed With a Plant Simulator. SPE Economics & Management, 6, 165–172.
  • Niehaus, S., Hartwig, M., Rosen, P. H., & Wischniewski, S. (2022). An Occupational Safety and Health Perspective on Human in Control and AI. Frontiers in Artificial Intelligence, 8, 868382.
  • Nnaji, C., Awolusi, I., Park, J.W., & Albert, A. (2021). Wearable sensing devices: Towards the development of a personalized system for construction safety and health risk mitigation. Sensors, 21, 682.
  • Nooralishahi, P., Ibarra-Castanedo, C., Deane, S., López, F., Pant, S., Genest, M., Avdelidis, N. P., & Maldague, X. P. V. (2021). Drone-Based Non-Destructive Inspection of Industrial Sites: A Review and Case Studies. Drones, 5, 106.
  • Ometov, A., Shubina, V., Klus, L., Skibińska, J., Saafi, S., Pascacio, P., Flueratoru, L., Gaibor, D. Q., Chukhno, N., Chukhno, O., ve diğerleri. (2021). A Survey of Wearable Technology: History, State of the Art, and Current Challenges. Computer Networks, 193, 108074.
  • Papathoma-Koehle, M., Promper, C., Bojariu, R., Cica, R., Sik, A., Perge, K., László, P., Czikora, E. B., Dumitrescu, A.,
  • Turcus, C., et al. (2016). A common methodology for risk assessment and mapping for south-east Europe: An application for heat wave risk in Romania. Natural Hazards, 82, 89–109.
  • Park, H., Kim, K., Ghung, H., Jeong, S., Soh, J., Hyun, Y., & Kim, H. (2021). A Worker-Centered Personal Health Record App for Workplace Health Promotion Using National Health Care Data Sets: Design and Development Study. JMIR Public Health and Surveillance, 9, e29184.
  • Pattaraporn, K., Benjamas, S., & Orawit, T. (2018). First Aid Literacy Mobile Application Development. In Proceedings of the 8th International Conference on Information Communication and Management (ICICM ‘18), pp. 17–21.
  • Petz, P., Eibensteiner, F., & Langer, J. (2021). Sensor Shirt as Universal Platform for Real-Time Monitoring of Posture and Movements for Occupational Health and Ergonomics. Procedia Computer Science, 180, 200–207.
  • Poy, H. M., & Duffy, B. (2014). A Cloud-Enabled Building and Fire Emergency Evacuation Application. IEEE Cloud Computing, 1, 40–49.
  • PRISMA Statement. (2021). PRISMA for Scoping Reviews. http://www.prisma-statement.org/Extensions/ScopingReviews
  • Proffitt, R. (2023). Virtual Reality—Augmented Rehabilitation Lab. https://healthprofessions.missouri.edu/occupational-therapy/research/faculty-research-labs/virtual-reality-augmented-rehabilitation-lab/ (Erişim tarihi: 22 Ocak 2023).
  • Rajendran, S., Giridhar, S., Chaudhari, S., & Gupta, P. K. (2021). Technological advancements in occupational health and safety. Measurement and Sensors, 15, 100045.
  • Ranjan, A., Zhao, Y., & Misra, P. (2016). Opportunities and Challenges in Health Sensing for Extreme Industrial Environment: Perspectives from Underground Mines. IEEE Access, 4, 139181–139195.
  • Riccò, M., Ranzieri, S., Vezzosi, L., Balzarini, F., & Bragazzi, N. L. (2021). Wearable Exoskeletons on the Workplaces: Knowledge, Attitudes and Perspectives of Health and Safety Managers on the implementation of exoskeleton technology in Northern Italy. Acta Bio Medica, 92, e2021310.
  • Ricketts, M. (2015). Introduction to Sling Load Tension Calculations. Mitch Ricketts Northeastern State University.
  • Sadeghi, S., Soltanmohammadlou, N., & Nasirzadeh, F. (2021). Applications of wireless sensor networks to improve occupational safety and health in underground mines. Journal of Safety Research, 83, 8–25.
  • Schall, M., Sesek, R., & Cavuoto, L. (2018). Barriers to the Adoption of Wearable Sensors in the Workplace: A Survey of Occupational Safety and Health Professionals. Human Factors, 60, 351–362.
  • Simpson, L., Maharaj, M. M., & Mobbs, R. J. (2019). The role of wearables in spinal posture analysis: A systematic review. BMC Musculoskeletal Disorders, 20, 55.
  • Spies, C., Khalaf, A., & Hamam, Y. (2017). Development of a first aid smartphone app for use by untrained healthcare workers. African Journal of Information and Communication, 20, 31–47.
  • Sun, C., Buchholz, B., Quinn, M., Punnett, L., Galligan, C., & Gore, R. (2018). Ergonomic evaluation of slide boards used by home care aides to assist client transfers. Ergonomics, 61, 913–922.
  • Tamers, S. L., Streit, J., Pana-Cryan, R., Ray, T., Syron, L., Flynn, M. A., Castillo, D., Roth, G., Geraci, C., Guerin, R., ve diğerleri. (2020). Envisioning the future of work to safeguard the safety, health, and well-being of the workforce: A perspective from the CDC’s National Institute for Occupational Safety and Health. American Journal of Industrial Medicine, 63, 1065–1084.
  • Tarique, I., Briscoe, D. R., & Schuler, R. S. (2022). International Human Resource Management: Policies and Practices for Multinational Enterprises (6. baskı). Routledge.
  • Tender, M., Fuller, P., Vaughan, A., Long, M., Couto, J., Damien, P., Chow, V., Silva, F., Reis, F., & Reis, R. (2022). Lessons from implementation of Key Technological Developments to improve occupational safety and health processes in a complex UK-based construction project. IOP Conference Series: Earth and Environmental Science, 1101, 092016.
  • Thygerson, S., West, J., Rassbach, A., & Thygerson, A. (2012). iPhone Apps for First Aid: A Content Analysis. Journal of Consumer Health on the Internet, 16, 213–225.
  • Ulhaq, A., Born, J., Khan, A., Gomes, D. P. S., Chakraborty, S., & Paul, M. (2020). COVID-19 Control by Computer Vision Approaches: A Survey. IEEE Access, 8, 179437–179456.
  • Valero, E., Sivanathan, A., Bosché, F., Abdel-Wahab, M. (2016). Musculoskeletal disorders in construction: A review and a novel system for activity tracking with body area network. Applied Ergonomics, 54, 120–130.
  • Vukicevic, A., Macužic, I., Milicevic, V., & Shamina, L. (2021). Digital Training and Advanced Learning in Occupational Safety and Health Based on Modern and Affordable Technologies. Sustainability, 13, 13641.
  • Wahidi, S., Pribadi, T., Rajasa, W., & Arif, M. (2022). Virtual Reality Based Application for Safety Training at Shipyards. IOP Conference Series: Earth and Environmental Science, 972, 012025.
  • Wang, P., Zhang, X., Xing, S., Liu, T., & Zhang, C. (2019). Development and application of lifting and leveling system for space station. Journal of Physics: Conference Series, 1314, 012092.
  • Wang, Z., Wu, X., Zhang, Y., Chen, C., Liu, S., Liu, Y., Peng, A., & Ma, Y. (2021). A Semi-active Exoskeleton Based on EMGs Reduces Muscle Fatigue When Squatting. Frontiers in Neurorobotics, 15, 625479.
  • Xu, J., Lu, W., Wu, L., Lou, J., & Li, X. (2022). Balancing privacy and occupational safety and health in construction: A blockchain-enabled P-OSH deployment framework. Safety Science, 154, 105860.
  • Xu, Z., & Zheng, N. (2020). Incorporating Virtual Reality Technology in Safety Training Solution for Construction Site of Urban Cities. Sustainability, 13, 243.
  • Yang, L., Lu, K., Diaz-Olivares, J. A., Seoane, F., Lindecrantz, K., Forsman, M., Abtahi, F., & Eklund, J. A. E. (2018). Towards Smart Work Clothing for Automatic Risk Assessment of Physical Workload. IEEE Access, 6, 40059– 40072.
  • Yeung, A. W. K., Tosevska, A., Klager, E., Eibensteiner, F., Laxar, D., Stoyanov, J., Glisic, M., Zeiner, S., Kulnik, S. T., Crutzen, R., & Virtual and Augmented Reality Applications in Medicine: Analysis of the Scientific Literature. Journal of Medical Internet Research, 2, e25499.
  • Yeung, S. S. Y., Trappenburg, M. C., Meskers, C. G. M., Maier, A. B., & Reijnierse, E. M. (2020). The use of a portable metabolic monitoring device for measuring RMR in healthy adults. British Journal of Nutrition, 124, 1229–1240.
  • Zhang, M., Ghodrati, N., Poshdar, M., Seet, B., & Yongchareon, S. (2023). A construction accident prevention system based on the Internet of Things (IoT). Safety Science, 159, 106012.
  • Zhao, D., & Lucas, J. (2015). Virtual reality simulation for construction safety promotion. International Journal of Injury Control and Safety Promotion, 22, 57–67.
  • Zhao, W., Lun, R., Gordon, C., Fofana, A. B., Espy, D. D., Reinthal, M. A., Ekelman, B., Goodman, G. D., Niederriter, J. E., & Luo, X. (2017). A Human-Centered Activity Tracking System: Toward a Healthier Workplace. IEEE Transactions on Human-Machine Systems, 47, 343–355.
  • Zsofkovits, M., Cheng, S., Walder, F., & Heidenberger, K. (2012). Smartphone-Based Coordination Support for the Austrian Medical First Responder System. In Proceedings of the Third International Conference on Emerging Intelligent Data and Web Technologies, pp. 155–162.
  • Zwęgliński, T. (2020). The Use of Drones in Disaster Aerial Needs Reconnaissance and Damage Assessment—Three-Dimensional Modeling and Orthophoto Map Study. Sustainability, 12, 6080.
There are 102 citations in total.

Details

Primary Language English
Subjects Business Systems in Context (Other)
Journal Section Research Article
Authors

Cengiz Akyıldız 0000-0001-8004-1037

Publication Date October 18, 2023
Published in Issue Year 2023 Volume: 10 Issue: 4

Cite

APA Akyıldız, C. (2023). INNOVATIVE TECHNOLOGICAL APPROACHES IN INDUSTRIAL OCCUPATIONAL HEALTH AND SAFETY: AN EXTENSIVE REVİEW. Avrasya Sosyal Ve Ekonomi Araştırmaları Dergisi, 10(4), 1200-1217.