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Difference in the magnitude of power saw vibrations affecting the operator during forest felling

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Albizu-Urionabarrenetxea, P., Tolosana-Esteban, E., Roman-Jordan, E., 2013: Safety and health in forest harvesting operations. Diagnosis and preventive actions. A review. Forest Systems, 22:392–400.Search in Google Scholar

Bačić, M., Landekić, M., Šušnjar, M., Šporčić, M., Pandur, Z., 2023: Vibration levels and daily vibration exposure while using different tools in a forest cleaning. Central European Forestry Journal, 69:49–58.Search in Google Scholar

Dimou, V., Kantartzis, A., Malesios, C., Kasampalis, E., 2019: Research of exhaust emissions by chainsaws with the use of a portable emission measurement system. International Journal of Engineering, 30:228–239.Search in Google Scholar

Feyzi, M., Jafari, A., Ahmadi, H., 2016: Investigation and analysis the vibration of handles of chainsaw without cutting. Journal of Agricultural Machinery, 6:90–101.Search in Google Scholar

Fonseca, A., Aghazadeh, F., Hoop, C., Ikuma, L., Al- Qaisi, S., 2015: Effect of noise emitted by forestry equipment on workers’ hearing capacity. International Journal of Industrial Ergonomics, 46:105–112.Search in Google Scholar

Gallis, C., 2006: Work-related prevalence of musculoskeletal symptoms among Greek forest workers. International Journal of Industrial Ergonomics, 36:731–736.Search in Google Scholar

Goglia, V., Suchomel, J., Žgela, J., Dukić, I., 2012: The effectiveness of forest pre-commercial thinning in the context of Directive 2002/44/EC. Sumarski List, 136:471–478.Search in Google Scholar

Goglia, V., Žgela, J., Dukić, I., 2008: The effectiveness of anti-vibration gloves: Part I. Sumarski List, 132:115–119.Search in Google Scholar

Griffin, M. J., 2004: Minimum health and safety requirements for workers exposed to hand-transmitted vibration and whole-body vibration in the European Union, a review. Occupational and Environmental Medicine, 61:387–397.Search in Google Scholar

Hooper, B., Parker, R., Todoroki, C., 2017: Exploring chainsaw operator occupational exposure to carbon monoxide in forestry. Journal of Occupational and Environmental Hygiene, 14:1–12.Search in Google Scholar

Iftime, M. D., Dumitrascu, A. E., Ciobanu, V. D., 2022: Chainsaw operators’ exposure to occupational risk factors and incidence of professional diseases specific to the forestry field. International Journal of Occupational Safety and Ergonomics, 28:8–19.Search in Google Scholar

Kaljun, D. B., 2012: Ergonomic design recommendations based on an actual chainsaw design. South African Journal of Industrial Engineering, 23:215–229.Search in Google Scholar

Kirisits, C., Lechner, C., Kirisits, H., 2018: Impact of uncertainties related to noise indicator determination on observed exposure–effect relationship. Noise Health, 20:212–216.Search in Google Scholar

Kováč, J., Krilek, J., Dado, M., Beňo, P., 2018: Investigating the influence of design factors on noise and vibrations in the case ofchainsaws for forestry work. FME Transactions, 46:513–519.Search in Google Scholar

Landekić, M., Bačić, M., Pandur, Z., Šušnjar, M., 2020: Vibration Levels of Used Chainsaws. Forests, 11:249.Search in Google Scholar

Landekić, M., Katuša, S., Mijoč, D., Šporčić, M., 2019: Assessment and Comparison of Machine Operators’ Working Posture in Forest Thinning. South-east European Forestry, 10:29–37.Search in Google Scholar

Laschi, A., Marchi, E., Foderi, C., Neri, F., 2016: Identifying causes, dynamics and consequences of work accidents in forest operations in an alpine context. Safety Science, 89:28–35.Search in Google Scholar

Magnusson, R., Nilsson, C., 2011: The influence of oxygenated fuels on emissions of aldehydes and ketones from a two-stroke spark ignition engine. Fuel, 90:1145–1154.Search in Google Scholar

Malinowska-Borowska, J., Harazin, B., Zieliński, G., 2012: Measuring coupling forces woodcutters exert on saws in real working conditions. International Journal of Occupational Safety and Ergonomics, 18:77–83.Search in Google Scholar

Malinowska-Borowska, J., Socholik, V., Harazin, B., 2012: The health condition of forest workers exposed to noise and vibration produced by chain saws. Medy- cyna Pracy, 63:19–29.Search in Google Scholar

Malinowska-Borowska, J., Zieliński, G., 2013: Coupling forces exerted on chain saws by inexperienced tree fellers. International Journal of Industrial Ergonomics, 43:283-287.Search in Google Scholar

Marenče, J., Mihelič, M., Poje, A., 2017: Influence of chain filing, tree species and chain type on cross cutting efficiency and health risk. Forests, 8:464.Search in Google Scholar

Marchi, E., Neri, F., Cambi, M., Laschi, A., Foderi, C., Sciarra, G. et al., 2017: Analysis of dust exposure during chainsaw forest operations. iForest, 10:341–347.Search in Google Scholar

Mohammadfam, I., Kamalinia, M., Momeni, M., Golmo- hammadi, R., Hamidi, Y., Soltanian, A., 2017: Evaluation of the quality of occupational health and safety management systems based on key performance indicators in certified organizations. Safety and Health at Work, 8:156–161.Search in Google Scholar

Neitzel, R., Yost, M., 2002: Task-based assessment of occupational vibration and noise exposure in forestry workers. AIHA Journal, 63:617–627.Search in Google Scholar

Neri, F., Foderi, C., Laschi, A., Fabiano, F., Cambi, M., Sciarra, G. et al., 2016: Determining exhaust fumes exposure in chainsaw operations. Environmental Pollution, 218:1162–1169.Search in Google Scholar

Neri, F., Laschi, A., Foderi, C., Fabiano, F., Bertuzzi, L., Marchi, E., 2018: Determining Noise and Vibration Exposure in Conifer Cross-Cutting Operations by Using Li-Ion Batteries and Electric Chainsaws. Forests, 9:501.Search in Google Scholar

Neruda, J., Černý, Z., 2006: Motorová pila a křovinořez. Praha, Ústav zem?dëlských a potravinářských infor- mací, 90 p. (In Czech).Search in Google Scholar

Neruda, J., Nevrkla, P., Cach, A., 2015: Práce s motoro- vou pilou a křovinořezem: učební text pro předmët Práce s motorovou pilou. Brno, Mendelova Univer- zita v Brnë, 128 p. (In Czech).Search in Google Scholar

Poje, A., Grigolato, S., Potočnik, I., 2019: Operator exposure to noise and whole-body vibration in a fully mechanised CTL forest harvesting system in Karst Terrain. Croatian Journal of Forest Engineering, 40:139–150.Search in Google Scholar

Poje, A., Potočnik, I., Mihelič, M., 2018: Comparison of Electric and Petrol Chainsaws in Terms of Efficiency and Safety When Used in Young Spruce Stands in Small-Scale Private Forests. Small-scale Forestry, 17:411–422.Search in Google Scholar

Potočnik, I., Poje, A., 2017: Forestry ergonomics and occupational safety in high ranking scientific journals from 2005–2016. Croatian Journal of Forest Engineering, 38:291–310.Search in Google Scholar

Rak, J., 2018: Hluk a vibrace motorových pil za vybraných podmínek. Brno, 2018, 59 p. (In Czech).Search in Google Scholar

Rottensteiner, C., Stampfer, K., 2013: Evaluation of operator vibration exposure to chainsaws equipped with a Kesper safety bar. Scandinavian Journal of Forest Research, 28:193–200.Search in Google Scholar

Rottensteiner, C., Tsioras, P., Stampfer, K., 2012: Wood density impact on hand-arm vibration. Croatian Journal of Forest Engineering, 33:303–312.Search in Google Scholar

Rónay, E., Sláma, O., 1989: Ergonómia a bezpečnost’ pri práci v lesnom hospodárstve. Bratislava, Príroda, 309 p. (In Slovak).Search in Google Scholar

Slappendel, C., Laird, I., Kawachi, I., Marshall, S., Cryer, C., 1993: Factors affecting work-related injury among forestry workers: A review. Journal of Safety Research, 24:19–32.Search in Google Scholar

Stanëk, L., Augustin, O., Neruda, J., 2022: Analysis of Occupational Accidents in Tree Climbers. Forests, 13:1518.Search in Google Scholar

Tsioras, P. A., Rottensteiner, C., Stampfer, K., 2014: Wood harvesting accidents in the Austrian State Forest Enterprise 2000–2009. Safety Science, 62:400– 408.Search in Google Scholar

Yangho, K., Jungsun, P., Mijin, P., 2016: Creating a culture of prevention in occupational safety and health practice. Safety and Health at Work, 7:89–96.Search in Google Scholar

Yovi, E. Y., Yamada, Y., 2019: Addressing Occupational Ergonomics Issues in Indonesian Forestry: Laborers, Operators, or Equivalent Workers. Croatian Journal of Forest Engineering, 40:351–363.Search in Google Scholar

CEM: Akcelerometr. [cited 2022 Nov 11]. Available from: www.cem-instruments.com/en/product-id-936Search in Google Scholar

EN ISO 22867:2021 Forestry and gardening machinery – Vibration test code for portable hand-held machines with internal combustion engine - Vibration at the handles.Search in Google Scholar

EN ISO 5349-1:2001 Mechanical Vibration-Measurement and Evaluation of Human Exposure to Hand- Transmitted Vibration - Part 1: General Requirements.Search in Google Scholar

EN ISO 5349-2:2001 Mechanical Vibration-Measurement and Evaluation of Human Exposure to Hand- Transmitted Vibration - Part 2: Practical Guidance for Measurement at the Workplace.Search in Google Scholar

European Parliament. Council of the European Union: Directive 2006/42/EC - New Machinery Directive, Joint Statement by the European Parliament and the Council: Brussels, Belgium, 2006.Search in Google Scholar

Occupational Safety and Health Administration: [cited 2022 Nov 10]. Available from: https:// www.osha.gov/Publications/3269-10N-05-eng- lish-06-27-2007.htmlSearch in Google Scholar

osha.europa.eu EU-OHSAS: occupational safety and health in Europe’s forestry industry. European Agency for Safety and Health at Work, [cited 2022 Nov 14]. Available from: https://osha.europa.eu/en/ publications/e-facts/efact29/viewSearch in Google Scholar

STIHL: [cited 2022 Nov 10]. Available from: https://www.stihl.cz/Produkty-STIHL/ Motorov%C3%A9-pily/St%C5%99edn%C4%9B- siln%C3%A9-motorov%C3%A9-pily-pro- lesnictv%C3%AD/21933-130/MS-362.aspX (In Czech).Search in Google Scholar

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