1. Llorente JL, Perez-Escuredo J, Alvarez-Marcos C, Suarez C, Hermsen M. Genetic and clinical aspects of wood dust related intestinal-type sinonasal adenocarcinoma: a review. Eur Arch Otorhinolaryngol 2009;266:1-7. doi: 10.1007/ s00405-008-0749-y10.1007/s00405-008-0749-ySearch in Google Scholar

2. Kauppinen T, Vincent R, Liukkonen T, Grzebyk M, Kauppinen A, Welling I, Arezes P, Black N, Bochmann F, Campelo F, Costa M, Elsigan G, Goerens R, Kikemenis A, Kromhout H, Miguel S, Mirabelli D, Mceneany R, Pesch B, Plato N, Schlunssen V, Schulze J, Sonntag R, Verougstraete V, De Vicente MA, Wolf J, Zimmermann M, Husgafvel- Pursiainen K, Salvolainen K. Occupational exposure to inhalable wood dust in the Member States of the European Union. Ann Occup Hyg 2006;50:549-61. doi: 10.1093/ annhyg/mel013Search in Google Scholar

3. Acheson ED, Cowdell RH, Hadfield E, Macbet, RG. Nasal cancer in the woodworkers in the furniture industry. Br Med J 1968;2:587-96. PMCID: PMC199176910.1136/bmj.2.5605.587Search in Google Scholar

4. Puntarić D, Kos A, Šmit Z, Zečić Ž, Šega K, Beljo Lučić R, Horvat D, Bošnir J. Dust wood exposure in wood industry and forestry. Coll Anthropol 2005;29:221-5. PMID:16117324Search in Google Scholar

5. World Health Organization (WHO), International Agency for Research on Cancer (IARC). Wood Dust and Formaldehyde. IARC Monographs Vol 62. Lyon: IARC; 1995.Search in Google Scholar

6. Council Directive 2004/37/EC of 29 April 2004 on the protection of workers from the risk related to exposure to carcinogens or mutagens at work (Sixth Individual Directive within the meaning of Article 16(1) of Council Directive 89/391/EEC) [displayed 4 Juni 2013]. Available at http://eurlexeuropa.eu/LexUriServ/LexUriServ.do?uri=OJ:L:2004:229:0023:0034:EN:PDFSearch in Google Scholar

7. Scientific Committee on Occupational Exposure Limits (SCOEL). Recommendation from the Scientific Committee on Occupational Exposure Limits: Risk Assessment for Wood Dust, SCOEL/SUM 102 final. December 2003.Search in Google Scholar

8. The American Conference of Governmental Industrial Hygienists (ACGIH). Threshold Limit Values for Chemical Substances and Physical Agents and Biological Exposure Indices. Cincinnati (OH): ACIGH; 2003.Search in Google Scholar

9. Davies HW, Teschke K, Demers PA. A field comparison of inhalable and thoracic size selective sampling techniques. Ann Occup Hyg 1999;43:381-92. PMID:1051846410.1016/S0003-4878(99)00039-3Search in Google Scholar

10. Comite Europeen de Normisation (CEN). Workplace Atmospheres - Assessment of Performance of Instruments for Measurement of Airborne Particle Concentrations, EN 13205. Brussels: CEN; 2001.Search in Google Scholar

11. Comite Europeen de Normisation (CEN). Workplace Atmospheres - Guidance for Sampling of Inhalable, Thoracic and Respirable Aerosol Fractions, CEN/TR 15230. Brussels: CEN; 2005.Search in Google Scholar

12. Kenny LC, Aitken R, Chalmers C, Fabries JF, Gonzalez- Fernandez E, Kromhout H, Liden G, Mark D, Riediger G, Prodi V. A collaborative European study of personal inhalable aerosol sampler performance. Ann Occup Hyg 1997;41:135-53. doi: 10.1093/annhyg/41.2.13510.1093/annhyg/41.2.135Search in Google Scholar

13. Vaughan NP, Chalmers CP, Botham R. A Field comparison of personal samplers for inhalable dust. Ann Occup Hyg 1990;34:553-73. doi: 10.1093/annhyg/34.6.55310.1093/annhyg/34.6.5532291580Search in Google Scholar

14. Harper M, Muller BS. An evaluation of total and inhalable samplers for the collection of wood dust in three wood products industries. J Environ Monit 2002;4:648-56. doi: 10.1039/B202857N10.1039/B202857NSearch in Google Scholar

15. Pravilnik o zaštiti radnika od rizika zbog izloženosti karcinogenim i/ili mutagenim tvarima [Regulation on theprotection of workers from the risk related to exposure tocarcinogens or mutagens, in Croatian]. Narodne novine 40/2007.Search in Google Scholar

16. Pravilnik o maksimalno dopustivim koncentracijama štetnih tvari u atmosferi radnih prostorija i prostora i o biološkim graničnim vrijednostima [Regulation on maximum allowableconcentrations (MAC) of harmful substances and biologicalborderline values (BBV) in working environment, in Croatian]. Narodne novine 92/1993.Search in Google Scholar

17. Comite Europeen de Normisation (CEN). Workplace Atmospheres - Size Fraction Definition for Measurement of Airborne Particles in the Workplace, EN 481. Brussels: CEN; 1993.Search in Google Scholar

18. Zentralstelle fur Unfallverhutung und Arbeitsmedezin- Hauptverband der gewerblichen Berufsgenossenschaften. Verfahren zur Bestimmung von Holzstaub ZH 1/120.41:1989. [Central Office for risk prevention and Occupational Medicine-Confederation of Professional Trade Associations. A method for the determination of wood dust. ZH 1/120.41:1989, in German]. Carl Heymans Verlag KG, Koln;Search in Google Scholar

1989.Search in Google Scholar

19. McClave J, Dietrich FH. Statistics II. 4th ed. San Francisco (CA): Dellen Publishing Company; 1998.Search in Google Scholar

20. Liden G, Melin B, Lidblom A, Lindberg K, Noren JO. Personal sampling in parallel with open-face filter cassettes and IOM samplers for inhalable dust - implications for occupational exposure limits. Appl Occup Environ Hyg 2000;15:263-76. doi: 10.1080/10473220030158410.1080/10473220030158410701289Search in Google Scholar

21. Predicala BZ, Maghirang RG. Field comparison of inhalable and total dust sampler for assessing airborne dust in swine confinement barns. Appl Occup Environ Hyg 2003;18:694-701.10.1080/1047322030137512909537Search in Google Scholar

22. Čavlović A, Beljo Lučić R, Ištvanić J. Exposure to wood dust in Croatian woodworking industry. Wood Res 2009;54:109-16.Search in Google Scholar

ISSN:
0004-1254
Languages:
English, Slovenian
Publication timeframe:
4 times per year
Journal Subjects:
Medicine, Basic Medical Science, other