Evidence for dose-additive effects of pyrethroids on motor activity in rats

BACKGROUND: Pyrethroids are neurotoxic insecticides used in a variety of indoor and outdoor applications. Previous research characterized the acute dose-effect functions for 11 pyrethroids administered orally in corn oil (1 mL/kg) based on assessment of motor activity. OBJECTIVES: We used a mixture...

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Autor principal: Wolansky, M.J
Otros Autores: Gennings, C., DeVito, M.J, Crofton, K.M
Formato: Capítulo de libro
Lenguaje:Inglés
Publicado: 2009
Acceso en línea:Registro en Scopus
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024 7 |2 scopus  |a 2-s2.0-70449572700 
024 7 |2 cas  |a bifenthrin, 82657-04-3; cipermethrin, 52315-07-8; cyfluthrin, 68359-37-5; cyhalothrin, 68085-85-8; deltamethrin, 52918-63-5; fenpropathrin, 39515-41-8; fenvalerate, 51630-58-1; permethrin, 51877-74-8, 52645-53-1; resmethrin, 10453-86-8; Insecticides; Pyrethrins 
040 |a Scopus  |b spa  |c AR-BaUEN  |d AR-BaUEN 
100 1 |a Wolansky, M.J. 
245 1 0 |a Evidence for dose-additive effects of pyrethroids on motor activity in rats 
260 |c 2009 
270 1 0 |m Crofton, K. M.; Division of Neurotoxicology, National Health and Environmental Effects Research Laboratory, Office of Research and Development, Research Triangle Park, NC, United States; email: crofton.kevin@epa.gov 
506 |2 openaire  |e Política editorial 
504 |a Aldridge, W.N., An assessment of the toxicological properties of pyrethroids and their neurotoxicity (1990) Crit Rev Toxicol, 21, pp. 89-104 
504 |a Amweg, E.L., Weston, D.P., Ureda, N.M., Use and toxicity of pyrethroid pesticides in the central valley, California USA (2005) Environ Toxicol Chem, 24, pp. 966-972 
504 |a Barnes, J.M., Verschoyle, R.D., Toxicity of new pyrethroid insecticide [Letter] (1974) Nature, 248, p. 711 
504 |a Becker, K., Seiwert, M., Angerer, J., Kolossa-Gehring, M., Hoppe, H.W., Ball, M., GerES IV pilot study: Assessment of the exposure of German children to organophosphorus and pyrethroid pesticides (2006) Int J Hyg Environ Health, 209, pp. 221-233 
504 |a Berenbaum, M.C., The expected effect of a combination of agents: The general solution (1985) J Theor Biol, 114, pp. 413-431 
504 |a Burr, S.A., Ray, D.E., Structure-activity and interaction effects of 14 different pyrethroids on voltage-gated chloride ion channels (2004) Toxicol Sci, 77, pp. 341-346 
504 |a Casey, M., Gennings, C., Carter, J.W.H., Moser, V.C., Simmons, J.E., Detecting interaction(s) and assessing the impact of component subsets in a chemical mixture using fixed-ratio mixture ray designs (2004) J Agr Biol Environ Stat, 9, pp. 339-361 
504 |a Casida, J.E., Pyrethrum flowers and pyrethroid insecticides (1980) Environ Health Perspect, 34, pp. 189-202 
504 |a Pham Huu, C., Navarro Delmasure, Ch., Pham Huu Chanh, A., Pharmacological effects of deltamethrin on the central nervous system (1984) Arzneimittel-Forschung/Drug Research, 34 (2), pp. 175-181 
504 |a Conolly, R.B., Beck, B.D., Goodman, J.I., Stimulating research to improve the scientific basis of risk assessment (1999) Toxicol Sci, 49, pp. 1-4 
504 |a Crofton, K.M., Howard, J.L., Moser, V.C., Gill, M.W., Reiter, L.W., Tilson, H.A., Interlaboratory comparison of motor activity experiments: Implications for neurotoxicological assessments (1991) Neurotoxicol Teratol, 13, pp. 599-609 
504 |a Crofton, K.M., Kehn, L.S., Gilbert, M.E., Vehicle and route dependent effects of a pyrethroid insecticide, deltamethrin, on motor function in the rat (1995) Neurotoxicol Teratol, 17, pp. 489-495 
504 |a Crofton, K.M., Reiter, L.W., Effects of two pyrethroid insecticides on motor activity and the acoustic startle response in the rat (1984) Toxicol Appl Pharmacol, 75, pp. 318-328 
504 |a Crofton, K.M., Reiter, L.W., The effects of type I and II pyrethroids on motor activity and the acoustic startle response in the rat (1988) Fundam Appl Toxicol, 10, pp. 624-634 
504 |a De Souza Spinosa, H., Silva, Y.M.A., Nicolau, A.A., Bernardi, M.M., Lucisano, A., Possible anxiogenic effects of fenvalerate, a Type II pyrethroid pesticide, in rats (1999) Physiology and Behavior, 67 (4), pp. 611-615. , DOI 10.1016/S0031-9384(99)00106-7, PII S0031938499001067 
504 |a El-Masri, H.A., Constan, A.A., Ramsdell, H.S., Yang, R.S., Physiologically based pharmacodynamic modeling of an interaction threshold between trichloroethylene and 1,1-dichloroethylene in Fischer 344 rats (1996) Toxicol Appl Pharmacol, 141, pp. 124-132 
504 |a El-Masri, H.A., Mumtaz, M.M., Yushak, M.L., Application of physiologically-based pharmacokinetic modeling to investigate the toxicological interaction between chlorpyrifos and parathion in the rat (2004) Environ Toxicol Pharmacol, 16, pp. 57-71 
504 |a El-Masri, H.A., Tessari, J.D., Yang, R.S., Exploration of an interaction threshold for the joint toxicity of trichloroethylene and 1,1-dichloroethylene: Utilization of a PBPK model (1996) Arch Toxicol, 70, pp. 527-539 
504 |a Elliott, M., Synthetic pyrethroids - A new class of insecticides (1978) Chem Soc Rev, 7, pp. 473-505 
504 |a Feron, V.J., Groten, J.P., Toxicological evaluation of chemical mixtures (2002) Food Chem Toxicol, 40, pp. 825-839 
504 |a Fortin, M.C., Bouchard, M., Carrier, G., Dumas, P., Biological monitoring of exposure to pyrethrins and pyrethroids in a metropolitan population of the Province of Quebec, Canada (2008) Environ Res, 107, pp. 343-350 
504 |a Food Quality Protection Act (1996) Public Law, pp. 104-170. , FQPA 
504 |a Gammon, D.W., Two classes of pyrethroid action in the cockroach (1981) Pesticide Biochemistry and Physiology, 15, pp. 181-191 
504 |a Gennings, C., Carter Jr., W.H., Campain, J.A., Bae, D.-S., Yang, R.S.H., Statistical analysis of interactive cytotoxicity in human epidermal keratinocytes following exposure to a mixture of four metals (2002) Journal of Agricultural, Biological, and Environmental Statistics, 7 (1), pp. 58-73. , DOI 10.1198/108571102317475062 
504 |a Gennings, C., Carter Jr., W.H., Carney, E.W., Charles, G.D., Gollapudi, B.B., Carchman, R.A., A novel flexible approach for evaluating fixed ratio mixtures of full and partial agonists (2004) Toxicological Sciences, 80 (1), pp. 134-150. , DOI 10.1093/toxsci/kfh134 
504 |a Gilbert, M.E., Acheson, S.K., Mack, C.M., Crofton, K.M., An examination of the proconvulsant actions of pyrethroid insecticides using pentylenetetrazol and amygdala kindling seizure models (1990) Neurotoxicology, 11, pp. 73-86 
504 |a Gray, A.J., Pyrethroid structure-toxicity relationships in mammals (1985) Neurotoxicology, 6, pp. 127-137 
504 |a Hertzberg, R.C., Teuschler, L.K., Evaluating quantitative formulas for dose-response assessment of chemical mixtures (2002) Environ Health Perspect, 110 (SUPPL. 6), pp. 965-970 
504 |a Heudorf, U., Angerer, J., Drexler, H., Current internal exposure to pesticides in children and adolescents in Germany: Urinary levels of metabolites of pyrethroid and organophosphorus insecticides (2004) International Archives of Occupational and Environmental Health, 77 (1), pp. 67-72. , DOI 10.1007/s00420-003-0470-5 
504 |a Holton, J.L., Nolan, C.C., Burr, S.A., Ray, D.E., Cavanagh, J.B., Increasing or decreasing nervous activity modulates the severity of the glio-vascular lesions of 1,3-dinitrobenzene in the rat: Effects of the tremorgenic pyrethroid, Bifenthrin, and of anaesthesia (1997) Acta Neuropathol, 93, pp. 159-165. , (Berl) 
504 |a Hornychova, M., Frantik, E., Kubat, J., Formanek, J., Neurotoxicity profile of supermethrin, a new pyrethroid insecticide (1995) Central European Journal of Public Health, 3 (4), pp. 210-218 
504 |a Hoy, J.B., Cornell, J.A., Karlix, J.L., Schmidt, C.J., Tebbett, I.R., Van Haaren, F., Interactions of pyridostigmine bromide, DEET and permethrin alter locomotor behavior of rats (2000) Vet Hum Toxicol, 42, pp. 65-71 
504 |a Kim, K.-B., Anand, S.S., Muralidhara, S., Kim, H.J., Bruckner, J.V., Formulation-dependent toxicokinetics explains differences in the GI absorption, bioavailability and acute neurotoxicity of deltamethrin in rats (2007) Toxicology, 234 (3), pp. 194-202. , DOI 10.1016/j.tox.2007.02.015, PII S0300483X07001072 
504 |a Lawrence, L.J., Casida, J.E., Pyrethroid toxicology: Mouse intracerebral structure-toxicity relationships (1982) Pestic Biochem Physiol, 18, pp. 9-14 
504 |a LeBlanc, G.A., Olmstead, A.W., Evaluating the toxicity of chemical mixtures (2004) Environ Health Perspect, 112, pp. A729-730 
504 |a Loewe, S., The problem of synergism and antagonism of combined drugs (1953) Arzneimittelforschung, 3, pp. 285-290 
504 |a Loewe, S., Muischnek, H., Über Kombinationswirkungen (1926) Arch Exp Pathol Phramakol, 114, pp. 313-326 
504 |a Lu, C., Barr, D.B., Pearson, M., Bartell, S., Bravo, R., A longitudinal approach to assessing urban and suburban children's exposure to pyrethroid pesticides (2006) Environmental Health Perspectives, 114 (9), pp. 1419-1423. , http://www.ehponline.org/members/2006/9043/9043.html, DOI 10.1289/ehp.9043 
504 |a Lu, C., Barr, D.B., Pearson, M.A., Walker, L.A., Bravo, R., The attribution of urban and suburban children's exposure to synthetic pyrethroid insecticides: A longitudinal assessment (2009) J Expo Sci Environ Epidemiol, 19 (1), pp. 69-78 
504 |a Mandhane, S.N., Chopde, C.T., Neurobehavioral effects of low level fenvalerate exposure in mice (1997) Indian J Exp Biol, 35, pp. 623-627 
504 |a McCullagh, P., Nelder, J.A., (1989) Generalized Linear Models, , 2nd ed. New York:Chapman and Hall 
504 |a McDaniel, K.L., Moser, V.C., Utility of a neurobehavioral screening battery for differentiating the effects of two pyrethroids, permethrin and cypermethrin (1993) Neurotoxicol Teratol, 15, pp. 71-83 
504 |a Mirfazaelian, A., Kim, K.-B., Anand, S.S., Kim, H.J., Tornero-Velez, R., Bruckner, J.V., Fisher, J.W., Development of a physiologically based pharmacokinetic model for deltamethrin in the adult male sprague-dawley rat (2006) Toxicological Sciences, 93 (2), pp. 432-442. , DOI 10.1093/toxsci/kfl056 
504 |a Morgan, M.K., Sheldon, L.S., Croghan, C.W., Jones, P.A., Chuang, J.C., Wilson, N.K., An observational study of 127 preschool children at their homes and daycare centers in Ohio: Environ mental pathways to cis- And trans-permethrin exposure (2007) Environ Res, 104, pp. 266-274 
504 |a Motomura, H., Narahashi, T., Interaction of tetramethrin and deltamethrin at the single sodium channel in rat hippocampal neurons (2001) NeuroToxicology, 22 (3), pp. 329-339. , DOI 10.1016/S0161-813X(01)00023-7, PII S0161813X01000237 
504 |a Narahashi, T., Mode of action of pyrethroids (1971) Bull WHO, 44, pp. 337-345 
504 |a Narahashi, T., Neuroreceptors and ion channels as the basis for drug action: Past, present, and future (2000) Journal of Pharmacology and Experimental Therapeutics, 294 (1), pp. 1-26 
504 |a Nishimura, M., Obana, N., Yagasaki, O., Yanagiya, I., Involvement of adrenergic and serotonergic nervous mechanisms in allethrin-induced tremors in mice (1984) Journal of Toxicological Sciences, 9 (2), pp. 131-142 
504 |a Norton, S., Culver, B., Mullenix, P., Measurement of the effects of drugs on activity of permanent groups of rats (1975) Psychopharmacol Commun, 1, pp. 131-138 
504 |a Test Guideline 424. OECD Guideline for Testing of Chemicals (1997) Neurotoxicity Study in Rodents, , http://masetto.sourceoecd.org/vl=11579680/cl=12/nw=1/rpsv/ij/ oecdjournals/1607310x/v1n4/s25/p1, Available: [accessed 21 August 2009] 
504 |a Test Guideline 426. OECD Guideline for Testing of Chemicals (2007) Developmental Neurotoxicity Study, , http://titania.sourceoecd.org/vl=4206299/cl=17/nw=1/rpsv/ij/oecdjournals/ 1607310x/v1n4/s27/p1, Available: [accessed 21 August 2009] 
504 |a Olmstead, A.W., LeBlanc, G.A., Toxicity assessment of environmentally relevant pollutant mixtures using a heuristic model (2005) Integr Environ Assess Manag, 1, pp. 114-122 
504 |a Ray, D.E., Forshaw, P.J., Pyrethroid insecticides: Poisoning syndromes, synergies, and therapy (2000) J Toxicol Clin Toxicol, 38, pp. 95-101 
504 |a Ray, D.E., Fry, J.R., A reassessment of the neurotoxicity of pyrethroid insecticides (2006) Pharmacol Ther, 111, pp. 174-193 
504 |a Reiter, L.W., Anderson, G.E., Laskey, J.W., Cahill, D.F., Developmental and behavioral changes in the rat during chronic exposure to lead (1975) Environ Health Perspect, 12, pp. 119-123 
504 |a Reiter, L.W., MacPhail, R.C., Ruppert, P.H., Eckerman, D.A., Animal models of toxicity: Some comparative data on the sensitivity of behavioral tests (1981) 11th Conference on Environmental Toxicology, November 1980, Irvine, CA. AFAMRL-TR-80-125. Dayton, OH:Wright-Patterson Air Force Base, pp. 11-23. , Proceedings of the 
504 |a Riederer, A.M., Bartell, S.M., Barr, D.B., Ryan, P.B., Diet and non-diet predictors of urinary 3-phenoxybenzoic acid in NHANES 1999-2002 (2008) Environ Health Perspect, 116, pp. 1015-1022 
504 |a Righi, D.A., Palermo-Neto, J., Behavioral effects of type II pyrethroid cyhalothrin in rats (2003) Toxicology and Applied Pharmacology, 191 (2), pp. 167-176. , DOI 10.1016/S0041-008X(03)00236-9 
504 |a Safe, S.H., Hazard and risk assessment of chemical mixtures using the toxic equivalency factor approach (1998) Environ Health Perspect, 106 (SUPPL. 4), pp. 1051-1058 
504 |a Shafer, T.J., Meyer, D.A., Effects of pyrethroids on voltage-sensitive calcium channels: A critical evaluation of strengths, weaknesses, data needs, and relationship to assessment of cumulative neurotoxicity (2004) Toxicol Appl Pharmacol, 196, pp. 303-318 
504 |a Shafer, T.J., Meyer, D.A., Crofton, K.M., Developmental neurotoxicity of pyrethroid insecticides: Critical review and future research needs (2005) Environ Health Perspect, 113, pp. 123-136 
504 |a Soderlund, D.M., Point mutations in homology domain II modify the sensitivity of rat Nav1.8 sodium channels to the pyrethroid insecticide cismethrin (2001) Neurotoxicology, 22, pp. 755-765 
504 |a Soderlund, D.M., Clark, J.M., Sheets, L.P., Mullin, L.S., Piccirillo, V.J., Sargent, D., Mechanisms of pyrethroid neurotoxicity: Implications for cumulative risk assessment (2002) Toxicology, 171, pp. 3-59 
504 |a Song, J.H., Narahashi, T., Modulation of sodium channels of rat cerebellar Purkinje neurons by the pyrethroid tetramethrin (1996) J Pharmacol Exp Ther, 277, pp. 445-453 
504 |a Teuschler, L.K., Deciding which chemical mixtures risk assessment methods work best for what mixtures (2007) Toxicol Appl Pharmacol, 223, pp. 139-147 
504 |a Tulve, N.S., Egeghy, P.P., Fortmann, R.C., Whitaker, D.A., Nishioka, M.G., Naeher, L.P., Multimedia measurements and activity patterns in an observational pilot study of nine young children (2008) J Expo Sci Environ Epidemiol, 18, pp. 31-44 
504 |a Tulve, N.S., Jones, P.A., Nishioka, M.G., Fortmann, R.C., Croghan, C.W., Zhou, J.Y., Pesticide measurements from the first national environmental health survey of child care centers using a multi-residue GC/MS analysis method (2006) Environ Sci Technol, 40, pp. 6269-6274 
504 |a (1998) Health Effects Guidelines OPPTS 870.6200 Neurotoxicity Screening Battery, , http://www.epa.gov/opptsfrs/publications/OPPTS_Harmonized/ 870_Health_Effects_Test_Guidelines/Series/870-6200.pdf, EPA 712-C-98-238. Available: [accessed 21 August 2009] 
504 |a (1998) Health Effects Guidelines OPPTS 870.6300 Developmental Neurotoxicity Study, , http://www.epa.gov/opptsfrs/publications/OPPTS_Harmonized/ 870_Health_Effects_Test_Guidelines/Series/870-6300.pdf, EPA 712-C-98-239. Available: [accessed 21 August 2009] 
504 |a Pesticides: Science Policy Issues Related to the Food Quality Protection Act (1999) Fed Reg, 64, pp. 5796-5799. , http://www.epa.gov/EPA-PEST/1999/February/Day-05/p2781.htm, Available: [accessed 21 August 2009] 
504 |a (2000) Supplementary Guidance for Conducting Health Risk Assessment of Chemical Mixtures, , www.epa.gov/ncea/raf/pdfs/chem_mix/chem_mix_08_2001.pdf, EPA/630/R-00/002. Washington, DC:U.S. Environmental Protection Agency. Available: [accessed 21 August 2009] 
504 |a (2002) Guidance on Cumulative Risk Assessment of Pesticide Chemicals That Have a Common Mechanism of Toxicity, , http://www.epa.gov/pesticides/trac/science/cumulative_guidance.pdf, Available: [accessed 21 August 2009] 
504 |a (2002) Organophosphate Pesticides: Revised Cumulative Risk Assessment, , http://www.epa.gov/pesticides/cumulative/rra-op/, Washington, DC:U.S. Environmental Protection Agency Office of Pesticide Programs. Available: [accessed 21 August 2009] 
504 |a (2007) Revised N-Methyl Carbamate Cumulative Risk Assessment, , www.epa.gov/oppsrrd1/REDs/nmc_revised_cra.pdf, Washington, DC:U.S. Environmental Protection Agency. Available: [accessed 21 August 2009] 
504 |a Verschoyle, R.D., Aldridge, W.N., Toxicity of natural and synthetic pyrethrins to rats (1972) Pestic Biochem Physiol, 2, pp. 308-311 
504 |a Verschoyle, R.D., Aldridge, W.N., Structure-activity relationships of some pyrethroids in rats (1980) Archives of Toxicology, 45 (4), pp. 325-329. , DOI 10.1007/BF00293813 
504 |a Vijverberg, H.P., Van Den Bercken, J., Neurotoxicological effects and the mode of action of pyrethroid insecticides (1990) Crit Rev Toxicol, 21, pp. 105-126 
504 |a White, I.N.H., Verschoyle, R.D., Moradian, M.H., Barnes, J.M., The relationship between brain levels of cismethrin and bioresmethrin in female rats and neurotoxic effects (1976) Pesticide Biochemistry and Physiology, 6, pp. 491-500 
504 |a Wolansky, M.J., Gennings, C., Crofton, K.M., Relative potencies for acute effects of pyrethroids on motor function in rats (2006) Toxicological Sciences, 89 (1), pp. 271-277. , DOI 10.1093/toxsci/kfj020 
504 |a Wolansky, M.J., Harrill, J.A., Neurobehavioral toxicology of pyrethroid insecticides in adult animals: A critical review (2008) Neurotoxicol Teratol, 30, pp. 55-78 
504 |a Wolansky, M.J., McDaniel, K.L., Moser, V.C., Crofton, K.M., Influence of dosing volume on the neurotoxicity of bifenthrin (2007) Neurotoxicol Teratol, 29, pp. 377-384 
520 3 |a BACKGROUND: Pyrethroids are neurotoxic insecticides used in a variety of indoor and outdoor applications. Previous research characterized the acute dose-effect functions for 11 pyrethroids administered orally in corn oil (1 mL/kg) based on assessment of motor activity. OBJECTIVES: We used a mixture of these 11 pyrethroids and the same testing paradigm used in single-compound assays to test the hypothesis that cumulative neurotoxic effects of pyrethroid mixtures can be predicted using the default dose-addition theory. METHODS: Mixing ratios of the 11 pyrethroids in the tested mixture were based on the ED30 (effective dose that produces a 30% decrease in response) of the individual chemical (i.e., the mixture comprised equipotent amounts of each pyrethroid). The highest concentration of each individual chemical in the mixture was less than the threshold for inducing behavioral effects. Adult male rats received acute oral exposure to corn oil (control) or dilutions of the stock mixture solution. The mixture of 11 pyrethroids was administered either simultaneously (2 hr before testing) or after a sequence based on times of peak effect for the individual chemicals (4, 2, and 1 hr before testing). A threshold additivity model was fit to the single-chemical data to predict the theoretical dose-effect relationship for the mixture under the assumption of dose additivity. RESULTS: When subthreshold doses of individual chemicals were combined in the mixtures, we found significant dose-related decreases in motor activity. Further, we found no departure from the predicted dose-additive curve regardless of the mixture dosing protocol used. CONCLUSION: In this article we present the first in vivo evidence on pyrethroid cumulative effects supporting the default assumption of dose addition.  |l eng 
593 |a Departamento de Química Biológica (Área Toxicología), Facultad de Ciencias Exactas Y Naturales, Ciudad Universitaria, Buenos Aires, Argentina 
593 |a Solveritas, LLC, Richmond, VA, United States 
593 |a Division of Experimental Toxicology, National Health and Environmental Effects Research Laboratory, Office of Research and Development, Research Triangle Park, NC, United States 
593 |a Division of Neurotoxicology, National Health and Environmental Effects Research Laboratory, Office of Research and Development, Research Triangle Park, NC, United States 
690 1 0 |a ADDITIVITY 
690 1 0 |a CUMULATIVE 
690 1 0 |a MIXTURES 
690 1 0 |a NEUROTOXICITY 
690 1 0 |a PYRETHROIDS 
690 1 0 |a BIFENTHRIN 
690 1 0 |a BIOALLETHRIN 
690 1 0 |a CIPERMETHRIN 
690 1 0 |a CYFLUTHRIN 
690 1 0 |a CYHALOTHRIN 
690 1 0 |a DELTAMETHRIN 
690 1 0 |a FENPROPATHRIN 
690 1 0 |a FENVALERATE 
690 1 0 |a PERMETHRIN 
690 1 0 |a PYRETHROID 
690 1 0 |a RESMETHRIN 
690 1 0 |a ANIMAL EXPERIMENT 
690 1 0 |a ANIMAL MODEL 
690 1 0 |a ARTICLE 
690 1 0 |a CONTROLLED STUDY 
690 1 0 |a IN VIVO STUDY 
690 1 0 |a MALE 
690 1 0 |a MAXIMUM ALLOWABLE CONCENTRATION 
690 1 0 |a MOTOR ACTIVITY 
690 1 0 |a MOTOR DYSFUNCTION 
690 1 0 |a NEUROTOXICITY 
690 1 0 |a NONHUMAN 
690 1 0 |a PREDICTION 
690 1 0 |a PRIORITY JOURNAL 
690 1 0 |a RAT 
690 1 0 |a ANIMALS 
690 1 0 |a DOSE-RESPONSE RELATIONSHIP, DRUG 
690 1 0 |a INSECTICIDES 
690 1 0 |a MALE 
690 1 0 |a MOTOR ACTIVITY 
690 1 0 |a PYRETHRINS 
690 1 0 |a RATS 
690 1 0 |a RATS, LONG-EVANS 
690 1 0 |a RATTUS 
690 1 0 |a ZEA MAYS 
700 1 |a Gennings, C. 
700 1 |a DeVito, M.J. 
700 1 |a Crofton, K.M. 
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