Biomedical Engineering Reference
In-Depth Information
F ETCHO JR and L IU KS (1998). Zebrafish as a model system for studying neuronal circuits and behavior. Ann
NYAcad Sci 860: 333-345.
G ENTON P, S EMAH F, and T RINKA E (2006). Valproic acid in epilepsy: pregnancy-related issues. Drug Saf
29(1): 1-21.
G REENSPAN RJ (2007). An Introduction to Nervous Systems. Cold Spring Harbor Press, Cold Spring
Harbor, NY.
G RIER JW (1982). Ban of DDT and subsequent recovery of reproduction in Bald Eagles. Science 218:
1232-1234.
G RUNWALD DJ and E ISEN JS (2002). Headwaters of the zebrafish: emergence of a newmodel vertebrate. Nat
Rev Genet 3(9): 717-724.
G UNNARSSON L, J AUHIAINEN A, K RISTIANSSON E, N ERMAN O, and L ARSSON DG (2008). Evolutionary
conservation of human drug targets in organisms used for environmental risk assessments. Environ
Sci Technol 42(15): 5807-5813.
H ILL AJ, T ERAOKA H, H EIDEMAN W, and P ETERSON RE (2005). Zebrafish as a model vertebrate for
investigating chemical toxicity. Toxicol Sci 86(1): 6-19.
H URD MW, D EBRUYNE J, S TRAUME M, and C AHILL GM (1998). Circadian rhythms of locomotor activity in
zebrafish. Physiol Behav 65(3): 465-472.
I RONS TD, M AC P HAIL RC, H UNTER DL, and P ADILLA S (2010). Acute neuroactive drug exposures alter
locomotor activity in larval zebrafish. Neurotoxicol Teratol 32(1): 84-90.
K ARI G, R ODECK U, andD ICKER AP (2007). Zebrafish: an emergingmodel system for human disease and drug
discovery. Clin Pharmacol Ther 82(1): 70-80.
K ELLEHER RT and M ORSE WH (1968). Determinants of the specificity of behavioral effects of drugs. Ergeb
Physiol 60: 1-56.
L EVIN ED and C ERUTTI DT (2008). Behavioral neuroscience of zebrafish. In: B UCCAFUSCO JJ (Ed.), Methods
of Behavior Analysis in Neuroscience. CRC Press, New York, NY, pp. 291-308.
L I L and D OWLING JE (1998). Zebrafish visual sensitivity is regulated by a circadian clock. Visual Neurosci
15: 851-857.
L IESCHKE GJ and C URRIE PD (2007). Animal models of human disease: zebrafish swim into view. Nat Rev
Genet 8(5): 353-367.
M AC P HAIL RC (1990). Environmental modulation of neurobehavioral activity. In: R USSELL RW, F LATTAU PE,
and P OPE AM (Eds.), Behavioral Measures of Neurotoxicity. National Academy Press, Washington, DC,
pp. 347-358.
M AC P HAIL RC, B ROOKS J, H UNTER DL, P ADNOS B, I RONS TD, and P ADILLA S (2009). Locomotion in larval
zebrafish: influence of time of day, lighting and ethanol. Neurotoxicology 30(1): 52-58.
M AC P HAIL RC, P EELE DB, and C ROFTON KM (1989). Motor activity and screening for neurotoxicity. J Am
Coll Toxicol 8: 117-125.
M AGALHAES D DE P, DA C UNHA RA, DOS S ANTOS JAA, B USS DF, and B APTISTA DF (2007). Behavioral response
of zebrafish Danio rerio Hamilton 1822 to sublethal stress by sodium hypochlorite: ecotoxicological
assay using an image analysis biomonitoring system. Ecotoxicology 16(5): 417-422.
M ATSUI JI, E GANA AL, S PONHOLTZ TR, A DOLPH AR, and D OWLING JE (2006). Effects of ethanol on
photoreceptors and visual function in developing zebrafish. Invest Ophthalmol Vis Sci 47(10):
4589-4597.
M OORE S, T URNPENNY P, Q UINN A, G LOVER S, L LOYD D,M ONTGOMERY T, andD EAN J (2000). A clinical study of
57 children with fetal anticonvulsant syndromes. J Med Genet 37: 489-497.
M ORSE WH (1975). Schedule-controlled behaviors as determinants of drug response. Fed Proc 34(9):
1868-1869.
M OSER VC, B ECKING GC, C UOMO V, F RANTIK E, K ULIG BM, M AC P HAIL RC, T ILSON HA, W INNEKE G,
B RIGHTWELL WS, De S ALVIA MA, G ILL MW, H AGGERTY GC, H ORNYCHOVA M, L AMMERS J, L ARSEN JJ,
M C D ANIEL KL, N ELSON BK, and O STERGAARD G (1997). The IPCS Collaborative Study on Neurobeha-
vioral Screening Methods. V. Results of chemical testing. Neurotoxicology 18(4): 969-1055.
N EEDLEMAN HL, G UNNOE C, L EVITON A, R EED R, P ERESIE H, M AHER C, and B ARRETT P (1979). Deficits
in psychologic and classroom performance of children with elevated dentine lead levels. N Engl J Med
300(13): 689-695.
Search WWH ::




Custom Search