Biomedical Engineering Reference
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Lunney GH (1970) Using analysis of variance with a dichotomous dependent variable: an empiri-
cal study. J Educ Meas 7:263-269
Maleszka R, Helliwell P, Kucharski R (2000) Pharmacological interference with glutamate re-
uptake impairs long-term memory in the honeybee, Apis mellifera . Behav Brain Res
115:49-53
Matsumoto Y, Mizunami M (2000) Olfactory learning in the cricket Gryllus bimaculatus . J Exp
Biol 203:2581-2588
Matsumoto Y, Mizunami M (2002) Temporal determinants of olfactory long-term retention in the
cricket Gryllus bimaculatus . J Exp Biol 205:1429-1437
Mauelshagen J (1993) Neural correlates of olfactory learning in an identifi ed neuron in the honey-
bee brain. J Neurophysiol 69:609-625
Menzel R (1990) Learning, memory, and “cognition” in honeybees. In: Kesner Rp Olten DS (ed)
Neurobiology of comparative cognition. Erlbaum, Hillsdale, NJ, pp 237-292
Menzel R (1999) Memory dynamics in the honeybee. J Comp Physiol A 185:323-340
Menzel R (2001) Searching for the memory trace in a mini-brain, the honeybee. Learn Mem
8:53-62
Menzel R, Erber J, Masuhr T (1974) Learning and memory in the honeybee. In: Barton-Browne L
(ed) Experimental analysis of insect behavior. Springer, Berlin, pp 195-217
Menzel R, Greggers U, Hammer M (1993) Functional organization of appetitive learning and
memory in a generalist pollinator, the honeybee. In: Lewis AC (ed) Insect Learning. Chapman
Hall, London, pp 79-125
Menzel R, Manz G, Menzel R, Greggers U (2001) Massed and spaced learning in honeybees: the
role of CS, US, the intertrial interval, and the test interval. Learn Mem 8:198-208
Minnich DE (1921) An experimental study of the tarsal chemoreceptors of two nymphalid butter-
fl ies. J Exp Zool 33:173-203
Minnich DE (1926) The organs of taste on the proboscis of the blowfl y Phormia regina Meigen.
Anat Rec 34:126
Mizunami M, Yokohari F, Takahata M (2004) Further exploration into the adaptive design of the
arthropod “microbrain”: I. Sensory and memory-processing systems. Zool Sci 21:1141-1151
Mobbs PG (1982) The brain of the honeybee Apis mellifera . I. The connections and spatial orga-
nization of the mushroom bodies. Philos Trans R Soc B 298:309-354
Müller D, Gerber B, Hellstern F, Hammer M, Menzel R (2000) Sensory preconditioning in honey-
bees. J Exp Biol 203:1351-1364
Müller U (1996) Inhibition of nitric oxide synthase impairs a distinct form of long-term memory
in the honeybee, Apis mellifera . Neuron 16:541-549
Müller U (2000) Prolonged activation of cAMP-dependent protein kinase during conditioning
induces long-term memory in honeybees. Neuron 27:159-168
Müßig L, Richlitzsk A, Rößler R, Eisenhardt D, Menzel R, Leboulle G (2010) Acute disruption of
the NMDA receptor subunit NR1 in the honeybee brain selectively impairs memory formation.
J Neurosci 30:7817-7825
Okada R, Rybak J, Manz G, Menzel R (2007) Learning-related plasticity in PE1 and other mush-
room body-extrinsic neurons in the honeybee brain. J Neurosci 27:11736-11747
Pamir E, Chakroborty NK, Stollhoff N, Gehring KB, Antemann V, Morgenstern L, Felsenberg J,
Eisenhardt D, Menzel R, Nawrot MP (2011) Average group behavior does not represent indi-
vidual behavior in classical conditioning of the honeybee. Learn Mem 18:733-741
Pavlov IP (1927) Lectures on conditioned refl exes. International publishers, New York
Perisse E, Raymond VD, Néant I, Matsumoto Y, Leclerc C, Moreau M, Sandoz JC (2009) Early
calcium increase triggers the formation of olfactory long-term memory in honeybees. BMC
Biol 7:30. doi: 10.1186/1741-7007-7-30
Pham-Delègue MH, Bailez O, Blight MM, Masson C, Picard-Nizou AL, Wadhams LJ (1993)
Behavioural discrimination of oilseed rape volatiles by the honey bee Apis mellifera L. Chem
Senses 18:483-494
Ray S, Ferneyhough B (1997a) The effects of age on olfactory learning and memory in the honey-
bee Apis mellifera . Neuroreport 8:789-793
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