Biomedical Engineering Reference
In-Depth Information
101.
Malnic B et al (1999) Combinatorial receptor codes for odors. Cell 96(5):713-723
102.
Saito H et al (2009) Odor coding by a mammalian receptor repertoire. Sci Signal 2(60):ra9
103.
Sicard G, Holley A (1984) Receptor cell responses to odorants: similarities and differences
among odorants. Brain Res 292(2):283-296
104.
Keller A et al (2007) Genetic variation in a human odorant receptor alters odour perception.
Nature 449(7161):468-472
105.
Belluscio L, Katz LC (2001) Symmetry, stereotypy, and topography of odorant representa-
tions in mouse olfactory bulbs. J Neurosci 21(6):2113-2122
106.
Laurent G, Davidowitz H (1994) Encoding of olfactory information with oscillating neural
assemblies. Science 265(5180):1872-1875
107.
Laurent G et al (2001) Odor encoding as an active, dynamical process: experiments, com-
putation, and theory. Annu Rev Neurosci 24(1):263-297
108.
Spors H, Grinvald A (2002) Spatio-temporal dynamics of odor representations in the mam-
malian olfactory bulb. Neuron 34(2):301-315
109.
Liberles SD, Buck LB (2006) A second class of chemosensory receptors in the olfactory
epithelium. Nature 442(7103):645-650
110.
Fleischer J, Schwarzenbacher K, Breer H (2007) Expression of trace amine-associated re-
ceptors in the Grueneberg ganglion. Chem Senses 32(6):623-631
111.
Hashiguchi Y, Nishida M (2007) Evolution of trace amine-associated receptor (TAAR)
gene family in vertebrates: lineage-specific expansions and degradations of a second class
of vertebrate chemosensory receptors expressed in the olfactory epithelium. Mol Biol Evol
24(9):p 2099-2107
112.
Dewan A et al (2013) Non-redundant coding of aversive odours in the main olfactory path-
way. Nature 497(7450):486-489
113.
Ferrero DM et al (2011) Detection and avoidance of a carnivore odor by prey. Proc Natl
Acad Sci 108(27):11235-11240
114.
Zhang J et al (2013) Ultrasensitive detection of amines by a trace amine-associated recep-
tor. J Neurosci 33(7):3228-3239
115.
Meyer MR et al (2000) A cGMP-signaling pathway in a subset of olfactory sensory neu-
rons. Proc Natl Acad Sci 97(19):10595-10600
116.
Juilfs DM et al (1997) A subset of olfactory neurons that selectively express cGMP-stim-
ulated phosphodiesterase (PDE2) and guanylyl cyclase-D define a unique olfactory signal
transduction pathway. Proc Natl Acad Sci 94(7):3388-3395
117.
Fülle H-J et al (1995) A receptor guanylyl cyclase expressed specifically in olfactory sen-
sory neurons. Proc Natl Acad Sci 92(8):3571-3575
118.
Hu J et al (2007) Detection of near-atmospheric concentrations of CO2 by an olfactory
subsystem in the mouse. Science 317(5840):953-957
119.
Leinders-Zufall T et al (2007) Contribution of the receptor guanylyl cyclase GC-D to che-
mosensory function in the olfactory epithelium. Proc Natl Acad Sci 104(36):14507-14512
120.
Pelosi P (1996) Perireceptor events in olfaction. J Neurobiol 30(1):3-19
121.
Flower D (1996) The lipocalin protein family: structure and function. Biochem J 318:1-14
122.
Pelosi P (1994) Odorant-binding proteins. Crit Rev Biochem Mol Biol 29(3):199-228
123.
Kim M-S, Repp A, Smith DP (1998) LUSH odorant-binding protein mediates chemosen-
sory responses to alcohols in Drosophila melanogaster . Genetics 150(2):711-721
124.
Lin W et al (2004) Odors detected by mice deficient in cyclic nucleotide-gated channel
subunit A2 stimulate the main olfactory system. J Neurosci 24(14):3703-3710
125.
Jacobson L (1811) Description anatomique d'un organe observe dans les mammiferes. Ann
Mus Hist Natl (Paris) 18:412-424
126.
Keverne EB (1999) The vomeronasal organ. Science 286(5440):716-720
127.
Rodriguez I, Feinstein P, Mombaerts P (1999) Variable patterns of axonal projections of
sensory neurons in the mouse vomeronasal system. Cell 97(2):199-208
128.
Segovia S, Guillamón A (1993) Sexual dimorphism in the vomeronasal pathway and sex
differences in reproductive behaviors. Brain Res Rev 18(1):51-74
Search WWH ::




Custom Search