Analyze Diet

Brain, behavior and evolution.

Periodical
Behavioral Sciences
Biology
Brain
Behavior
Biological Evolution
Neurophysiology
Publisher:
Karger.
Frequency: 8 no. a year, 2003-
Country: Switzerland
Language: English
Start Year:1968 -
ISSN:
0006-8977 (Print)
1421-9743 (Electronic)
0006-8977 (Linking)
Impact Factor
1.7
NLM ID:0151620
(DNLM):B33020000(s)
(OCoLC):01536985
Coden:BRBEBE
Classification:W1 BR113
The brain of the horse: weight and cephalization quotients.
Brain, behavior and evolution    December 4, 2013   Volume 83, Issue 1 9-16 doi: 10.1159/000356527
Cozzi B, Povinelli M, Ballarin C, Granato A.The horse is a common domestic animal whose anatomy has been studied since the XVI century. However, a modern neuroanatomy of this species does not exist and most of the data utilized in textbooks and reviews derive from single specimens or relatively old literature. Here, we report information on the brain of Equus caballus obtained by sampling 131 horses, including brain weight (as a whole and subdivided into its constituents), encephalization quotient (EQ), and cerebellar quotient (CQ), and comparisons with what is known about other relevant species. The mean weight of the fresh brains in o...
Cross-species and intraspecies morphometric analysis of the corpus callosum.
Brain, behavior and evolution    April 25, 2000   Volume 55, Issue 1 37-43 doi: 10.1159/000006640
Olivares R, Michalland S, Aboitiz F.A cross-species morphometric study of the corpus callosum was performed in the rat, rabbit, cat, dog, horse, cow and human. Across species, the results indicate a strong, although less than linear, dependency of callosal size on brain weight. This relation tends to lose significance within species. This is consistent with other morphometric studies indicating a tendency to decrease the correlations between morphometric variables in within-species analyses as compared to between-species analyses. There are species differences in the relative size of some callosal segments particularly in the po...
Dopamine in the cerebrospinal fluid of prepubertal and adult horses.
Brain, behavior and evolution    January 1, 1990   Volume 35, Issue 2 98-106 doi: 10.1159/000115859
Melrose PA, Walker RF, Douglas RH.Catecholamine concentrations (pg/ml) in the cerebrospinal fluid (CSF) of prepubertal (n = 9) and adult (n = 18) horses were determined by radioenzymatic assay. Norepinephrine was low or non detectable in all CSF samples. In contrast, measurable CSF dopamine concentrations were effected by age, reproductive status and exogenous steroid treatments. The concentration of dopamine in the CSF of prepubertal females (733 +/- 92) was greater (p less than 0.05) than the concentration in the CSF of prepubertal males (117 +/- 67). Prepubertal male horses which were treated with testosterone for 5 days (5...
Topography of oxytocin and vasopressin neurons in the forebrain of Equus caballus: further support of proposed evolutionary relationships for proopiomelanocortin, oxytocin and vasopressin neurons.
Brain, behavior and evolution    January 1, 1989   Volume 33, Issue 4 193-204 doi: 10.1159/000115928
Melrose PA, Knigge KM.The present study describes the topography of immunoreactive (ir) oxytocin (OXY) and vasopressin (AVP) neurons in the forebrain of Equus caballus and the coexistence of ir proopiomelanocortin (POMC)-derived peptides in the same cells. These data are compared to those for other mammalian species and the possible significance of species variations is considered. As expected, magnocellular neurons of the equine hypothalamus, which contain ir OXY or AVP, have prominent discernible projections to the neurohypophysis. Further, as in other mammalian species, the field of ir OXY perikarya generally ex...
Comparative topography of the immunoreactive alpha-melanocyte-stimulating hormone neuronal systems in the brains of horses and rats.
Brain, behavior and evolution    January 1, 1988   Volume 32, Issue 4 226-235 doi: 10.1159/000116550
Melrose PA, Knigge KM.The present study describes and compares the topography of alpha-melanocyte-stimulating hormone (alpha-MSH)-immunoreactive neurons in the forebrain of rats and horses. Two groups of immunoreactive cells were present in both species. These groups were distinguished by their cross-immunoreactivity and topography. The topography of cell bodies with cross-immunoreactivity for peptides derived from pro-opiomelanocortin (POMC) including adrenocorticotropin, 16K, alpha-MSH and beta-endorphin was similar in both species. However, the topography of perikarya which stained only for alpha-MSH, and not fo...
Rleative numbers of pyramidal tract neurons in mammals of different sizes.
Brain, behavior and evolution    January 1, 1973   Volume 7, Issue 1 1-17 doi: 10.1159/000124395
Towe AL.No abstract available