Hironobu Ito,Yuji Ishikawa,Masami Yoshimoto et al.
Hironobu Ito et al.
Modern teleosts have more copies of developmental regulatory genes than other vertebrates, probably due to a whole genome duplication that occurred specifically at the base of the lineage of ray-finned fishes. The genome duplication generat...
Rüdiger Wehner,Tsukasa Fukushi,Karin Isler
Rüdiger Wehner
Comparative neurobiologists have provided ample evidence that in vertebrates small animals have proportionally larger brains: in a double-logarithmic plot of brain weight versus body weight all data points conform quite closely to a straigh...
Comparative Study
Brain, behavior and evolution. 2007;69(3):220-8. DOI:10.1159/000097057 2007
Andrew N Iwaniuk,Peter L Hurd,Douglas R W Wylie
Andrew N Iwaniuk
Despite the highly conserved circuitry of the cerebellum, its overall shape varies significantly among and within vertebrate classes. In birds, one of the most prominent differences among orders is the relative size of the cerebellar folia....
Comparative Study
Brain, behavior and evolution. 2007;69(3):196-219. DOI:10.1159/000096987 2007
Scaling of inhibitory interneurons in areas v1 and v2 of anthropoid primates as revealed by calcium-binding protein immunohistochemistry [0.03%]
灵长类视皮层抑制性中间神经元的尺度不变性及其钙结合蛋白免疫组化特征研究
Chet C Sherwood,Mary Ann Raghanti,Cheryl D Stimpson et al.
Chet C Sherwood et al.
Inhibitory GABAergic interneurons are important for shaping patterns of activity in neocortical networks. We examined the distributions of inhibitory interneuron subtypes in layer II/III of areas V1 and V2 in 18 genera of anthropoid primate...
Comparative Study
Brain, behavior and evolution. 2007;69(3):176-95. DOI:10.1159/000096986 2007
Cerebral lateralization and its relationship to phylogeny and aggression in anabantoid fishes [0.03%]
安巴诺伊鱼的大脑半球化及其与进化和攻击行为的关系
Ethan D Clotfelter,Elizabeth S Kuperberg
Ethan D Clotfelter
We examined the relationship between aggression and cerebral lateralization, as expressed by eye-use preference in a mirror-response paradigm, in six species of anabantoid fishes in the teleost family Belontiidae. Our objective was to test ...
Annual cycle of the black-capped chickadee: seasonality of food-storing and the hippocampus [0.03%]
黑顶山雀年度生活周期:藏食行为及海马结构的季节变化规律研究
Jennifer S Hoshooley,Leslie S Phillmore,David F Sherry et al.
Jennifer S Hoshooley et al.
Previous research presents a mixed picture of seasonal variation in the hippocampus of food-storing black-capped chickadees. One field study has shown an October peak in hippocampus volume, although laboratory studies conducted to determine...