![]() However, despite this fundamental role, a detailed reconstruction of the brain-wide vasculature at the capillary level remains elusive, due to insufficient image quality using the best available techniques. ![]() Elsevier, London, pp 836–892.The distinct organization of the brain’s vascular network ensures that it is adequately supplied with oxygen and nutrients. Zilles K, Amunts K (2012) Architecture of the cerebral cortex. Zhang Z, Zhang H et al (2017) Whole-brain mapping of the inputs and outputs of the medial part of olfactory tubercle. Yokosuka M (2012) Histological properties of the glomerular layer of the mouse accessory olfactory bulb. Watson C, Lind CRP et al (2014) The anatomy of the caudal zona incerta in rodents and primates. Walz A, Omura M et al (2006) Development and topography of the lateral olfactory tract in the mouse: imaging by genetically encoded and injected fluorescent markers. Unal G, Joshi A et al (2015) Synaptic targets of medial septal projections in the Hippocampus and Extrahippocampal cortices of the mouse. Srinivasan S, Stevens CF (2018) The distributed circuit within the piriform cortex makes odor discrimination robust. Shipley MT, Adamek GD (1984) The connections of the mouse olfactory bulb: a study using orthograde and retrograde transport of wheat germ agglutinin conjugated to horseradish peroxidase. Sakizlioglu I, Frommer J et al (1974) Prenatal development of the vomer in normal and cleft palate mice. Ruberte J, Carretero A, Navarro M (2017) Morphological mouse phenotyping. Mucignat-Caretta C, Redaelli M et al (2012) One nose, one brain: contribution of the main and accessory olfactory system to chemosensation. Interactive atlas and 3D brain software for research, structure analysis, and education. Paxinos G, Watson C (2010) BrainNavigator. Knöll B, Zarbalis K (2001) A role for the EphA family in the topographic targeting of vomeronasal axons. ![]() Huilgol D, Tole S (2016) Cell migration in the developing rodent olfactory system. Huggenberger S, Moser N, Schröder H, Cozzi B, Granato A, Merigh A (2019) Neuroanatomie des Menschen. Hsieh Y-C, Puche AC (2013) Development of the Islands of Calleja. Hintiryan H, Gou L et al (2012) Comprehensive connectivity of the mouse main olfactory bulb. Gutierrez-Castellanos N, Pardo-Bellver C et al (2014) The vomeronasal cortex – afferent and efferent projections of the posteromedial cortical nucleus of the amygdala in mice. ĭe la Rosa-Prieto C, De Moya-Pinilla M et al (2015) Olfactory and cortical projections to bulbar and hippocampal adult-born neurons. īrunjes PC, Illig KR et al (2005) A filed guide to the anterior olfactory nucleus (cortex). C57BL/6, SJL, C3Hīoehm U (2006) The vomeronasal system in mice: from the nose to the hypothalamus- and back. īab I, Hajbi-Yonissi C, Gabet Y, Müller R (2007) Microtomographic atlas of the mouse skeleton. Academic Press/Elsevier, Amsterdam, pp 653–660. In: Watson C, Paxinos G, Puelles L (eds) The mouse nervous system. KeywordsĪshwell K (2012) The olfactory system. While the MOB system is designed to perceive and transmit olfactory stimuli, the vomeronasal system integrates olfactory perception (“pheromones”) into mating and sexual behavior. Both systems project back to the olfactory bulbs. The main target of the AOB system is the medial anterior and posterior cortical amygdala. ![]() The MOB system reaches – among other structures – the piriform (olfactory cortex) and eventually the entorhinal cortex. By contrast to the MOB system, the vomeronasal signals project to the accessory olfactory bulb (AOB) located dorsal of the MOB. It is located on either side of the nasal septum in the ventral nasal meatus. The vomeronasal system disposes of the vomeronasal organ as the peripheral receptive system. The main olfactory bulb (MOB) system receives signals from the main olfactory epithelium located in the upper nasal cavity near to the skull base. The olfactory system consists of two parts defined by the type and location of the primary sensory neurons and by a different connectivity pattern. For mice the olfactory system is a very important resource for exploration of the environment and for reproductive behavior. ![]()
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