Serotonergic system plays critical roles in modulating affective control. The raphe nucleus has been known to be the origin of forebrain 5-HT afferents. Specifically, the Raphe-Hippocampal projection has been shown to modulate affective sensitivity in rodents. However, the human Raphe-Hippocampal tract is not well studied. We aimed to segment the Raphe-Hippocampal tract using probabilistic tractography on diffusion tensor imaging data from 502 subjects. The Raphe-Hippocampal tracts were successfully isolated in 464 individuals. There was a significant association between integrity of the Raphe-Hippocampal tract and affective sensitivity. To our best knowledge, this is the first study that isolated the human Raphe-Hippocampal tract. The integrity of the tract showed consistent characteristics with rodent findings, where affective sensitivity is modulated by the Raphe-Hippocampal projection. This study provides a technique to segment the human Raphe-Hippocampal tract and a translational knowledge that the tract in a human possesses consistent characteristics that have been found in rodent studies.
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http://dx.doi.org/10.1007/s11682-021-00549-x | DOI Listing |
Brain Imaging Behav
June 2022
Department of Communication Sciences, University of Mississippi, Oxford, MS, 38655, USA.
Serotonergic system plays critical roles in modulating affective control. The raphe nucleus has been known to be the origin of forebrain 5-HT afferents. Specifically, the Raphe-Hippocampal projection has been shown to modulate affective sensitivity in rodents.
View Article and Find Full Text PDFA combined cultivation in vitro of the hippocampal and raphe nuclei explants have been performed. Certain conditions and mechanisms on connections formed between them have been analysed. Vital observations by means of a phase-contrast microscope makes it possible to reveal three types of connections between the explants which differ by the degree of development and differentiation.
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