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Forebrain connections of medial agranular cortex in the prairie vole, Microtus ochrogaster
1Department of Physiological Sciences and Brain Institute, University of Florida, Gainesville 32610, USA. reep@ufbi.ufl.edu
Abstract:
Fluorescent axonal tracers were used to investigate the connections of medial agranular cortex (frontal area 2, Fr2) in male prairie voles. The rostral and caudal portions of Fr2 (rFr2 and cFr2) have distinct but partially overlapping patterns of connections. Thalamic labeling after cFr2 injections was present in anteromedial nucleus (AM), ventrolateral nucleus (VL), lateral segment, mediodorsal nucleus (MDl), centrolateral nucleus (CL), ventromedial nucleus (VM), posterior nucleus (Po) and lateral posterior nucleus (LP). A band of labeled cells involving CL, central medial nucleus (CM) and rhomboid nucleus (Rh) formed a halo around the periphery of submedial (gelatinosus) nucleus (Sm). Within cFr2 there is a rostrocaudal gradient whereby projections from VL and MDl become progressively sparser caudally, whereas those from LP and Po become denser. Rostral Fr2 receives afferents from a similar group of thalamic nuclei, but has denser innervation from VL and MDl, lacks afferents from LP, and receives less input from nuclei around the periphery of Sm. Caudal Fr2 has extensive cortical connections including orbital cortex, rostral Fr2, Fr1, caudal parietal area 1 (Par1), parietal area 2 (Par2), and posterior parietal, retrosplenial and visual areas. Rostral Fr2 has similar connections with areas Fr1, Par1 and Par2; orbital connections focused in ventrolateral orbital cortex (VLO); connections with caudal Fr2; greatly reduced connections with posterior parietal cortex and the visual areas; and no connections with retrosplenial cortex. The axons linking rFr2 and cFr2 with each other and with other cortical areas travel predominately in the deep gray matter of layers VI and VII rather than in the white matter. Projections to the dorsal striatum from rFr2 are widespread in the head of the caudate, become progressively restricted to a dorsocentral focus more caudally, and disappear by the level of the anterior commissure. The projections from cFr2 are largely restricted to a focal dorsocentral region of the striatum and to the dorsolateral margin of the caudatoputamen. In comparison to area Fr2, the laterally adjacent area Fr1 has thalamic and cortical connections which are markedly restricted. Area Fr1 receives thalamic input from nuclei VL, anteroventral nucleus (AV), CL and Po, but none from mediodorsal nucleus (MD) or LP, and its input from VM is reduced. Cortical afferents to Fr1 originate from areas Fr2, caudal Par1 and Par2. Medial agranular cortex of prairie voles has a pattern of connections largely similar to that seen in rats, suggesting that area Fr2 in prairie voles is part of a cortical network that may mediate complex behaviors involving spatial orientation.
Insights
This study maps the brain connections of the medial agranular cortex (Fr2) in prairie voles. Distinct rostral and caudal Fr2 regions show unique thalamic and cortical connectivity, suggesting a role in spatial orientation behaviors.
Area of Science:
- Neuroscience
- Comparative Anatomy
- Brain Connectivity
Background:
- The medial agranular cortex (Fr2) is crucial for complex behaviors.
- Understanding Fr2's connectivity in prairie voles provides insights into rodent brain organization.
- Previous studies in rats offer a comparative basis for Fr2 research.
Purpose of the Study:
- To investigate the detailed anatomical connections of the medial agranular cortex (Fr2) in prairie voles.
- To differentiate the connectivity patterns between the rostral (rFr2) and caudal (cFr2) portions of Fr2.
- To compare Fr2 connectivity with the adjacent Fr1 area and with known patterns in rats.
Main Methods:
- Fluorescent axonal tracers were employed to trace neural pathways.
- Injections were made into specific regions of the Fr2 (rFr2 and cFr2).
- Thalamic and cortical targets, as well as striatal projections, were analyzed.
Main Results:
- Distinct and partially overlapping connection patterns were observed between rFr2 and cFr2.
- Both rFr2 and cFr2 project to multiple thalamic nuclei, with differential density gradients.
- Fr2 exhibits extensive cortical connections and specific projections to the dorsal striatum, differing between rostral and caudal parts.
- The adjacent Fr1 area shows markedly restricted thalamic and cortical connections compared to Fr2.
Conclusions:
- The prairie vole Fr2 has a connectional organization largely similar to rats, indicating conserved neural circuits.
- These findings suggest Fr2 is part of a network involved in complex behaviors, potentially including spatial orientation.
- The distinct connectivity of rFr2 and cFr2 highlights functional regionalization within the medial agranular cortex.