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In Vitro Characterization of the Electrophysiological Properties of Colonic Afferent Fibers in Rats
Published on: September 27, 2017
Organization of afferents to the orbitofrontal cortex in the rat
Monika J M Murphy1, Ariel Y Deutch1,2,3
1Neuroscience Program, Vanderbilt University, Nashville, Tennessee.
Abstract:
The prefrontal cortex (PFC) is usually defined as the frontal cortical area receiving a mediodorsal thalamic (MD) innervation. Certain areas in the medial wall of the rat frontal area receive a MD innervation. A second frontal area that is the target of MD projections is located dorsal to the rhinal sulcus and often referred to as the orbitofrontal cortex (OFC). Both the medial PFC and OFC are comprised of a large number of cytoarchitectonic regions. We assessed the afferent innervation of the different areas of the OFC, with a focus on projections arising from the mediodorsal thalamic nucleus, the basolateral nucleus of the amygdala, and the midbrain dopamine neurons. Although there are specific inputs to various OFC areas, a simplified organizational scheme could be defined, with the medial areas of the OFC receiving thalamic inputs, the lateral areas of the OFC being the recipient of amygdala afferents, and a central zone that was the target of midbrain dopamine neurons. Anterograde tracer data were consistent with this organization of afferents, and revealed that the OFC inputs from these three subcortical sites were largely spatially segregated. This spatial segregation suggests that the central portion of the OFC (pregenual agranular insular cortex) is the only OFC region that is a prefrontal cortical area, analogous to the prelimbic cortex in the medial prefrontal cortex. These findings highlight the heterogeneity of the OFC, and suggest possible functional attributes of the three different OFC areas.
Insights
The orbitofrontal cortex (OFC) has distinct input zones. Medial OFC receives thalamic input, lateral OFC receives amygdala input, and central OFC receives dopamine input, revealing functional segregation.
Area of Science:
- Neuroscience
- Neuroanatomy
Background:
- The prefrontal cortex (PFC) is defined by mediodorsal thalamic (MD) innervation.
- The orbitofrontal cortex (OFC) is a key frontal area receiving MD projections.
- Both medial PFC and OFC contain numerous cytoarchitectonic regions.
Purpose of the Study:
- To investigate the afferent innervation of OFC subregions.
- To map projections from the mediodorsal thalamic nucleus, amygdala, and midbrain dopamine neurons to the OFC.
- To elucidate the organizational principles and potential functional segregation within the OFC.
Main Methods:
- Utilized anterograde tracers to map neural projections.
- Assessed afferent inputs to different OFC areas.
- Focused on inputs from the mediodorsal thalamic nucleus, basolateral amygdala, and midbrain dopamine neurons.
Main Results:
- Identified a simplified organizational scheme for OFC afferents: medial OFC receives thalamic input, lateral OFC receives amygdala input, and central OFC receives dopamine input.
- Anterograde tracer data confirmed spatial segregation of these inputs.
- The central OFC (pregenual agranular insular cortex) is proposed as the sole prefrontal cortical area within the OFC.
Conclusions:
- The OFC exhibits significant heterogeneity in its afferent connectivity.
- Input segregation suggests distinct functional roles for different OFC subregions.
- Findings provide a framework for understanding OFC functional organization and its relation to prefrontal cortical areas.
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