Sentence examples for between the perirhinal cortex from inspiring English sources

Exact(6)

These results suggest that there is a functionally single dissociation between the perirhinal cortex and hippocampus for reference memory performance on object and place discrimination tasks.

It is hence possible that the MD acts as a critical relay route between the perirhinal cortex and the medial prefrontal cortex.

Moreover, although numerous studies have demonstrated a relationship between the perirhinal cortex and the disambiguation of perceptually confusable objects, we show here that the disambiguation capabilities of the perirhinal cortex extend to non-perceptual, semantically confusable objects.

Such dynamic interactions between the perirhinal cortex and the hippocampus have been highlighted in human fMRI studies, which point to partial divisions of function across these same structures that relate to the recognition and recollection of associated information [116,117].

The current finding of profound deficits in novel object recognition following DA depletion in the core suggests that interactions between the perirhinal cortex and NAc contribute to consolidation of memory processes necessary to support novel object recognition.

Consistent with the current data, these connections are, however, particularly strong between the perirhinal cortex and the PL rather than the IL mPFC (e.g., Vertes, 2004; Hoover & Vertes, 2007).

Similar(54)

There are direct and reciprocal connections between the mPFC and the perirhinal cortex, and there is good evidence that functional interactions between the mPFC and perirhinal cortex support performance on recognition tasks that require recency judgments (e.g., Hannesson, Howland, et al., 2004; Barker et al., 2007).

It should be noted that a significant amount of the data from animal studies are focused on a distinction between the hippocampus and the perirhinal cortex in particular (for review, see Brown and Aggleton, 2001).

The MD thalamus provides a significant input into the medial prefrontal cortex [89,97] and there is evidence of modest connections between area 36 of the perirhinal cortex and MD, although the thalamic input to area 35 is very weak [98].

The Fos increase in the lateral entorhinal cortex is also notable given the close anatomical links between this area and the perirhinal cortex (Aggleton, 2012; Naber, Witter, & Da Silva, 1999), although a lateral entorhinal increase has not been reported in previous studies of c- fos expression and visual recognition memory (Wan et al., 1999, 2004; Warburton et al., 2003, 2005; Zhu et al., 1995).

These experiments revealed that neither "object-in-place" or "temporal order recognition" memories could be formed if communication between the hippocampus and either the perirhinal cortex, or the prefrontal cortex, was broken.

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