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Clinical Trial Summary

Time processing is fundamental to survival and goal reaching in humans. Different time scales (seconds, minutes, and beyond) are processed through specific cognitive processes involving different neural representations. It is generally agreed that time scale in seconds-to-minutes range named "interval timing" would be anatomically linked to the striatum. Indeed, it is possible to demonstrate a deficit of interval timing processes in patients suffering from striatal damage (Huntington's disease). However, recent findings show involvement of a second brain structure, the hippocampus, in interval timing processing in the minutes range, suggesting an interaction between the striatum and hippocampus. Presumably, patients with hippocampal damage (Alzheimer's disease) would specifically show a decrease in performance for this minutes-range time scale. This study aims to provide a better understanding of the role of the striatum in the treatment of time and its interactions with other brain structures such as the hippocampus. More specifically, it is unclear whether the striatum plays a platform role that would always be involved regardless of the time scale, as suggested by the unified model of time or whether different brain structures is solicited according to the time scale, as suggested by the modular system model. In order to elucidate these issues, a potential double dissociation between brain structures and time scales will be tested.


Clinical Trial Description

In that aim, we will evaluate patients with Huntington's disease and patients with Alzheimer's disease by developing and using time processing paradigms comparing short and long time scales. ;


Study Design


Related Conditions & MeSH terms


NCT number NCT05943054
Study type Interventional
Source Assistance Publique - Hôpitaux de Paris
Contact Anne-Catherine BACHOUD-LEVI, MD, PhD
Phone 01 49 81 23 10
Email anne-catherine.bachoud-levi@aphp.fr
Status Recruiting
Phase N/A
Start date January 6, 2023
Completion date March 30, 2026

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