@article {Dillingham590901, author = {CM Dillingham and MM Milczarek and JC Perry and BE Frost and GD Parker and Y Assaf and F Sengpiel and SM O{\textquoteright}Mara and SD Vann}, title = {Mammillothalamic disconnection alters hippocampo-cortical oscillatory activity and microstructure: Implications for diencephalic amnesia}, elocation-id = {590901}, year = {2019}, doi = {10.1101/590901}, publisher = {Cold Spring Harbor Laboratory}, abstract = {Diencephalic amnesia can be as disruptive as the more commonly known temporal lobe amnesia, yet the precise contribution of diencephalic structures to memory processes remains elusive. We used discrete lesions of the mammillothalamic tract to model aspects of diencephalic amnesia and assessed the impact of these lesions on multiple measures of activity and plasticity within the hippocampus and retrosplenial cortex. Lesions of the mammillothalamic tract had widespread indirect effects on hippocampo-cortical oscillatory activity within both theta and gamma bands. Both within-region oscillatory activity and cross-regional synchrony were altered. The network changes were state-dependent, displaying different profiles during locomotion and paradoxical sleep. Consistent with the associations between oscillatory activity and plasticity, complementary analyses using several convergent approaches revealed microstructural changes, which appeared to reflect a suppression of learning-induced plasticity in lesioned animals. Together, these combined findings suggest a mechanism by which damage to the medial diencephalon can impact upon learning and memory processes, highlighting important role for the mammillary bodies in the co-ordination of hippocampo-cortical activity.}, URL = {https://www.biorxiv.org/content/early/2019/03/27/590901}, eprint = {https://www.biorxiv.org/content/early/2019/03/27/590901.full.pdf}, journal = {bioRxiv} }