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Cohen-Zimerman, S.

Publications and source records attributed to Cohen-Zimerman, S..

2 recordsLinked to original sources

Non-invasive Neuromodulation Targeting Approach by Mapping Stimulations and Lesions That Modify Visual Memory

Therapeutic brain stimulation is believed to target specific networks, but targeting approaches for memory remain debated. For other symptoms, neuromodulation targets have been localized by mapping connectivity of lesions and stimulation sites to specific symptoms. This approach has yielded networks for global memory, but it remains unclear whether it applies to specific types of memory. Here, we mapped connectivity of stimulation sites, lesions, and atrophy patterns associated with different memory types. We included 544 individuals across three datasets: transcranial magnetic stimulation (N=262), penetrating head trauma (N=169), and ischemic stroke (N=113). We identified a network preferentially connected to lesions and stimulation sites specifically associated with changes in visual memory. Of note, the direction of this effect was inverted depending on whether lesions or stimulation occurred at younger age or an older age, consistent with prior results. This age effect was replicated in an independent dataset of patients with preclinical Alzheimers disease (N=1240). To examine neuromodulation targets, we computed electrical field models for potential TMS sites that overlap with the networks derived from each stimulation or lesion dataset; the resulting targets intersected with established targets that demonstrated efficacy for treating memory impairment - precuneus, cortical-hippocampal network, and dorsolateral prefrontal cortex - with peak intersection at medial posterior parietal lobe, angular gyrus, and left anterior middle frontal gyrus, respectively. Future head-to-head clinical trials are needed to systematically compare these proposed neuromodulation targets against each other. One Sentence SummaryNeuromodulation targets for visual memory diverge by age at the time of injury or stimulation.

neuroscience↗

Causal Evidence for the Neural Underpinnings of Subjective Happiness

Happiness is a central but poorly localized dimension of human experience, and causal evidence linking discrete brain regions to subjective happiness is scarce. We tested whether focal brain damage modulates self-reported happiness by measuring Subjective Happiness Scale (SHS) scores in 131 male veterans with penetrating traumatic brain injury (pTBI) and 33 matched healthy controls (HC), and by applying voxel-based lesion-symptom mapping within anatomically pre-defined brain regions. Overall, individuals with pTBI reported higher SHS scores than HC. VLSM identified two lesion clusters associated with increased happiness after injury: a small cluster in the right anterior cingulate cortex and a larger cluster in the right orbitofrontal cortex. These results provide causal evidence that right frontal circuitry--notably the ACC and OFC--modulates subjective happiness, challenging current accounts of motivational and emotional processing and pointing to targeted neural substrates for understanding and potentially modulating human happiness.

neuroscience↗