Deep brain stimulation of fornix for memory improvement in Alzheimer's disease: A critical review. 2022

Ruofan Li, and Chencheng Zhang, and Yanxia Rao, and Ti-Fei Yuan
Shanghai Key Laboratory of Psychotic Disorders, Shanghai Mental Health Center, Shanghai Jiao Tong University School of Medicine, Shanghai, China.

Memory reflects the brain function in encoding, storage and retrieval of the data or information, which is a fundamental ability for any live organism. The development of approaches to improve memory attracts much attention due to the underlying mechanistic insight and therapeutic potential to treat neurodegenerative diseases with memory loss, such as Alzheimer's disease (AD). Deep brain stimulation (DBS), a reversible, adjustable, and non-ablative therapy, has been shown to be safe and effective in many clinical trials for neurodegenerative and neuropsychiatric disorders. Among all potential regions with access to invasive electrodes, fornix is considered as it is the major afferent and efferent connection of the hippocampus known to be closely associated with learning and memory. Indeed, clinical trials have demonstrated that fornix DBS globally improved cognitive function in a subset of patients with AD, indicating fornix can serve as a potential target for neurosurgical intervention in treating memory impairment in AD. The present review aims to provide a better understanding of recent progresses in the application of fornix DBS for ameliorating memory impairments in AD patients.

UI MeSH Term Description Entries
D007858 Learning Relatively permanent change in behavior that is the result of past experience or practice. The concept includes the acquisition of knowledge. Phenomenography
D006624 Hippocampus A curved elevation of GRAY MATTER extending the entire length of the floor of the TEMPORAL HORN of the LATERAL VENTRICLE (see also TEMPORAL LOBE). The hippocampus proper, subiculum, and DENTATE GYRUS constitute the hippocampal formation. Sometimes authors include the ENTORHINAL CORTEX in the hippocampal formation. Ammon Horn,Cornu Ammonis,Hippocampal Formation,Subiculum,Ammon's Horn,Hippocampus Proper,Ammons Horn,Formation, Hippocampal,Formations, Hippocampal,Hippocampal Formations,Hippocampus Propers,Horn, Ammon,Horn, Ammon's,Proper, Hippocampus,Propers, Hippocampus,Subiculums
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000544 Alzheimer Disease A degenerative disease of the BRAIN characterized by the insidious onset of DEMENTIA. Impairment of MEMORY, judgment, attention span, and problem solving skills are followed by severe APRAXIAS and a global loss of cognitive abilities. The condition primarily occurs after age 60, and is marked pathologically by severe cortical atrophy and the triad of SENILE PLAQUES; NEUROFIBRILLARY TANGLES; and NEUROPIL THREADS. (From Adams et al., Principles of Neurology, 6th ed, pp1049-57) Acute Confusional Senile Dementia,Alzheimer's Diseases,Dementia, Alzheimer Type,Dementia, Senile,Presenile Alzheimer Dementia,Senile Dementia, Alzheimer Type,Alzheimer Dementia,Alzheimer Disease, Early Onset,Alzheimer Disease, Late Onset,Alzheimer Sclerosis,Alzheimer Syndrome,Alzheimer Type Senile Dementia,Alzheimer's Disease,Alzheimer's Disease, Focal Onset,Alzheimer-Type Dementia (ATD),Dementia, Presenile,Dementia, Primary Senile Degenerative,Early Onset Alzheimer Disease,Familial Alzheimer Disease (FAD),Focal Onset Alzheimer's Disease,Late Onset Alzheimer Disease,Primary Senile Degenerative Dementia,Senile Dementia, Acute Confusional,Alzheimer Dementias,Alzheimer Disease, Familial (FAD),Alzheimer Diseases,Alzheimer Type Dementia,Alzheimer Type Dementia (ATD),Alzheimers Diseases,Dementia, Alzheimer,Dementia, Alzheimer-Type (ATD),Familial Alzheimer Diseases (FAD),Presenile Dementia,Sclerosis, Alzheimer,Senile Dementia
D046690 Deep Brain Stimulation Therapy for MOVEMENT DISORDERS, especially PARKINSON DISEASE, that applies electricity via stereotactic implantation of ELECTRODES in specific areas of the BRAIN such as the THALAMUS. The electrodes are attached to a neurostimulator placed subcutaneously. Brain Stimulation, Deep,Electrical Stimulation of the Brain,Brain Stimulations, Deep,Deep Brain Stimulations,Stimulation, Deep Brain,Stimulations, Deep Brain
D020712 Fornix, Brain Heavily myelinated fiber bundle of the TELENCEPHALON projecting from the hippocampal formation to the HYPOTHALAMUS. Some authorities consider the fornix part of the LIMBIC SYSTEM. The fimbria starts as a flattened band of axons arising from the subiculum and HIPPOCAMPUS, which then thickens to form the fornix. Fimbria, Brain,Commissura Hippocampi,Commissure of Fornix,Dorsal Hippocampal Commissure,Fimbria (Brain),Fimbria of Hippocampus,Fimbria-Fornix,Fornical Commissure,Fornix (Brain),Fornix-Fimbria,Hippocampal Commissure,Brain Fimbria,Brain Fimbrias,Brain Fornices,Brain Fornix,Commissura Hippocampus,Commissure, Dorsal Hippocampal,Commissure, Fornical,Commissure, Hippocampal,Commissures, Dorsal Hippocampal,Commissures, Fornical,Commissures, Hippocampal,Dorsal Hippocampal Commissures,Fimbria Fornix,Fimbria-Fornices,Fimbrias (Brain),Fimbrias, Brain,Fornical Commissures,Fornices (Brain),Fornices, Brain,Fornix Commissure,Fornix Commissures,Fornix Fimbria,Fornix-Fimbrias,Hippocampal Commissure, Dorsal,Hippocampal Commissures,Hippocampal Commissures, Dorsal,Hippocampi, Commissura,Hippocampus Fimbria,Hippocampus Fimbrias,Hippocampus, Commissura

Related Publications

Ruofan Li, and Chencheng Zhang, and Yanxia Rao, and Ti-Fei Yuan
August 2019, The New England journal of medicine,
Ruofan Li, and Chencheng Zhang, and Yanxia Rao, and Ti-Fei Yuan
December 2022, Nature communications,
Ruofan Li, and Chencheng Zhang, and Yanxia Rao, and Ti-Fei Yuan
September 2016, Journal of Alzheimer's disease : JAD,
Ruofan Li, and Chencheng Zhang, and Yanxia Rao, and Ti-Fei Yuan
January 2003, The Journal of neuropsychiatry and clinical neurosciences,
Ruofan Li, and Chencheng Zhang, and Yanxia Rao, and Ti-Fei Yuan
January 2008, Annals of neurology,
Ruofan Li, and Chencheng Zhang, and Yanxia Rao, and Ti-Fei Yuan
December 2018, Neural regeneration research,
Ruofan Li, and Chencheng Zhang, and Yanxia Rao, and Ti-Fei Yuan
August 2023, European journal of clinical investigation,
Ruofan Li, and Chencheng Zhang, and Yanxia Rao, and Ti-Fei Yuan
July 2016, Journal of neurosurgery,
Ruofan Li, and Chencheng Zhang, and Yanxia Rao, and Ti-Fei Yuan
January 2017, Current Alzheimer research,
Copied contents to your clipboard!