The pallidosubthalamic projection: An anatomical substrate for nonmotor functions of the subthalamic nucleus in primates
Identifieur interne : 003707 ( Main/Exploration ); précédent : 003706; suivant : 003708The pallidosubthalamic projection: An anatomical substrate for nonmotor functions of the subthalamic nucleus in primates
Auteurs : Carine Karachi [France] ; Jérôme Yelnik [France] ; Dominique Tandé [France] ; Léon Tremblay [France] ; Etienne C. Hirsch [France] ; Chantal François [France]Source :
- Movement Disorders [ 0885-3185 ] ; 2005-02.
Descripteurs français
- Pascal (Inist)
English descriptors
- KwdEn :
- Animals, Biotin (analogs & derivatives), Biotin (metabolism), Calbindins, Dextrans (metabolism), Globus Pallidus (anatomy & histology), Globus Pallidus (metabolism), Immunohistochemistry (methods), Male, Nervous system diseases, Neural Pathways (anatomy & histology), Neural Pathways (metabolism), Primates, Projection, S100 Calcium Binding Protein G (metabolism), Subthalamic Nucleus (anatomy & histology), Subthalamic Nucleus (metabolism), Subthalamic nucleus, Wheat Germ Agglutinin-Horseradish Peroxidase Conjugate (metabolism), axonal tracing, basal ganglia, globus pallidus, monkeys.
- MESH :
- chemical , analogs & derivatives : Biotin.
- chemical , metabolism : Biotin, Dextrans, S100 Calcium Binding Protein G, Wheat Germ Agglutinin-Horseradish Peroxidase Conjugate.
- anatomy & histology : Globus Pallidus, Neural Pathways, Subthalamic Nucleus.
- metabolism : Globus Pallidus, Neural Pathways, Subthalamic Nucleus.
- methods : Immunohistochemistry.
- Animals, Calbindins, Male, Primates.
Abstract
The subthalamic nucleus (STN) is the best target for correcting motor disability in parkinsonian patients with high‐frequency stimulation. However, STN stimulation has also been reported to modify cognitive, emotional, and motivational functions. The aim of this study was to analyze the topographic organization of the STN according to its inputs coming from the sensorimotor, associative, and limbic territories of the external globus pallidus (GPe) in monkeys, with special reference to the limbic projection. Axonal tracers were injected into the different functional territories of the GPe. Injection performed in the limbic GPe resulted in labeling of cell bodies in the dorsal nucleus accumbens and in a dense labeling of axons in the anterior and medioventral portion of the STN. In comparison, injections in the associative and sensorimotor GPe led to labeling in the central and dorsolateral parts of the STN, respectively. Individual pallidosubthalamic axons ramified into numerous varicose branches, which were restricted to a given territory in the STN. These data provide a functional cartography of this structure in primates and suggest that behavioral disorders observed in stimulated parkinsonian patients could result from a dysfunction of the limbic part of the STN. © 2004 Movement Disorder Society
Url:
DOI: 10.1002/mds.20302
Affiliations:
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<front><div type="abstract" xml:lang="en">The subthalamic nucleus (STN) is the best target for correcting motor disability in parkinsonian patients with high‐frequency stimulation. However, STN stimulation has also been reported to modify cognitive, emotional, and motivational functions. The aim of this study was to analyze the topographic organization of the STN according to its inputs coming from the sensorimotor, associative, and limbic territories of the external globus pallidus (GPe) in monkeys, with special reference to the limbic projection. Axonal tracers were injected into the different functional territories of the GPe. Injection performed in the limbic GPe resulted in labeling of cell bodies in the dorsal nucleus accumbens and in a dense labeling of axons in the anterior and medioventral portion of the STN. In comparison, injections in the associative and sensorimotor GPe led to labeling in the central and dorsolateral parts of the STN, respectively. Individual pallidosubthalamic axons ramified into numerous varicose branches, which were restricted to a given territory in the STN. These data provide a functional cartography of this structure in primates and suggest that behavioral disorders observed in stimulated parkinsonian patients could result from a dysfunction of the limbic part of the STN. © 2004 Movement Disorder Society</div>
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