Non-motor Characterization of the Basal Ganglia: Evidence From Human and Non-human Primate Electrophysiology

被引:43
作者
Eisinger, Robert S. [1 ]
Urdaneta, Morgan E. [1 ]
Foote, Kelly D. [2 ]
Okun, Michael S. [1 ,2 ,3 ]
Gunduz, Aysegul [1 ,3 ,4 ]
机构
[1] Univ Florida, Dept Neurosci, Gainesville, FL 32610 USA
[2] Univ Florida, Dept Neurosurg, Ctr Movement Disorders & Neurorestorat, Gainesville, FL USA
[3] Univ Florida, Dept Neurol, Ctr Movement Disorders & Neurorestorat, Gainesville, FL 32611 USA
[4] Univ Florida, Dept Biomed Engn, Gainesville, FL 32611 USA
关键词
basal ganglia; electrophysiology; non-motor; deep brain stimulation; subthalamic nucleus; DEEP BRAIN-STIMULATION; HUMAN SUBTHALAMIC NUCLEUS; MIDBRAIN DOPAMINE NEURONS; GLOBUS-PALLIDUS INTERNUS; FIELD POTENTIAL ACTIVITY; SINGLE-UNIT-ACTIVITY; PARKINSONS-DISEASE; RESPONSE-INHIBITION; REWARD EXPECTATION; PREFRONTAL CORTEX;
D O I
10.3389/fnins.2018.00385
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Although the basal ganglia have been implicated in a growing list of human behaviors, they include some of the least understood nuclei in the brain. For several decades studies have employed numerous methodologies to uncover evidence pointing to the basal ganglia as a hub of both motor and non-motor function. Recently, new electrophysiological characterization of the basal ganglia in humans has become possible through direct access to these deep structures as part of routine neurosurgery. Electrophysiological approaches for identifying non-motor function have the potential to unlock a deeper understanding of pathways that may inform clinical interventions and particularly neuromodulation. Various electrophysiological modalities can also be combined to reveal functional connections between the basal ganglia and traditional structures throughout the neocortex that have been linked to non-motor behavior. Several reviews have previously summarized evidence for non-motor function in the basal ganglia stemming from behavioral, clinical, computational, imaging, and non-primate animal studies; in this review, instead we turn to electrophysiological studies of non-human primates and humans. We begin by introducing common electrophysiological methodologies for basal ganglia investigation, and then we discuss studies across numerous non-motor domains-emotion, response inhibition, conflict, decision-making, error-detection and surprise, reward processing, language, and time processing. We discuss the limitations of current approaches and highlight the current state of the information.
引用
收藏
页数:17
相关论文
共 177 条
[81]   Expectation of reward modulates cognitive signals in the basal ganglia [J].
Kawagoe, R ;
Takikawa, Y ;
Hikosaka, O .
NATURE NEUROSCIENCE, 1998, 1 (05) :411-416
[82]   Nonmotor Symptoms and Subthalamic Deep Brain Stimulation in Parkinson's Disease [J].
Kim, Han-Joon ;
Jeon, Beom S. ;
Paek, Sun Ha .
JOURNAL OF MOVEMENT DISORDERS, 2015, 8 (02) :83-91
[83]   Subthalamic deep brain stimulation improves time perception in Parkinson's disease [J].
Koch, G ;
Brusa, L ;
Caltagirone, C ;
Oliveri, M ;
Peppe, A ;
Tiraboschi, P ;
Stanzione, P .
NEUROREPORT, 2004, 15 (06) :1071-1073
[84]   Multimodal, longitudinal assessment of intracortical microstimulation [J].
Koivuniemi, Andrew ;
Wilks, Seth J. ;
Woolley, Andrew J. ;
Otto, Kevin J. .
BRAIN MACHINE INTERFACES: IMPLICATIONS FOR SCIENCE, CLINICAL PRACTICE AND SOCIETY, 2011, 194 :131-144
[85]   Syntactic language processing: ERP lesion data on the role of the basal ganglia [J].
Kotz, SA ;
Frisch, S ;
Von Cramon, DY ;
Friederici, AD .
JOURNAL OF THE INTERNATIONAL NEUROPSYCHOLOGICAL SOCIETY, 2003, 9 (07) :1053-1060
[86]   Activation of the subthalamic region during emotional processing in Parkinson disease [J].
Kühn, AA ;
Hariz, MI ;
Silberstein, P ;
Tisch, S ;
Kupsch, A ;
Schneider, GH ;
Limousin-Dowsey, P ;
Yarrow, K ;
Brown, P .
NEUROLOGY, 2005, 65 (05) :707-713
[87]   The relationship between local field potential and neuronal discharge in the subthalamic nucleus of patients with Parkinson's disease [J].
Kühn, AA ;
Trottenberg, T ;
Kivi, A ;
Kupsch, A ;
Schneider, GH ;
Brown, P .
EXPERIMENTAL NEUROLOGY, 2005, 194 (01) :212-220
[88]   Event-related beta desynchronization in human subthalamic nucleus correlates with motor performance [J].
Kühn, AA ;
Williams, D ;
Kupsch, A ;
Limousin, P ;
Hariz, M ;
Schneider, GH ;
Yarrow, K ;
Brown, P .
BRAIN, 2004, 127 :735-746
[89]   EVENT-RELATED BRAIN POTENTIALS TO SEMANTICALLY INAPPROPRIATE AND SURPRISINGLY LARGE WORDS [J].
KUTAS, M ;
HILLYARD, SA .
BIOLOGICAL PSYCHOLOGY, 1980, 11 (02) :99-116
[90]   A neural correlate of response bias in monkey caudate nucleus [J].
Lauwereyns, J ;
Watanabe, K ;
Coe, B ;
Hikosaka, O .
NATURE, 2002, 418 (6896) :413-417