TY - GEN
T1 - Bazal Çekirdek Devrelerinde Dopaminin Doǧrudan ve Dolayli Yolaklara Etkisine Ilişkin Bir Hesaplamali Model
AU - Elibol, Rahmi
AU - Şengör, Neslihan Serap
N1 - Publisher Copyright:
© 2015 IEEE.
PY - 2016/1/6
Y1 - 2016/1/6
N2 - Due to the investigations carried out in neuroscience, it has been clear that basal ganglia circuits are not active only in motor actions but also take part in cognitive processes. With recent studies on processes as decision making and behavioral deficits as addiction, the role of basal ganglia in these processes has been revealed without suspicion. The activity in direct and indirect pathways, two of the three most mentioned pathways of basal ganglia, is known to be modified by neurotransmitter dopamine. In this work, a mathematical model will be derived which will reveal how the activity in the output component of basal ganglia circuit, globus pallidius externa and in the thalamus, which conveys information to the cortex, follows the activity of direct and indirect pathways modified by dopamine. While deriving the mathematical model, the activity in the structures forming the basal ganglia circuit is investigated through the neuron population activity obtained by point neurons. Firstly, the changes made in the single neuron model denoted by a dynamical system to obtain the neuronal activity of each structure is given. After these single neuron models, how each neuron population corresponding to basal ganglia structures is formed is explained and the simulation results obtained in BRIAN environment are discussed.
AB - Due to the investigations carried out in neuroscience, it has been clear that basal ganglia circuits are not active only in motor actions but also take part in cognitive processes. With recent studies on processes as decision making and behavioral deficits as addiction, the role of basal ganglia in these processes has been revealed without suspicion. The activity in direct and indirect pathways, two of the three most mentioned pathways of basal ganglia, is known to be modified by neurotransmitter dopamine. In this work, a mathematical model will be derived which will reveal how the activity in the output component of basal ganglia circuit, globus pallidius externa and in the thalamus, which conveys information to the cortex, follows the activity of direct and indirect pathways modified by dopamine. While deriving the mathematical model, the activity in the structures forming the basal ganglia circuit is investigated through the neuron population activity obtained by point neurons. Firstly, the changes made in the single neuron model denoted by a dynamical system to obtain the neuronal activity of each structure is given. After these single neuron models, how each neuron population corresponding to basal ganglia structures is formed is explained and the simulation results obtained in BRIAN environment are discussed.
KW - Basal ganglia circuits
KW - computational neuroscience model
KW - direct pathway
KW - dopamine
KW - indirect pathway
UR - https://www.scopus.com/pages/publications/84964226775
U2 - 10.1109/TIPTEKNO.2015.7374578
DO - 10.1109/TIPTEKNO.2015.7374578
M3 - Konferans katkısı
AN - SCOPUS:84964226775
T3 - 2015 Medical Technologies National Conference, TIPTEKNO 2015
BT - 2015 Medical Technologies National Conference, TIPTEKNO 2015
PB - Institute of Electrical and Electronics Engineers Inc.
T2 - Medical Technologies National Conference, TIPTEKNO 2015
Y2 - 15 October 2015 through 18 October 2015
ER -