Classification of Neuronal Subtypes in the Striatum and the Effect of Neuronal Heterogeneity on the Activity Dynamics

Clustering of single-cell RNA sequencing data is often used to show what states and subtypes cells have. Using this technique, striatal cells were clustered into subtypes using different clustering algorithms. Previously known subtypes were confirmed and new subtypes were found. One of them is a thi...

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Main Author: Bekkouche, Bo
Format: Others
Language:English
Published: KTH, Beräkningsvetenskap och beräkningsteknik (CST) 2016
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-183135
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spelling ndltd-UPSALLA1-oai-DiVA.org-kth-1831352018-01-11T05:12:11ZClassification of Neuronal Subtypes in the Striatum and the Effect of Neuronal Heterogeneity on the Activity DynamicsengKlassificering av neuronala subtyper i striatum och effekten av neuronal heterogenitet på aktivitetsdynamikenBekkouche, BoKTH, Beräkningsvetenskap och beräkningsteknik (CST)KTH2016Computational neuroscienceStriatumSingle-cell sequencingMedium spiny neuronBioinformatics (Computational Biology)Bioinformatik (beräkningsbiologi)NeurosciencesNeurovetenskaperClustering of single-cell RNA sequencing data is often used to show what states and subtypes cells have. Using this technique, striatal cells were clustered into subtypes using different clustering algorithms. Previously known subtypes were confirmed and new subtypes were found. One of them is a third medium spiny neuron subtype. Using the observed heterogeneity, as a second task, this project questions whether or not differences in individual neurons have an impact on the network dynamics. By clustering spiking activity from a neural network model, inconclusive results were found. Both algorithms indicating low heterogeneity, but by altering the quantity of a subtype between a low and high number, and clustering the network activity in each case, results indicate that there is an increase in the heterogeneity. This project shows a list of potential striatal subtypes and gives reasons to keep giving attention to biologically observed heterogeneity. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-183135application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic Computational neuroscience
Striatum
Single-cell sequencing
Medium spiny neuron
Bioinformatics (Computational Biology)
Bioinformatik (beräkningsbiologi)
Neurosciences
Neurovetenskaper
spellingShingle Computational neuroscience
Striatum
Single-cell sequencing
Medium spiny neuron
Bioinformatics (Computational Biology)
Bioinformatik (beräkningsbiologi)
Neurosciences
Neurovetenskaper
Bekkouche, Bo
Classification of Neuronal Subtypes in the Striatum and the Effect of Neuronal Heterogeneity on the Activity Dynamics
description Clustering of single-cell RNA sequencing data is often used to show what states and subtypes cells have. Using this technique, striatal cells were clustered into subtypes using different clustering algorithms. Previously known subtypes were confirmed and new subtypes were found. One of them is a third medium spiny neuron subtype. Using the observed heterogeneity, as a second task, this project questions whether or not differences in individual neurons have an impact on the network dynamics. By clustering spiking activity from a neural network model, inconclusive results were found. Both algorithms indicating low heterogeneity, but by altering the quantity of a subtype between a low and high number, and clustering the network activity in each case, results indicate that there is an increase in the heterogeneity. This project shows a list of potential striatal subtypes and gives reasons to keep giving attention to biologically observed heterogeneity.
author Bekkouche, Bo
author_facet Bekkouche, Bo
author_sort Bekkouche, Bo
title Classification of Neuronal Subtypes in the Striatum and the Effect of Neuronal Heterogeneity on the Activity Dynamics
title_short Classification of Neuronal Subtypes in the Striatum and the Effect of Neuronal Heterogeneity on the Activity Dynamics
title_full Classification of Neuronal Subtypes in the Striatum and the Effect of Neuronal Heterogeneity on the Activity Dynamics
title_fullStr Classification of Neuronal Subtypes in the Striatum and the Effect of Neuronal Heterogeneity on the Activity Dynamics
title_full_unstemmed Classification of Neuronal Subtypes in the Striatum and the Effect of Neuronal Heterogeneity on the Activity Dynamics
title_sort classification of neuronal subtypes in the striatum and the effect of neuronal heterogeneity on the activity dynamics
publisher KTH, Beräkningsvetenskap och beräkningsteknik (CST)
publishDate 2016
url http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-183135
work_keys_str_mv AT bekkouchebo classificationofneuronalsubtypesinthestriatumandtheeffectofneuronalheterogeneityontheactivitydynamics
AT bekkouchebo klassificeringavneuronalasubtyperistriatumocheffektenavneuronalheterogenitetpaaktivitetsdynamiken
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