Schematic of added myelinated axon.

<p>Same color segments have identical biophysics. Blue: Axon initial segment and nodes; Green: Myelin; Red: Unmyelinated terminal.</p> <p>(TIFF)</p>

-д хадгалсан:
Номзүйн дэлгэрэнгүй
Үндсэн зохиолч: Nicholas Hananeia (22683665) (author)
Бусад зохиолчид: Christian Ebner (1276467) (author), Christos Galanis (15210328) (author), Hermann Cuntz (32618) (author), Alexander Opitz (295799) (author), Andreas Vlachos (47497) (author), Peter Jedlicka (179938) (author)
Хэвлэсэн: 2025
Нөхцлүүд:
Шошгууд: Шошго нэмэх
Шошго байхгүй, Энэхүү баримтыг шошголох эхний хүн болох!
_version_ 1849927626292985856
author Nicholas Hananeia (22683665)
author2 Christian Ebner (1276467)
Christos Galanis (15210328)
Hermann Cuntz (32618)
Alexander Opitz (295799)
Andreas Vlachos (47497)
Peter Jedlicka (179938)
author2_role author
author
author
author
author
author
author_facet Nicholas Hananeia (22683665)
Christian Ebner (1276467)
Christos Galanis (15210328)
Hermann Cuntz (32618)
Alexander Opitz (295799)
Andreas Vlachos (47497)
Peter Jedlicka (179938)
author_role author
dc.creator.none.fl_str_mv Nicholas Hananeia (22683665)
Christian Ebner (1276467)
Christos Galanis (15210328)
Hermann Cuntz (32618)
Alexander Opitz (295799)
Andreas Vlachos (47497)
Peter Jedlicka (179938)
dc.date.none.fl_str_mv 2025-11-25T18:42:00Z
dc.identifier.none.fl_str_mv 10.1371/journal.pcbi.1012295.s007
dc.relation.none.fl_str_mv https://figshare.com/articles/figure/Schematic_of_added_myelinated_axon_/30715007
dc.rights.none.fl_str_mv CC BY 4.0
info:eu-repo/semantics/openAccess
dc.subject.none.fl_str_mv Medicine
Cell Biology
Neuroscience
Physiology
Space Science
Biological Sciences not elsewhere classified
Information Systems not elsewhere classified
results :</ b
previous experimental studies
objective :</ b
methods :</ b
like cellular effects
conclusion :</ b
background :</ b
strongly distance dependent
scale modeling tools
repetitive magnetic stimulation
biophysical neuronal models
1 hz protocols
successfully modelled plasticity
induced synaptic plasticity
dependent plasticity model
plasticity model
dependent spatio
scale modelling
burst stimulation
5 hz
plasticity amplitude
distal plasticity
term potentiation
term changes
temporal resolution
temporal changes
rms ).
previously established
parameter screening
neurons stimulated
neuronal dendrites
modelling framework
mechanisms behind
low sensitivity
high spatio
fully understood
detailed prediction
dendritic spikes
comprehensive module
dc.title.none.fl_str_mv Schematic of added myelinated axon.
dc.type.none.fl_str_mv Image
Figure
info:eu-repo/semantics/publishedVersion
image
description <p>Same color segments have identical biophysics. Blue: Axon initial segment and nodes; Green: Myelin; Red: Unmyelinated terminal.</p> <p>(TIFF)</p>
eu_rights_str_mv openAccess
id Manara_382e8730de03a49e8134782a6c6385a9
identifier_str_mv 10.1371/journal.pcbi.1012295.s007
network_acronym_str Manara
network_name_str ManaraRepo
oai_identifier_str oai:figshare.com:article/30715007
publishDate 2025
repository.mail.fl_str_mv
repository.name.fl_str_mv
repository_id_str
rights_invalid_str_mv CC BY 4.0
spelling Schematic of added myelinated axon.Nicholas Hananeia (22683665)Christian Ebner (1276467)Christos Galanis (15210328)Hermann Cuntz (32618)Alexander Opitz (295799)Andreas Vlachos (47497)Peter Jedlicka (179938)MedicineCell BiologyNeurosciencePhysiologySpace ScienceBiological Sciences not elsewhere classifiedInformation Systems not elsewhere classifiedresults :</ bprevious experimental studiesobjective :</ bmethods :</ blike cellular effectsconclusion :</ bbackground :</ bstrongly distance dependentscale modeling toolsrepetitive magnetic stimulationbiophysical neuronal models1 hz protocolssuccessfully modelled plasticityinduced synaptic plasticitydependent plasticity modelplasticity modeldependent spatioscale modellingburst stimulation5 hzplasticity amplitudedistal plasticityterm potentiationterm changestemporal resolutiontemporal changesrms ).previously establishedparameter screeningneurons stimulatedneuronal dendritesmodelling frameworkmechanisms behindlow sensitivityhigh spatiofully understooddetailed predictiondendritic spikescomprehensive module<p>Same color segments have identical biophysics. Blue: Axon initial segment and nodes; Green: Myelin; Red: Unmyelinated terminal.</p> <p>(TIFF)</p>2025-11-25T18:42:00ZImageFigureinfo:eu-repo/semantics/publishedVersionimage10.1371/journal.pcbi.1012295.s007https://figshare.com/articles/figure/Schematic_of_added_myelinated_axon_/30715007CC BY 4.0info:eu-repo/semantics/openAccessoai:figshare.com:article/307150072025-11-25T18:42:00Z
spellingShingle Schematic of added myelinated axon.
Nicholas Hananeia (22683665)
Medicine
Cell Biology
Neuroscience
Physiology
Space Science
Biological Sciences not elsewhere classified
Information Systems not elsewhere classified
results :</ b
previous experimental studies
objective :</ b
methods :</ b
like cellular effects
conclusion :</ b
background :</ b
strongly distance dependent
scale modeling tools
repetitive magnetic stimulation
biophysical neuronal models
1 hz protocols
successfully modelled plasticity
induced synaptic plasticity
dependent plasticity model
plasticity model
dependent spatio
scale modelling
burst stimulation
5 hz
plasticity amplitude
distal plasticity
term potentiation
term changes
temporal resolution
temporal changes
rms ).
previously established
parameter screening
neurons stimulated
neuronal dendrites
modelling framework
mechanisms behind
low sensitivity
high spatio
fully understood
detailed prediction
dendritic spikes
comprehensive module
status_str publishedVersion
title Schematic of added myelinated axon.
title_full Schematic of added myelinated axon.
title_fullStr Schematic of added myelinated axon.
title_full_unstemmed Schematic of added myelinated axon.
title_short Schematic of added myelinated axon.
title_sort Schematic of added myelinated axon.
topic Medicine
Cell Biology
Neuroscience
Physiology
Space Science
Biological Sciences not elsewhere classified
Information Systems not elsewhere classified
results :</ b
previous experimental studies
objective :</ b
methods :</ b
like cellular effects
conclusion :</ b
background :</ b
strongly distance dependent
scale modeling tools
repetitive magnetic stimulation
biophysical neuronal models
1 hz protocols
successfully modelled plasticity
induced synaptic plasticity
dependent plasticity model
plasticity model
dependent spatio
scale modelling
burst stimulation
5 hz
plasticity amplitude
distal plasticity
term potentiation
term changes
temporal resolution
temporal changes
rms ).
previously established
parameter screening
neurons stimulated
neuronal dendrites
modelling framework
mechanisms behind
low sensitivity
high spatio
fully understood
detailed prediction
dendritic spikes
comprehensive module