3D quantification of short vertical neurites in membrane pores and their differentiation from other cell parts

Scientific efforts towards nerve regeneration and nerve-electrode interfaces depend on the possibility of guided neurite growth. The quantification and tracing of neurite growth during experiments is therefore essential. While tracing is possible under 2D cell culture conditions, it gets more comple...

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Main Authors: Lennart Guntenhöner, Katharina Foremny, Jan Stieghorst, Michaela Kreienmeyer, Theodor Doll
Format: Article
Language:English
Published: Elsevier 2021-12-01
Series:Physics in Medicine
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2352451021000068
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spelling doaj-593340f561104260b0a5ae877f4aac122021-08-08T04:18:40ZengElsevierPhysics in Medicine2352-45102021-12-01121000403D quantification of short vertical neurites in membrane pores and their differentiation from other cell partsLennart Guntenhöner0Katharina Foremny1Jan Stieghorst2Michaela Kreienmeyer3Theodor Doll4Corresponding author.; Department of Otorhinolaryngology and Cluster of Excellence Hearing4All, Hannover Medical School, Hannover, GermanyDepartment of Otorhinolaryngology and Cluster of Excellence Hearing4All, Hannover Medical School, Hannover, GermanyDepartment of Otorhinolaryngology and Cluster of Excellence Hearing4All, Hannover Medical School, Hannover, GermanyDepartment of Otorhinolaryngology and Cluster of Excellence Hearing4All, Hannover Medical School, Hannover, GermanyDepartment of Otorhinolaryngology and Cluster of Excellence Hearing4All, Hannover Medical School, Hannover, GermanyScientific efforts towards nerve regeneration and nerve-electrode interfaces depend on the possibility of guided neurite growth. The quantification and tracing of neurite growth during experiments is therefore essential. While tracing is possible under 2D cell culture conditions, it gets more complex when analysing three dimensionally orientated neurite pathways resulting in the ongoing development of 3D neuron tracing software. However, the quantification of short vertical neurite sprouts remains complicated due to difficult distinction from small cell body parts. With this study, we present a new method for precise identification and quantification of short neurite sprouts growing vertically from the surface of a track-etched membrane into 8 μm diameter pores of the membrane. Based on collected radius data from identified horizontally orientated neurites, a 95% reference interval for average radii of neurites was established and the limits were applied to trace neurite sprouts in the membrane's pores. Following this procedure, neurites were successfully distinguished from small cell body parts. This study demonstrates how to identify short neurite sprouts by assessing number, length, and radius with an additional checkpoint for bias detection.http://www.sciencedirect.com/science/article/pii/S2352451021000068Short vertical neuritesMembrane pores3D quantificationReference interval
collection DOAJ
language English
format Article
sources DOAJ
author Lennart Guntenhöner
Katharina Foremny
Jan Stieghorst
Michaela Kreienmeyer
Theodor Doll
spellingShingle Lennart Guntenhöner
Katharina Foremny
Jan Stieghorst
Michaela Kreienmeyer
Theodor Doll
3D quantification of short vertical neurites in membrane pores and their differentiation from other cell parts
Physics in Medicine
Short vertical neurites
Membrane pores
3D quantification
Reference interval
author_facet Lennart Guntenhöner
Katharina Foremny
Jan Stieghorst
Michaela Kreienmeyer
Theodor Doll
author_sort Lennart Guntenhöner
title 3D quantification of short vertical neurites in membrane pores and their differentiation from other cell parts
title_short 3D quantification of short vertical neurites in membrane pores and their differentiation from other cell parts
title_full 3D quantification of short vertical neurites in membrane pores and their differentiation from other cell parts
title_fullStr 3D quantification of short vertical neurites in membrane pores and their differentiation from other cell parts
title_full_unstemmed 3D quantification of short vertical neurites in membrane pores and their differentiation from other cell parts
title_sort 3d quantification of short vertical neurites in membrane pores and their differentiation from other cell parts
publisher Elsevier
series Physics in Medicine
issn 2352-4510
publishDate 2021-12-01
description Scientific efforts towards nerve regeneration and nerve-electrode interfaces depend on the possibility of guided neurite growth. The quantification and tracing of neurite growth during experiments is therefore essential. While tracing is possible under 2D cell culture conditions, it gets more complex when analysing three dimensionally orientated neurite pathways resulting in the ongoing development of 3D neuron tracing software. However, the quantification of short vertical neurite sprouts remains complicated due to difficult distinction from small cell body parts. With this study, we present a new method for precise identification and quantification of short neurite sprouts growing vertically from the surface of a track-etched membrane into 8 μm diameter pores of the membrane. Based on collected radius data from identified horizontally orientated neurites, a 95% reference interval for average radii of neurites was established and the limits were applied to trace neurite sprouts in the membrane's pores. Following this procedure, neurites were successfully distinguished from small cell body parts. This study demonstrates how to identify short neurite sprouts by assessing number, length, and radius with an additional checkpoint for bias detection.
topic Short vertical neurites
Membrane pores
3D quantification
Reference interval
url http://www.sciencedirect.com/science/article/pii/S2352451021000068
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