MUG500+: Database of 500 high-resolution healthy human skulls and 29 craniotomy skulls and implants

In this article, we present a skull database containing 500 healthy skulls segmented from high-resolution head computed-tomography (CT) scans and 29 defective skulls segmented from craniotomy head CTs. Each healthy skull contains the complete anatomical structures of human skulls, including the cran...

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Autores principales: Jianning Li, Marcell Krall, Florian Trummer, Afaque Rafique Memon, Antonio Pepe, Christina Gsaxner, Yuan Jin, Xiaojun Chen, Hannes Deutschmann, Ulrike Zefferer, Ute Schäfer, Gord von Campe, Jan Egger
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Publicado: Elsevier 2021
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Acceso en línea:https://doaj.org/article/bcd008e6aaee4006b8eeb41510d04cad
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spelling oai:doaj.org-article:bcd008e6aaee4006b8eeb41510d04cad2021-11-10T04:27:59ZMUG500+: Database of 500 high-resolution healthy human skulls and 29 craniotomy skulls and implants2352-340910.1016/j.dib.2021.107524https://doaj.org/article/bcd008e6aaee4006b8eeb41510d04cad2021-12-01T00:00:00Zhttp://www.sciencedirect.com/science/article/pii/S2352340921008003https://doaj.org/toc/2352-3409In this article, we present a skull database containing 500 healthy skulls segmented from high-resolution head computed-tomography (CT) scans and 29 defective skulls segmented from craniotomy head CTs. Each healthy skull contains the complete anatomical structures of human skulls, including the cranial bones, facial bones and other subtle structures. For each craniotomy skull, a part of the cranial bone is missing, leaving a defect on the skull. The defects have various sizes, shapes and positions, depending on the specific pathological conditions of each patient. Along with each craniotomy skull, a cranial implant, which is designed manually by an expert and can fit with the defect, is provided. Considering the large volume of the healthy skull collection, the dataset can be used to study the geometry/shape variabilities of human skulls and create a robust statistical model of the shape of human skulls, which can be used for various tasks such as cranial implant design. The craniotomy collection can serve as an evaluation set for automatic cranial implant design algorithms.Jianning LiMarcell KrallFlorian TrummerAfaque Rafique MemonAntonio PepeChristina GsaxnerYuan JinXiaojun ChenHannes DeutschmannUlrike ZeffererUte SchäferGord von CampeJan EggerElsevierarticleSkullCranial implant designCraniotomyPatient-specific implants (PSI)Computer-aided design (CAD)Machine learningComputer applications to medicine. Medical informaticsR858-859.7Science (General)Q1-390ENData in Brief, Vol 39, Iss , Pp 107524- (2021)
institution DOAJ
collection DOAJ
language EN
topic Skull
Cranial implant design
Craniotomy
Patient-specific implants (PSI)
Computer-aided design (CAD)
Machine learning
Computer applications to medicine. Medical informatics
R858-859.7
Science (General)
Q1-390
spellingShingle Skull
Cranial implant design
Craniotomy
Patient-specific implants (PSI)
Computer-aided design (CAD)
Machine learning
Computer applications to medicine. Medical informatics
R858-859.7
Science (General)
Q1-390
Jianning Li
Marcell Krall
Florian Trummer
Afaque Rafique Memon
Antonio Pepe
Christina Gsaxner
Yuan Jin
Xiaojun Chen
Hannes Deutschmann
Ulrike Zefferer
Ute Schäfer
Gord von Campe
Jan Egger
MUG500+: Database of 500 high-resolution healthy human skulls and 29 craniotomy skulls and implants
description In this article, we present a skull database containing 500 healthy skulls segmented from high-resolution head computed-tomography (CT) scans and 29 defective skulls segmented from craniotomy head CTs. Each healthy skull contains the complete anatomical structures of human skulls, including the cranial bones, facial bones and other subtle structures. For each craniotomy skull, a part of the cranial bone is missing, leaving a defect on the skull. The defects have various sizes, shapes and positions, depending on the specific pathological conditions of each patient. Along with each craniotomy skull, a cranial implant, which is designed manually by an expert and can fit with the defect, is provided. Considering the large volume of the healthy skull collection, the dataset can be used to study the geometry/shape variabilities of human skulls and create a robust statistical model of the shape of human skulls, which can be used for various tasks such as cranial implant design. The craniotomy collection can serve as an evaluation set for automatic cranial implant design algorithms.
format article
author Jianning Li
Marcell Krall
Florian Trummer
Afaque Rafique Memon
Antonio Pepe
Christina Gsaxner
Yuan Jin
Xiaojun Chen
Hannes Deutschmann
Ulrike Zefferer
Ute Schäfer
Gord von Campe
Jan Egger
author_facet Jianning Li
Marcell Krall
Florian Trummer
Afaque Rafique Memon
Antonio Pepe
Christina Gsaxner
Yuan Jin
Xiaojun Chen
Hannes Deutschmann
Ulrike Zefferer
Ute Schäfer
Gord von Campe
Jan Egger
author_sort Jianning Li
title MUG500+: Database of 500 high-resolution healthy human skulls and 29 craniotomy skulls and implants
title_short MUG500+: Database of 500 high-resolution healthy human skulls and 29 craniotomy skulls and implants
title_full MUG500+: Database of 500 high-resolution healthy human skulls and 29 craniotomy skulls and implants
title_fullStr MUG500+: Database of 500 high-resolution healthy human skulls and 29 craniotomy skulls and implants
title_full_unstemmed MUG500+: Database of 500 high-resolution healthy human skulls and 29 craniotomy skulls and implants
title_sort mug500+: database of 500 high-resolution healthy human skulls and 29 craniotomy skulls and implants
publisher Elsevier
publishDate 2021
url https://doaj.org/article/bcd008e6aaee4006b8eeb41510d04cad
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