Non uniformity: structural strategy for optimizing functionality in skeletal ligaments

Ligaments serve as compliant connectors between hard tissues. In that role, they function under various load regimes and directions. However, the 3D structure of ligaments is still considered uniform. The periodontal ligament connects the tooth to the bone and like other ligaments, it sustains diff...

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Main Author: Naveh, Gili
Language:en_US
Published: 2018
Subjects:
Online Access:https://hdl.handle.net/2144/26296
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spelling ndltd-bu.edu-oai-open.bu.edu-2144-262962019-01-08T15:42:42Z Non uniformity: structural strategy for optimizing functionality in skeletal ligaments Naveh, Gili Dentistry Ligaments serve as compliant connectors between hard tissues. In that role, they function under various load regimes and directions. However, the 3D structure of ligaments is still considered uniform. The periodontal ligament connects the tooth to the bone and like other ligaments, it sustains different types of loads in various directions. Using the PDL as a model, and employing a fabricated motorized set-up in a microCT instrument, morphological automated segmentation methods and 2nd harmonic generation imaging, we demonstrate that the fibrous network structure within the PDL is not uniform, even before the tooth becomes functional. We find that areas sustaining compression loads are pre-structured with sparse collagenous networks and large blood vessels, whereas other areas contain dense collagen networks with few blood vessels. Therefore, the PDL develops as a non-uniform structure, with an architecture designed to sustain specific types of load in different areas. Based on these findings, we propose that ligaments in general should be regarded as non-uniform entities structured for optimal functioning under variable load regimes. 2019-09-26T00:00:00Z 2018-01-23T20:11:25Z 2017 2017-10-25T18:34:53Z Thesis/Dissertation https://hdl.handle.net/2144/26296 en_US
collection NDLTD
language en_US
sources NDLTD
topic Dentistry
spellingShingle Dentistry
Naveh, Gili
Non uniformity: structural strategy for optimizing functionality in skeletal ligaments
description Ligaments serve as compliant connectors between hard tissues. In that role, they function under various load regimes and directions. However, the 3D structure of ligaments is still considered uniform. The periodontal ligament connects the tooth to the bone and like other ligaments, it sustains different types of loads in various directions. Using the PDL as a model, and employing a fabricated motorized set-up in a microCT instrument, morphological automated segmentation methods and 2nd harmonic generation imaging, we demonstrate that the fibrous network structure within the PDL is not uniform, even before the tooth becomes functional. We find that areas sustaining compression loads are pre-structured with sparse collagenous networks and large blood vessels, whereas other areas contain dense collagen networks with few blood vessels. Therefore, the PDL develops as a non-uniform structure, with an architecture designed to sustain specific types of load in different areas. Based on these findings, we propose that ligaments in general should be regarded as non-uniform entities structured for optimal functioning under variable load regimes. === 2019-09-26T00:00:00Z
author Naveh, Gili
author_facet Naveh, Gili
author_sort Naveh, Gili
title Non uniformity: structural strategy for optimizing functionality in skeletal ligaments
title_short Non uniformity: structural strategy for optimizing functionality in skeletal ligaments
title_full Non uniformity: structural strategy for optimizing functionality in skeletal ligaments
title_fullStr Non uniformity: structural strategy for optimizing functionality in skeletal ligaments
title_full_unstemmed Non uniformity: structural strategy for optimizing functionality in skeletal ligaments
title_sort non uniformity: structural strategy for optimizing functionality in skeletal ligaments
publishDate 2018
url https://hdl.handle.net/2144/26296
work_keys_str_mv AT navehgili nonuniformitystructuralstrategyforoptimizingfunctionalityinskeletalligaments
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