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spelling ftntunivathens:oai:dspace.lib.ntua.gr:123456789/16840 2024-04-14T08:10:17+00:00 Synchrotron micro-FT-IR spectroscopic evaluation of normal paediatric human bone Petra, M Anastassopoulou, J Theologis, T Theophanides, T 2005 https://doi.org/10.1016/j.molstruc.2004.07.041 unknown 0022-2860 doi:10.1016/j.molstruc.2004.07.041 ISI:000225487000015 733 1-3 101 110 Cortical bone Hydroxyapatite Infrared microspectroscopy Osteons Paediatric Chemistry Physical Apatites Undecalcified cortical bones Biopsy Carbonates Fourier transform infrared spectroscopy Molecular structure Phosphates Bone amide apatite carbonic acid phosphate article bone biopsy bone tissue calculation femur trochanteric fracture Haversian canal human human tissue infrared spectroscopy intraoperative period male pediatrics precipitation school child synchrotron 2005 ftntunivathens https://doi.org/10.1016/j.molstruc.2004.07.041 2024-03-19T08:32:16Z Other/Unknown Material Carbonic acid National Technical University of Athens (NTUA): DSpace Journal of Molecular Structure 733 1-3 101 110
institution Open Polar
collection National Technical University of Athens (NTUA): DSpace
op_collection_id ftntunivathens
language unknown
topic Cortical bone
Hydroxyapatite
Infrared microspectroscopy
Osteons
Paediatric
Chemistry
Physical
Apatites
Undecalcified cortical bones
Biopsy
Carbonates
Fourier transform infrared spectroscopy
Molecular structure
Phosphates
Bone
amide
apatite
carbonic acid
phosphate
article
bone biopsy
bone tissue
calculation
femur trochanteric fracture
Haversian canal
human
human tissue
infrared spectroscopy
intraoperative period
male
pediatrics
precipitation
school child
synchrotron
spellingShingle Cortical bone
Hydroxyapatite
Infrared microspectroscopy
Osteons
Paediatric
Chemistry
Physical
Apatites
Undecalcified cortical bones
Biopsy
Carbonates
Fourier transform infrared spectroscopy
Molecular structure
Phosphates
Bone
amide
apatite
carbonic acid
phosphate
article
bone biopsy
bone tissue
calculation
femur trochanteric fracture
Haversian canal
human
human tissue
infrared spectroscopy
intraoperative period
male
pediatrics
precipitation
school child
synchrotron
Petra, M
Anastassopoulou, J
Theologis, T
Theophanides, T
Synchrotron micro-FT-IR spectroscopic evaluation of normal paediatric human bone
topic_facet Cortical bone
Hydroxyapatite
Infrared microspectroscopy
Osteons
Paediatric
Chemistry
Physical
Apatites
Undecalcified cortical bones
Biopsy
Carbonates
Fourier transform infrared spectroscopy
Molecular structure
Phosphates
Bone
amide
apatite
carbonic acid
phosphate
article
bone biopsy
bone tissue
calculation
femur trochanteric fracture
Haversian canal
human
human tissue
infrared spectroscopy
intraoperative period
male
pediatrics
precipitation
school child
synchrotron
author Petra, M
Anastassopoulou, J
Theologis, T
Theophanides, T
author_facet Petra, M
Anastassopoulou, J
Theologis, T
Theophanides, T
author_sort Petra, M
title Synchrotron micro-FT-IR spectroscopic evaluation of normal paediatric human bone
title_short Synchrotron micro-FT-IR spectroscopic evaluation of normal paediatric human bone
title_full Synchrotron micro-FT-IR spectroscopic evaluation of normal paediatric human bone
title_fullStr Synchrotron micro-FT-IR spectroscopic evaluation of normal paediatric human bone
title_full_unstemmed Synchrotron micro-FT-IR spectroscopic evaluation of normal paediatric human bone
title_sort synchrotron micro-ft-ir spectroscopic evaluation of normal paediatric human bone
publishDate 2005
url https://doi.org/10.1016/j.molstruc.2004.07.041
genre Carbonic acid
genre_facet Carbonic acid
op_relation 0022-2860
doi:10.1016/j.molstruc.2004.07.041
ISI:000225487000015
733
1-3
101
110
op_doi https://doi.org/10.1016/j.molstruc.2004.07.041
container_title Journal of Molecular Structure
container_volume 733
container_issue 1-3
container_start_page 101
op_container_end_page 110
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