Goehre, Felix; Ludtka, Christopher; Hamperl, Melanie; Friedmann, Andrea; Straube, Anja; Mendel, Thomas; Heilmann, Andreas; Meisel, Hans Jörg; Schwan, Stefan:
Micro-computed tomography, scanning electron microscopy and energy X-ray spectroscopy studies of facet joint degeneration: a comparison to clinical imaging
In: Micron : the international research and review journal for microscopy, Band 100 (2017), S. 50 - 59
2017Artikel/Aufsatz in ZeitschriftClosed Access
Technische Universität Ilmenau (1992-) » Fakultät für Maschinenbau (1992-) » Ohne Institutszuordnung (1992-) » Fachgebiet Biomechatronik (2002-)
Titel in Englisch:
Micro-computed tomography, scanning electron microscopy and energy X-ray spectroscopy studies of facet joint degeneration: a comparison to clinical imaging
Autor*in:
Goehre, Felix
SCOPUS
55837919000
;
Ludtka, Christopher
SCOPUS
56901421100
ORCID
0000-0002-9080-1594ORCID iD
;
Hamperl, Melanie
SCOPUS
56901328400
;
Friedmann, Andrea
SCOPUS
36445602100
;
Straube, AnjaTU
GND
1353853810
SCOPUS
37001914300
Sonstiges
der Hochschule zugeordnet
;
Mendel, Thomas
SCOPUS
24830952600
;
Heilmann, Andreas
SCOPUS
53874920700
;
Meisel, Hans Jörg
SCOPUS
55347735300
GND
144059339
;
Schwan, Stefan
SCOPUS
23991415700
ORCID
0000-0001-9835-7822ORCID iD
Sonstiges
korrespondierende*r Autor*in
Erscheinungsjahr:
2017
Open-Access-Publikationsweg:
Closed Access
PubMed ID
Scopus ID
PPN:
Sprache des Textes:
Englisch
Schlagwort, Thema:
Computed tomography ; Facet joint ; Human lumbar spine ; Scanning electron microscopy ; Structure analysis ; Cartilage, Articular ; Lumbar Vertebrae ; Zygapophyseal Joint ; Humans ; Joint Diseases ; Low Back Pain ; Microscopy, Electron, Scanning ; Bone Density ; Adult ; Aged ; Aged, 80 and over ; Middle Aged ; Female ; Male ; X-Ray Microtomography ; Intervertebral Disc ; Intervertebral Disc Degeneration ; computed tomography ; Facet Joint ; Human Lumbar Spine
Datenträgertyp:
Online-Ressource
Ressourcentyp:
Text
Access Rights:
nur Zugriff auf Metadaten
Peer Reviewed:
Ja
Teil der Statistik:
Ja

Abstract in Englisch:

Segmental degeneration in the human lumbar spine affects both the intervertebral discs and facet joints. Facet joint degeneration not only affects the cartilage surface, but also alters the cellular properties of the cartilage tissue and the structure of the subchondral bone. The primary focus of this study is the investigation of these microstructural changes that are caused by facet joint degeneration. Microstructural analyses of degenerated facet joint samples, obtained from patients following operative lumbar interbody fusion, have not previously been extensively investigated. This study analyzes human facet joint samples from the inferior articular process using scanning electron microscopy, micro-computed tomography, and energy dispersive X-ray spectroscopy to evaluate parameters of interest in facet joint degeneration such as elemental composition, cartilage layer thickness and cell density, calcification zone thickness, subchondral bone portion, and trabecular bone porosity. These microstructural analyses demonstrate fragmentation, cracking, and destruction of the cartilage layer, a thickened calcification zone, localized calcification areas, and cell cluster formation as pathological manifestations of facet joint degeneration. The detailed description of these microstructural changes is critical for a comprehensive understanding of the pathology of facet joint degeneration, as well as the subsequent development and efficacy analysis of regenerative treatment strategies.