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1 h receptors in both the nucleus pulposus and annulus fibrosus.
2 or the development of both the AV valves and annulus fibrosus.
3 during the development of AV valves and the annulus fibrosus.
4 septal leaflet, and the atrial border of the annulus fibrosus.
5 IDC, and 289 cases (63%) were located in the annulus fibrosus.
6 ller AV sulcus and a severely underdeveloped annulus fibrosus.
7 (IVD) herniation involves disruption of the annulus fibrosus (AF) caused by ageing or excessive mech
11 ained samples resolved the nucleus pulposus, annulus fibrosus and constituent lamellae, and finer str
12 nerves extended into the inner third of the annulus fibrosus and into the nucleus pulposus in 21 (46
14 bute to the mesenchyme of the AV sulcus, the annulus fibrosus, and the parietal leaflets of the AV va
15 the contribution of EPDCs to the AV sulcus, annulus fibrosus, and the parietal leaflets of the AV va
16 ell and nucleus in meniscus, tendon, and the annulus fibrosus, as well as in stem cell-seeded scaffol
17 assessed by magnetic resonance imaging, with annulus fibrosus cell apoptosis and anti-cytochrome c st
18 ical overload (1.3 MPa) for 24 hours induced annulus fibrosus cell apoptosis and led to severe degene
19 caspase-9-dependent mitochondrial pathway in annulus fibrosus cell apoptosis induced by overload was
21 esults from human samples, mouse models, and annulus fibrosus culture experiments demonstrate that th
22 12.5 kPa +/- 1.3; grade 5, 16.5 kPa +/- 2.1; annulus fibrosus grade 1, 90.4 kPa +/- 9.3; grade 5, 120
23 ified nerve fibres in the outer third of the annulus fibrosus in 48 (60%) of the 80 samples of interv
25 ulposus surrounded by an aligned collagenous annulus fibrosus in the caudal spine of athymic rats for
26 ficant increase in both nucleus pulposus and annulus fibrosus MR elastography-derived shear stiffness
29 the healthy back only the outer third of the annulus fibrosus of the intervertebral disc is innervate
31 shear stiffness of the nucleus pulposus and annulus fibrosus regions of all lumbar IVDs were assesse
32 However, for complex tissues such as the annulus fibrosus, scaffolds have failed to capture their
33 p nerve ingrowth into the inner third of the annulus fibrosus, the nucleus pulposus, or both was seen
35 nd adherent to the ventricular wall, and the annulus fibrosus was disrupted resulting in ventricular
36 mposed by nucleus pulposus surrounded by the annulus fibrosus, were often missing in Gdf5-Cre;Ext1(f/
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