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1 w bone, which exhibited osteocyte-containing lacunae.
2  and male Tg mice had a trend for more empty lacunae.
3 and anastomosis, and contraction of vascular lacunae.
4 atrix containing chondrocyte-like cells with lacunae.
5 e, strongly decreased the number of vascular lacunae.
6 ssion marked tumor cells engaged in vascular lacunae.
7 ickened, irregular RPE and absent RPE within lacunae.
8 n and trace hyperautofluorescence within the lacunae.
9 s" surrounding Hyp cementocyte and osteocyte lacunae.
10  volume, cortical gray and white matter, and lacunae.
11 vascular territories that presumably subtend lacunae.
12 calculus contains unmineralized channels and lacunae.
13 pecifically within the internal channels and lacunae.
14 profoundly influence the shape of resorption lacunae.
15 ruption of frontosubcortical loops caused by lacunae.
16 ial cells), where layer I lines the maternal lacunae.
17 ve thermal damage, and a wider zone of empty lacunae.
18 ithin and in the vicinity of the chondrocyte lacunae.
19 ssue, but not in the MNCs in bone resorption lacunae.
20 s localized to these MNCs in bone resorption lacunae, a finding that definitively identifies these ce
21 ntary changes, developing thereafter retinal lacunae and a retinal fold.
22                                              Lacunae and canaliculi spaces of osteocytes are remarkab
23 ccur in the BG, yet the relationship between lacunae and functional compartments is unknown.
24                              Osteocyte empty lacunae and osteonecrosis were significantly greater in
25 lyses confirmed larger cementocyte/osteocyte lacunae and significantly reduced perilacunar mineral de
26 ne before being encapsulated within the bone lacunae and terminally differentiating into osteocytes.
27 reveal areas of low density around osteocyte lacunae and their canaliculi in osteostracan bone.
28 tructures are sites of communication between lacunae and veins.
29 er with a relatively large cell body forming lacunae, and another that has similarities to both R. mi
30                                        Empty lacunae appear to result from osteocyte apoptosis, since
31                                    Osteocyte lacunae appeared normal around the cell body but did not
32                                          The lacunae are much smaller toward the anterior chamber and
33                                        Large lacunae are situated primarily in the suprachoroidea, an
34                   Clear changes in osteocyte lacunae as well as a statistically significant increase
35 F null placentas result in enlarged maternal lacunae, as determined by morphometric analysis, and pla
36 aracentesis of the anterior eye chamber, the lacunae become filled with erythrocytes on the side that
37 rs did not alter the qualitative features of lacunae, but it greatly reduced the number of pits and s
38 ormal, without basal ganglia hyperintensity, lacunae, calcification, or heavy metal deposits.
39 lesions, choroidal excavation, and choroidal lacunae can provide a clue toward the etiology of macula
40 ose associations between tenocytes, tenocyte lacunae, canaliculi, small channels, collagen, and miner
41 fter injection of pHocas-RIS, any osteocytic lacunae caused by bone-resorbing osteocytes cause the pr
42 re enables the probe to penetrate osteocytic lacunae cavities that are embedded deep within the bone
43 d a nonmineralized cartilaginous matrix with lacunae containing chondrocytes were observed within the
44 hat osteoblasts, when cultured in osteoclast lacunae containing TRAP, rapidly and specifically differ
45 s organized into lobules with round, angular lacunae, each containing a single chondrocyte.
46 hat are composed of numerous chondrocytes in lacunae, embedded in an extracellular matrix containing
47 nal features, including erectile bodies with lacunae, extensible collagen and/or elastin fibers, and
48 man OA cartilage, and persist in chondrocyte lacunae for at least 2 wk.
49 e osteoclasts and presumably preparing these lacunae for bone formation.
50                                              Lacunae form within the mesoderm layer of the mutant emb
51 ght susceptible), probably limiting cortical lacunae formation during mild stress.
52                                              Lacunae formation in drought-stressed fine roots was ass
53 d miR-200 to inhibit the process of vascular lacunae formation in TNBC.
54                                     Cortical lacunae formation led to permanent structural damage of
55                                     However, lacunae formation occurred under milder stress in the dr
56 hat drought-induced mechanical failure (i.e. lacunae formation) in fine root cortical cells is the in
57                                          The lacunae formed by the separation of motile endothelial c
58 clast activity, and the number of resorption lacunae formed on bone slices.
59  of the extracellular compartment, expanding lacunae, further separating membrane arrays.
60 hyper-reflective cytoplasm and extracellular lacunae in a honeycomb-like appearance was observed and
61  areas devoid of blood vessels resembles the lacunae in Aicardy syndrome.
62 ated cells (MNCs) were present in resorption lacunae in areas of calcified cartilage and in subchondr
63 in K mRNA were identified in bone resorption lacunae in areas of pannus invasion into bone in RA pati
64 to measure localised pH levels in osteocytic lacunae in bone tissue.
65 n-stained paraffin sections, we detect empty lacunae in osteocytes in calvariae from Col1a1(r/r) mice
66              However, it is our opinion that lacunae in our understanding of auxin transport biology
67 ficantly, I draw attention to the surprising lacunae in sex differences across attack and defense.
68  viability stain, were found within cavities/lacunae in supragingival calculus cryosections.
69 layers resulted in the formation of numerous lacunae in the cultures.
70              Future research should focus on lacunae in the current evidence base: effectiveness of i
71 st those of others are considered, alongside lacunae in the field, by drawing on virtue ethics.
72 13 is crucial for lactation-induced PLR near lacunae in the mid-cortex but not for whole-bone resorpt
73 ber of osteocytes and higher number of empty lacunae in the SHAM-Di and OVX-Di groups compared to the
74                              Despite evident lacunae in the understanding of the pathogenesis, at lea
75  phenotype of osteoclasts in bone resorption lacunae in these sites, suggesting that osteoclasts medi
76  generalized retinal dysfunction, peripheral lacunae, intraretinal pigment migration, and hyperautofl
77                                         This lacunae introduces critical challenges for interpreting,
78 or international relations scholarship, this lacunae is particularly troubling or perhaps, just weird
79 lesions, choroidal excavation, and choroidal lacunae (large choroidal vessels) on SSOCT differed sign
80      Further, histological analysis revealed lacunae-like structures, while staining demonstrated gly
81 rd MR imaging criteria were used to identify lacunae, loss of white matter volume, encephalomalacia,
82                             With MR imaging, lacunae, loss of white matter volume, encephalomalacia,
83 etinal periphery (n = 16) with intralesional lacunae (n = 14) and surrounding nonpigmented (n = 4) an
84 disclosed hypoautofluorescence (n = 18) with lacunae (n = 14) showing isoautofluorescence (n = 10) or
85 tation (n = 16) and hyperreflectivity within lacunae (n = 14).
86 excavated lesions (n = 11/15) with choroidal lacunae (n = 8/15).
87 There was no significant difference in empty lacunae, necrotic bone formation, osteoclast number, and
88 traction of LIP teeth led to increased empty lacunae, necrotic bone, and osteoclast surface area in a
89                                 Formation of lacunae occurred on gelatin and fibronectin surfaces ali
90                 The authors propose that the lacunae of the avian choroid represent a system of poste
91 s, including the cement sheath and bone cell lacunae of the selected bone trabecula.
92                                     Abundant lacunae of unprocessed lipids in stratum corneum (SC) of
93 reated osteoclasts generate more clusters of lacunae on bone suggesting that multiple, spatially asso
94 nstrated by their ability to form resorption lacunae on dentine slices.
95 ce and hyporeflectivity with hyperreflective lacunae on IR imaging.
96 h either lacked extrinsic fibers or cellular lacunae or featured evidence of cementum remodeling.
97  syncytiotrophoblasts covering trophoblastic lacunae or newly formed chorionic villi remained largely
98 /PA) and 2 with no osteoclasts or resorption lacunae/ periodontal quiescence (NOC/PQ).
99 r crest periosteal osteoclasts in resorption lacunae/periodontitis activity (OC/PA) and 2 with no ost
100 tors did not affect the number of resorption lacunae ("pits") formed on the surface of dentine slices
101 f the mutant embryos, and cells lining these lacunae retain epithelial characteristics.
102                                     Cortical lacunae started forming under mild drought stress (-0.6
103 er canaliculi emanating from cell (tenocyte) lacunae surround extracellular collagen fibril bundles.
104 aced by electron-dense (hydrophilic) clefts (lacunae) that expand laterally, splitting lamellar array
105                              We found larger lacunae undergoing PLR are located near canals in the mi
106                      In normal chickens, the lacunae usually are devoid of blood cells.
107 ersal phase are the cells recruited into the lacunae vacated by the osteoclasts and presumably prepar
108 ium fluorescein) among individual osteocytic lacunae was visualized in situ beneath the periosteal su
109                                          The lacunae we identify should inspire future studies on the
110                                To fill these lacunae, we develop here a comprehensive continuum-mecha
111                        Of 9 lesions in which lacunae were imaged, 8 showed absent RPE.
112                                              Lacunae were more frequent in patients with SCA but not
113  After 8 wk, multiple dentin/root resorption lacunae were present in root dentin with robust RANKL an
114                              Root resorption lacunae were small and infrequent and did not differ amo
115 nterconnected regions: a plot of sinuses and lacunae which line the body, and a transparent, macrosco
116       The avian choroid contains thin-walled lacunae, whose fine structure is identical to that of ly
117 us initially colonizes cells lining maternal lacunae within the trophospongium layer of the placenta.

 
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