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1 abdominal wall below the rib cage, above the iliac crest).
2 larity is the bone marrow (BM) biopsy of the iliac crest.
3  (202-fold; P<10(-7)) in comparison with the iliac crest.
4 rence point was the mid-axillary line at the iliac crest.
5  maxilla, lumbar vertebra, femoral neck, and iliac crest.
6 es the harvest of fresh living bone from the iliac crest.
7 ntiguous CT slices from the diaphragm to the iliac crest.
8 es, and a distinctive lacy appearance of the iliac crest.
9 pole of the right kidney (RLP), or below the iliac crest.
10  showed key findings between the RLP and the iliac crest.
11 scans had diagnostic findings only below the iliac crest.
12 the gluteal muscles almost to the top of the iliac crest.
13 ear gain reduction and comparison with fetal iliac crest.
14           Bone marrow was aspirated from the iliac crest and cells were enriched by Ficoll density gr
15 nd 50% and 75% of osteoblasts from her right iliac crest and left patella, respectively, with minimal
16 e perform multi-region sequencing, including iliac crest and radiology-guided focal lesion specimens
17              Bone marrow aspiration from the iliac crests and in vivo sentinel lymph node mapping wer
18  the SUVmax in the axial skeleton (spine and iliac crests) and proximal limbs.
19           Bone marrow was aspirated from the iliac crest, and MNCs were separated at a Good Manufactu
20 iaphragm, porta hepatis, right kidney hilum, iliac crest, and upper margin of acetabulum.
21           Cynomolgus MSCs were obtained from iliac crest aspirate and characterized through passage 1
22               Because hMSCs are recovered by iliac crest aspirate and enriched by virtue of their adh
23 ole-body (18)F-FDG PET/CT and a BMB from the iliac crest before any treatment.
24 graphy combined with computed tomography) vs iliac crest biopsy in newly diagnosed patients with diff
25 , GCs plus risedronate, or placebo alone and iliac crest biopsy specimens obtained from patients who
26                   The present study on human iliac crest biopsy specimens reveals that BRC canopies a
27 rentiation markers, and capillaries in human iliac crest biopsy specimens.
28                                              Iliac crest-BM was aspirated from long-bone fracture pat
29         For lumbar spine fusion, rhBMP-2 and iliac crest bone graft were similar in overall success,
30 nic drugs and in combination with autologous iliac crest bone graft.
31 try (PCR-Flow) and cellular immune assays of iliac crest bone marrow aspirates and peripheral blood h
32        In PCR-Flow measurements of recipient iliac crest bone marrow aspirates as in previous studies
33                                    Moreover, iliac crest bone marrow aspirates contained an average o
34 ic makeup of the peripheral blood as well as iliac crest bone marrow between six months and one year
35  than freshly isolated and similarly treated iliac crest bone marrow cells from the donor.
36 s in whom there were sustained low levels of iliac crest bone marrow chimerism at both the earlier an
37 ng DBMC chimerism (approximately 1.4% in the iliac crest bone marrow compartment now at 6 years).
38 ly from the peripheral blood lymphocytes and iliac crest bone marrow of 11 living-related-donor (LRD)
39 de (approximately 1% at 2 years in recipient iliac crest bone marrow), has had a definite regulatory
40 iable presence of donor CD34+ cells in their iliac crest bone marrow, albeit 10-fold less than the ma
41                    We qualitatively screened iliac crest bone specimens from patients on dialysis to
42 ans, and segments of tumor-adjacent bone and iliac crest bone were analyzed for fluoride content.
43 l higher FoxP3 values correlated with higher iliac crest chimerism in DBMC-i, but not in controls (wi
44  kidney transplant recipients received donor iliac crest marrow (1.8 x 10(8)+/-1.9 x 10(8) cells/kg b
45  levels occurred by 21-28 months in a second iliac crest marrow aspirate 1 year after the first aspir
46                                   Unilateral iliac crest marrow aspirates and biopsies were performed
47              In the DBMC group, chimerism in iliac crest marrow aspirates has increased 3-fold in yea
48                  DBMC chimerism in recipient iliac crest marrow has increased more rapidly than might
49 ell chimerism of these lineages in recipient iliac crest marrow; (b) significantly lower levels of ch
50 h J20 mice, whereas patterns of shoulder and iliac crest movement were critical for classifying 13-mo
51 mall bone marrow aspirate was taken from the iliac crest of healthy human volunteers, and hMSCs were
52 from bone marrow aspirates obtained from the iliac crest or from the tibia/femur during joint surgery
53  tissue, and in one patient, a biopsy of the iliac crest revealed abnormal nests of chondrocytes and
54  carried for long distances on the posterior iliac crest since the weight would be shifted posteriorl
55 e biopsy samples taken from lumbar spine and iliac crest, sites that experience high and low levels o
56                                       On the iliac crest, the stone is posterior to the coronal plane
57 ive MR imaging and axial T2 mapping from the iliac crest to the mid thigh.
58 ndirect CT venography was performed from the iliac crest to the popliteal fossa.
59                        CT venograms from the iliac crests to the popliteal fossae were reviewed for p
60 ations on models constructed from samples of iliac crest trabecular bone are shown to be in agreement
61 control study, trabecular bone biopsies from iliac crest were collected intra-operatively from 28 sev
62 gation, bone marrow biopsies of the anterior iliac crest were examined to determine the size distribu
63 iopsy samples of normal bone marrow from the iliac crest were obtained from clinical cases at Shands
64                     Bone volume (BV/TV%) and iliac crest were similar at baseline and at month 4.
65  flaps of bone and muscle harvested from the iliac crest with internal oblique or the scapula tip wit