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1 usion of these bones in tetrapods creates an acetabulum.
2 sm underlying regional differentiation in A. acetabulum.
3 ssed throughout much of the life cycle of A. acetabulum.
4  of the unicellular green algae Acetabularia acetabulum.
5 dney hilum, iliac crest, and upper margin of acetabulum.
6  regulate reproductive onset in Acetabularia acetabulum and add to our understanding of how reproduct
7 The distance between the anterior rim of the acetabulum and the metaphysis measured 20.4 mm on the a
8 s of the uninucleate green alga Acetabularia acetabulum can differentiate a reproductive structure of
9 olving the sacrum, and (3) a fracture of the acetabulum following RFA of an acetabular lesion.
10 he levels of the upper liver (diaphragm) and acetabulum had a higher noise and lower diagnostic quali
11 1-like) homeobox gene, Aaknox1 (Acetabularia acetabulum kn1-like homeobox 1).
12 The unicellular green macroalga Acetabularia acetabulum L.
13  at arthroscopy indicate that the SAF of the acetabulum likely represents a variant.
14 f an accessory bony fossa in the roof of the acetabulum, or SAF.
15 ocalization may be one mechanism by which A. acetabulum regulates gene expression posttranscriptional
16 mage noise at the level of porta hepatis and acetabulum was evaluated with a five-point scale (1, no
17 the unicellular green macroalga Acetabularia acetabulum, we used degenerate PCR to clone a knotted1-l

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