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1         We present a sequential study of the substructural alterations in the chick basilar papilla a
2 hat triptolide also induces distinct nuclear substructural changes in HeLa cells.
3  computational unfolding to better visualize substructural changes in neural activity in the hippocam
4          Furthermore, we identified specific substructural changes, which switched partial agonist ac
5                           They belong to two substructural classes of miliusanes.
6 , leading to the identification of preferred substructural components.
7 metry (ESI-FTICRMS) and discovers additional substructural components.
8 y are differentiated "substructurally." This substructural differentiation is argued to be recognized
9                        To gain insights into substructural diversity within this plant family, we als
10          The identification of synthesizable substructural domains within more complex structural tar
11 also examined effects on permeability of 800 substructural elements by comparing matched molecular pa
12  useful to systematically optimize the three substructural elements that compose a typical TTR kineti
13 to systematically optimize each of the three substructural elements that comprise a typical inhibitor
14           To establish the function of these substructural elements, we have cloned and expressed the
15 rifluoroborates provide a practical entry to substructural entities not readily accessed using other
16 s, but much remains unknown at the levels of substructural evolutionary reorganization and ecological
17 sed on graph theory, information theory, and substructural feature counts employed to gauge MC are of
18  of MDRR agents, some compounds with desired substructural features and activity were identified from
19                                         Some substructural features related to MDRR activity were ide
20 activity relationship (SAR) studies revealed substructural features that influence the selective inhi
21 igand bioactivities and determination of key substructural features which determine ligand bioactivit
22 pability to search database files by name or substructural features, modifications in tmRNA, and link
23 n kinases, in the context of kinase-specific substructural fragments.
24 -DT) and molecular fingerprints derived from substructural fragments.
25 ng, and sectioning) typically used to access substructural information in biological samples.
26 ith their solved structures, hence providing substructural information.
27  to applied mechanical loads, changes at the substructural level of neurofilaments may precede microt
28 ween different oligosaccharides, as specific substructural motifs are preserved among different compo
29                 We propose that a catalog of substructural motifs can be identified and characterized
30 tion patterns belonging to a set of specific substructural motifs.
31 y glomerular deposits of immunoglobulin with substructural organization as microtubules and with clin
32                                              Substructural repeat domains are evident within multimer
33 ere we show that A beta is associated with a substructural vesicular component within drusen.
34 ulin emerges as a key correlate of placental substructural volumes, thereby facilitating feedback to