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1 mination of phosphate from DHAP to form enol pyruvaldehyde.
2 ide, or N4,N4-dimethylthiosemicarbazide with pyruvaldehyde 2-thiosemicarbazones that had been generat
3 gement of the imine of the hemithioacetal of pyruvaldehyde, a product of glyceraldehyde dehydration.
5 ator-produced positron-emitting tracer, 62Cu-pyruvaldehyde bis (N4-methylthio- semicarbazone)(62Cu-PT
6 aged with (18)F-PC-10, (18)F-FDG, and (64)Cu-pyruvaldehyde bis(4-methyl-3-thiosemicarbazone) ((64)Cu-
7 PET) is a radiolabeled copper(II) complex of pyruvaldehyde bis(N(4)-methylthiosemicarbazone), [Cu(64)
8 ldehyde bis(N4-methylthiosemicarbazone), and pyruvaldehyde bis(N4,N4-dimethylthiosemicarbazone), resp
10 d from pyruvaldehyde bis(thiosemicarbazone), pyruvaldehyde bis(N4-methylthiosemicarbazone), and pyruv
11 of ligands 4a-d, like the Cu(II) complex of pyruvaldehyde bis(N4-methylthiosemicarbazone), interact
12 Cu-PTS, Cu-PTSM, and Cu-PTSM2 (derived from pyruvaldehyde bis(thiosemicarbazone), pyruvaldehyde bis(
13 imal model, we tested the efficacy of (64)Cu-pyruvaldehyde-bis(N(4)-methylthiosemicarbazone) ((64)Cu-
15 nerator performance in a study in which 62Cu-pyruvaldehyde-bis(n4-methylthiosemicarbazone (PTSM) myoc
16 at minimize the inhibitory effects of (64)Cu-pyruvaldehyde-bis(N4-methylthiosemicarbazone) ((64)Cu-PT
17 lthiosemicarbazone) ((64)Cu-ATSM) and (64)Cu-pyruvaldehyde-bis(N4-methylthiosemicarbazone) ((64)Cu-PT
19 ia and compared it with the flow tracer 64Cu-pyruvaldehyde-bis(N4-methylthiosemicarbazone) (Cu-PTSM)
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