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1 s production of 4-hydroxybutyric acid (gamma-hydroxybutyric acid).
2 ent of myoclonus are levetiracetam and gamma-hydroxybutyric acid.
3  PHB granules to oligomers and monomers of 3-hydroxybutyric acid.
4 individuals accumulate large quantities of 4-hydroxybutyric acid, a compound with a wide range of neu
5 cid, glucose 6-phosphate, capric acid, gamma-hydroxybutyric acid, and d-arabinose.
6                          Elevations of gamma-hydroxybutyric acid can be detected in the physiologic f
7 hether insufficient GABA and/or excess gamma-hydroxybutyric acid contribute to the disease phenotype.
8 ocopherol, threonic acid, beta-sitosterol, 4-hydroxybutyric acid, ferulic acid, and total phenolics.
9 y useful for posthypoxic myoclonus and gamma-hydroxybutyric acid for alcohol-sensitive myoclonus.
10 aldehyde, is shunted towards production of 4-hydroxybutyric acid (gamma-hydroxybutyric acid).
11 ic acid (NCS-382) is an antagonist for gamma-hydroxybutyric acid (GHB) at GHB receptor sites.
12                                        gamma-Hydroxybutyric acid (GHB) binding to brain-specific high
13                                        gamma-Hydroxybutyric acid (GHB) is a naturally occurring compo
14                                        Gamma-hydroxybutyric acid (GHB) is a naturally occurring gamma
15                                        gamma-Hydroxybutyric acid (GHB) is a neuroactive substance wit
16                                        gamma-Hydroxybutyric acid (GHB) is a popular drug increasingly
17                     We report metabolites of hydroxybutyric acid (HBA) as novel diagnostic and progno
18 to a deficit in synthesis capacity, as gamma-hydroxybutyric acid lactone (GBL) increased DOPA accumul
19              Due to its use by brain, D-beta-hydroxybutyric acid not only has permitted man to surviv
20 not be measured in biologic fluids, and beta-hydroxybutyric acid, which was difficult to measure, was

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