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P Nachev

Publications and source records attributed to P Nachev.

6 recordsLinked to original sources

Cognitive processes in saccade generation.

The analysis of saccades offers an opportunity to study a number of different cognitive processes, such as visuospatial attention, working memory, and volitional conflict. A study of saccades in patients with visuospatial hemineglect, who performed a visual search task, showed repeated fixations on targets previously discovered, yet they often failed to retain the information that a particular target had previously been discovered. High-resolution structural brain scanning showed that this abnormality was due either to a lesion in the right intraparietal sulcus or the right inferior frontal lobe. Detailed analysis of the scanpaths suggested that the former location was associated with an accumulating impairment in remapping target locations across saccades or impaired memory of previously inspected target locations, whereas the latter location was more consistent with a failure to inhibit responses to rightward locations. When combined with a spatial bias to the right, such deficits might explain why many neglect patients often reexamine rightward targets, at the expense of items to their left. The functions of the supplementary eye field (SEF), in the medial frontal lobe, in relation to saccade generation are controversial. A series of studies in a patient with a focal lesion of the right SEF has indicated an important role for the SEF in the rapid self-control of saccadic eye movements and in set-switching (i.e., implementing control in situations of response conflict when ongoing saccadic plans have to be changed rapidly), rather than monitoring errors. In a recent fMRI study of normal subjects, it was shown that the SEF is involved in implementing the resolution of any volitional conflict, whereas other presupplementary motor areas are involved in the generation of volitional plans and processing volitional conflict.

Brain Mapping↗

[Stability of antilipidemic etofibrate and its metabolites towards gastrointestinal and blood hydrolases (author's transl)].

Etofibrate is preferentially cleaved in its clofibrinic acid ester group by the hydrolases of the blood. The formed nicotinic acid 2-hydroxyethyl ester is considerably more stable than the 2-(4-chlorophenoxy)-2-methylpropionic acid (2-hydroxyethyl)-ester. Against artificial gastric and intestinal juice (USP XIX), the nicotinic acid 2-hydroxyethyl ester is almost completely stable. Etofibrate is bound to plasma albumin substantially more tightly than is clofibrate.

Biotransformation↗

Uremic inhibition of purine uptake by rat hepatic slices.

Measurements were made of the production of allantoin by liver slices prepared either from bilaterally nephrectomized rats or from normal, control rats in flasks containing either a) no added substrate, b) hypoxanthine, or c) xanthine. Uremic liver slices showed a 72.3% inhibition of augmented allantoin production with hypoxanthine as substrate and a 68.3% inhibition with xanthine as substrate. Next, uremic rat serum was added to liver slices prepared from normal rats along with either a) no added substrate, b) hypoxanthine, or c) xanthine. Normal rat serum replaced uremic rat serum in control experiments. In these paired experiments, uremic serum exerted an inhibitory effect on allantoin production of 78.0% when hypoxanthine was the substrate and of 83.6% when xanthine was the substrate. Studies on possible underlying mechanisms showed that the observed uremic inhibition of allantoin production by hepatic slices, in the presence of substrate (e.g., hypoxanthine), represents a decreased production of uric acid, secondary to the decreased hepatic uptake of substrate.

Allantoin↗

Effects of proteolytic encymes on uremic serum inhibition of hepatic and renal transport functions.

Dialysates of rat uremic serum were incubated with Pronase, Carboxypeptidase A, Leucine Aminopeptidase, or Trypsin to investigate whether these enzymes might destroy the inhibitory effects of the dialysates on the uptake of paraaminohippurate by rat renal cortical slices or the uptake of purines by rat liver slices. Of these enzymes, Pronase produced the greatest destruction (63.2 +/- 4.5%) of the inhibitory action on renal transport, with a much smaller destruction (17.8 +/- 2.1%) of the inhibitory effect on hepatic transport.

Aminohippuric Acids↗