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H Khalak

Publications and source records attributed to H Khalak.

3 recordsLinked to original sources

Complete genome sequence of Treponema pallidum, the syphilis spirochete.

The complete genome sequence of Treponema pallidum was determined and shown to be 1,138,006 base pairs containing 1041 predicted coding sequences (open reading frames). Systems for DNA replication, transcription, translation, and repair are intact, but catabolic and biosynthetic activities are minimized. The number of identifiable transporters is small, and no phosphoenolpyruvate:phosphotransferase carbohydrate transporters were found. Potential virulence factors include a family of 12 potential membrane proteins and several putative hemolysins. Comparison of the T. pallidum genome sequence with that of another pathogenic spirochete, Borrelia burgdorferi, the agent of Lyme disease, identified unique and common genes and substantiates the considerable diversity observed among pathogenic spirochetes.

Bacterial Proteins↗

Attentional systems and the allocation of cerebral resources in reading and grammatical tasks.

To evaluate the possible role of attentional centers as modulators of neural networks that mediate visual tasks involving reading and grammatical manipulations of verbs, we measured cerebral blood flow (CBF) using positron emission tomography (PET), and reaction times as subjects read verbs, "nonce verbs" such as jelt or brep, and formed past tenses of regular, irregular and nonce verbs after viewing their stems. Statistical parametric maps (SPMs) showed significant activation of the pulvinar in the read verb irregular, and generate nonce past tense tasks, compared to rest. This was confirmed by a post hoc ANOVA of CBF values from a discrete locus in the pulvinar (p = .0000417). Functional links between the pulvinar and other brain regions were shown by high correlations of CBF in the pulvinar with CBF in brain regions known to have anatomical connections to the pulvinar, particularly those mediating vision. There was also a significant relationship between task-specific reaction times and rest minus task CBF differences in a multiple regression analysis that included CBF values from the pulvinar, superior colliculus plus reticular formation, and the anterior cingulate, known attentional centers (p = .021, r2 = 0.99). Regression analyses relating reaction time to the amount of brain activated (pixels in the SPMs) and the degree of activation of the pixels (mean Z score) yielded p values of .078 and .074, respectively. Our data provide direct experimental evidence to support the hypothesis that attentional centers are activated in proportion to the complexity of visually mediated language tasks and that the centers that mediate attention modulate the activity of task-specific neural networks.

Adult↗