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Protan color vision deficiency with a unique order of green-red as the first two genes of a visual pigment array.

Normal visual pigment gene arrays on the human X chromosome have a red gene at the first and a green gene at the second positions. More than half of the arrays have additional green genes downstream, but only the first two genes of the array are likely to be expressed in the retina. An array consisting of four genes in two Japanese participants, A121 and A447, was detected either by pulsed field gel electrophoresis and subsequent Southern hybridization or by single nucleotide primer extension reaction. In both participants, the first gene of the array was green, downstream genes were red and green, and the fourth gene was green. The red gene was determined to be at the second position by comparison of polymorphic sites among the intergenic regions that had been amplified by long-range PCR. Such an array with a reverse normal order of pigment genes, green-red as the first two, has never been reported before. They were expected to have normal color vision but showed protan deficiency (protanomaly), a phenotype lacking the red pigment. The red gene had no mutations in the exons and exon/intron boundaries, but had an A-71C substitution in the promoter in both participants.

Adolescent↗

Orbital inflammation.

Orbital inflammation is a common problem in adults and children, accounting for the majority of all orbital processes. The presentation may be acute, subacute, or insidious. When the onset is acute, the process can be mistaken for orbital cellulitis. In insidious cases, such as the sclerosing subtype of inflammation, the chronic painless course may prompt concerns about a neoplastic infiltration such as lymphoma. Orbital inflammation can be divided into nonspecific, idiopathic, and other specific diagnoses. The differential diagnosis includes allergic, infectious (fungal, mycobacterial, and parasitic), and neoplastic (lymphoma or metastatic) disease. Orbital inflammation impacts neurologists and neuro-ophthalmologists because all of the entities can cause afferent dysfunction (decreased vision, abnormal color perception, afferent pupillary defect, and visual field defect) and dysmotility. The pattern of motility deficit may mimic the more familiar cranial nerve palsies. Advances in the diagnosis and management of nonspecific orbital inflammation and the specific entities that cause orbital inflammation are discussed.

Diagnosis, Differential↗

"Normal" personality correlates of sensorimotor, cognitive, and visuospatial gating.

Specific psychiatric disorders are characterized by impaired selective inhibition or "gating" of responses to sensory or cognitive information. Less is known about gating differences among normal individuals. We tested carefully screened controls in measures of central inhibition: prepulse inhibition (PPI) of startle, the Stroop test, and negative priming (NP). Subjects were defined as "normal" or "psychosis prone," based on theoretically and empirically derived MMPI criteria. Performance on all measures by "psychosis-prone" individuals suggested reduced sensorimotor gating and/or increased cognitive or visual interference. Performance was most impaired in individuals scoring highest on the MMPI Goldberg Index, which was originally designed to distinguish "psychotic" from "neurotic" inpatients. Inhibition in Stroop and NP was correlated across all subjects, but PPI was not correlated with other measures. Gender differences were noted in PPI (male > female), but not Stroop or NP. Performance deteriorated with age in Stroop and NP, but not PPI. The results are discussed as they relate to psychophysical and neural correlates of normal personality dimensions.

Adolescent↗