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Biomedical subjects

F Valencia

Publications and source records attributed to F Valencia.

6 recordsLinked to original sources

Ab initio study of cubyl chains and networks.

The spatial arrangements and physical properties of one- and two-dimensional structures, based on the amazing cubane (C(8)H(8)) molecule, are investigated in detail. In particular, we compute the electronic structure, both by first principle calculations and by semiempirical methods. The elastic and vibrational properties are evaluated as well. All these results are compared with those of the single cubane molecule, in order to elucidate the influence of dimensionality.

Journal Article↗

Ephrin-A6, a new ligand for EphA receptors in the developing visual system.

In the embryonic visual system, EphA receptors are expressed on both temporal and nasal retinal ganglion cell axons. Only the temporal axons, however, are sensitive to the low concentrations of ephrin-A ligands found in the anterior optic tectum. The poor responsiveness of nasal axons to ephrin-A ligands, which allows them to traverse the anterior tectum and reach their targets in the posterior tectum, has been attributed to constitutive activation of the EphA4 receptor expressed in these axons. EphA4 is highly expressed throughout the retina, but is preferentially phosphorylated on tyrosine (activated) in nasal retina. In a screen for EphA4 ligands expressed in chicken embryonic retina, we have identified a novel ephrin, ephrin-A6. Like ephrin-A5, ephrin-A6 has high affinity for EphA4 and activates this receptor in cultured retinal cells. In the embryonic day 8 (E8) chicken visual system, ephrin-A6 is predominantly expressed in the nasal retina and ephrin-A5 in the posterior tectum. Thus, ephrin-A6 has the properties of a ligand that activates the EphA4 receptor in nasal retinal cells. Ephrin-A6 binds with high affinity to several other EphA receptors as well and causes growth cone collapse in retinal explants, demonstrating that it can elicit biological responses in retinal neurons. Ephrin-A6 expression is high at E6 and E8, when retinal axons grow to their tectal targets, and gradually declines at later developmental stages. The asymmetric distribution of ephrin-A6 in retinal cells, and the time course of its expression, suggest that this new ephrin plays a role in the establishment of visual system topography.

Amino Acid Sequence↗

[Non tumor intracranial expansive processes: clinico-topographical correlation].

Presentation of clinical-tomographic correlation in 111 cases of non tumoral intracranial expansive processes seen between 1984-1988 in the Hospital Cayetano Heredia (Lima, Peru). Emphasis is given fundamentally to: (1) the importance of establishing the organicity of partial and late epilepsy; (2) the high incidence rate of inflammatory infectious processes with CNS compromise in underdeveloping countries; (3) the necessity of making public the importance of two parasitic diseases in the differential diagnosis of non tumoral intracranial expansive processes: free living amebiasis, and toxoplasmosis (especially in association with AIDS).

Adolescent↗

Local muscle fatigue. A precursor to RSI?

Some musculoskeletal conditions that are prevalent in occupations where the handling of materials and/or tools is required have been linked with the musculoskeletal load that results from activities that are undertaken to fulfil that occupation. The excessive loading of muscles under these conditions may lead to local muscle fatigue which may, in turn, manifest as pain, localized discomfort or kinaesthetic dysfunction. Local muscle fatigue is recognized as a precursor to some of these musculoskeletal conditions. This paper postulates the probable physiological mechanisms that provoke it. The changes to intramuscular blood flow during contraction, and their significance in relation to local muscle fatigue, are also reviewed. Methods to measure local muscle fatigue, as well as their objectivity and practicality, are discussed together with their plausible clinical implications.

Fatigue↗

[Gliomas].

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Adolescent↗