2 resultados para EARS


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[Es] La teoría creacionista, universalmente en vigor antes de Darwin (y aún hoy sostenida por más de uno) sostenía que había habido una mente (divina), encargada de diseñar al hombre; que le puso ojos para que viera, oídos, mente para que pensara...Desde Darwin, por el contrario, se opina que la necesidad de enfrentarse a problemas diversos hizo que la mente fuera diversificándose, a través de sucesivas selecciones de las mentes más adaptativas. Según esto: 1.-¿Existen maquinarias biológicas “especializadas” en nuestro cerebro?. Y si existieran, 2.-¿Se desarrollan de forma espontánea?; es decir, sin esfuerzo ni instrucción formal? 3.-¿Se despliegan de forma inconsciente, autónoma y similar en todos los seres humanos? En definitiva: ¿Existe algo (facultad psicológica, órgano mental, sistema neurológico, módulo computacional…) que permita decir que las personas saben esto… o aquello… en el mismo sentido que las arañas saben tejer o los pájaros construir sus nidos?

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Introduction Hypoxia-ischemia (HI) is a major perinatal problem that results in severe damage to the brain impairing the normal development of the auditory system. The purpose of the present study is to study the effect of perinatal asphyxia on the auditory pathway by recording auditory brain responses in a novel animal experimentation model in newborn piglets. Method Hypoxia-ischemia was induced to 1.3 day-old piglets by clamping 30 minutes both carotid arteries by vascular occluders and lowering the fraction of inspired oxygen. We compared the Auditory Brain Responses (ABRs) of newborn piglets exposed to acute hypoxia/ischemia (n = 6) and a control group with no such exposure (n = 10). ABRs were recorded for both ears before the start of the experiment (baseline), after 30 minutes of HI injury, and every 30 minutes during 6 h after the HI injury. Results Auditory brain responses were altered during the hypoxic-ischemic insult but recovered 30-60 minutes later. Hypoxia/ischemia seemed to induce auditory functional damage by increasing I-V latencies and decreasing wave I, III and V amplitudes, although differences were not significant. Conclusion The described experimental model of hypoxia-ischemia in newborn piglets may be useful for studying the effect of perinatal asphyxia on the impairment of the auditory pathway.