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PubMed · 13087823

[Fetal asphyxia].

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S RANSTROM. 1953-08-20. [Fetal asphyxia].. https://pubmed.ncbi.nlm.nih.gov/13087823/

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Time course of brainstem pathophysiology during first month in term infants after perinatal asphyxia, revealed by MLS BAER latencies and intervals.

Dynamic changes in electrophysiology of brainstem auditory neurons during the first month after birth were studied in 51 term infants after perinatal asphyxia using maximum length sequence brainstem auditory evoked responses. The responses were recorded on d 1, 3, 5, 7, 10, 15, and 30 after birth. On d 1, wave III and V latencies and all interpeak intervals increased significantly at all repetition rates of clicks used (91-910/s), especially the higher rates (ANOVA, p < 0.05-0.0001). On d 3, all these latencies and intervals increased further and differed more significantly from the normal control subjects. Thereafter, the latencies and intervals decreased progressively. On d 7, wave V latency and all intervals still differed significantly from the control subjects. These dynamic changes were more significant at higher rates of clicks than at lower rates. On d 10 and 15, all intervals decreased significantly. On d 30, all wave latencies decreased to the values in the normal control subjects on the same day. The intervals also approached normal values, although the III-V and I-V intervals still increased slightly. These results indicate that hypoxic-ischemic brain damage persists during the first week, with a peak on d 3, and recovers progressively thereafter. By 1 mo, the damage has largely returned to normal. Maximum length sequence brainstem auditory evoked responses results correlated well with the stage of hypoxic-ischemic encephalopathy during the first week. The present study revealed a general time course of brainstem pathophysiology after asphyxia, although there were individual variations. Our findings can be used as a reference to monitor cerebral function and help judge the value of neuroprotective or therapeutic interventions. The first week, particularly the first 3 d, is a critical period of hypoxic-ischemic brain damage, and early intervention may prevent or reduce deterioration of the damage.

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Smothering of children older than 1 year of age-diagnostic significance of morphological findings.

A homicide by smothering may leave unobtrusive or even no injuries if the victim is not able to struggle. This is especially true for infants up to 12 months of age. The differentiation between the sudden infant death syndrome and smothering, by an autopsy alone may be impossible. To establish whether this is different in older children because of their rising capacity for defence six cases of smothering in children >1 year of age were re-examined. The age of the children ranged between 1.5 and 7 years (surviving child). The smothering was inflicted with hands in three cases (including the surviving child), with a pillow in two cases, and the way of smothering remained unknown in one case (no confession of the perpetrator). Depending on the tool used for smothering, abrasions on the facial skin (hands, lesser in cases of smothering by a pillow) and petechiae (pillow/hands) could be seen by external examination. The older the children were, the more injuries could be found. Together with circumstantial evidence all cases could have been established by a thorough autopsy. This is important to prevent further offences against (surviving) siblings.

Asphyxia↗