PubMed Health⌕ Search

PubMed · 15378461

[Fetal neurological evaluation].

Abstract

AIM: To review recent advances in the procedures and techniques that have made possible to evaluate the anatomy and function of the central nervous system (CNS) in the fetus. DEVELOPMENT: The neurological evaluation of the fetus can be performed at different levels: clinical, anatomical and functional. At a clinical level the analysis of body, ocular or respiratory fetal movements, as well as fetal heart rate, defines 4 behavioural states: 1F and 2F correspond to the quiet and active sleep, respectively. States 3F and 4F occur during wakefulness in the newborn, but there is no scientific evidence that the fetus is awake. Behavioral states probably play an important role in the process of CNS maturation and development. Anatomic evaluation of the CNS to rule out brain malformations can be performed with ultrasound since week 7-8 of gestational age and with magnetic resonance imaging (MRI) since week 18-20. Both techniques are also useful in the diagnosis of acquired fetal neurological diseases. Both modalities are concordant in the majority of cases, but in others each of them provides additional, different information. Computed tomography should only be used in selected cases that involve bone structures. Functional evaluation of fetal CNS can be performed with proton MR spectroscopy, which determines the cerebral content of inositol, choline, creatine and N-acetylaspartate. Other techniques to functionally study the fetal brain are functional MRI (fMRI), near infrared spectroscopy, and magnetoencephalography. CONCLUSIONS: Fetal neurology is a discipline that will continue to develop fast in the immediate future. Technological advances will facilitate the possibility of a more rapid and reliable diagnosis of anatomic or functional abnormalities of the fetal CNS.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

A Legido, I Valencia, J D Smith. [Fetal neurological evaluation].. https://pubmed.ncbi.nlm.nih.gov/15378461/

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

The inversion In(2L)t impacts complex, environmentally sensitive behaviors in Drosophila melanogaster.

Genetic variation in behavioral traits allows organisms to respond and adapt to environmental challenges. Genetic variation in behavior is often affected by many genes and thus has a complex genetic basis. Inversions, the reorientation of genes along the chromosome, tightly link genetic variants together because they suppress recombination. Therefore, inversions are believed to have a major impact on phenotypic variation because they combine the effects of multiple genes, which can pleiotropically alter multiple aspects of behavior. This study investigates how the inversion In(2L)t, found in Drosophila melanogaster populations around the world, impacts different aspects of behavior in an environment-sensitive manner. We test the activity, foraging, and startle-induced behavior of flies with different In(2L)t genotypes across sex and temperatures. We observe that Drosophila homozygous for In(2L)t sleep less frequently, spend more time away from a food source, and have a longer duration of startle response. Additionally, the impacts of In(2L)t on aspects of behavior can be sex-specific and are largely consistent across temperatures. Taken together, our research demonstrates that inversions can regulate aspects of behavior, and suggests hypotheses explaining the distribution of In(2L)t across space and time.

Behavior↗

Gene-environment interdependence.

Behavioural genetics was initially concerned with partitioning population variance into that due to genetics and that due to environmental influences. The implication was that the two were separate and it was assumed that gene-environment interactions were usually of so little importance that they could safely be ignored. Theoretical considerations suggested that that was unlikely to be true and empirical findings are now accumulating on the demonstrated and replicated biological interactions between identified common single genetic variants and the operation of environmentally mediated risks. The paper outlines the evidence and considers why it is changing concepts in ways that matter.

Behavior↗

Endless minds most beautiful.

The marriage of evolution and development to produce the new discipline 'evo-devo' in biology is situated in the general history of evolutionary biology, and its significance for developmental cognitive science is discussed. The discovery and description of the highly conserved, robust and 'evolvable' mechanisms that organize the vertebrate body plan and fundamental physiology have direct implications for what we should investigate in the evolution of behavior and cognition.

Behavior↗