974 resultados para Troca materno-fetal


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Triiodothyronine (30 nM) added to serum-free cultures of mechanically dissociated re-aggregating fetal (15-16 days gestation) rat brain cells greatly increased the enzymatic activity of choline acetyltransferase and acetylcholinesterase throughout the entire culture period (33 days), and markedly accelerated the developmental rise of glutamic acid decarboxylase specific activity. The enhancement of choline acetyltransferase and acetylcholinesterase specific activities in the presence of triiodothyronine was even more pronouned in cultures of telencephalic cells. If triiodothyronine treatment was restricted to the first 17 culture days, the level of choline acetyltransferase specific activity at day 33 was 84% of that in chronically treated cultures and 270% of that in cultures receiving triiodothyronine between days 17 and 33, indicating that relatively undifferentiated cells were more responsive to the hormone. Triiodothyronine had no apparent effect on the incorporation of [3H]thymidine at day 5 or on the total DNA content of cultures, suggesting that cellular differentiation, rather than proliferation was affected by the hormone. Our findings in vitro are in good agreement with many observations in vivo, suggesting that rotation-mediated aggregating cell cultures of fetal rat brain provide a useful model to study thyroid hormone action in the developing brain.

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Insults during the fetal period predispose the offspring to systemic cardiovascular disease, but little is known about the pulmonary circulation and the underlying mechanisms. Maternal undernutrition during pregnancy may represent a model to investigate underlying mechanisms, because it is associated with systemic vascular dysfunction in the offspring in animals and humans. In rats, restrictive diet during pregnancy (RDP) increases oxidative stress in the placenta. Oxygen species are known to induce epigenetic alterations and may cross the placental barrier. We hypothesized that RDP in mice induces pulmonary vascular dysfunction in the offspring that is related to an epigenetic mechanism. To test this hypothesis, we assessed pulmonary vascular function and lung DNA methylation in offspring of RDP and in control mice at the end of a 2-wk exposure to hypoxia. We found that endothelium-dependent pulmonary artery vasodilation in vitro was impaired and hypoxia-induced pulmonary hypertension and right ventricular hypertrophy in vivo were exaggerated in offspring of RDP. This pulmonary vascular dysfunction was associated with altered lung DNA methylation. Administration of the histone deacetylase inhibitors butyrate and trichostatin A to offspring of RDP normalized pulmonary DNA methylation and vascular function. Finally, administration of the nitroxide Tempol to the mother during RDP prevented vascular dysfunction and dysmethylation in the offspring. These findings demonstrate that in mice undernutrition during gestation induces pulmonary vascular dysfunction in the offspring by an epigenetic mechanism. A similar mechanism may be involved in the fetal programming of vascular dysfunction in humans.

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This paper presents the evaluation results of the methods submitted to Challenge US: Biometric Measurements from Fetal Ultrasound Images, a segmentation challenge held at the IEEE International Symposium on Biomedical Imaging 2012. The challenge was set to compare and evaluate current fetal ultrasound image segmentation methods. It consisted of automatically segmenting fetal anatomical structures to measure standard obstetric biometric parameters, from 2D fetal ultrasound images taken on fetuses at different gestational ages (21 weeks, 28 weeks, and 33 weeks) and with varying image quality to reflect data encountered in real clinical environments. Four independent sub-challenges were proposed, according to the objects of interest measured in clinical practice: abdomen, head, femur, and whole fetus. Five teams participated in the head sub-challenge and two teams in the femur sub-challenge, including one team who tackled both. Nobody attempted the abdomen and whole fetus sub-challenges. The challenge goals were two-fold and the participants were asked to submit the segmentation results as well as the measurements derived from the segmented objects. Extensive quantitative (region-based, distance-based, and Bland-Altman measurements) and qualitative evaluation was performed to compare the results from a representative selection of current methods submitted to the challenge. Several experts (three for the head sub-challenge and two for the femur sub-challenge), with different degrees of expertise, manually delineated the objects of interest to define the ground truth used within the evaluation framework. For the head sub-challenge, several groups produced results that could be potentially used in clinical settings, with comparable performance to manual delineations. The femur sub-challenge had inferior performance to the head sub-challenge due to the fact that it is a harder segmentation problem and that the techniques presented relied more on the femur's appearance.

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NK1.1+TCR alpha beta+ (NK1+) T cells are an unusual subset of mouse TCR alpha beta+ cells found primarily in adult thymus and liver. In contrast to conventional TCR alpha beta+ cells, NK1+ T cells have a TCR repertoire that is highly skewed to V alpha14 and to Vbeta8, -7, and -2. The developmental origin and ligand specificity of NK1+ T cells are controversial. We show here that NK1+ T cells with a typically biased V alpha and V beta repertoire develop in cytokine-supplemented suspension cultures of fetal liver established from either normal or athymic mice. Furthermore, NK1+ T cell development in fetal liver cultures is abrogated in beta2m-deficient mice (which lack MHC class I and other related molecules) and can be partially inhibited by the presence of anti-CD1 mAbs. Moreover, mixing experiments indicate that recombination-deficient SCID fetal liver cells can reconstitute NK1+ T cell development in beta2m-deficient fetal liver cultures. Collectively, our data demonstrate that NK1+ T cells can develop extrathymically from fetal liver precursors and that a beta2m-associated ligand (putatively CD1) present on nonlymphoid cells is essential for their positive selection and/or expansion.

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Although fetal anatomy can be adequately viewed in new multi-slice MR images, many critical limitations remain for quantitative data analysis. To this end, several research groups have recently developed advanced image processing methods, often denoted by super-resolution (SR) techniques, to reconstruct from a set of clinical low-resolution (LR) images, a high-resolution (HR) motion-free volume. It is usually modeled as an inverse problem where the regularization term plays a central role in the reconstruction quality. Literature has been quite attracted by Total Variation energies because of their ability in edge preserving but only standard explicit steepest gradient techniques have been applied for optimization. In a preliminary work, it has been shown that novel fast convex optimization techniques could be successfully applied to design an efficient Total Variation optimization algorithm for the super-resolution problem. In this work, two major contributions are presented. Firstly, we will briefly review the Bayesian and Variational dual formulations of current state-of-the-art methods dedicated to fetal MRI reconstruction. Secondly, we present an extensive quantitative evaluation of our SR algorithm previously introduced on both simulated fetal and real clinical data (with both normal and pathological subjects). Specifically, we study the robustness of regularization terms in front of residual registration errors and we also present a novel strategy for automatically select the weight of the regularization as regards the data fidelity term. Our results show that our TV implementation is highly robust in front of motion artifacts and that it offers the best trade-off between speed and accuracy for fetal MRI recovery as in comparison with state-of-the art methods.

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Os autores apresentam os métodos Doppler e sua evolução no estudo da circulação fetal, dando ênfase à segurança e aos bioefeitos. Os aparelhos de ultra-sonografia utilizados correntemente funcionam com índice térmico máximo e índice mecânico automaticamente mantidos em níveis inferiores a 1,0. Até os dias atuais, não foi descrita lesão biológica em fetos humanos submetidos ao Doppler diagnóstico. Portanto, o Doppler pulsado, o colorido e o "power" Doppler são seguros na exposição ultra-sonográfica do pré-natal.

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Fetoscopic coagulation of placental anastomoses is the treatment of choice for severe twin-to-twin transfusion syndrome. In the present day, fetal laser therapy is also used to treat amniotic bands, chorioangiomas, sacrococcygeal teratomas, lower urinary tract obstructions and chest masses, all of which will be reviewed in this article. Amniotic band syndrome can cause limb amputation by impairing downstream blood flow. Large chorioangiomas (>4 cm), sacrococcygeal teratomas or fetal hyperechoic lung lesions can lead to fetal compromise and hydrops by vascular steal phenomenon or compression. Renal damage, bladder dysfunction and lastly death because of pulmonary hypolasia may be the result of megacystis caused by a posterior urethral valve. The prognosis of these pathologies can be dismal, and therapy options are limited, which has brought fetal laser therapy to the forefront. Management options discussed here are laser release of amniotic bands, laser coagulation of the placental or fetal tumor feeding vessels and laser therapy by fetal cystoscopy. This review, largely based on case reports, does not intend to provide a level of evidence supporting laser therapy over other treatment options. Centralized evaluation by specialists using strict selection criteria and long-term follow-up of these rare cases are now needed to prove the value of endoscopic or ultrasound-guided laser therapy.

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PURPOSE OF REVIEW: To provide an overview of available evidence of the potential role of epigenetics in the pathogenesis of hypertension and vascular dysfunction. RECENT FINDINGS: Arterial hypertension is a highly heritable condition. Surprisingly, however, genetic variants only explain a tiny fraction of the phenotypic variation and the term 'missing heritability' has been coined to describe this phenomenon. Recent evidence suggests that phenotypic alteration that is unrelated to changes in DNA sequence (thereby escaping detection by classic genetic methodology) offers a potential explanation. Here, we present some basic information on epigenetics and review recent work consistent with the hypothesis of epigenetically induced arterial hypertension. SUMMARY: New technologies that enable the rigorous assessment of epigenetic changes and their phenotypic consequences may provide the basis for explaining the missing heritability of arterial hypertension and offer new possibilities for treatment and/or prevention.

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As múltiplas características distintas do leite materno e do leite de vaca fazem com que o esvaziamento gástrico seja mais rápido após ingestão do primeiro. Esta rapidez do esvaziamento gástrico pode estar associada ao esvaziamento da vesícula biliar, também mais rápido. O objetivo do trabalho foi determinar se há diferença na velocidade de esvaziamento da vesícula biliar, por método ultra-sonográfico, após ingestão de leite materno e leite de vaca. Estudamos 47 crianças menores de dois anos, 22 após uma refeição com leite materno e 25 após uma refeição com leite de vaca. A vesícula biliar foi medida após um período de quatro a seis horas de jejum e uma hora após uma refeição (leite materno ou leite de vaca), e a contração da vesícula biliar foi avaliada, em porcentagem, pela diferença de volume da vesícula biliar entre as duas medidas e expressa em porcentagem do volume inicial. As medianas das porcentagens do volume inicial para as crianças alimentadas com leite materno e leite de vaca foram, respectivamente, 92,25% e 53,8%, diferença estatisticamente significativa. Portanto, a contração da vesícula biliar após uma refeição com leite de vaca é muito mais lenta do que aquela após uma refeição com leite materno.

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El déficit de yodo (DY) durante la gestación puede tener importantes repercusiones en la función tiroidea tanto materna como fetal, pudiendo llegar a desencadenar un hipotiroidismo materno y neonatal. En mujeres en edad fértil, el hipotiroidismo puede reducir la fertilidad e incrementar el número de abortos espontáneos. Además, cuando consiguen un embarazo se altera la adaptación de la glándula tiroides a los cambios que se producen durante la gestación, y pueden presentar una hiperplasia tiroidea en forma de bocio. En el feto, el déficit materno de yodo constituye una de las principales causas de lesiones cerebrales y de retraso mental de carácter irreversible. Es importante que las matronas conozcan estas repercusiones e incluyan en el programa de educación sanitaria a la mujer embarazada recomendaciones para garantizar el aporte adecuado de yodo, como puede ser el consumo de pescado y la utilización de sal yodada para la condimentación de los alimentos. Además, deberán derivar al médico a aquellas mujeres que presenten una deficiencia de yodo para que realicen una suplementación si fuera necesario.

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El déficit de yodo (DY) durante la gestación puede tener importantes repercusiones en la función tiroidea tanto materna como fetal, pudiendo llegar a desencadenar un hipotiroidismo materno y neonatal. En mujeres en edad fértil, el hipotiroidismo puede reducir la fertilidad e incrementar el número de abortos espontáneos. Además, cuando consiguen un embarazo se altera la adaptación de la glándula tiroides a los cambios que se producen durante la gestación, y pueden presentar una hiperplasia tiroidea en forma de bocio. En el feto, el déficit materno de yodo constituye una de las principales causas de lesiones cerebrales y de retraso mental de carácter irreversible. Es importante que las matronas conozcan estas repercusiones e incluyan en el programa de educación sanitaria a la mujer embarazada recomendaciones para garantizar el aporte adecuado de yodo, como puede ser el consumo de pescado y la utilización de sal yodada para la condimentación de los alimentos. Además, deberán derivar al médico a aquellas mujeres que presenten una deficiencia de yodo para que realicen una suplementación si fuera necesario.