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Background: Growth factors seem to play a major role in corneal wound healing and TGF‐β seems to be associated with abnormal healing after corneal surgical procedures. Few studies have analysed the role of NGF and TGF‐β on corneal wound healing during pregnancy. The aim of the present study was to create an animal model to evaluate the expression of NGF and TGF‐βs during corneal wound healing in two groups: control and pregnant rats. Methods: Corneal mRNA for NGF and the three isoforms of TGF‐β were analysed by RT‐PCR, in a time‐course experiment on different days after epithelial wounding (2, 7, 14 days) in pregnant and control groups Results: The results show high corneal mRNA expression for NGF and TGF‐β1 without any variation throughout the healing process or pregnancy evolution. However, we detected a different expression of corneal mRNAs for TGF‐β2 and TGF‐β3 in the control group. This data was not detected in the pregnant group. Discussion: Our results suggested that pregnancy could have a relevant role on TGF‐β2 and TGF‐β3 mRNA expression during the corneal wound healing process. Additional research should be performed to corroborate these findings.  相似文献   
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背景:流感病毒A/H9N2毒株可以感染人体并且有引起爆发流行的危险。现在急需预防包括这种病毒在内的禽流感病毒感染的有效疫苗。  相似文献   
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Previous studies have demonstrated that increased mesolimbic dopamine (DA) activity disrupts sensorimotor gating as measured by prepulse inhibition (PPI) of the acoustic startle response (ASR) in rats. Other behavioral changes following mesolimbic DA activation are mediated through GABAergic efferent projections from the nucleus accumbens (NAC) to the ventral pallidum (VP). In this experiment, we examined whether PPI deficits in rats following mesolimbic DA activation are mediated through these same GABAergic substrates. PPI was significantly disrupted in rats following infusion of DA (40 micrograms) into the NAC, and this effect was reversed by infusion of a low dose (10 ng) of the GABA agonist muscimol into the VP. In a second experiment, we tested the hypothesis and the loss of PPI following intra-NAC DA infusion results from a disruption of GABAergic activity within the VP. Consistent with this hypothesis, infusion of the GABA antagonist picrotoxin (0-0.2 micrograms) into the VP caused a significant loss of PPI. These findings strongly suggest that the accumbens-ventral pallidal GABAergic circuitry is a substrate for the decrease in sensorimotor gating induced by mesolimbic DA overactivity.  相似文献   
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PURPOSETo characterize transient intraspinal subdural enhancement (potentially mimicking the subarachnoid spread of tumor) seen on MR images in some children after suboccipital craniectomy for posterior fossa tumor resection.METHODSRadiologic and medical records of 10 consecutive children who had MR imaging for spinal staging after resection of posterior fossa tumor during a 9-month period were reviewed retrospectively. In addition, one case with similar findings of intraspinal enhancement on spinal staging MR images obtained at another institution was included in the review.RESULTSIntraspinal enhancement thought to be subdural was seen in four of 10 patients undergoing spinal staging MR imaging 6 to 12 days after surgery. In these four patients, MR studies 50 to 18 days later, without intervening treatment, showed resolution of the abnormal enhancement. A fifth patient (from another institution) with similar intraspinal enhancement underwent CT myelography 4 days later, which showed no subarachnoid lesions. No metastases have developed in any of these five patients during the 2.5- to 3.5-year follow-up period. conclusions: From analysis of the MR appearance and on the basis of prior myelographic experience, we suggest an extraarachnoid, probably subdural, location of this enhancement. Awareness of this phenomenon will reduce the rate of false-positive diagnoses of metastatic disease. Preoperative spinal staging should be considered for patients undergoing suboccipital craniectomy.  相似文献   
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Obstetrical magnetic resonance imaging: fetal anatomy   总被引:8,自引:1,他引:7  
Nine patients who were 34-36 weeks pregnant underwent magnetic resonance (MR) imaging. Sagittal images using spin echo technique (TR 2.0 sec, TE 28 msec) were optimal for delineating fetal anatomy. The fetal cardiovascular, pulmonary, and central nervous systems were depicted in all cases. The heart and major vessels were readily seen due to the natural contrast of flowing blood. The intensity of the fluid-filled lungs greatly increased with a longer TR or TE, delimiting thorax from liver. The brain was relatively featureless due to the lack of gray-white matter differentiation. The umbilical cord within the amniotic fluid and its insertion into the placenta and fetus was identified in all cases. MR is a new modality for fetal imaging that offers tissue-characterization information that complements the superior anatomic detail of ultrasound scanning.  相似文献   
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