PubMed Health⌕ Search

Biomedical subjects

G Hakgüder

Publications and source records attributed to G Hakgüder.

9 recordsLinked to original sources

Is induction of fetal diuresis with intraamniotic furosemide effective for the removal of intestinal waste products from amniotic fluid?

AIM: In gastroschisis, contact with amniotic fluid (AF) causes intestinal damage. Intraamniotic meconium has been shown to be responsible for the intestinal damage, and intestinal damage has been shown to correlate with intraamniotic meconium concentrations. Intraamniotic meconium below a threshold level does not cause intestinal damage. Intraamniotic meconium concentrations can be lowered by AF exchange. Can induction of foetal diuresis by an intraamniotic injection of furosemide be used as an alternative method for the same purpose? METHOD: Pregnant rabbits on the 23rd - 25th gestational days (normal gestation time: 31 - 33 days) were divided into two groups, the control group and the furosemide group. Initial AF samples were taken, then either 5 mg/kg furosemide or a placebo was injected into the amniotic cavity. Final AF samples were obtained 6 hours later. AF urea nitrogen, creatinine, amylase, alkaline phosphatase and bilirubin levels were determined. RESULTS: There was no significant difference between the initial and final levels of AF urea nitrogen, creatinine, bilirubin, amylase, and alkaline phosphatase in the control group, while the final AF urea nitrogen and creatinine levels of the furosemide group were not significantly different from the initial levels (p > 0.05). Final AF bilirubin, amylase and alkaline phosphatase levels of the furosemide group were significantly decreased compared with initial levels (p < 0.01). CONCLUSION: Induction of foetal diuresis with intraamniotic furosemide is effective for the removal of intestinal waste products from amniotic fluid.

Amnion↗

Intestinal damage in gastroschisis correlates with the concentration of intraamniotic meconium.

BACKGROUND/PURPOSE: Contact with amniotic fluid (AF) causes intestinal damage in gastroschisis, which has been shown to be caused by intraamniotic meconium. However, whether this intraamniotic meconium-induced intestinal damage is concentration dependent has not been investigated previously. The purpose of this study is to investigate the effects of intraamniotic human meconium at various concentrations on the intestines of chick embryo with gastroschisis. METHODS: Five-day-old fertilized chick eggs were used. Gastroschisis was created through the amniotic cavity without opening the allantoic cavity. Sterile meconium was obtained from newborn humans. Meconium suspensions at various concentrations were prepared using saline and instilled into the amniotic cavity. RESULTS: Intraamniotic 1:200 and 1:400 meconium was found to cause intestinal damage. Meconium concentrations lower than 1:400 did not cause intestinal damage. Histopathologic examination of the intestines of the 1:200 and 1:400 meconium groups showed serosal thickening, inflammation, focal fibrin, and collagen deposits. Histopathologic features of the intestines of the 1:600 and 1:800 meconium groups did not differ from the intestines of the control group. CONCLUSION: Intraamniotic meconium, which is responsible for intestinal damage in gastroschisis, must reach a threshold level to induce intestinal damage. J Pediatr Surg 36:1811-1815.

Amniotic Fluid↗

Sacrococcygeal extraspinal ependymomas: the role of coccygectomy.

BACKGROUND: Ependymomas, the common glial tumors of the spinal cord, occur occasionally outside the central nervous system and are called exstraspinal ependymomas (EEP). EEPs are found primarily in sacrococcygeal region during childhood. The pathogenesis and the treatment of the sacrococcygeal (SC) ependymomas are still controversial. Therefore, we present our case with metaanalysis of other case reports to determine the optimal treatment modality for SC EEPs. METHODS: A metaanalysis of case reports of SC EEPs, including the current case, was conducted. Also all available case reports of EEPs, without age limit, were analyzed to determine the distribution of EEPs localization. RESULTS: EEPs usually are found in teratoma localizations such as the SC area, ovary, paraovarian structures, and medastinum. The distribution of EEPs localization differs with age. Local recurrence rate of EEPs after coccyx excision is zero, however, it increases to 71% when the coccyx was left behind. CONCLUSION: The identical clinical characteristics of the SC teratomas and EEPs imply that the SC EEPs may be monophasic teratomas as their ovarian counterparts are named. Coccyx excision is an important part of the surgical treatment of these tumors, with an apparent decrease in the recurrence rate.

Adolescent↗

Colonic atresia associated with Hirschsprung's disease: it is not a diagnostic challenge.

Colonic atresia Hirschsprung's disease association (CAHDA) is usually diagnosed after several failures of intestinal anastomoses. Having previously reported one of the cases of CAHDA, we established the diagnosis in a patient before attempting intestinal anastomosis for stoma closure. We herein report the first patient with CAHDA in the literature diagnosed before a therapeutic challenge. We recommend a biopsy of the distal colonic segment either during initial laparotomy or before attempting intestinal anastomosis for closure of colostomy to prevent therapeutic challenge in the patients with colonic atresia.

Biopsy↗

Prospective study investigating routine usage of ultrasonography as the initial diagnostic modality for the evaluation of children sustaining blunt abdominal trauma.

In this prospective study, 217 children sustaining blunt abdominal trauma were initially evaluated with ultrasonography (US) and those with any abnormal ultrasonographic findings were further evaluated with computed tomography. Results of ultrasonographic examination were normal in 157 children and showed abnormalities such as free intraperitoneal fluid (FIF), intra-abdominal organ injury, and intrapleural fluid in 60 children. Computed tomographic examination of the 42 children with organ injury, the seven children with minimal FIF of no definite source, and the three children with intrapleural fluid revealed findings consistent with ultrasonographic findings. Computed tomographic examination of the eight children with more than minimal FIF of no definite source detected by US showed the source as liver injury in one and spleen injuries in two patients. The source of FIF could not be identified with computed tomography in five patients. After clinic follow-up examination, one of these five patients was operated on for abdominal tenderness, fever, and air-fluid levels detected on plain abdominal radiographs, and duodenal perforation was encountered. Clinical courses of the patients with normal ultrasonographic findings were uneventful. We conclude that US, aside from being a screening tool, is alone sufficient in the evaluation of the majority of the children sustaining blunt abdominal trauma. Although this is a preliminary study with further work needed to be done, we propose that further evaluation with computed tomography should be performed on those children in whom more than minimal FIF of no definite source is detected with US.

Abdominal Injuries↗