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Narter Yesildaglar

Publications and source records attributed to Narter Yesildaglar.

6 recordsLinked to original sources

Comparison of hyaluronate/carboxymethylcellulose membrane and melatonin for prevention of adhesion formation in a rat model.

BACKGROUND: To investigate the effectiveness of melatonin in preventing post-operative adhesion formation and to compare it with the efficacy of hyaluronate/carboxymethylcellulose membrane in a rat model. MATERIALS AND METHODS: Following pilot studies, 35 rats were operated on in the full study. In 15 animals (group one), 10 standard lesions were inflicted in each uterine horn (total 30 horns) and melatonin was applied before closure of the abdomen. In the second group, 20 animals were operated on and one of the uterine horns (total 20 horns) with standard lesions was treated with hyaluronate/carboxymethylcellulose membrane and the other uterine horn served as a control. Second-look operations were performed 1 week later and adhesion scores were compared. RESULTS: The adhesion scores of uterine horns treated with melatonin and of uterine horns treated with hyaluronate/carboxymethylcellulose membrane were significantly lower than the scores of the controls (P < 0.001). There was no statistically significant difference between the adhesion scores of uterine horns treated with melatonin and of uterine horns treated with hyaluronate/carboxymethylcellulose membrane (P > 0.05). CONCLUSIONS: Both melatonin and hyaluronate/carboxymethylcellulose membrane were effective in prevention of adhesion formation in a rat uterine horn model.

Animals↗

The safety and efficacy of direct trocar insertion with elevation of the rectus sheath instead of the skin for pneumoperitoneum.

Abdominal access in endoscopic surgery carries a finite risk of visceral injury. Bleeding, subcutaneous emphysema, gastrointestinal tract perforation, minor and major vascular injury, and intraperitoneal adhesions are the potential complications associated with abdominal access and creation of pneumoperitoneum. There are 4 basic techniques used to create pneumoperitoneum: blind Veress needle, direct trocar insertion, optical trocar insertion, and open laparoscopy. Veress needle and direct trocar insertion are blind techniques, and their use can result in severe visceral and vascular injuries. To prevent visceral and vascular injuries caused by the technique used for the creation of pneumoperitoneum, laparoscopic surgeons and gynecologists look for safe and effective laparoscopic access techniques. Direct trocar insertion without previous pneumoperitoneum was reported to be a safe alternative to Veress needle insertion. We carried out this study to compare the ease of use, safety, and efficacy of direct trocar insertion with elevation of the rectus sheath and blind insertion of the Veress needle in laparoscopic surgery. In 578 laparoscopic procedures, the patients were assigned to one of the following groups: blind insertion of the Veress needle (group 1, n = 301) and direct trocar insertion with elevation of the rectus sheath using 2 towel clips (group 2, n = 277). Total complication rates were 15.7% (n = 33) and 3.3% (n = 4) in groups 1 and 2, respectively (P < 0.05). Direct trocar insertion with elevation of the rectus sheath using 2 towel clips is an easy, safe, and effective technique.

Digestive System Diseases↗

The addition of O2 to the CO2 does not prevent the systemic effects of the CO2 pneumoperitoneum in a rabbit model.

CO2 pneumoperitoneum used in endoscopic surgery induces systemic effects by CO2 absorption. It was claimed that a reduction in CO2 pneumoperitoneum-induced metabolic hypoxemia was achieved by the addition of small amounts of O2 to the CO2 in a rabbit ventilated model. We reevaluated the effects of the addition of O2 to the CO2 pneumoperitoneum upon CO2 absorption in a rabbit model. The effects of a pneumoperitoneum using 100% CO2, 90% CO2 + 10% O2, 95% CO2 + 5% O2, or 100% O2 on arterial blood gases, acid base and O2 homeostasis were evaluated in nonintubated rabbits. A pneumoperitoneum pressure of 10 cm H2O (approximately 7.35 mm Hg) was used. CO2 pneumoperitoneum of 120 minutes affected blood gases and acid base homeostasis. Whereas partial pressure of CO2 and HCO3 increased (P < 0.001) during pneumoperitoneum, pH and partial pressure of O2 decreased (P < 0.001). Similar results were obtained in O2-CO2 pneumoperitoneum (P > 0.05). CO2 pneumoperitoneum profoundly affected blood gases and acid base homeostasis, resulting in metabolic hypoxemia. The addition of O2 to the CO2 did not prevent the systemic effects of CO2 pneumoperitoneum in nonintubated animals.

Animals↗

Maternal height as a risk factor for Caesarean section.

BACKGROUND: Maternal height has been reported as an obstetric risk factor, since short maternal stature may be associated with an increased incidence of obstructed labour due to cephalopelvic disproportion. MATERIALS AND METHODS: There were 373 nulliparous women who were 150 cm or less in height (total n=5,650) and 367 women who were below 19 years old in the study group and 48 of these women were 150 cm or less in height. There were 37 patients who were 150 cm or less in height and over 39 years old. RESULTS: There was no statistically significant difference between the rates of Caesarean section in patients who were 150 cm or less in height and patients who were taller than 150 cm (P>0.05). However, the rate of Caesarean section was higher in patients who were 150 cm or less in height and below 19 years old (P<0.05) and over 39 years old (P<0.05). CONCLUSION: Short maternal height (<150 cm) was not associated with a greater likelihood of Caesarean section for cephalopelvic disproportion. However, patients who were below 19 years old and over 39 years old with a height of 150 cm or smaller had a greater likelihood of undergoing Caesarean section.

Adolescent↗

Pulmonary effects of in utero tracheal occlusion are dependent on gestational age in a rabbit model of diaphragmatic hernia.

PURPOSE: The authors investigated the effect of gestational age on lung development and maturation after in utero tracheal occlusion (TO) in a rabbit model of congenital diaphragmatic hernia (CDH). METHODS: In 46 fetal rabbits, CDH was created at 23 days' gestational age (GA; term, 31 days), corresponding to the pseudoglandular phase of lung development. A second intervention was performed at either 26, 27, or 28 days on 6 fetuses in each GA group. At that time, either TO (CDH + TO), or a sham operation (CDH + sham) was performed. Nonoperated littermates served as internal normal controls (CTR). All fetuses were delivered by cesarean section at 30 days GA to assess lung response by lung-to-body-weight ratio, pulmonary morphometry, and the density of type II pneumocytes. RESULTS: After TO, the lungs were significantly larger than in CDH animals; their weight was proportional to the duration of TO. Pulmonary morphometry in TO fetuses was comparable with that of controls. The density of type II cells was inversely related to the gestational age at which TO was performed, with normal values with TO at GA at 28 days. CONCLUSION: Timing of TO is critical to subsequent pulmonary development: early in gestation TO leads to pulmonary overgrowth and type II pneumocyte depletion, whereas normal values are obtained when TO is delayed till 28 of 32 days.

Animals↗