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Klaus Heller

Publications and source records attributed to Klaus Heller.

3 recordsLinked to original sources

A prospective study comparing operative time in conventional laparoscopic and robotically assisted Thal semifundoplication in children.

BACKGROUND: It is not clear if robotically assisted surgery (providing articulating instruments, 3-dimensional vision, intuitive ergonomics) performed in pediatric patients offers the same advantages over conventional surgery as in adult patients. In the laboratory setting, robots require less time to perform certain tasks. Accordingly, we tested the hypothesis that the time required to perform a robotically assisted laparoscopic Thal semifundoplication is different compared with a conventional laparoscopic procedure in children. METHODS: The time required to perform single operative steps was prospectively recorded in 10 consecutively performed Thal semifundoplications with the use of a robot (da Vinci) and in 10 consecutively performed operations done by conventional laparoscopy. RESULTS: No conversion to an open operation was necessary, and there were no intraoperative complications throughout the study and no postoperative complications up to 14 months after surgery. Total operative time was similar in both groups. In the robotically assisted group, time for setup was significantly longer (20.8 +/- 7.5 vs 34.6 +/- 9.2 minutes, P < .05), but dissection of the hiatal region as the most challenging operative step was accomplished 34% faster in the robotically assisted group (30.8 +/- 8.7 vs 20.2 +/- 5.3 minutes, P < .05). CONCLUSION: At the current level of technology, the robotic system is superior compared with established standard laparoscopic techniques requiring tissue preparation; however, the potential benefit in operating time is counterbalanced by the increased complexity of setting up the system.

Adolescent↗

Hemodynamic and respiratory effects of robot-assisted laparoscopic fundoplication in children.

Laparoscopic fundoplication is increasingly used for treating gastro-esophageal reflux disease in children. Mechanical and pharmacological effects may contribute to hemodynamic and respiratory changes during carbon dioxide pneumoperitoneum. The aim of the present study was to evaluate the hemodynamic and respiratory effects of pneumoperitoneum (PP) with an intra-abdominal pressure (IAP) of 12 mmHg in children undergoing robot-assisted laparoscopic fundoplication during total intravenous anesthesia. Ten children, aged 8-16 years, American Society of Anesthesiologists physical status II-III, scheduled for robot-assisted laparoscopic fundoplication in the reverse Trendelenburg position were investigated. Minute ventilation (MV), peak inspiratory pressure (PIP), IAP, heart rate (HR), mean arterial blood pressure (MAP) were recorded, together with pH, base excess, HCO3-, P(et)CO2, PaCO2, and PaO2 at six time points: before insufflation, 10, 30, 60, 90 minutes after creating PP and after desufflation. The IAP was maintained at 12 mmHg. During insufflation MAP increased significantly from 70.6 (+/-9.0) to 84.8 (+/-10.4) mmHg, MV was increased from 4.6 (+/-0.8) to 5.5 (+/-0.9) l min(-1), PIP increased, PaO2 and pH decreased. P(et)CO2 increased from 33.1 (+/-1.6) to 36.6 (+/-1.6) mmHg together with PaCO2. Hemodynamic and respiratory effects due to the intra-abdominal insufflation of CO2 with an IAP of 12 mmHg are well tolerated, and anesthesia with remifentanil, propofol and mivacurium facilitates extubation immediately at the end of surgery.

Adolescent↗