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D Teber

Publications and source records attributed to D Teber.

5 recordsLinked to original sources

[The position of laparoscopic surgery in pediatric urology].

With growing experience in laparoscopic techniques there is a switch in pediatrics from ablative surgery to reconstructive procedures. Besides the established procedures such as laparoscopic nephrectomy and orchidopexy, procedures like heminephrectomy and pyeloplasty have proven practicable and become standard therapies in children and infants. Due to technical advances, as shown for our own patients, the number of treated infants is still increasing. However, laparoscopic reconstructive procedures presuppose a good deal of experience in preparation and suture techniques, and remain reserved for centers with daily experience in laparoscopy. Daily experience with difficult urological laparoscopic procedures in adults will remain more common than in pediatric centres.

Child↗

[Laparoscopic pelvic surgery: Where do we stand in the year 2006?].

Laparoscopic radical prostatectomy has become an equivalent alternative to the open retropubic approach, offering the advantages of minimally invasive surgery. It is being applied increasingly in Germany and the rest of Europe. Whether the surgical robot da Vinci will be used for this procedure to the same extent as in the United States is unpredictable because of high investment and maintenance costs. Similarly, laparoscopic sacrocolpopexy has proven to be a viable option compared to open transabdominal or transvaginal surgery, showing a significant reduction in postoperative morbidity. The value of radical cystectomy is controversial despite proven feasability. On one hand, the technical difficulties of purely laparoscopic urinary diversion result in very long operating times, and in the case of the laparoscopically assisted creation of a neobladder, the advantage of this approach has to be questioned. On the other hand, a maximum rate of 30% of local recurrences and distant metastases indicates at least poor patient selection. In conclusion, this procedure should be limited to a few experienced centers.

Cystectomy↗

[Ureteral injuries. Diagnostic and treatment algorithm].

The most common cause of iatrogenic injuries to the ureter (75%) is a gynecological or surgical pelvic procedure. The diagnosis of ureteral injuries is delayed in 66% (after days or weeks). Lack of hematuria is an unreliable sign to exclude injury, since 30% of all ureteral injuries do not even demonstrate microscopic hematuria or classic clinical symptoms and signs. In view of this, the diagnosis must be one of suspicion and further evaluations are mandatory in all cases of penetrating or blunt abdominal injuries. The most accurate diagnostic tools are CT scan with delayed excretory images and retrograde ureterography, which can also be used to guide stent placement. Low-grade injuries can be sufficiently treated with urinary diversion by PCN drainage or endoscopic ureteric stenting. The treatment of high-grade injuries depends on the localization and extent of the damage. The principles of repair include débridement, spatulation, lack of tension, stenting, postoperative drainage, and a watertight anastomosis with fine nonreactive absorbable suture. A delay in diagnosis is the most important factor contributing to the morbidity of ureteric injuries, and early treatment can reduce the complication rate to below 5%.

Algorithms↗

Robotics and telesurgery--an update on their position in laparoscopic radical prostatectomy.

Laparoscopy is handicapped by the reduction of the range of motion from six to only four degrees of freedom. In complicated cases (i.e. radical prostatectomy), there is often a crossing of the hands of surgeon and assistant. Finally, standard laparoscopes allow only 2D-vision. This has a major impact on technically difficult reconstructive procedures such as laparoscopic radical prostatectomy. Solutions include the understanding of the geometry of laparoscopy, but also newly developed surgical robots. During the last five years, there has been an increasing development and experience with robotics in urology. This article reviews the actual results focussing on the benefits and problems of robotics in laparoscopic radical prostatectomy. Own experiences with robot-assisted surgery include more than 1200 laparoscopic radical prostatectomies using a voice-controlled camera-arm (AESOP) as well as six telesurgical interventions with the da Vinci-system. Substantial experimental studies have been performed focussing on the geometry of laparoscopy and new training concepts such as perfused pelvitrainers and models for simulation of urethrovesical anastomosis. The recent literature on robotics in urology has been reviewed based on a MEDLINE/PUBMED research. The geometry of laparoscopy includes the angles between the instruments which have to be in a range of 25 degrees to 45 degrees ; the angles between the instrument and the working plane that should not exceed 55 degrees ; and the bi-planar angle between the shaft of the needle holder and the needle which has to be adapted according to the anatomical situation in range of 90 degrees to 110 degrees . 3-D-systems have not yet proved to be effective due to handling problems such as shutter glasses, video helmets or reduced brightness. At the moment, there are only two robotic surgical systems (AESOP, da Vinci) in clinical use, of which only the da Vinci provides stereovision and all six degrees of freedom (DOF). To date, more than 3000 laparoscopic radical prostatectomies have been performed worldwide at 92 centres with this system. The main advantage of the system represents the translation of open surgical skills to laparoscopy. Despite recent development of basic tools (e.g. bipolar forceps) for the da Vinci robot, investment and maintenance costs still represent the major problem of the device. Additionally, the device does not provide any haptic sense (i.e. tactile feedback). Robotic surgery represents a turning point of surgical research. However, broad use of robotic systems is limited mainly because of the high investment and running costs. Interestingly, more than in the field of cardiac surgery, there seems to be a need for telemanipulators in urology, mainly to reduce the learning curve of standard laparoscopy. However, new training concepts used in combination with mono-tasking computerized robots (AESOP) have proved their efficacy associated with a significant cost reduction.

Journal Article↗

Transperitoneal laparoscopic radical prostatectomy: ascending technique.

BACKGROUND AND PURPOSE: To demonstrate the operative steps of transperitoneal laparoscopic radical prostatectomy with the ascending approach (Heilbronn technique). PATIENTS AND METHODS: The technique is based on our experience with more than 1000 cases of clinically localized prostate cancer from March 1999 to April 2004. The technical steps, instrumental requirements, patient data, complications, and reintervention rate were reviewed. RESULTS: The principles of the technique include the routine use of a voice-controlled robot (AESOP) for the camera, exposure of the prostatic apex with 120 degree retracting forceps, free-hand suturing for Santorini plexus control, application of 5-mm clips during the nerve-sparing technique, control of the prostatic pedicles by 12-mm Hem-o-Lock clips, the bladder neck-sparing technique in patients with stage T1c and T2a tumors, and use of interrupted sutures for the urethrovesical anastomosis. A considerable improvement was observed when comparing the first 300 with the most recent 300 cases (mean operating time 280 v 208 minutes; conversion rate 2.7% v 0.3%; reintervention rate 3.7% v 1.0%). CONCLUSIONS: Through our experience with more than 1000 cases, transperitoneal access for laparoscopic radical prostatectomy has proven to be feasible and transferable with results comparable to those of the original open approach. Besides the well-known advantages of minimally invasive surgery, the video endoscopic approach may offer further benefits in permitting optimization of the technique by video assessment.

Adult↗