Regulation high frequency diathermy for bipolar electrocoagulation ?A new method for the treatment of carcinoma of the bladder
- 1 September 1987
- journal article
- research article
- Published by Springer Nature in Urological Research
- Vol. 15 (5) , 251-253
- https://doi.org/10.1007/bf00258190
Abstract
In the endoscopic treatment of bladder cancer, especially for stages beyond T2, transurethral resection does not seem to be sufficient. The risk of bladder wall perforation, the possiblity of incomplete resection, seeding of tumor cells and high recurrence rates support the former statement [6]. Results of a multicentre prospective randomised study have exemplified that irradiation with the Neodymium-YAG Laser has been a reasonable alternative in the therapeutic approach to bladder cancer [2]. Diathermy coagulation must produce a sufficiently deep, homogenous and well demarcated tissue necrosis. The coagulation depth has to be adjustable and heat production during coagulation should not lead to bladder wall perforation and consequent damage to the bowel. These criteria were investigated using regulated bipolar high frequency diathermy. The innovation in this method is, that thermal side effects on the tissue, e.g. vaporisation and carbonisation are prevented by a protective relay with constant current flow. Animal experimental studies have shown that this method meets all postulated requirements and therefore clinical trials can proceed.Keywords
This publication has 6 references indexed in Scilit:
- A comparison of bipolar and monopolar diathermy probes in experimental animalsUrological Research, 1985
- [Neodymium YAG laser in clinical urology. Current status and clinical experiences].1984
- [Frequency of recurrences and tumor progression on superficial bladder carcinoma (author's transl)].1981
- HISTOLOGICAL-CHANGES FOLLOWING ENDOVESICAL NEODYMIUM-YAG-LASER IRRADIATION1981
- Temporal and Spatial Temperature Profile of the Bladder Serosa in Intravesical Neodymium-YAG-Laser IrradiationEuropean Urology, 1981
- High Frequency Current Effects During Transurethral ResectionJournal of Urology, 1979