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Updated: Jul 31, 2026

Thermal Ablation for the Treatment of Abdominal Tumors
Published on: March 7, 2011
Radio frequency ablation of small renal tumors:: intermediate results
J J Hwang1, M M Walther, S E Pautler
1Urologic Oncology Branch, National Cancer Institute, Bethesda, Maryland 20892-1501, USA.
Purpose:
With evolving radio frequency technology, the clinical application of radio frequency ablation (RFA) has been actively investigated in the treatment for small renal tumors. We present our intermediate patient outcomes after RFA.
Materials And Methods:
Since January 2001, 17 patients with a total of 24 hereditary renal tumors ranging from 1.2 to 2.85 cm were treated with RFA using the 200 W Cool-tip RF System (Radionics, Burlington, Massachusetts) under laparoscopic (9) or percutaneous (8) guidance and had a minimum 1-year followup. A percutaneous approach was considered unsuitable if kidney tumors were contiguous to bowel, ureter or large vessels. Treatment eligibility criteria included an average tumor diameter of less than 3.0 cm, tumor growth during 1 year and solid appearance with contrast enhancement (HU change greater than 20) on computerized tomography (CT). Postoperative followup consisted of CT with and without intravenous contrast, and renal function assessment at regular intervals.
Results:
Median patient age was 38 years (range 20 to 51). At a median followup of 385 days (range 342 to 691), median tumor or thermal lesion diameter decreased from 2.26 to 1.62 cm (p = 0.0013), and only 1 lesion (4%), which was located centrally near the hilum, exhibited contrast enhancement (HU change greater than 10) on CT at 12 months. Of the 15 renal tumors ablated laparoscopically, 13 were in direct contact with the bowel and 2 were abutting the ureter, necessitating mobilization before RFA. Laparoscopic ultrasound was used to guide radio frequency electrode placement and monitor the ablation process in these cases. Operative time and intraoperative blood loss (mean +/- standard mean of error) were 243 +/- 29 minutes and 67 +/- 9 cc, respectively. In 1 patient whose ureter was adherent to the tumor a ureteropelvic junction obstruction developed after laparoscopic RFA, requiring open repair.
Conclusions:
At the minimum 1-year followup 23 of 24 ablated tumors lacked contrast uptake on CT, meeting our radiographic criteria of successful RFA treatment. RFA treatment of small renal tumors using the Radionics system appears to result in superior treatment outcomes compared to those of earlier series with lower radio frequency power generators. A high wattage generator might attain more consistent energy deposition with subsequent cell death in the targeted tissue due to less convective heat loss.
Insights
Radio frequency ablation (RFA) effectively treats small renal tumors. This study shows 23 of 24 tumors lacked contrast uptake after RFA, indicating successful treatment with minimal recurrence.
Area of Science:
- Urology
- Oncology
- Minimally Invasive Surgery
Background:
- Radio frequency technology is advancing for small renal tumor treatment.
- Radio frequency ablation (RFA) is being investigated for its clinical application in treating small renal tumors.
Purpose of the Study:
- To present intermediate patient outcomes after radio frequency ablation (RFA) for small renal tumors.
- To evaluate the efficacy of RFA in treating hereditary renal tumors.
Main Methods:
- 17 patients with 24 hereditary renal tumors (1.2-2.85 cm) underwent RFA using a 200 W Cool-tip RF System.
- Treatments were guided laparoscopically (9) or percutaneously (8), with a minimum 1-year follow-up.
- Eligibility required tumors <3.0 cm, with growth and contrast enhancement on CT.
Main Results:
- At median 385-day follow-up, tumor size decreased from 2.26 cm to 1.62 cm (p=0.0013).
- Only 1 lesion (4%) showed contrast enhancement at 12 months.
- Laparoscopic RFA involved managing proximity to bowel/ureter; one patient developed ureteropelvic junction obstruction.
Conclusions:
- 23 of 24 ablated tumors (96%) showed no contrast uptake at 1-year follow-up, meeting radiographic success criteria.
- RFA with a high-wattage generator appears to yield superior outcomes compared to earlier, lower-power systems.
- Consistent energy deposition and reduced convective heat loss may contribute to improved cell death in targeted renal tumor tissue.

