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Steven Feigenberg

Publications and source records attributed to Steven Feigenberg.

5 recordsLinked to original sources

Using decision analysis to determine the cost-effectiveness of intensity-modulated radiation therapy in the treatment of intermediate risk prostate cancer.

BACKGROUND: The specific aim of this study is to evaluate the cost-effectiveness of intensity-modulated radiation therapy (IMRT) compared with three-dimensional conformal radiation therapy (3D-CRT) in the treatment of a 70-year-old with intermediate-risk prostate cancer. METHODS: A Markov model was designed with the following states; posttreatment, hormone therapy, chemotherapy, and death. Transition probabilities from one state to another were calculated from rates derived from the literature for IMRT and 3D-CRT. Utility values for each health state were obtained from preliminary studies of preferences conducted at Fox Chase Cancer Center. The analysis took a payer's perspective. Expected mean costs, cost-effectiveness scatterplots, and cost acceptability curves were calculated with commercially available software. RESULTS: The expected mean cost of patients undergoing IMRT was $47,931 with a survival of 6.27 quality-adjusted life years (QALYs). The expected mean cost of patients having 3D-CRT was $21,865 with a survival of 5.62 QALYs. The incremental cost-effectiveness comparing IMRT with CRT was $40,101/QALYs. Cost-effectiveness acceptability curve analysis revealed a 55.1% probability of IMRT being cost-effective at a $50,000/QALY willingness to pay. CONCLUSION: Intensity-modulated radiation therapy was found to be cost-effective, however, at the upper limits of acceptability. The results, however, are dependent on the assumptions of improved biochemical disease-free survival with fewer patients undergoing subsequent salvage therapy and improved quality of life after the treatment. In the absence of prospective randomized trials, decision analysis can help inform physicians and health policy experts on the cost-effectiveness of emerging technologies.

Aged↗

Long-term hormone therapy and radiation is cost-effective for patients with locally advanced prostate carcinoma.

BACKGROUND: In Radiation Therapy Oncology Group (RTOG) trial 92-02, after men received neoadjuvant hormone cytoreduction and radiotherapy for locally advanced prostate carcinoma, they were randomized to receive either 2 years of long-term androgen-deprivation (LTAD) or no further treatment (short-term androgen-deprivation [STAD]). The specific objective of the current study was to determine whether LTAD was a cost-effective treatment for patients with locally advanced prostate carcinoma. METHODS: The cost-effectiveness of LTAD was tested using a Markov model that was designed using proprietary software. The analysis took a payor's perspective. Unit costs were obtained by estimation using a global Medicare fee schedule. Costs and outcomes were discounted by 3%. Distributions were sampled at random from the treatment utilities, transition probabilities, and costs using a second-order Monte Carlo simulation technique. RESULTS: The expected mean cost was 32,564 dollars for LTAD compared with 33,039 dollars for STAD after accounting for the additional cost of salvage treatment for men who were treated with STAD. The mean number of quality-adjusted life years (QALYs) for men who received LTAD was 4.13 QALYs compared with a mean of 3.68 QALYs for men who received STAD. The cost-effectiveness acceptability curve analysis showed a 91% probability that LTAD was cost-effective compared with STAD. Although overall survival was similar in the LTAD and STAD groups, the patients who received LTAD experienced gains in QALYs and had lower costs, because LTAD prevented biochemical failure and the necessitating salvage hormone therapy. CONCLUSIONS: The current analysis showed that LTAD was cost-effective for the entire population studied in RTOG trial 92-02.

Adenocarcinoma↗

Target localization for post-prostatectomy patients using CT and ultrasound image guidance.

We conducted a study comparing B-mode acquisition and targeting (BAT) ultrasound alignments based on CT data in the postoperative setting. CT scans were obtained with a Primatom CT-on-rails on nine patients. Two CT scans were obtained each week, while setup error was minimized by BAT ultrasounds. For the first three patients, a direct comparison was performed. For the next six patients, a template based on the shifts from the week 1 CT during treatment was used for subsequent setup. Comparison of isocenter shifts between the BAT ultrasound and CT was made by the difference, absolute difference, and improvement (using CT alignments as the reference technique). A total of 90 image comparisons were made. The average interfraction motion was 3.2 mm in the lateral, 3.0 mm in the longitudinal, and 5.1 mm in the AP direction. The results suggest that the CTbased ultrasound templates can improve the localization of the prostate bed when the initial displacements are greater than 4 mm. For initial displacements smaller than 4 mm, the technique neither improved nor worsened target localization. However, ultrasound alignments performed without the use of a template deteriorated patient positioning for two out of three patients, demonstrating that the use of a CT template was beneficial even at small initial displacements.

Humans↗

Palliative radiation therapy.

Radiation is an effective modality to aid in symptom management of patients with metastatic disease. The type and duration of treatment depends on the Karnofsky performance status (KPS) of the patient and type and status of the cancer. Abbreviated treatment regimens may be favored in this patient population. They provide quick palliation without the patient and family spending significant time traveling back and forth to the treatment center. Hypofractionated regimens have been found effective in relieving pain from metastatic bone disease, relieving obstruction from locally advanced lung cancer, bleeding from gynecologic cancers, and hematuria from advanced bladder cancer. More aggressive regimens such as whole-brain radiation therapy (WBRT) and stereotactic radiosurgery may be appropriate for select patients with a good KPS. Radiation has also been found to be effective in palliating recurrent cancer that has already received definitive radiation.

Clinical Trials as Topic↗

Radiation therapy dose escalation for prostate cancer: a rationale for IMRT.

The response of prostate cancer to radiation was well-documented in the pre-PSA era. Large palpable tumors resolved within months of treatment with relatively modest radiation doses of 64-70 Gy. The use of PSA-based failure as an endpoint, however, has made it clear that cure rates were much lower than appreciated. While doses in this range are still widely used today, data from retrospective, sequential prospective and now randomized studies indicate that for patients with intermediate-to-high risk disease, doses above 70 Gy are associated with a significant reduction in biochemical failure. The use of 3D-conformal radiotherapy to escalate radiation dose has resulted in modest increases in rectal and bladder toxicity. The application of intensity modulated radiotherapy methods allows for greater sparing of the surrounding normal tissues and, hence, the potential to further escalate dose. The results of dose escalation, the ability of IMRT to reduce rectal and bladder exposure to high radiation doses and the use of new imaging methods to more accurately target the prostate are described.

Humans↗