Publications by authors named "Robert C Krempien"

Background: Glioblastoma multiforme (GBM) is the most aggressive primary brain tumor with poor prognosis. GMB are highly recurrent mainly because of radio- and chemoresistance. Radiotherapy with Temozolomide (TMZ) is until today the golden standard adjuvant therapy, however, the optimal treatment of recurrent glioblastoma remains controversial.

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Purpose: To analyze long-term prognosis and morbidity after limb-sparing treatment of patients with extremity soft-tissue sarcoma, with intraoperative electron boost radiotherapy (IOERT) followed by a moderate dose of external beam radiotherapy (EBRT).

Methods And Materials: A total of 153 patients who were treated in a single center from 1991 to 2004 were evaluated. Median IOERT dose was 15 Gy, mean EBRT dose 43 Gy (range, 40-50.

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Purpose: Brachytherapy re-irradiation may offer an alternative re-treatment of recurrent head-and-neck cancer even after previous full dose radiation therapy. The purposes of this study were to determine the feasibility and accuracy of frameless image-guided interstitial needle implantation.

Methods And Materials: Between January 2000 and March 2003, 14 patients with biopsy-proven locally recurrent head-and-neck-cancer were retreated after previous full dose irradiation with combined external beam-brachytherapy with concomitant chemotherapy.

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Purpose: To integrate MRI into CT-based 3D-brachytherapy treatment planning using a software system for image registration and fusion.

Methods And Materials: Sixteen patients with recurrent head-and-neck cancer, vulvar cancer, liposarcoma, and cervical cancer were treated with interstitial (n=12) and endocavitary (n=4) brachytherapy. CT and MRI scans were performed after implantation and prior to treatment planning.

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Purpose: To evaluate the possibilities of an open low-field magnetic resonance imaging (MRI) scanner in external beam radiotherapy treatment (RT) planning.

Methods And Materials: A custom-made flat tabletop was constructed for the open MR, which was compatible with standard therapy positioning devices. To assess and correct image distortion in low-field MRI, a custom-made phantom was constructed and a software algorithm was developed.

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