Development and validation of automatic tools for interactive recurrence analysis in radiation therapy: optimization of treatment algorithms for locally advanced pancreatic cancer
暂无分享,去创建一个
R. Floca | J. Debus | R. Bendl | S. Combs | K. Kessel | D. Habermehl | Lanlan Zhang | A. Jäger
[1] Rolf Bendl,et al. Development and validation of automatic tools for interactive recurrence analysis in radiation therapy: optimization of treatment algorithms for locally advanced pancreatic cancer , 2013, Radiation Oncology.
[2] Lanlan Zhang,et al. Software for quantitative analysis of radiotherapy: Overview, requirement analysis and design solutions , 2013, Comput. Methods Programs Biomed..
[3] S. Mang,et al. Toward a non-invasive screening tool for differentiation of pancreatic lesions based on intra-voxel incoherent motion derived parameters. , 2013, Zeitschrift fur medizinische Physik.
[4] J Debus,et al. [Database supported electronic retrospective analyses in radiation oncology: establishing a workflow using the example of pancreatic cancer]. , 2012, Strahlentherapie und Onkologie : Organ der Deutschen Rontgengesellschaft ... [et al].
[5] J. Debus,et al. Datenbankbasierte digitale retrospektive Auswertung von Patientenkollektiven in der Radioonkologie , 2012, Strahlentherapie und Onkologie.
[6] D. Golden,et al. Radiation dose ≥54 Gy and CA 19–9 response are associated with improved survival for unresectable, non-metastatic pancreatic cancer treated with chemoradiation , 2012, Radiation oncology.
[7] E. Bruera,et al. Relationships among body mass index, longitudinal body composition alterations, and survival in patients with locally advanced pancreatic cancer receiving chemoradiation: a pilot study. , 2012, Journal of pain and symptom management.
[8] R. Abrams,et al. Radiotherapy technical considerations in the management of locally advanced pancreatic cancer: American-French consensus recommendations. , 2012, International journal of radiation oncology, biology, physics.
[9] Richard Pötter,et al. Connection of European particle therapy centers and generation of a common particle database system within the European ULICE-framework , 2012, Radiation oncology.
[10] F. Wenz,et al. Aktuelle Anforderungen an das Bildmanagement in der Strahlentherapie , 2012, Strahlentherapie und Onkologie.
[11] Jürgen Weitz,et al. Neoadjuvant chemoradiation with Gemcitabine for locally advanced pancreatic cancer , 2012, Radiation oncology.
[12] Tara Kent,et al. Induction gemcitabine and stereotactic body radiotherapy for locally advanced nonmetastatic pancreas cancer. , 2011, International journal of radiation oncology, biology, physics.
[13] T. Desser,et al. Single-fraction stereotactic body radiation therapy and sequential gemcitabine for the treatment of locally advanced pancreatic cancer. , 2011, International journal of radiation oncology, biology, physics.
[14] M. Scorsetti,et al. Stereotactic body radiation therapy for abdominal targets using volumetric intensity modulated arc therapy with RapidArc: Feasibility and clinical preliminary results , 2011, Acta oncologica.
[15] N. Neerchal,et al. Image-Guided Stereotactic Radiosurgery for Locally Advanced Pancreatic Adenocarcinoma Results of First 85 Patients , 2010, Journal of Gastrointestinal Surgery.
[16] H. Kauczor,et al. Multidetector CT Evaluation of the Course of Nonresectable Pancreatic Carcinomas with Neoadjuvant Therapy , 2009, Pancreatology.
[17] L. Grenacher,et al. Computertomographie bei Pankreastumoren , 2009, Der Radiologe.
[18] Suresh Senan,et al. Evaluation of four-dimensional computed tomography-based intensity-modulated and respiratory-gated radiotherapy techniques for pancreatic carcinoma. , 2008, International journal of radiation oncology, biology, physics.
[19] K. Camphausen,et al. A dosimetric analysis of dose escalation using two intensity-modulated radiation therapy techniques in locally advanced pancreatic carcinoma. , 2006, International journal of radiation oncology, biology, physics.
[20] Max A. Viergever,et al. Mutual-information-based registration of medical images: a survey , 2003, IEEE Transactions on Medical Imaging.
[21] N. Senninger,et al. [Hydrospiral CT of the pancreas in thin section technique]. , 1996, Der Radiologe.
[22] N. Senninger,et al. Hydrospiral-CT des Pankreas in Dünnschichttechnik , 1996, Der Radiologe.
[23] F Lohr,et al. [Current requirements for image management in radiotherapy]. , 2012, Strahlentherapie und Onkologie : Organ der Deutschen Rontgengesellschaft ... [et al].
[24] H. Sack,et al. Time management in radiation oncology: development and evaluation of a modular system based on the example of rectal cancer treatment , 2011, Strahlentherapie und Onkologie.
[25] Ralf Floca,et al. MatchPoint: On Bridging the Innovation Gap between Algorithmic Research and Clinical Use in Image Registration , 2009 .
[26] H. Kang. Computed Tomography of Pancreatic Tumors , 1996 .