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Titolo:
WORKSTATION FOR TOMOGRAPHIC MICROTHERAPY
Autore:
GRONEMEYER DHW; GEVARGEZ A; MOHLENKAMP S; DELI M; KRIENER P; SCHMERMUND A; MELZER A; ERBEL R;
Indirizzi:
UNIV WITTEN HERDECKE,INST MIKROTHERAPIE,DEPT RADIOL & MICROTHERAPY,UNIV STR 142 D-44799 BOCHUM GERMANY
Titolo Testata:
MINIMALLY INVASIVE THERAPY & ALLIED TECHNOLOGIES
fascicolo: 5, volume: 7, anno: 1998,
pagine: 433 - 442
SICI:
1364-5706(1998)7:5<433:WFTM>2.0.ZU;2-9
Fonte:
ISI
Lingua:
ENG
Soggetto:
MRI; SURGERY; THERMOTHERAPY; HYPERTHERMIA; NEUROSURGERY; SYSTEM; CT;
Keywords:
COMPUTED TOMOGRAPHY; MAGNETIC RESONANCE IMAGING; ELECTRON BEAM TOMOGRAPHY; ENDOSCOPY; LASER; CRYO; MINIMALLY INVASIVE THERAPY; MICROTHERAPY; WORKSTATION;
Tipo documento:
Article
Natura:
Periodico
Settore Disciplinare:
Science Citation Index Expanded
Citazioni:
25
Recensione:
Indirizzi per estratti:
Citazione:
D.H.W. Gronemeyer et al., "WORKSTATION FOR TOMOGRAPHIC MICROTHERAPY", MINIMALLY INVASIVE THERAPY & ALLIED TECHNOLOGIES, 7(5), 1998, pp. 433-442

Abstract

Minimally invasive procedures are increasingly combined with radiologic imaging to optimise access and treatment techniques. While endoscopy has become a standard technique in the surgical field for diagnosis and therapy, tomographic guidance is new. Combining both modalities, the transparency of computed tomography and of ultrafast electron beam tomography, together with magnetic resonance imaging (MRI), will optimise both guidance and therapy. By using tomographic scanners for precise instrument positioning, the diameter of instruments [mechanical, laser, radiofrequency (RF), endoscopes etc.] can be minimised. Also electronic equipment, for visualisation and therapy should be integrated into a tomographic work-station. Instruments and electronic equipment are sensitive to MRI and ferromagnetic alloys, and electric impulses cause artifacts in imaging. These problems have to be solved for future therapeutic workstations.

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Documento generato il 04/04/20 alle ore 15:30:41