2002
DOI: 10.1016/s0924-2716(02)00070-9
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Photogrammetric measurement of patients in radiotherapy

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Cited by 13 publications
(5 citation statements)
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“…Optical 3D scanning is a safe, cost-effective, easy-to-use solution to acquire topographical 3D surface data. In addition to the use of optical surface reconstruction methods for the production of treatment devices such as bolus, moulds and shields, [1][2][3][4][5][6][7][8][9][10][11] optical scanning can also be used for patient position verification, 12 as well as to overcome limited field of view in simulation imaging. 13 Use of 3D optical scanning can reduce the need for radiographic imaging and thereby reduce radiation exposure, facilitate the production of treatment devices prior to CT simulation and is particularly suited to treatment of superficial disease, where the treatment volume is defined on the patient surface.…”
Section: Introductionmentioning
confidence: 99%
“…Optical 3D scanning is a safe, cost-effective, easy-to-use solution to acquire topographical 3D surface data. In addition to the use of optical surface reconstruction methods for the production of treatment devices such as bolus, moulds and shields, [1][2][3][4][5][6][7][8][9][10][11] optical scanning can also be used for patient position verification, 12 as well as to overcome limited field of view in simulation imaging. 13 Use of 3D optical scanning can reduce the need for radiographic imaging and thereby reduce radiation exposure, facilitate the production of treatment devices prior to CT simulation and is particularly suited to treatment of superficial disease, where the treatment volume is defined on the patient surface.…”
Section: Introductionmentioning
confidence: 99%
“…Die Oberflächenbeobachtung ist ein Ansatz der Patientenpositionierung, der von verschiedenen Gruppen verfolgt wird [10,11,12,13,14].…”
Section: Das Prinzip Der 3d-oberflächenbeobachtung Mit Hilfe Von Laseunclassified
“…As a result, a plethora of radiotherapy tools ranging from bolus, 1–3 brachytherapy applicators, 4,5 and shielding materials 6 can be designed with relative ease. Their use is not just limited to 3D printable devices but have been extended to generating pseudo‐ Computed Tomography (CT) water equivalent datasets for use in certain treatment planning techniques 1,7,8 and patient positioning 9,10 …”
Section: Introductionmentioning
confidence: 99%
“…Their use is not just limited to 3D printable devices but have been extended to generating pseudo-Computed Tomography (CT) water equivalent datasets for use in certain treatment planning techniques 1,7,8 and patient positioning. 9,10 These imaging technologies exhibit several advantages over the more commonly used method of CT scanning for generating 3D models, which demonstrates their feasibility for use in a radiation oncology department. 11 They retain texture information of the imaged surface, require substantially less sophisticated hardware, are relatively user friendly, can reduce patient imaging dose and allow patient-specific equipment to be fabricated prior to simulation.…”
mentioning
confidence: 99%