Bolus plays an important role in the radiation therapy of superficial lesions and the application of 3D printing to its design can improve fit and dosimetry. This study quantitatively compares the fits of boluses designed from different imaging modalities. A head phantom was imaged using three systems: a CT simulator, a 3D optical scanner, and an interchangeable lens camera. Nose boluses were designed and 3D printed from each modality. A 3D printed phantom with air gaps of known thicknesses was used to calibrate mean HU to measure air gaps of unknown thickness and assess the fit of each bolus on the head phantom. The bolus created from the optical scanner data resulted in the best fit, with a mean air gap of 0.16\ua0mm. Smoothing of the CT ...
Purpose: Imaging phantoms are widely used for testing and optimization of imaging devices without th...
Objectives: Detectability experiments performed to assess the diagnostic performance of computed tom...
Item does not contain fulltextBACKGROUND AND PURPOSE: Creating an individualized tissue equivalent m...
A three-dimensional (3D)-printed customized bolus (3D bolus) can be used for radiotherapy applicatio...
<div><p>A three-dimensional (3D)-printed customized bolus (3D bolus) can be used for radiotherapy ap...
Abstract Background Computed tomography (CT) data used for patient radiotherapy planning can nowaday...
Introduction: Three-dimensional printing technology has the potential to streamline custom bolus pro...
Background and purpose 3D printing is rapidly evolving and further assessment of materials and techn...
The aim of this study is to introduce a new filament and novel 3D printing technique toadjust the de...
This thesis is about applying 3D printing in evaluating CT image quality and showing how this low-co...
This study used the specific example of 3D printing with acrylonitrile butadiene styrene (ABS) as a ...
The skin-sparing effect of megavoltage-photon beams in radiotherapy (RT) reduces the target coverage...
[Background] he skin-sparing effect of megavoltage-photon beams in radiotherapy (RT) reduces the tar...
OBJECTIVE: Boluses are used in high-energy radiotherapy in order to overcome the skin sparing effect...
Purpose: To design a 3D printed anthropomorphic lung vessel phantom for CT image quality assessment ...
Purpose: Imaging phantoms are widely used for testing and optimization of imaging devices without th...
Objectives: Detectability experiments performed to assess the diagnostic performance of computed tom...
Item does not contain fulltextBACKGROUND AND PURPOSE: Creating an individualized tissue equivalent m...
A three-dimensional (3D)-printed customized bolus (3D bolus) can be used for radiotherapy applicatio...
<div><p>A three-dimensional (3D)-printed customized bolus (3D bolus) can be used for radiotherapy ap...
Abstract Background Computed tomography (CT) data used for patient radiotherapy planning can nowaday...
Introduction: Three-dimensional printing technology has the potential to streamline custom bolus pro...
Background and purpose 3D printing is rapidly evolving and further assessment of materials and techn...
The aim of this study is to introduce a new filament and novel 3D printing technique toadjust the de...
This thesis is about applying 3D printing in evaluating CT image quality and showing how this low-co...
This study used the specific example of 3D printing with acrylonitrile butadiene styrene (ABS) as a ...
The skin-sparing effect of megavoltage-photon beams in radiotherapy (RT) reduces the target coverage...
[Background] he skin-sparing effect of megavoltage-photon beams in radiotherapy (RT) reduces the tar...
OBJECTIVE: Boluses are used in high-energy radiotherapy in order to overcome the skin sparing effect...
Purpose: To design a 3D printed anthropomorphic lung vessel phantom for CT image quality assessment ...
Purpose: Imaging phantoms are widely used for testing and optimization of imaging devices without th...
Objectives: Detectability experiments performed to assess the diagnostic performance of computed tom...
Item does not contain fulltextBACKGROUND AND PURPOSE: Creating an individualized tissue equivalent m...