The RADPOS system is a new in vivo dosimetry tool that combines a MOSFET dosimeter with an electromagnetic positioning sensor to allow for simultaneous measurement in real‐time of dose and spatial coordinates at a specific location. A study is currently underway using the RADPOS system during the 4DCT and external beam treatments of lung cancer patients. Each day, RADPOS detectors are positioned at marked points on the patient's chest and abdomen while a fourth detector is placed on the CT or treatment couch for reference. Position coordinates of the sensors are read in real‐time at a rate of 20–25 Hz and total dose is read at the end of each treatment fraction. Measurements have been completed on 11 patients during the 4DCT and 7–16 treatm...
The article reports a feasibility study about the potentiality of an in vivo dosimetry method for th...
This paper discusses a novel Timepix-based on-line radon dose monitor called RaDoM. The detector pro...
The breath-hold is one of the techniques to obtain the dose escalation for lung tumors. However, the...
Purpose: To describe results from an ongoing clinical trial that aims to evaluate the potential of t...
Purpose: To evaluate a novel 4D dosimetry system (RADPOS) in conjunction with a deformable lung phan...
Purpose: To present the latest data on the newly‐developed RADPOS 4D in vivo dosimetry system includ...
Purpose: The RADPOS in vivo dosimetry system combines an electromagnetic positioning sensor with MOS...
Purpose: To develop a process to track respiratory motion during lung SBRT treatments and evaluate t...
Purpose: The Synchrony respiratory motion tracking of the CyberKnife system purports to provide real...
Purpose: Respiratory motion can lead to treatment errors in the delivery of radiotherapy treatments....
Breathing motion in radiotherapy is commonly managed with four-dimensional computed tomography (4DCT...
This study proposes a new method to reduce respiratory motion artifacts in PET images of lung cancer...
Purpose : 3D conformal radiotherapy, the optimum dose delivered to the tumor and provided the risk o...
Background: The internal target volume (ITV) for tumors in the abdomen or thorax includes sufficient...
Physiological respiratory motion of tumors growing in the lung can be corrected with respiratory gat...
The article reports a feasibility study about the potentiality of an in vivo dosimetry method for th...
This paper discusses a novel Timepix-based on-line radon dose monitor called RaDoM. The detector pro...
The breath-hold is one of the techniques to obtain the dose escalation for lung tumors. However, the...
Purpose: To describe results from an ongoing clinical trial that aims to evaluate the potential of t...
Purpose: To evaluate a novel 4D dosimetry system (RADPOS) in conjunction with a deformable lung phan...
Purpose: To present the latest data on the newly‐developed RADPOS 4D in vivo dosimetry system includ...
Purpose: The RADPOS in vivo dosimetry system combines an electromagnetic positioning sensor with MOS...
Purpose: To develop a process to track respiratory motion during lung SBRT treatments and evaluate t...
Purpose: The Synchrony respiratory motion tracking of the CyberKnife system purports to provide real...
Purpose: Respiratory motion can lead to treatment errors in the delivery of radiotherapy treatments....
Breathing motion in radiotherapy is commonly managed with four-dimensional computed tomography (4DCT...
This study proposes a new method to reduce respiratory motion artifacts in PET images of lung cancer...
Purpose : 3D conformal radiotherapy, the optimum dose delivered to the tumor and provided the risk o...
Background: The internal target volume (ITV) for tumors in the abdomen or thorax includes sufficient...
Physiological respiratory motion of tumors growing in the lung can be corrected with respiratory gat...
The article reports a feasibility study about the potentiality of an in vivo dosimetry method for th...
This paper discusses a novel Timepix-based on-line radon dose monitor called RaDoM. The detector pro...
The breath-hold is one of the techniques to obtain the dose escalation for lung tumors. However, the...