PURPOSE: Respiratory-gated irradiation is effective in reducing the margins of a target in the case of abdominal organs, such as the liver, that change their position as a result of respiratory motion. However, existing technologies are incapable of directly measuring organ motion in real-time during radiation beam delivery. Hence, the authors proposed a novel quantitative organ motion tracking method involving the use of diagnostic ultrasound images; it is noninvasive and does not entail radiation exposure. In the present study, the authors have prospectively evaluated this proposed method.METHODS: The method involved real-time processing of clinical ultrasound imaging data rather than organ monitoring; it comprised a three-dimensional ult...
Purpose: The use of motion mitigation techniques such as tracking and gating in particle therapy req...
The measurement of the relative location of images acquired using freehand ultrasound is often requ...
Purpose Ultrasound-based motion estimation is an expanding subfield of image-guided radiation therap...
Modern techniques as ion beam therapy or 4D imaging require precise target position information. How...
Purpose: Compensation for respiratory motion is important during abdominal cancer treatments. In thi...
Abstract. Objective: Object tracking in 2D ultrasound sequences of liver to infer real-time respirat...
One main limitation in HIFU treatment is the abdominal movement in liver and kidney caused by respir...
We have evaluated a 4D ultrasound-based motion tracking system developed for tracking of abdominal o...
The purpose of this study was to evaluate a novel vessel-tracking-based technique for tracking of hu...
This study was designed to examine the feasibility of utilizing transabdominal ultrasound for real-t...
Background and purpose: To evaluate a novel four-dimensional (4D) ultrasound (US) tracking syst...
The effectiveness of intensity-modulated radiation therapy (IMRT) is compromised by involuntary moti...
In radiation therapy of abdominal targets, optimal tumor irradiation can be challenging due to intra...
Magnetic resonance (MR) guided high intensity focused ultrasound (HIFU) and external beam radiothera...
Biological motion is a problem for non- or mini-invasive interventions when conducted in mobile/defo...
Purpose: The use of motion mitigation techniques such as tracking and gating in particle therapy req...
The measurement of the relative location of images acquired using freehand ultrasound is often requ...
Purpose Ultrasound-based motion estimation is an expanding subfield of image-guided radiation therap...
Modern techniques as ion beam therapy or 4D imaging require precise target position information. How...
Purpose: Compensation for respiratory motion is important during abdominal cancer treatments. In thi...
Abstract. Objective: Object tracking in 2D ultrasound sequences of liver to infer real-time respirat...
One main limitation in HIFU treatment is the abdominal movement in liver and kidney caused by respir...
We have evaluated a 4D ultrasound-based motion tracking system developed for tracking of abdominal o...
The purpose of this study was to evaluate a novel vessel-tracking-based technique for tracking of hu...
This study was designed to examine the feasibility of utilizing transabdominal ultrasound for real-t...
Background and purpose: To evaluate a novel four-dimensional (4D) ultrasound (US) tracking syst...
The effectiveness of intensity-modulated radiation therapy (IMRT) is compromised by involuntary moti...
In radiation therapy of abdominal targets, optimal tumor irradiation can be challenging due to intra...
Magnetic resonance (MR) guided high intensity focused ultrasound (HIFU) and external beam radiothera...
Biological motion is a problem for non- or mini-invasive interventions when conducted in mobile/defo...
Purpose: The use of motion mitigation techniques such as tracking and gating in particle therapy req...
The measurement of the relative location of images acquired using freehand ultrasound is often requ...
Purpose Ultrasound-based motion estimation is an expanding subfield of image-guided radiation therap...