Purpose Ultrasound-based motion estimation is an expanding subfield of image-guided radiation therapy. Although ultrasound can detect tissue motion that is a fraction of a millimeter, its accuracy is variable. For controlling linear accelerator tracking and gating, ultrasound motion estimates must remain highly accurate throughout the imaging sequence. This study presents a temporal regularization method for correlation-based template matching which aims to improve the accuracy of motion estimates.Methods Liver ultrasound sequences (15-23 Hz imaging rate, 2.5-5.5 min length) from ten healthy volunteers under free breathing were used. Anatomical features (blood vessels) in each sequence were manually annotated for comparison with normalized ...
In radiation therapy of abdominal targets, optimal tumor irradiation can be challenging due to intra...
This study was designed to examine the feasibility of utilizing transabdominal ultrasound for real-t...
Feature tracking is an algorithm for estimating tissue motion and blood flow using pulse-echo ultras...
The effectiveness of intensity-modulated radiation therapy (IMRT) is compromised by involuntary moti...
Purpose: Compensation for respiratory motion is important during abdominal cancer treatments. In thi...
PURPOSE: Respiratory-gated irradiation is effective in reducing the margins of a target in the case ...
Modern techniques as ion beam therapy or 4D imaging require precise target position information. How...
We have evaluated a 4D ultrasound-based motion tracking system developed for tracking of abdominal o...
Biological motion is a problem for non- or mini-invasive interventions when conducted in mobile/defo...
Abstract. Objective: Object tracking in 2D ultrasound sequences of liver to infer real-time respirat...
Contrast-enhanced ultrasound (CEUS) acquisitions of focal liver lesions are affected by motion, whic...
Tissue motion estimation in ultrasound images plays a central role in many modern signal processing ...
International audienceCompensation for respiratory motion is important during abdominal cancer treat...
Purpose: Magnetic resonance-guided focused ultrasound (MRgFUS) of the liver during free-breathing re...
Magnetic resonance (MR) guided high intensity focused ultrasound (HIFU) and external beam radiothera...
In radiation therapy of abdominal targets, optimal tumor irradiation can be challenging due to intra...
This study was designed to examine the feasibility of utilizing transabdominal ultrasound for real-t...
Feature tracking is an algorithm for estimating tissue motion and blood flow using pulse-echo ultras...
The effectiveness of intensity-modulated radiation therapy (IMRT) is compromised by involuntary moti...
Purpose: Compensation for respiratory motion is important during abdominal cancer treatments. In thi...
PURPOSE: Respiratory-gated irradiation is effective in reducing the margins of a target in the case ...
Modern techniques as ion beam therapy or 4D imaging require precise target position information. How...
We have evaluated a 4D ultrasound-based motion tracking system developed for tracking of abdominal o...
Biological motion is a problem for non- or mini-invasive interventions when conducted in mobile/defo...
Abstract. Objective: Object tracking in 2D ultrasound sequences of liver to infer real-time respirat...
Contrast-enhanced ultrasound (CEUS) acquisitions of focal liver lesions are affected by motion, whic...
Tissue motion estimation in ultrasound images plays a central role in many modern signal processing ...
International audienceCompensation for respiratory motion is important during abdominal cancer treat...
Purpose: Magnetic resonance-guided focused ultrasound (MRgFUS) of the liver during free-breathing re...
Magnetic resonance (MR) guided high intensity focused ultrasound (HIFU) and external beam radiothera...
In radiation therapy of abdominal targets, optimal tumor irradiation can be challenging due to intra...
This study was designed to examine the feasibility of utilizing transabdominal ultrasound for real-t...
Feature tracking is an algorithm for estimating tissue motion and blood flow using pulse-echo ultras...