Purpose: The purpose of this work is to assess the magnitude of speed of sound (SOS) aberrations in three-dimensional ultrasound (US) imaging systems in image guided radiotherapy. The discrepancy between the fixed SOS value of 1540 m/s assumed by US systems in human soft tissues and its actual nonhomogeneous distribution in patients produces small but systematic errors of up to a few millimeters in the positions of scanned structures. Methods: A correction, provided by a previously published density-based algorithm, was applied to a set of five prostate, five liver, and five breast cancer patients. The shifts of the centroids of target structures and the change in shape were evaluated. Results: After the correction the prostate cases showed...
Purpose: It is common practice to correct for interfraction motion by shifting the patient from refe...
Medical ultrasound imaging is in widespread use today due to its low cost, portability, lack of side...
Purpose: A quantitative 3D intramodality ultrasound (US) imaging system was verified for daily in-ro...
Purpose: The purpose of this work is to assess the magnitude of speed of sound (SOS) aberrations in ...
Conventional ultrasound (US) devices use the time of flight (TOF) of reflected US pulses to calculat...
Purpose: To show the effect of speed of sound (SOS) aberration on ultrasound guided radiotherapy (US...
Purpose: To show the effect of speed of sound (SOS) aberration on ultrasound guided radiotherapy (US...
Purpose: To introduce a correction for speed of sound (SOS) aberrations in three dimensional (3D) ul...
To investigate the clinical impact of a recently introduced speed of sound (SOS) aberration correcti...
To investigate the clinical impact of a recently introduced <i>speed of sound</i> (SOS) aberration c...
US systems assume that speed of sound (SOS) is constant in human soft tissues (at a value of 1540 m/...
PurposeBy measuring the discrepancy of distance in electromagnetic tracking (EM) versus ultrasound i...
International audiencePurpose/Objective: For effective delivery of new radiotherapy techniques provi...
Abstract—Our experimental setup for ultrasound computer tomography (USCT) has a cylindrical aperture...
© 2019 SPIE. Purpose: This study aims to investigate correlation of speed of sound (SoS) map with T2...
Purpose: It is common practice to correct for interfraction motion by shifting the patient from refe...
Medical ultrasound imaging is in widespread use today due to its low cost, portability, lack of side...
Purpose: A quantitative 3D intramodality ultrasound (US) imaging system was verified for daily in-ro...
Purpose: The purpose of this work is to assess the magnitude of speed of sound (SOS) aberrations in ...
Conventional ultrasound (US) devices use the time of flight (TOF) of reflected US pulses to calculat...
Purpose: To show the effect of speed of sound (SOS) aberration on ultrasound guided radiotherapy (US...
Purpose: To show the effect of speed of sound (SOS) aberration on ultrasound guided radiotherapy (US...
Purpose: To introduce a correction for speed of sound (SOS) aberrations in three dimensional (3D) ul...
To investigate the clinical impact of a recently introduced speed of sound (SOS) aberration correcti...
To investigate the clinical impact of a recently introduced <i>speed of sound</i> (SOS) aberration c...
US systems assume that speed of sound (SOS) is constant in human soft tissues (at a value of 1540 m/...
PurposeBy measuring the discrepancy of distance in electromagnetic tracking (EM) versus ultrasound i...
International audiencePurpose/Objective: For effective delivery of new radiotherapy techniques provi...
Abstract—Our experimental setup for ultrasound computer tomography (USCT) has a cylindrical aperture...
© 2019 SPIE. Purpose: This study aims to investigate correlation of speed of sound (SoS) map with T2...
Purpose: It is common practice to correct for interfraction motion by shifting the patient from refe...
Medical ultrasound imaging is in widespread use today due to its low cost, portability, lack of side...
Purpose: A quantitative 3D intramodality ultrasound (US) imaging system was verified for daily in-ro...