Background: Computed tomography (CT) of the brain is performed with high local doses due to high demands on low contrast resolution. Advanced algorithms for noise reduction might be able to preserve critical image information when reducing radiation dose.PurposeTo evaluate the effect of advanced noise filtering on image quality in brain CT acquired with reduced radiation dose. Material and Methods: Thirty patients referred for non-enhanced CT of the brain were examined with two helical protocols: normal dose (ND, CTDI(vol) 57 mGy) and low dose (LD, CTDI(vol) 40 mGy) implying a 30% radiation dose reduction. Images from the LD examinations were also postprocessed with a noise reduction software with non-linear filters (SharpView CT), creating...
Purpose: To evaluate the performance of a novel noise reduction filter for improving the visibilty o...
Computed Tomography (CT) is an important and most common modality in medical imaging. In CT examinat...
AIM To compare the computed tomography (CT) dose and image quality with the filtered back project...
Background: The goal of clinical computed tomography (CT) is to produce images of diagnostic quality...
Background and purposeThere is a desire within many institutions to reduce the radiation dose in CTP...
The purpose of this study was to analyze the effect of various tube current settings (mAs) and optim...
BACKGROUND AND PURPOSE: Increasing use of CT for evaluating neurologic disease may expose patients t...
BACKGROUNDAND PURPOSE: There is a desire within many institutions to reduce the radiation dose in CT...
In CT scanning, image quality has many components and is influenced by many technical parameters. Wh...
To compare quantitatively and qualitatively brain image quality acquired in helical and axial modes ...
BACKGROUNDAND PURPOSE: There is a desire within many institutions to reduce the radiation dose in CT...
Computed Tomography (CT) has been used for medical diagnosis for the past four decades and has made ...
PURPOSE: To retrospectively quantify the effect of systematic use of tube current modulation for neu...
PURPOSE Computed tomography (CT) accounts for more than half of the total radiation exposure from...
INTRODUCTION: Adaptive statistical iterative reconstruction (ASIR) can decrease image noise, thereby...
Purpose: To evaluate the performance of a novel noise reduction filter for improving the visibilty o...
Computed Tomography (CT) is an important and most common modality in medical imaging. In CT examinat...
AIM To compare the computed tomography (CT) dose and image quality with the filtered back project...
Background: The goal of clinical computed tomography (CT) is to produce images of diagnostic quality...
Background and purposeThere is a desire within many institutions to reduce the radiation dose in CTP...
The purpose of this study was to analyze the effect of various tube current settings (mAs) and optim...
BACKGROUND AND PURPOSE: Increasing use of CT for evaluating neurologic disease may expose patients t...
BACKGROUNDAND PURPOSE: There is a desire within many institutions to reduce the radiation dose in CT...
In CT scanning, image quality has many components and is influenced by many technical parameters. Wh...
To compare quantitatively and qualitatively brain image quality acquired in helical and axial modes ...
BACKGROUNDAND PURPOSE: There is a desire within many institutions to reduce the radiation dose in CT...
Computed Tomography (CT) has been used for medical diagnosis for the past four decades and has made ...
PURPOSE: To retrospectively quantify the effect of systematic use of tube current modulation for neu...
PURPOSE Computed tomography (CT) accounts for more than half of the total radiation exposure from...
INTRODUCTION: Adaptive statistical iterative reconstruction (ASIR) can decrease image noise, thereby...
Purpose: To evaluate the performance of a novel noise reduction filter for improving the visibilty o...
Computed Tomography (CT) is an important and most common modality in medical imaging. In CT examinat...
AIM To compare the computed tomography (CT) dose and image quality with the filtered back project...