OBJECTIVE: The purpose of our study was to determine the optimal timing window for pulmonary artery MDCT angiography. SUBJECTS AND METHODS: We prospectively studied 150 patients. Routine chest CT scans were acquired using 1.3 mL/kg of contrast medium (370 mg I/mL) that was injected at a fixed injection duration of 30 seconds, followed by a 10-second saline chase. To measure early contrast enhancement, sequential monitoring scans were obtained every 2 seconds over a fixed level of the main pulmonary artery 5 seconds after the start of the injection. Then helical diagnostic scans were obtained at three different predetermined scanning delays (group A, 25 seconds; group B, 35 seconds; and group C, 45 seconds after the start of the injection). ...
Objective: The purpose was to evaluate individually shaped contrast media (CM) delivery in CT pulmon...
To optimize enhancement of pulmonary arteries and facilitate diagnosis of pulmonary embolism (PE), m...
To evaluate the influence of different saline chaser volumes and different saline chaser flow rates ...
Purpose: To determine the optimal timing of arterial first pass computed tomography (CT) myocardial ...
Background: To achieve high image quality of cardiovascular magnetic resonance (CMR) pulmonary vein ...
Objective: To find the optimal scan timing for early arterial phase hepatic CT with adequate arteria...
The purpose of this study is to develop and validate an optimal timing protocol for a low-radia...
Purpose: The aim of the study was to simultaneously optimize contrast media (CM) injection and scan ...
Very short acquisition times and the use of low-kV protocols in CTA demand modifications in the cont...
OBJECTIVE. The purpose of this study was to define the optimal scan window for acquiring arterial ph...
Introduction : Pulmonary CT angiography is among the most challenging protocols to execute, with sig...
Objective: To optimize enhancement of pulmonary arteries and facilitate diagnosis of pulmonary embol...
13301甲第4385号博士(保健学)金沢大学博士論文本文Full 以下に掲載:Acta Radiol. Epub ahead of print 2015. SAGE. 共著者:Takashi Hos...
Objective: To optimize enhancement of pulmonary arteries and facilitate diagnosis of pulmonary embol...
OBJECTIVE. The objective of the study was to clarify whether a fixed-duration injection protocol is ...
Objective: The purpose was to evaluate individually shaped contrast media (CM) delivery in CT pulmon...
To optimize enhancement of pulmonary arteries and facilitate diagnosis of pulmonary embolism (PE), m...
To evaluate the influence of different saline chaser volumes and different saline chaser flow rates ...
Purpose: To determine the optimal timing of arterial first pass computed tomography (CT) myocardial ...
Background: To achieve high image quality of cardiovascular magnetic resonance (CMR) pulmonary vein ...
Objective: To find the optimal scan timing for early arterial phase hepatic CT with adequate arteria...
The purpose of this study is to develop and validate an optimal timing protocol for a low-radia...
Purpose: The aim of the study was to simultaneously optimize contrast media (CM) injection and scan ...
Very short acquisition times and the use of low-kV protocols in CTA demand modifications in the cont...
OBJECTIVE. The purpose of this study was to define the optimal scan window for acquiring arterial ph...
Introduction : Pulmonary CT angiography is among the most challenging protocols to execute, with sig...
Objective: To optimize enhancement of pulmonary arteries and facilitate diagnosis of pulmonary embol...
13301甲第4385号博士(保健学)金沢大学博士論文本文Full 以下に掲載:Acta Radiol. Epub ahead of print 2015. SAGE. 共著者:Takashi Hos...
Objective: To optimize enhancement of pulmonary arteries and facilitate diagnosis of pulmonary embol...
OBJECTIVE. The objective of the study was to clarify whether a fixed-duration injection protocol is ...
Objective: The purpose was to evaluate individually shaped contrast media (CM) delivery in CT pulmon...
To optimize enhancement of pulmonary arteries and facilitate diagnosis of pulmonary embolism (PE), m...
To evaluate the influence of different saline chaser volumes and different saline chaser flow rates ...