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Koen Nieman

Publications and source records attributed to Koen Nieman.

41 records · Page 3Linked to original sources

Definition of a moving gross target volume for stereotactic radiation therapy of stented coronary arteries.

PURPOSE: To measure the effect of cardiac motion on coronary artery stent position during the cardiac cycle as a first step toward exploring the feasibility of stereotactic external beam radiation therapy targeted at restenotic stented coronary arteries. METHODS AND MATERIALS: The three-dimensional (3D) position of eight coronary artery stents in 8 patients immobilized in a stereotactic body frame was studied noninvasively by single-breathhold ECG-gated multislice spiral computed tomography (MSCT) during 10 retrospectively selected phases, equally distributed throughout the R-R interval of consecutive cardiac cycles. The volume encompassing all measured 3D positions of the stent was measured. RESULTS: Stent volumes measured by MSCT closely agreed with measurements by quantitative coronary angiography (r > 0.99). The mean of the maximum 3D stent center of mass displacement between any two phases during the cardiac cycle for all eight coronary arteries was 7.5 mm (range 3.3-20.5 mm) in the lateral direction, 8.6 mm (range 2.7-21.6 mm) in the ventrodorsal direction, and 8.2 mm (range 2.5-19.7 mm) in the craniocaudal direction. As was anticipated, the volume encompassing all measured 3D positions of the stent represented only a fraction of the whole heart volume in all patients, i.e., less than 0.6%. CONCLUSIONS: ECG-gated MSCT allowed the measurement of the volume encompassing multiphase 3D positions of coronary artery stents during the cardiac cycle. This volume, a measure of the cardiac motion effect on coronary artery stent position during the cardiac cycle, represents a moving gross target for stereotactic external beam radiation therapy.

Aged↗

Three-dimensional coronary anatomy in contrast-enhanced multislice computed tomography.

A number of three-dimensional imaging modalities, such as magnetic resonance imaging, electron beam computed tomography, ultrasonography, and multislice computed tomography have been introduced in cardiovascular medicine. One of the most recently developed techniques, multislice computed tomographic coronary angiography, allows assessment of the small coronary vessels. The entire heart is scanned within a single breathhold and contrast-enhanced images are reconstructed through retrospective electrocardiographic gating. Instead of the conventional two-dimensional projection images, multislice computed tomographic data can be displayed in a three-dimensional, volume-rendered manner. This paper presents an overview of the cardiac and coronary morphology as it is imaged with contrast-enhanced multislice computed tomography. Further imaging characteristics of computed tomographic angiography are discussed.

Contrast Media↗

Noninvasive coronary imaging in the new millennium: a comparison of computed tomography and magnetic resonance techniques.

Until recently, visualization of the coronary arteries was the sole domain of catheter-based x-ray angiography. In an effort to detect and assess coronary artery disease noninvasively, magnetic resonance imaging, electron beam computed tomography, and multislice spiral computed tomography have emerged as potential modalities. Besides visualization of the vessel lumen, these techniques may be capable of imaging and characterizing atherosclerotic plaques. None of these techniques are yet routinely used, but considering the pace of the technical advancements, clinically reliable noninvasive coronary angiography can be expected in the coming years.

Calcinosis↗

Noninvasive visualisation of coronary atherosclerosis with multislice computed tomography.

Computed Tomography (Electron Beam Tomography: EBCT and multislice computed tomography: MSCT) have recently emerged as non-invasive diagnostic modalities that can quantify coronary calcium which is not only as indicator of coronary risk, but also permits assessment of the coronary lumen. The 16-slice MS-CT, the most recent CT-scanner has a very high resolution, which allows non-invasive assessment of coronary plaques. This has led to a stimulus for further research to assess the role of MSCT coronary plaque imaging in the identification of high-risk coronary plaques.

Age Distribution↗

[Normal anatomy of the vessels of the heart with 16-row multislice computed tomography].

Nowadays, cardiac imaging is not part of the clinical routine for the radiologist. Multislice Computed Tomography (MSCT) with 4 rows allowed to start the non invasive evaluation of coronary arteries. The introduction of 16-row MSCT has significantly improved the performance and diagnostic accuracy of this technique, so far that MSCT angiography has been advocated as a potential clinical tool for the study of coronary artery disease. Therefore, it is mandatory to understand normal cardiac and coronary anatomy in order to evaluate the presence and severity of coronary artery disease. The anatomical visualisation provided by MSCT differs from the one of conventional coronary angiography because it is not a simple "lumenology" but it is capable to provide information on the vessel wall, until now only achieved by invasive techniques such as intravascular ultrasound or optical coherence tomography, and on neighbouring structures. Aim of this works is to provide the basics of anatomy of the vessels of the heart applied to MSCT.

Coronary Angiography↗