Computed Tomography perfusion (CTp) is a promising technique for estimating perfusion parameters, by analysing Time Concentration Curves (TCCs) of the administered contrast agent. However, several artefacts can degrade the signal quality, jeopardizing quantitative measurements. Despite different methods exploit TCCs to compute perfusion parameters, none of them has investigated how TCC fitting errors may affect final perfusion values. The first goal of this work is to investigate residuals distributions in significant signal\u2019s portions, then relating them to Blood Flow (BF). The Gamma Variate (GV) function is addressed to fit TCCs. Voxel-based BF is computed with the two most spread methods in literature, Maximum Slope (MS) and Deconvo...
OBJECTIVES: Deconvolution-derived maps of CT perfusion (CTP) data may be confounded by transit delay...
RATIONALE AND OBJECTIVES: To evaluate the improvements in measurements of blood flow (BF), blood vol...
In brain CT perfusion (CTP), the arterial contrast bolus is scaled to have the same area under the c...
Purpose: Assessing to what extent the errors on the Time-Concentration Curves (TCCs) fitting in Comp...
none5Rationale and Objectives: Tissue perfusion is commonly used to evaluate lung tumor lesions th...
In the last few years, cancer treatments have improved significantly with the introduction of new th...
The Computed Tomography perfusion (CTp) is a promising tool in oncology to characterize hemodynamics...
Abstract: Purpose: The goal of this PhD Thesis work is contributing to advance Computed Tomography ...
In the oncology field, the anti-angiogenetic therapies aim at inhibiting tumour vascularization, tha...
Aims and objectives: Replacing model fitting with patient data to improve reproducibility of Blood F...
Purpose: To achieve accurate information regarding the reproducibility of Computed Tomography perfus...
Background: Computed tomographic perfusion (CTp) imaging is a promising technique that allows functi...
none4Purpose: The aim of this work is to detect and highlight blood vessels, artefacts, and statis...
Rationale and Objectives: To evaluate the improvements in measurements of blood flow (BF), blood vol...
OBJECTIVES: Deconvolution-derived maps of CT perfusion (CTP) data may be confounded by transit delay...
RATIONALE AND OBJECTIVES: To evaluate the improvements in measurements of blood flow (BF), blood vol...
In brain CT perfusion (CTP), the arterial contrast bolus is scaled to have the same area under the c...
Purpose: Assessing to what extent the errors on the Time-Concentration Curves (TCCs) fitting in Comp...
none5Rationale and Objectives: Tissue perfusion is commonly used to evaluate lung tumor lesions th...
In the last few years, cancer treatments have improved significantly with the introduction of new th...
The Computed Tomography perfusion (CTp) is a promising tool in oncology to characterize hemodynamics...
Abstract: Purpose: The goal of this PhD Thesis work is contributing to advance Computed Tomography ...
In the oncology field, the anti-angiogenetic therapies aim at inhibiting tumour vascularization, tha...
Aims and objectives: Replacing model fitting with patient data to improve reproducibility of Blood F...
Purpose: To achieve accurate information regarding the reproducibility of Computed Tomography perfus...
Background: Computed tomographic perfusion (CTp) imaging is a promising technique that allows functi...
none4Purpose: The aim of this work is to detect and highlight blood vessels, artefacts, and statis...
Rationale and Objectives: To evaluate the improvements in measurements of blood flow (BF), blood vol...
OBJECTIVES: Deconvolution-derived maps of CT perfusion (CTP) data may be confounded by transit delay...
RATIONALE AND OBJECTIVES: To evaluate the improvements in measurements of blood flow (BF), blood vol...
In brain CT perfusion (CTP), the arterial contrast bolus is scaled to have the same area under the c...