Water is present in cortical bone in different binding states. In this study we aimed to investigate the effects of inversion time (TI) on the signal from bound and pore water in cortical bone using an adiabatic inversion recovery prepared ultrashort echo time (IR-UTE) sequence on a clinical 3 T scanner. In total ten bovine midshaft samples and four human tibial midshaft samples were harvested for this study. Each cortical sample was imaged with the UTE and IR-UTE sequences with a TR of 300 ms and a series of TI values ranging from 10 to 240 ms. Five healthy volunteers were also imaged with the same sequence. Single- and bi-component models were utilized to calculate the T2 * and relative fractions of short and long T2 * components. Bi-comp...
PurposeThe long repetition time and inversion time with inversion recovery preparation ultrashort ec...
PurposeTo develop quantitative susceptibility mapping (QSM) of bone using an ultrashort echo time (U...
PURPOSE: Normal adult cortical bone has a very short T(2) and characteristically produces no signal ...
Water is present in cortical bone in different binding states. In this study we aimed to investigate...
PurposeWe present three-dimensional ultrashort echo time Cones (3D UTE Cones) techniques for quantif...
Inversion recovery ultrashort echo time (IR-UTE) imaging holds the potential to directly characteriz...
Bone water exists in different states with the majority bound to the organic matrix and to mineral, ...
PURPOSE Cortical bone mechanical properties are related to the collagen-bound water (CBW) and pore w...
Magnetization transfer (MT) imaging is one way to indirectly assess pools of protons with fast trans...
Magnetization transfer (MT) imaging is one way to indirectly assess pools of protons with fast trans...
PurposeWe present three-dimensional adiabatic inversion recovery prepared ultrashort echo time Cones...
Cortical bone assessment using magnetic resonance imaging (MRI) has recently received great attentio...
PurposeTo investigate quantitative 2D ultrashort echo time magnetization transfer (UTE-MT) imaging i...
Purpose: The purpose of this study is to investigate the effect of differing field strength on the T...
BackgroundDynamic contrast enhanced magnetic resonance imaging (DCE-MRI) has been used to study perf...
PurposeThe long repetition time and inversion time with inversion recovery preparation ultrashort ec...
PurposeTo develop quantitative susceptibility mapping (QSM) of bone using an ultrashort echo time (U...
PURPOSE: Normal adult cortical bone has a very short T(2) and characteristically produces no signal ...
Water is present in cortical bone in different binding states. In this study we aimed to investigate...
PurposeWe present three-dimensional ultrashort echo time Cones (3D UTE Cones) techniques for quantif...
Inversion recovery ultrashort echo time (IR-UTE) imaging holds the potential to directly characteriz...
Bone water exists in different states with the majority bound to the organic matrix and to mineral, ...
PURPOSE Cortical bone mechanical properties are related to the collagen-bound water (CBW) and pore w...
Magnetization transfer (MT) imaging is one way to indirectly assess pools of protons with fast trans...
Magnetization transfer (MT) imaging is one way to indirectly assess pools of protons with fast trans...
PurposeWe present three-dimensional adiabatic inversion recovery prepared ultrashort echo time Cones...
Cortical bone assessment using magnetic resonance imaging (MRI) has recently received great attentio...
PurposeTo investigate quantitative 2D ultrashort echo time magnetization transfer (UTE-MT) imaging i...
Purpose: The purpose of this study is to investigate the effect of differing field strength on the T...
BackgroundDynamic contrast enhanced magnetic resonance imaging (DCE-MRI) has been used to study perf...
PurposeThe long repetition time and inversion time with inversion recovery preparation ultrashort ec...
PurposeTo develop quantitative susceptibility mapping (QSM) of bone using an ultrashort echo time (U...
PURPOSE: Normal adult cortical bone has a very short T(2) and characteristically produces no signal ...