In vivo micro-computed tomography (microCT) scanning of small rodents is a powerful method for longitudinal monitoring of bone adaptation. However, the life-time bone growth in small rodents makes it a challenge to quantify local bone adaptation. Therefore, the aim of this study was to develop a protocol, which can take into account large bone growth, to quantify local bone adaptations over space and time. The entire right tibiae of eight 14-week-old C57BL/6J female mice were consecutively scanned four times in an in vivo microCT scanner using a nominal isotropic image voxel size of 10.4microm. The repeated scan image datasets were aligned to the corresponding baseline (first) scan image dataset using rigid registration. 80% of tibia length...
AbstractMicro-computed tomography (micro-CT) is used routinely to quantify skeletal tissue mass in s...
Purpose: Quantification of osteolysis is crucial for monitoring treatment effects in preclinical res...
It is well established that bone is capable of adapting to changes in its environment; however, litt...
In vivo micro-computed tomography (microCT) scanning of small rodents is a powerful method for longi...
AbstractIn vivo micro-computed tomography (µCT) scanning of small rodents is a powerful method for l...
In vivo micro-computed tomography (μCT) scanning of small rodents is a powerful method for longitudi...
Longitudinal studies of bone adaptation in mice using in vivo micro-computed tomography (μCT) have b...
Longitudinal studies of bone adaptation in mice using in vivo micro-computed tomography (μCT) have b...
In longitudinal studies, in vivo micro-Computed Tomography (microCT) imaging is used to investigate ...
The mouse tibia is a common site to investigate bone remodelling and the effect of treatments precli...
In vivo micro-computed tomography (micro-CT) will offer unique information on the time-related chang...
SummaryObjectiveTo non-invasively investigate the changes to epiphyseal bone occurring in a longitud...
Micro-computed tomography (micro-CT) is used routinely to quantify skeletal tissue mass in small ani...
Micro-Computed Tomography (microCT) images are used to measure morphometric and densitometric proper...
In longitudinal studies, in vivo micro-Computed Tomography (microCT) imaging is used to investigate ...
AbstractMicro-computed tomography (micro-CT) is used routinely to quantify skeletal tissue mass in s...
Purpose: Quantification of osteolysis is crucial for monitoring treatment effects in preclinical res...
It is well established that bone is capable of adapting to changes in its environment; however, litt...
In vivo micro-computed tomography (microCT) scanning of small rodents is a powerful method for longi...
AbstractIn vivo micro-computed tomography (µCT) scanning of small rodents is a powerful method for l...
In vivo micro-computed tomography (μCT) scanning of small rodents is a powerful method for longitudi...
Longitudinal studies of bone adaptation in mice using in vivo micro-computed tomography (μCT) have b...
Longitudinal studies of bone adaptation in mice using in vivo micro-computed tomography (μCT) have b...
In longitudinal studies, in vivo micro-Computed Tomography (microCT) imaging is used to investigate ...
The mouse tibia is a common site to investigate bone remodelling and the effect of treatments precli...
In vivo micro-computed tomography (micro-CT) will offer unique information on the time-related chang...
SummaryObjectiveTo non-invasively investigate the changes to epiphyseal bone occurring in a longitud...
Micro-computed tomography (micro-CT) is used routinely to quantify skeletal tissue mass in small ani...
Micro-Computed Tomography (microCT) images are used to measure morphometric and densitometric proper...
In longitudinal studies, in vivo micro-Computed Tomography (microCT) imaging is used to investigate ...
AbstractMicro-computed tomography (micro-CT) is used routinely to quantify skeletal tissue mass in s...
Purpose: Quantification of osteolysis is crucial for monitoring treatment effects in preclinical res...
It is well established that bone is capable of adapting to changes in its environment; however, litt...