Diffusion tensor magnetic resonance imaging (DTI) was used to study mouse brain development from early embryonic stage to adult. DTI provides necessary resolution and superb white matter and gray matter contrast in embryonic and neonatal brains for characterization of morphological changes during mouse brain development. A database and a digital atlas of developing mouse brains based on our DTI results are being constructed. To characterize the spatial and temporal patterns of mouse brain development, we applied landmark based computational techniques to analyze the database
High resolution diffusion tensor imaging (DTI) can provide important information on brain developmen...
The widespread use of the mouse as a model system to study brain development has created the need fo...
Cerebral development involves a complex cascade of events which are difficult to visualize and quant...
Diffusion tensor magnetic resonance imaging (DTI) was used to study mouse brain development from ear...
The advent of mammalian gene engineering and genetically modified mouse models has led to renewed in...
This paper presents a comprehensive effort to establish a structural mouse connectome using diffusio...
Diffusion Tensor magnetic resonance imaging and computational neuroanatomy are used to quantify post...
Investigation of three-dimensional (3D) morphometry of developing brains has been hindered by a lack...
Diffusion Tensor magnetic resonance imaging and computational neuroanatomy are used to quantify post...
The embryonic mouse brain undergoes drastic changes in establishing basic anatomical compartments an...
This study investigates the potential of microscopic Magnetic Resonance Imaging to obtain informatio...
This dataset is assciated with the paper "A Spatiotemporal Continuum of Embryonic Mouse Brain Develo...
Understanding early human brain development is of great clinical importance, as many neurological an...
Diffusion Tensor Magnetic Resonance Imaging (DTI) has proven itself a powerful technique for clinica...
The brain contains more than 100 billion neurons that communicate with each other via axons for the ...
High resolution diffusion tensor imaging (DTI) can provide important information on brain developmen...
The widespread use of the mouse as a model system to study brain development has created the need fo...
Cerebral development involves a complex cascade of events which are difficult to visualize and quant...
Diffusion tensor magnetic resonance imaging (DTI) was used to study mouse brain development from ear...
The advent of mammalian gene engineering and genetically modified mouse models has led to renewed in...
This paper presents a comprehensive effort to establish a structural mouse connectome using diffusio...
Diffusion Tensor magnetic resonance imaging and computational neuroanatomy are used to quantify post...
Investigation of three-dimensional (3D) morphometry of developing brains has been hindered by a lack...
Diffusion Tensor magnetic resonance imaging and computational neuroanatomy are used to quantify post...
The embryonic mouse brain undergoes drastic changes in establishing basic anatomical compartments an...
This study investigates the potential of microscopic Magnetic Resonance Imaging to obtain informatio...
This dataset is assciated with the paper "A Spatiotemporal Continuum of Embryonic Mouse Brain Develo...
Understanding early human brain development is of great clinical importance, as many neurological an...
Diffusion Tensor Magnetic Resonance Imaging (DTI) has proven itself a powerful technique for clinica...
The brain contains more than 100 billion neurons that communicate with each other via axons for the ...
High resolution diffusion tensor imaging (DTI) can provide important information on brain developmen...
The widespread use of the mouse as a model system to study brain development has created the need fo...
Cerebral development involves a complex cascade of events which are difficult to visualize and quant...