Bone microvasculature plays a paramount role in bone marrow maintenance, development, and hematopoiesis. Studies of calvarian vascular patterns within living mammalian skull with the available intravital microscopy techniques are limited to small scale observations. We developed an optical-resolution optoacoustic microscopy method combined with ultrasound biomicroscopy in order to reveal and discern the intricate networks of calvarian and cerebral vasculature over large fields of view covering majority of the murine calvaria. The vasculature segmentation method is based on an angle-corrected homogeneous model of the rodent skull, generated using simultaneously acquired three-dimensional pulse-echo ultrasound images. The hybrid microscopy de...
Optical imaging offers advantages in distinguishing different tissue structures based on their chemi...
Visualization of microvascular networks could provide new information about function and disease. We...
<div><h3>Background</h3><p>The microvasculature is the network of blood vessels involved in deliveri...
Bone microvasculature plays a paramount role in bone marrow maintenance, development, and hematopoie...
Bone microvasculature plays a paramount role in bone marrow maintenance, development, and hematopoie...
Skull bone development is a dynamic and well-coordinated process playing a key role in maturation an...
Angiogenesis is critical in bone development and growth. Dense, large-scale, and multi-layered vascu...
Angiogenesis is critical in bone development and growth. Dense, large-scale, and multi-layered vascu...
A critical link exists between pathological changes of cerebral vasculature and diseases affecting b...
Obtaining morphological and physiological information of neurovasculature is very challenging due to...
Optical-resolution photoacoustic microscopy (OR-PAM) is applied to functional brain imaging in livin...
Multispectral optoacoustic tomography (MSOT) offers the unique capability to map the distribution of...
3D imaging of the bone vasculature is of key importance in the understanding of skeletal disease. As...
Accurate quantification of microvasculature remains of interest in fundamental pathophysiological st...
Vascularization is critical for cranial bone growth, maintenance, and healing, but it remains unknow...
Optical imaging offers advantages in distinguishing different tissue structures based on their chemi...
Visualization of microvascular networks could provide new information about function and disease. We...
<div><h3>Background</h3><p>The microvasculature is the network of blood vessels involved in deliveri...
Bone microvasculature plays a paramount role in bone marrow maintenance, development, and hematopoie...
Bone microvasculature plays a paramount role in bone marrow maintenance, development, and hematopoie...
Skull bone development is a dynamic and well-coordinated process playing a key role in maturation an...
Angiogenesis is critical in bone development and growth. Dense, large-scale, and multi-layered vascu...
Angiogenesis is critical in bone development and growth. Dense, large-scale, and multi-layered vascu...
A critical link exists between pathological changes of cerebral vasculature and diseases affecting b...
Obtaining morphological and physiological information of neurovasculature is very challenging due to...
Optical-resolution photoacoustic microscopy (OR-PAM) is applied to functional brain imaging in livin...
Multispectral optoacoustic tomography (MSOT) offers the unique capability to map the distribution of...
3D imaging of the bone vasculature is of key importance in the understanding of skeletal disease. As...
Accurate quantification of microvasculature remains of interest in fundamental pathophysiological st...
Vascularization is critical for cranial bone growth, maintenance, and healing, but it remains unknow...
Optical imaging offers advantages in distinguishing different tissue structures based on their chemi...
Visualization of microvascular networks could provide new information about function and disease. We...
<div><h3>Background</h3><p>The microvasculature is the network of blood vessels involved in deliveri...