Understanding the three-dimensional (3-D) micro-architecture of lung tissue can provide insights into the pathology of lung disease. Micro computed tomography (µCT) has previously been used to elucidate lung 3D histology and morphometry in fixed samples that have been stained with contrast agents or air inflated and dried. However, non-destructive microstructural 3D imaging of formalin-fixed paraffin embedded (FFPE) tissues would facilitate retrospective analysis of extensive tissue archives of lung FFPE lung samples with linked clinical data.FFPE human lung tissue samples (n = 4) were scanned using a Nikon metrology µCT scanner. Semi-automatic techniques were used to segment the 3D structure of airways and blood vessels. Airspace size (mea...
<p><b>A)</b> A 2D representative μCT transverse, inferior cross section of a WT lung at cervical ver...
This study aimed to explore the value of synchrotron-based phase-contrast microcomputed tomography (...
New optical techniques have the potential to fill the gap between radiological and microscopic appro...
Understanding the three-dimensional (3-D) micro-architecture of lung tissue can provide insights int...
Historically, micro-computed tomography (μCT) has been considered unsuitable for histologic analysis...
Micro-computed tomography (µCT) provides non-destructive three-dimensional (3D) imaging of soft tiss...
‡ AS and DV contributed equally to this work. LH and PL also contributed equally to this work
Datasets used for the study entitled 'X-ray micro-computed tomography for non-destructive 3D X-r...
Micro-computed tomography (micro-CT) is a promising novel medical imaging modality that allows for n...
MicroCT is a technology that allows for obtaining images with resolution equivalent to histological ...
The lung is difficult to analyze histologically since most lung harvesting techniques result in a co...
Micro-computed tomography (µCT) is a non-destructive 3D imaging technique used to map tissue microst...
Abstract-- We are developing a micro-computed tomography for imaging lung nodules. The purpose is to...
Objective: to analyze the 3D micro- and nanostructure and quantitative morphological parameters of r...
Rationale: Airflow obstruction, the hallmark characteristic of Chronic Obstructive Pulmonary Disease...
<p><b>A)</b> A 2D representative μCT transverse, inferior cross section of a WT lung at cervical ver...
This study aimed to explore the value of synchrotron-based phase-contrast microcomputed tomography (...
New optical techniques have the potential to fill the gap between radiological and microscopic appro...
Understanding the three-dimensional (3-D) micro-architecture of lung tissue can provide insights int...
Historically, micro-computed tomography (μCT) has been considered unsuitable for histologic analysis...
Micro-computed tomography (µCT) provides non-destructive three-dimensional (3D) imaging of soft tiss...
‡ AS and DV contributed equally to this work. LH and PL also contributed equally to this work
Datasets used for the study entitled 'X-ray micro-computed tomography for non-destructive 3D X-r...
Micro-computed tomography (micro-CT) is a promising novel medical imaging modality that allows for n...
MicroCT is a technology that allows for obtaining images with resolution equivalent to histological ...
The lung is difficult to analyze histologically since most lung harvesting techniques result in a co...
Micro-computed tomography (µCT) is a non-destructive 3D imaging technique used to map tissue microst...
Abstract-- We are developing a micro-computed tomography for imaging lung nodules. The purpose is to...
Objective: to analyze the 3D micro- and nanostructure and quantitative morphological parameters of r...
Rationale: Airflow obstruction, the hallmark characteristic of Chronic Obstructive Pulmonary Disease...
<p><b>A)</b> A 2D representative μCT transverse, inferior cross section of a WT lung at cervical ver...
This study aimed to explore the value of synchrotron-based phase-contrast microcomputed tomography (...
New optical techniques have the potential to fill the gap between radiological and microscopic appro...