Andrew J Woolley, PhD
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Glial cells of the brain around a micro-device 1 week post-implantation. A.Woolley et al. JNeuroMethods 2011.
Optically cleared mouse limb with three fluorescent labels. Placed in Nikon 2013 Small Worlds contest.
Silicon electrode array and immune cells in a brain tissue section.
X-ray MicroCT showing electrode array position within mouse cranium.
Glial cells in a rodent brain section imaged simultaneously by 2-photon microscopy.
Eye-implanted electrode array, imaged intact by MicroCT following implantation in a sheep eye.
Complex, myelinated neural cell culture. With A. Gilmour.
Mouse eye, showing immune cells in green and blood vessels in red. Optically cleared and imaged through lens to back of the eye.
MicroCT of sheep eye with electrode array implant.
Complex primary neural cell culture, with 3D depth indicated by color. With A. Gilmore.
Rabbit heart imaged by MicroCT follow metal staining.
Vasculature of neural cortex imaged around implanted device.
Electrode array with immune cells reaching towards.
Blood vessels and microglia, the brain's immune cells, rendered with 3D shading.
Endothelial cells growing on a biological matrix. With J. Paderi.
Complex primary cortical tissue culture imaged at low mag. With N. Onunkwo.
Brain cortical vasculature. Confocal stack over transmission light image.
Myelinating neural culture. With A. Gilmour. Placed in Olympus Bioscapes and appeared in Scientific American.
MicroCT of pace maker electrode device within a rabbit heart.
Fruit fly larvae with autofluorescence and a green marker in a subset of neurons.
Bovine endothelial cells, imaged by structure illumination.
H&E of lung tissue, with cross-section of blood vessel containing red blood cells at bottom right.
Cultured tumor cell cluster.
Cross-section of organ showing internal biomarkers.
Complex tissue culture.
Neurons growing on glial cells in culture. With A. Gilmour.
Blood vessels in brain tissue section, color indicating 3D depth.
Neurons and immune cells near an implanted device, with extravasation of immune cell into brain.
Glial cells in superficial cortex, a myelinated area called the Plexus of Exner.
Primary cortical cell culture with neurons and glia, imaging an entire culture well by confocal microscopy.
Immune cells in damaged cerebral cortex.
Neurons and immune cells in normal cerebral cortex.
Implanted device and immune cells in superficial cortex.
Cell nuclei clustering against implanted device in superficial cortex of brain.
Neurons in cortex. Beta-tubulin marker.
Neurons in white matter. Beta-tubulin marker.
Implanted device in cortex eliciting brain cell remodeling. Transmitted light, glial cells, and nuclei imaged.
Surface reflectance imaging of silicon device coated with biomedical research material.
Vasculature of brain cortex in red, and intact pia surround brain shown as fibroblast nuclei.
Brain immune cells (microglia) and vasculature.
Immune cells and an implanted device, imaged through a cranial window by 2-photon microscopy.
X-ray MicroCT of implanted electrode array and stimulator on sheep eye.
Endothelial cells growing across a biological matrix coated with a research material.
Brain micro-implant surrounded by immune cells.