Optoacoustic (photoacoustic) mesoscopy offers unique capabilities in skin imaging and resolves skin features associated with detection, diagnosis, and management of disease. A critical first step in the quantitative analysis of clinical optoacoustic images is to identify the skin surface in a rapid, reliable, and automated manner. Nevertheless, most common edge- and surface-detection algorithms cannot reliably detect the skin surface on 3D raster-scan optoacoustic mesoscopy (RSOM) images, due to discontinuities and diffuse interfaces in the image. We present herein a novel dynamic programming approach that extracts the skin boundary as a 2D surface in one single step, as opposed to consecutive extraction of several independent 1D contours. ...
Raster-scan optoacoustic mesoscopy (RSOM) offers high-resolution non-invasive insights into skin pat...
Optical imaging plays a major role in disease detection in dermatology. However, current optical met...
We have imaged for the first time human skin in vivo with a raster-scan optoacoustic mesoscopy syste...
Purpose Identification of morphological characteristics of skin lesions is of vital importance in di...
Raster-scan optoacoustic mesoscopy (RSOM) is a powerful, non-invasive optical imaging technique for ...
Abstract Raster-scan optoacoustic mesoscopy (RSOM), also termed photoacoustic mesoscopy, offers nove...
Optoacoustic (photoacoustic) dermoscopy offers two principal advantages over conventional optical im...
Optoacoustic (photoacoustic) imaging has a high potential for imaging melanin-rich structures in ski...
Raster-scan optoacoustic mesoscopy (RSOM), also termed photoacoustic mesoscopy, offers novel insight...
Optoacoustic (photoacoustic) imaging has a high potential for imaging melanin-rich structures in ski...
The optical imaging techniques available for clinical skin imaging are fundamentally limited in thei...
Melanoma is associated with angiogenesis and vascular changes that may extend through the entire ski...
Raster-scan optoacoustic mesoscopy (RSOM) comes with high potential for in vivo diagnostic imaging i...
Imaging plays a critical role in the diagnosis and assessment of dermatological conditions. However,...
We have further developed the skin imaging optoacoustic mesoscopy technology building the first broa...
Raster-scan optoacoustic mesoscopy (RSOM) offers high-resolution non-invasive insights into skin pat...
Optical imaging plays a major role in disease detection in dermatology. However, current optical met...
We have imaged for the first time human skin in vivo with a raster-scan optoacoustic mesoscopy syste...
Purpose Identification of morphological characteristics of skin lesions is of vital importance in di...
Raster-scan optoacoustic mesoscopy (RSOM) is a powerful, non-invasive optical imaging technique for ...
Abstract Raster-scan optoacoustic mesoscopy (RSOM), also termed photoacoustic mesoscopy, offers nove...
Optoacoustic (photoacoustic) dermoscopy offers two principal advantages over conventional optical im...
Optoacoustic (photoacoustic) imaging has a high potential for imaging melanin-rich structures in ski...
Raster-scan optoacoustic mesoscopy (RSOM), also termed photoacoustic mesoscopy, offers novel insight...
Optoacoustic (photoacoustic) imaging has a high potential for imaging melanin-rich structures in ski...
The optical imaging techniques available for clinical skin imaging are fundamentally limited in thei...
Melanoma is associated with angiogenesis and vascular changes that may extend through the entire ski...
Raster-scan optoacoustic mesoscopy (RSOM) comes with high potential for in vivo diagnostic imaging i...
Imaging plays a critical role in the diagnosis and assessment of dermatological conditions. However,...
We have further developed the skin imaging optoacoustic mesoscopy technology building the first broa...
Raster-scan optoacoustic mesoscopy (RSOM) offers high-resolution non-invasive insights into skin pat...
Optical imaging plays a major role in disease detection in dermatology. However, current optical met...
We have imaged for the first time human skin in vivo with a raster-scan optoacoustic mesoscopy syste...