In this article, we present a novel scheme for segmenting the image boundary (with the background) in optoacoustic small animal in vivo imaging systems. The method utilizes a multiscale edge detection algorithm to generate a binary edge map. A scale dependent morphological operation is employed to clean spurious edges. Thereafter, an ellipse is fitted to the edge map through constrained parametric transformations and iterative goodness of fit calculations. The method delimits the tissue edges through the curve fitting model, which has shown high levels of accuracy. Thus, this method enables segmentation of optoacoutic images with minimal human intervention, by eliminating need of scale selection for multiscale processing and seed point dete...
In human vision the first level of processing is edge detection. Edges are determined by the transit...
In this project, our goal is to detect objects in medical images whose boundaries may or may not be ...
Raster-scan optoacoustic mesoscopy (RSOM) is a powerful, non-invasive optical imaging technique for ...
Segmentation of biomedical images is essential for studying and characterizing anatomical structures...
This paper proposes a novel Adaptive Region-based Edge Smoothing Model (ARESM) for automatic boundar...
Efficient segmentation of optoacoustic images has importance in enhancing the diagnostic and quantif...
AbstractEfficient segmentation of optoacoustic images has importance in enhancing the diagnostic and...
Multispectral optoacoustic tomography (MSOT) is a fast-developing imaging modality, combining the hi...
This paper analyzes the task of optoacoustic imaging of the objects located under the surface coveri...
Optoacoustic (photoacoustic) mesoscopy offers unique capabilities in skin imaging and resolves skin ...
Efficient segmentation of optoacoustic images has importance in enhancing the diagnostic and quantif...
The highly complementary information provided by multispectral optoacoustics and pulse-echo ultrasou...
In this paper we present a method to automatically isolate relevant anatomical boundary positions in...
This paper describes a simple model-based approach to boundary detection for blob shaped objects. A ...
Segmentation of anatomical structures in medical images, such as MRI, CT scan and digital fundus pho...
In human vision the first level of processing is edge detection. Edges are determined by the transit...
In this project, our goal is to detect objects in medical images whose boundaries may or may not be ...
Raster-scan optoacoustic mesoscopy (RSOM) is a powerful, non-invasive optical imaging technique for ...
Segmentation of biomedical images is essential for studying and characterizing anatomical structures...
This paper proposes a novel Adaptive Region-based Edge Smoothing Model (ARESM) for automatic boundar...
Efficient segmentation of optoacoustic images has importance in enhancing the diagnostic and quantif...
AbstractEfficient segmentation of optoacoustic images has importance in enhancing the diagnostic and...
Multispectral optoacoustic tomography (MSOT) is a fast-developing imaging modality, combining the hi...
This paper analyzes the task of optoacoustic imaging of the objects located under the surface coveri...
Optoacoustic (photoacoustic) mesoscopy offers unique capabilities in skin imaging and resolves skin ...
Efficient segmentation of optoacoustic images has importance in enhancing the diagnostic and quantif...
The highly complementary information provided by multispectral optoacoustics and pulse-echo ultrasou...
In this paper we present a method to automatically isolate relevant anatomical boundary positions in...
This paper describes a simple model-based approach to boundary detection for blob shaped objects. A ...
Segmentation of anatomical structures in medical images, such as MRI, CT scan and digital fundus pho...
In human vision the first level of processing is edge detection. Edges are determined by the transit...
In this project, our goal is to detect objects in medical images whose boundaries may or may not be ...
Raster-scan optoacoustic mesoscopy (RSOM) is a powerful, non-invasive optical imaging technique for ...