Related Experiment Video
Updated: Jan 19, 2026

Modeling the Functional Network for Spatial Navigation in the Human Brain
Published on: October 13, 2023
Precise estimation of renal vascular dominant regions using spatially aware fully convolutional networks, tensor-cut
Chenglong Wang1, Holger R Roth2, Takayuki Kitasaka3
1Graduate School of Information Science, Nagoya University, Nagoya, Japan.
Abstract:
This paper presents a new approach for precisely estimating the renal vascular dominant region using a Voronoi diagram. To provide computer-assisted diagnostics for the pre-surgical simulation of partial nephrectomy surgery, we must obtain information on the renal arteries and the renal vascular dominant regions. We propose a fully automatic segmentation method that combines a neural network and tensor-based graph-cut methods to precisely extract the kidney and renal arteries. First, we use a convolutional neural network to localize the kidney regions and extract tiny renal arteries with a tensor-based graph-cut method. Then we generate a Voronoi diagram to estimate the renal vascular dominant regions based on the segmented kidney and renal arteries. The accuracy of kidney segmentation in 27 cases with 8-fold cross validation reached a Dice score of 95%. The accuracy of renal artery segmentation in 8 cases obtained a centerline overlap ratio of 80%. Each partition region corresponds to a renal vascular dominant region. The final dominant-region estimation accuracy achieved a Dice coefficient of 80%. A clinical application showed the potential of our proposed estimation approach in a real clinical surgical environment. Further validation using large-scale database is our future work.
Related Concept Videos
The Precision of Visual Working Memory with Delayed Estimation
05:55Modeling the Functional Network for Spatial Navigation in the Human Brain
09:36Measurement of Spatial Stability in Precision Grip
12:36Murine Precision-Cut Liver Slices as an Ex Vivo Model of Liver Biology
Using Diffusion Tensor Imaging in Traumatic Brain Injury
Traditional brain imaging techniques using MRI are very good at visualizing the gross structures of the brain. A structural brain image made with MRI provides high contrast of the borders between gray and white matter, and information about the size and shape of brain structures. However, these images do not detail the underlying structure and integrity of white matter networks in the brain, which...
12:04Assessment of the Cytotoxic and Immunomodulatory Effects of Substances in Human Precision-cut Lung Slices
