Binary tomography on the isometric tessellation involving pixel shape orientation

Loading...
Thumbnail Image

Date

Journal Title

Journal ISSN

Volume Title

Publisher

Inst Engineering Technology-Iet

Access Rights

info:eu-repo/semantics/openAccess

Abstract

In this study, a tomography reconstruction problem of binary images is considered on the isometric grid. On this grid, the triangle pixels have two types of orientations, accordingly, the authors call them delta or nabla shape pixels. The proposed reconstruction method uses data of projections of three natural directions. They are the lane directions of the triangular tessellation (these directions are somewhat analogous to row/column directions on the rectangular grids). The projection ray, penetrating through a grid lane, now not passing through the middle of pixels (i.e. through the middle line of triangle shape pixels), as usually taken, but little bit shifted from the middle parallel to the lane. This method provides the exact information about the number of nabla and delta shape triangle pixels in each lane of the image. This additional information is included in the reconstruction process to improve the quality of reconstruction. They formulate the suggested model into an energy-minimisation problem and apply a gradient-based approach for its minimisation. They show and analyse various experimental results on test images. The presented approach shows both better quality reconstructions and shorter running time than the earlier approaches.

Description

Keywords

gradient methods, image reconstruction, minimisation, computerised tomography, reconstruction method, natural directions, lane directions, triangular tessellation, rectangular grids, projection ray, grid lane, middle line, triangle shape pixels, exact information, delta shape triangle pixels, reconstruction process, energy-minimisation problem, test images, quality reconstructions, binary tomography, isometric tessellation, pixel shape orientation, tomography reconstruction problem, binary images, isometric grid

Journal or Series

Iet Image Processing

WoS Q Value

Scopus Q Value

Volume

14

Issue

1

Citation

Endorsement

Review

Supplemented By

Referenced By