paper-with-me

Papers

Numerical Methods for Coupled Reconstruction and Registration in Digital Breast Tomosynthesis

2013-07-23 · Guang Yang, John H. Hipwell, David J. Hawkes, Simon R. Arridge

Digital Breast Tomosynthesis (DBT) provides an insight into the fine details of normal fibroglandular tissues and abnormal lesions by reconstructing a pseudo-3D image of the breast. In this respect, DBT overcomes a major limitation of conventional X-ray mammography by reducing the confounding effects caused by the superposition of breast tissue. In a breast cancer screening or diagnostic context, a radiologist is interested in detecting change, which might be indicative of malignant disease. To help automate this task image registration is required to establish spatial correspondence between time points. Typically, images, such as MRI or CT, are first reconstructed and then registered. This approach can be effective if reconstructing using a complete set of data. However, for ill-posed, limited-angle problems such as DBT, estimating the deformation is complicated by the significant artefacts associated with the reconstruction, leading to severe inaccuracies in the registration. This paper presents a mathematical framework, which couples the two tasks and jointly estimates both image intensities and the parameters of a transformation. We evaluate our methods using various computational digital phantoms, uncompressed breast MR images, and in-vivo DBT simulations. Firstly, we compare both iterative and simultaneous methods to the conventional, sequential method using an affine transformation model. We show that jointly estimating image intensities and parametric transformations gives superior results with respect to reconstruction fidelity and registration accuracy. Also, we incorporate a non-rigid B-spline transformation model into our simultaneous method. The results demonstrate a visually plausible recovery of the deformation with preservation of the reconstruction fidelity.

📄 PDF Abstract BibTeX arXiv:1307.6008

Code (0)

등록된 구현이 없습니다.

Tasks

DiagnosticImage Registration

Similar Papers 제목 키워드 기반

Systematic Evaluation of Preprocessing Techniques for Accurate Image Registration in Digital Pathology

2025-11-06 · Fatemehzahra Darzi, Rodrigo Escobar Diaz Guerrero, Thomas Bocklitz arxiv

Image registration refers to the process of spatially aligning two or more images by mapping them into a common coordinate system, so that corresponding anatomical or tissue structures are matched across images. In digit…

Image Registration

Rethinking Medical Image Reconstruction via Shape Prior, Going Deeper and Faster: Deep Joint Indirect Registration and Reconstruction

2019-12-16 · Jiulong Liu, Angelica I. Aviles-Rivero, Hui Ji, Carola-Bibiane Schönlieb

Indirect image registration is a promising technique to improve image reconstruction quality by providing a shape prior for the reconstruction task. In this paper, we propose a novel hybrid method that seeks to reconstru…

Computed Tomography (CT)Image ReconstructionImage Registration

Image registration of 2D optical thin sections in a 3D porous medium: Application to a Berea sandstone digital rock image

2025-04-09 · Jaehong Chung, Wei Cai, Tapan Mukerji

This study proposes a systematic image registration approach to align 2D optical thin-section images within a 3D digital rock volume. Using template image matching with differential evolution optimization, we identify th…

Image RegistrationSSIM

GrowSplat: Constructing Temporal Digital Twins of Plants with Gaussian Splats

2025-05-16 · Simeon Adebola, Shuangyu Xie, Chung Min Kim, Justin Kerr 외

Accurate temporal reconstructions of plant growth are essential for plant phenotyping and breeding, yet remain challenging due to complex geometries, occlusions, and non-rigid deformations of plants. We present a novel f…

Plant Phenotyping

Automatic 2D-3D Registration without Contrast Agent during Neurovascular Interventions

2021-06-08 · Robert Homan, René van Rijsselt, Daniel Ruijters

Fusing live fluoroscopy images with a 3D rotational reconstruction of the vasculature allows to navigate endovascular devices in minimally invasive neuro-vascular treatment, while reducing the usage of harmful iodine con…

3D ReconstructionNavigate