Deep Learning Framework for Spleen Volume Estimation from 2D Cross-sectional Views

08/15/2023
by   Zhen Yuan, et al.
0

Abnormal spleen enlargement (splenomegaly) is regarded as a clinical indicator for a range of conditions, including liver disease, cancer and blood diseases. While spleen length measured from ultrasound images is a commonly used surrogate for spleen size, spleen volume remains the gold standard metric for assessing splenomegaly and the severity of related clinical conditions. Computed tomography is the main imaging modality for measuring spleen volume, but it is less accessible in areas where there is a high prevalence of splenomegaly (e.g., the Global South). Our objective was to enable automated spleen volume measurement from 2D cross-sectional segmentations, which can be obtained from ultrasound imaging. In this study, we describe a variational autoencoder-based framework to measure spleen volume from single- or dual-view 2D spleen segmentations. We propose and evaluate three volume estimation methods within this framework. We also demonstrate how 95 of volume estimates can be produced to make our method more clinically useful. Our best model achieved mean relative volume accuracies of 86.62 for single- and dual-view segmentations, respectively, surpassing the performance of the clinical standard approach of linear regression using manual measurements and a comparative deep learning-based 2D-3D reconstruction-based approach. The proposed spleen volume estimation framework can be integrated into standard clinical workflows which currently use 2D ultrasound images to measure spleen length. To the best of our knowledge, this is the first work to achieve direct 3D spleen volume estimation from 2D spleen segmentations.

READ FULL TEXT

page 5

page 9

page 12

research
09/06/2020

Deep Learning for Automatic Spleen Length Measurement in Sickle Cell Disease Patients

Sickle Cell Disease (SCD) is one of the most common genetic diseases in ...
research
01/08/2023

Automatic Diagnosis of Carotid Atherosclerosis Using a Portable Freehand 3D Ultrasound Imaging System

Objective: The objective of this study is to develop a deep-learning bas...
research
05/09/2021

Automatic segmentation of vertebral features on ultrasound spine images using Stacked Hourglass Network

Objective: The spinous process angle (SPA) is one of the essential param...
research
12/13/2021

RSV: Robotic Sonography for Thyroid Volumetry

In nuclear medicine, radioiodine therapy is prescribed to treat diseases...
research
09/24/2021

ImplicitVol: Sensorless 3D Ultrasound Reconstruction with Deep Implicit Representation

The objective of this work is to achieve sensorless reconstruction of a ...
research
09/04/2019

Deep Esophageal Clinical Target Volume Delineation using Encoded 3D Spatial Context of Tumors, Lymph Nodes, and Organs At Risk

Clinical target volume (CTV) delineation from radiotherapy computed tomo...
research
09/29/2009

Information tracking approach to segmentation of ultrasound imagery of prostate

The size and geometry of the prostate are known to be pivotal quantities...

Please sign up or login with your details

Forgot password? Click here to reset