PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
April 11, 2012IEEE Transactions on Medical Imaging221 citations

Human Atlas of the Cardiac Fiber Architecture: Study on a Healthy Population

HLHervé LombaertJPJean‐Philippe PeyratPCPierre Croisille

Key Result

A statistical atlas of human cardiac fiber architecture showed the helix angle ranges from -41° on the epicardium to +66° on the endocardium, with fiber orientation dispersion of ±13°.

Study Design

Type

Observational (n=10)

Structured PICO

P
Population
10 healthy human hearts imaged ex vivo
I
Intervention
DT-MRI acquisitions and computational framework to build a statistical atlas of cardiac fiber architecture
O
Outcome
Average description of human cardiac fiber architecture and its variability within the populationsurrogate

The first statistical atlas of human cardiac fiber architecture provides a detailed description of fiber orientation and variability, which can improve computational models for cardiac interventions and diagnosis.

Abstract

Cardiac fibers, as well as their local arrangement in laminar sheets, have a complex spatial variation of their orientation that has an important role in mechanical and electrical cardiac functions. In this paper, a statistical atlas of this cardiac fiber architecture is built for the first time using human datasets. This atlas provides an average description of the human cardiac fiber architecture along with its variability within the population. In this study, the population is composed of ten healthy human hearts whose cardiac fiber architecture is imaged ex vivo with DT-MRI acquisitions. The atlas construction is based on a computational framework that minimizes user interactions and combines most recent advances in image analysis: graph cuts for segmentation, symmetric log-domain diffeomorphic demons for registration, and log-Euclidean metric for diffusion tensor processing and statistical analysis. Results show that the helix angle of the average fiber orientation is highly correlated to the transmural depth and ranges from -41° on the epicardium to +66° on the endocardium. Moreover, we find that the fiber orientation dispersion across the population (±13°) is lower than for the laminar sheets (±31°) . This study, based on human hearts, extends previous studies on other mammals with concurring conclusions and provides a description of the cardiac fiber architecture more specific to human and better suited for clinical applications. Indeed, this statistical atlas can help to improve the computational models used for radio-frequency ablation, cardiac resynchronization therapy, surgical ventricular restoration, or diagnosis and followups of heart diseases due to fiber architecture anomalies.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Lombaert et al. (2012) conducted an observational in Healthy human hearts (n=10). DT-MRI imaging and statistical atlas construction was evaluated on Helix angle of average fiber orientation and fiber orientation dispersion. A statistical atlas of human cardiac fiber architecture showed the helix angle ranges from -41° on the epicardium to +66° on the endocardium, with fiber orientation dispersion of ±13°.

synapsesocial.com/papers/6a153169a2352da347820977https://doi.org/10.1109/tmi.2012.2192743
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Standardized Myocardial Segmentation and Nomenclature for Tomographic Imaging of the Heart2002 · 7,028 citations
  2. 2Variability of the Human Cardiac Laminar Structure2012 · 8 citations
  3. 3Statistical Analysis of the Human Cardiac Fiber Architecture from DT-MRI2011 · 41 citations
  4. 4A Computational Framework for the Statistical Analysis of Cardiac Diffusion Tensors: Application to a Small Database of Canine Hearts2007 · 132 citations
  5. 5Exercitatio anatomica de motv cordis et sangvinis in animalibvs1628 · 414 citations