Three-dimensional cardiac architecture determined by two-photon microtomy.

Abstract:

:Cardiac architecture is inherently three-dimensional, yet most characterizations rely on two-dimensional histological slices or dissociated cells, which remove the native geometry of the heart. We previously developed a method for labeling intact heart sections without dissociation and imaging large volumes while preserving their three-dimensional structure. We further refine this method to permit quantitative analysis of imaged sections. After data acquisition, these sections are assembled using image-processing tools, and qualitative and quantitative information is extracted. By examining the reconstructed cardiac blocks, one can observe end-to-end adjacent cardiac myocytes (cardiac strands) changing cross-sectional geometries, merging and separating from other strands. Quantitatively, representative cross-sectional areas typically used for determining hypertrophy omit the three-dimensional component; we show that taking orientation into account can significantly alter the analysis. Using fast-Fourier transform analysis, we analyze the gross organization of cardiac strands in three dimensions. By characterizing cardiac structure in three dimensions, we are able to determine that the alpha crystallin mutation leads to hypertrophy with cross-sectional area increases, but not necessarily via changes in fiber orientation distribution.

journal_name

J Biomed Opt

authors

Huang H,Macgillivray C,Kwon HS,Lammerding J,Robbins J,Lee RT,So P

doi

10.1117/1.3200939

subject

Has Abstract

pub_date

2009-07-01 00:00:00

pages

044029

issue

4

eissn

1083-3668

issn

1560-2281

journal_volume

14

pub_type

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