Literature DB >> 24685127

Assessment of regional non-linear tissue deformation and air volume change of human lungs via image registration.

Nariman Jahani1, Youbing Yin2, Eric A Hoffman3, Ching-Long Lin4.   

Abstract

We evaluate the non-linear characteristics of the human lung via image registration-derived local variables based on volumetric multi-detector-row computed tomographic (MDCT) lung image data of six normal human subjects acquired at three inflation levels: 20% of vital capacity (VC), 60% VC and 80% VC. Local variables include Jacobian (ratio of volume change) and maximum shear strain for assessment of lung deformation, and air volume change for assessment of air distribution. First, the variables linearly interpolated between 20% and 80% VC images to reflect deformation from 20% to 60% VC are compared with those of direct registration of 20% and 60% VC images. The result shows that the linearly-interpolated variables agree only qualitatively with those of registration (P<0.05). Then, a quadratic (or linear) interpolation is introduced to link local variables to global air volumes of three images (or 20% and 80% VC images). A sinusoidal breathing waveform is assumed for assessing the time rate of change of these variables. The results show significant differences between two-image and three-image results (P<0.05). The three-image results for the whole lung indicate that the peak of the maximum shear rate occurs at about 37% of the maximum volume difference between 20% and 80% VC, while the peaks for the Jacobian and flow rate occur at 50%. This is in agreement with accepted physiology whereby lung tissues deform more at lower lung volumes due to lower elasticity and greater compliance. Furthermore, the three-image results show that the upper and middle lobes, even in the recumbent, supine posture, reach full expansion earlier than the lower lobes.
Copyright © 2014 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Image registration; Lung mechanics; Quantitative computed tomography; Regional ventilation

Mesh:

Year:  2014        PMID: 24685127      PMCID: PMC4026289          DOI: 10.1016/j.jbiomech.2014.02.040

Source DB:  PubMed          Journal:  J Biomech        ISSN: 0021-9290            Impact factor:   2.712


  20 in total

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2.  Characteristics of the turbulent laryngeal jet and its effect on airflow in the human intra-thoracic airways.

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4.  Registration-based assessment of regional lung function via volumetric CT images of normal subjects vs. severe asthmatics.

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5.  Registration-based estimates of local lung tissue expansion compared to xenon CT measures of specific ventilation.

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6.  Simulation of pulmonary air flow with a subject-specific boundary condition.

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8.  Regional differences in expansion in excised dog lung lobes.

Authors:  L E Olson; J R Rodarte
Journal:  J Appl Physiol Respir Environ Exerc Physiol       Date:  1984-12

9.  Three-dimensional characterization of regional lung deformation.

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10.  Effect of low-xenon and krypton supplementation on signal/noise of regional CT-based ventilation measurements.

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  20 in total

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2.  Assessment of regional ventilation and deformation using 4D-CT imaging for healthy human lungs during tidal breathing.

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3.  Biomechanical CT metrics are associated with patient outcomes in COPD.

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4.  CT-derived Biomechanical Metrics Improve Agreement Between Spirometry and Emphysema.

Authors:  Surya P Bhatt; Sandeep Bodduluri; John D Newell; Eric A Hoffman; Jessica C Sieren; Meilan K Han; Mark T Dransfield; Joseph M Reinhardt
Journal:  Acad Radiol       Date:  2016-04-04       Impact factor: 3.173

5.  A four-dimensional computed tomography comparison of healthy and asthmatic human lungs.

Authors:  Nariman Jahani; Sanghun Choi; Jiwoong Choi; Babak Haghighi; Eric A Hoffman; Alejandro P Comellas; Joel N Kline; Ching-Long Lin
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Review 6.  Pulmonary CT and MRI phenotypes that help explain chronic pulmonary obstruction disease pathophysiology and outcomes.

Authors:  Eric A Hoffman; David A Lynch; R Graham Barr; Edwin J R van Beek; Grace Parraga
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7.  A numerical study of heat and water vapor transfer in MDCT-based human airway models.

Authors:  Dan Wu; Merryn H Tawhai; Eric A Hoffman; Ching-Long Lin
Journal:  Ann Biomed Eng       Date:  2014-08-01       Impact factor: 3.934

8.  Efficient methods for implementation of multi-level nonrigid mass-preserving image registration on GPUs and multi-threaded CPUs.

Authors:  Nathan D Ellingwood; Youbing Yin; Matthew Smith; Ching-Long Lin
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9.  Quantitative Dual-Energy Computed Tomography Supports a Vascular Etiology of Smoking-induced Inflammatory Lung Disease.

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10.  A GPU-based symmetric non-rigid image registration method in human lung.

Authors:  Babak Haghighi; Nathan D Ellingwood; Youbing Yin; Eric A Hoffman; Ching-Long Lin
Journal:  Med Biol Eng Comput       Date:  2017-08-01       Impact factor: 2.602

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