In this work, we present a computationally efficient image-derived volume mesh generation approach for vasculatures that implements spatially varying patient-specific wall thickness with a novel inward extrusion of the wall surface mesh. Multi-domain vascular meshes with arbitrary numbers, locations, and patterns of both iliac bifurcations and thrombi can be obtained without the need to specify features or landmark points as input. In addition, the mesh output is coordinate-frame independent and independent of the image grid resolution with high dimensional accuracy and mesh quality, devoid of errors typically found in off-the-shelf image-based model generation workflows. The absence of deformable template models or Cartesian grid-based methods enables the present approach to be sufficiently robust to handle aneurysmatic geometries with highly irregular shapes, arterial branches nearly parallel to the image plane, and variable wall thickness. The assessment of the methodology was based on i) estimation of the surface reconstruction accuracy, ii) validation of the output mesh using an aneurysm phantom, and iii) benchmarking the volume mesh quality against other frameworks. For the phantom image dataset (pixel size 0.105 mm; slice spacing 0.7 mm; and mean wall thickness 1.401±0.120 mm), the average wall thickness in the mesh was 1.459±0.123 mm. The absolute error in average wall thickness was 0.060±0.036 mm, or about 8.6% of the largest image grid spacing (0.7 mm) and 4.36% of the actual mean wall thickness. Mesh quality metrics and the ability to reproduce regional variations of wall thickness were found superior to similar alternative frameworks.
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http://dx.doi.org/10.1016/j.jbiomech.2015.04.006 | DOI Listing |
Int J Biol Macromol
January 2025
State Key Laboratory of Tree Genetics and Breeding, National Engineering Research Center of Tree Breeding and Ecological Restoration, The Tree and Ornamental Plant Breeding and Biotechnology Laboratory of National Forestry and Grassland Administration, College of Biological Sciences and Technology, Beijing Forestry University, Beijing 100083, China. Electronic address:
Secondary cell wall (SCW) deposition is tightly coordinated with programmed cell death (PCD) during xylem development and plays a crucial role in plant stress responses. In this study, we characterized a serine carboxypeptidase-like gene, SCPL48, which exhibits xylem cell-specific expression patterns in stem xylem during vascular development. The scpl48 plants exhibited reduced stem xylem cell numbers, particularly vessel cells, accompanied by delayed organelle degradation during PCD and increased secondary wall thickness in xylem vessel cells.
View Article and Find Full Text PDFAlzheimers Dement
December 2024
National Center for Neurological Disorders, Shanghai, Shanghai, China.
Background: The heart-brain connection has been proposed to correlate cardiac disorders with brain health. However, the associations between subclinical alterations in cardiac structure or function and Alzheimer's disease (AD) pathologies haven't been fully elucidated. This study aimed to delineate the interrelationships between the subclinical alterations in the left heart, cerebrospinal fluid (CSF) AD biomarkers, and cognition.
View Article and Find Full Text PDFJ Clin Ultrasound
January 2025
Ultrasound Medical Center, Lanzhou University Second Hospital, Lanzhou, China.
Purpose: The purpose of this study is to propose new ultrasound scores to assess inflammatory bowel disease (IBD) activity and to analyze their accuracy in assessing disease severity. In addition to this, to validate that intestinal ultrasound can be used as a follow-up tool for the assessment of IBD.
Methods: One hundred and thirty-six adult IBD patients who underwent intestinal ultrasound.
Sci Rep
January 2025
Department of Physics, Faculty of Science, Vali-e-Asr University of Rafsanjan, Rafsanjan, Iran.
To protect against harmful electromagnetic interference (EMI), it is crucial to fabricate composite with high total electromagnetic shielding efficiency (SE); In this study, FeNi-NiFeO-SiO nanoparticles (NPs) were synthesized using one-pot method and decorated on carbon nanotube's (CNT) sidewall. The final product was magnetic-ceramic/conductive (FeNi-NiFeO-SiO/MWCNT) nanocomposite. The EMI shielding characteristic of FeNi-NiFeO-SiO NPs and FeNi-NiFeO-SiO/MWCNT nanocomposite was investigated in the range of X and Ku frequency band.
View Article and Find Full Text PDFChemosphere
January 2025
Plant Morphogenesis and Biochemistry Laboratory, Federal University of Santa Catarina, 88049-900, P. O. Box 476, Florianopolis, SC, Brazil. Electronic address:
The effect of the in vitro acute exposure to diesel oil (0.001%, 0.01%, 0.
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