ArticleHeart (British Cardiac Society)1998
Characterisation of coronary atherosclerotic morphology by spectral analysis of radiofrequency signal: in vitro intravascular ultrasound study with histological and radiological validation.
Article in Heart (British Cardiac Society), 1998. The graph could read no effect estimate from its abstract, so it casts no vote on the map. It is linked to trial NCT01200056 (A Prospective, Double-blinded, Randomised Study to Evaluate the Effects of Different Doses of Statin Treatment on Plaque Volume and Composition in Coronary Disease Determined by Virtual Histology Using Intravascular Ultrasound), which is not on this map. Cited by 27 papers.
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
The trial behind it
Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.
A Prospective, Double-blinded, Randomised Study to Evaluate the Effects of Different Doses of Statin Treatment on Plaque Volume and Composition in Coronary Disease Determined by Virtual Histology Using Intravascular Ultrasound
Who cites it
27 citing papers in PubMed, 116 citations in OpenAlex.
- Innovations in Intracoronary Imaging: Present Clinical Practices and Future Outlooks.Journal of clinical medicine · 2024Review
- Coronary artery properties in atherosclerosis: A deep learning predictive model.Frontiers in physiology · 2023Article
- Spectral analysis of ultrasound radiofrequency backscatter for the identification of epicardial adipose tissue.Journal of medical imaging (Bellingham, Wash.) · 2022Article
- Atheroprotective Roles of Adiponectin via CCL2 Inhibition.Journal of atherosclerosis and thrombosis · 2021Article
- Multimodal intravascular imaging technology for characterization of atherosclerosis.Journal of innovative optical health sciences · 2020Article
- Microstructure-based biomechanics of coronary arteries in health and disease.Journal of biomechanics · 2016Review
- Coronary atherosclerosis is already ongoing in pre-diabetic status: Insight from intravascular imaging modalities.World journal of diabetes · 2015Review
- Biological imaging of atherosclerosis: moving beyond anatomy.Journal of cardiovascular translational research · 2013Review
- Non-invasive detection of vulnerable coronary plaque.World journal of cardiology · 2011Article
- Combined optical coherence tomography and intravascular ultrasound radio frequency data analysis for plaque characterization. Classification accuracy of human coronary plaques in vitro.The international journal of cardiovascular imaging · 2010Article
- New X-ray imaging modalities and their integration with intravascular imaging and interventions.The international journal of cardiovascular imaging · 2010Review
- Fusing in-vitro and in-vivo intravascular ultrasound data for plaque characterization.The international journal of cardiovascular imaging · 2010Article
- Intravascular ultrasound radiofrequency analysis of the lesion segment profile in ACS patients.Clinical research in cardiology : official journal of the German Cardiac Society · 2010Article
- Accuracy of dual-source CT in the characterisation of non-calcified plaque: use of a colour-coded analysis compared with virtual histology intravascular ultrasound.The British journal of radiology · 2009Article
- Imaging and quantitative analysis of atherosclerotic lesions by CARS-based multimodal nonlinear optical microscopy.Arteriosclerosis, thrombosis, and vascular biology · 2009Article
- The potential of RF backscattered IVUS data and multidetector-row computed tomography images for tissue characterization of human coronary atherosclerotic plaques.The international journal of cardiovascular imaging · 2009Article
- Characterization of coronary atherosclerosis by dual-source computed tomography and HU-based color mapping: a pilot study.European radiology · 2008Article
- Distribution of ultrasonic radiofrequency signal amplitude detects lipids in atherosclerotic plaque of coronary arteries: an ex-vivo study.Cardiovascular ultrasound · 2008Article
- Virtual histology.Heart (British Cardiac Society) · 2007Article
- Coronary plaque classification using intravascular ultrasound -- radiofrequency analysis in a patient with severe coronary vasospasm.Clinical research in cardiology : official journal of the German Cardiac Society · 2007Article
Corrections and comments
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Authors and funding
12 authors at 2 institutions in 2 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
objectiveTo determine whether spectral analysis of unprocessed radiofrequency (RF) signal offers advantages over standard videodensitometric analysis in identifying the morphology of coronary atherosclerotic plaques.
methods97 regions of interest (ROI) were imaged at 30 MHz from postmortem, pressure perfused (80 mm Hg) coronary arteries in saline baths. RF data were digitised at 250 MHz. Two different sizes of ROI were identified from scan converted images, and relative amplitudes of different frequency components were analysed from raw data. Normalised spectra was used to calculate spectral slope (dB/MHz), y-axis intercept (dB), mean power (dB), and maximum power (dB) over a given bandwidth (17-42 MHz). RF images were constructed and compared with comparative histology derived from microscopy and radiological techniques in three dimensions.
resultsMean power was similar from dense fibrotic tissue and heavy calcium, but spectral slope was steeper in heavy calcium (-0.45 (0.1)) than in dense fibrotic tissue (-0.31 (0.1)), and maximum power was higher for heavy calcium (-7.7 (2.0)) than for dense fibrotic tissue (-10.2 (3.9)). Maximum power was significantly higher in heavy calcium (-7.7 (2.0) dB) and dense fibrotic tissue (-10.2 (3.9) dB) than in microcalcification (-13.9 (3.8) dB). Y-axis intercept was higher in microcalcification (-5.8 (1.1) dB) than in moderately fibrotic tissue (-11.9 (2.0) dB). Moderate and dense fibrotic tissue were discriminated with mean power: moderate -20.2 (1.1) dB, dense -14.7 (3.7) dB; and y-axis intercept: moderate -11.9 (2.0) dB, dense -5.5 (5.4) dB. Different densities of fibrosis, loose, moderate, and dense, were discriminated with both y-axis intercept, spectral slope, and mean power. Lipid could be differentiated from other types of plaque tissue on the basis of spectral slope, lipid -0.17 (0.08). Also y-axis intercept from lipid (-17.6 (3.9)) differed significantly from moderately fibrotic tissue, dense fibrotic tissue, microcalcification, and heavy calcium. No significant differences in any of the measured parameters were seen between the results obtained from small and large ROIs.
conclusionFrequency based spectral analysis of unprocessed ultrasound signal may lead to accurate identification of atherosclerotic plaque morphology.
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