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October 18, 2024European Radiology23 citationsOpen Access

The pericoronary adipose tissue attenuation in CT strongly depends on kernels and iterative reconstructions

CLCostanza LisiKKKonstantin KlambauerLMLukas J. Moser

Key Result

Pericoronary adipose tissue attenuation measured by fat-attenuation-index varied significantly depending on CT reconstruction kernels and iterative reconstruction strength levels (p < 0.001).

Study Design

Type

Observational (n=20)

Multicenter

No

Structured PICO

Do kernels and iterative reconstructions influence pericoronary adipose tissue (PCAT) attenuation in coronary CT angiography?

P
Population
20 otherwise healthy subjects (16 females; median age 52 years) with atypical chest pain, low risk of coronary artery disease (CAD), and without CAD in photon-counting detector CCTA.
I
Intervention
Image reconstruction with a quantitative smooth kernel (Qr36) and three vascular kernels of increasing sharpness (Bv36, Bv44, Bv56), and Quantum iterative reconstruction (QIR) at strength levels 0 (off), 2, and 4.
C
Comparator
Comparison across different kernels and iterative reconstruction strength levels.
O
Outcome
Fat-attenuation-index (FAI) of the pericoronary adipose tissue (PCAT) surrounding the right coronary artery.surrogate

Pericoronary adipose tissue attenuation measured by CCTA is highly dependent on reconstruction kernels and iterative reconstruction levels, necessitating standardization for meaningful interpretation.

Main Result

p-value: p=<0.001

Limitations

  • Single-center study with a small number of subjects
  • Perivascular analysis software and CT scanner were limited to a single vendor
  • Results were derived from a selected population of presumably healthy subjects, with no data for comparison to patients affected by acute and chronic disease
  • Cannot exclude pericoronary inflammation in the subjects despite selecting apparently healthy participants

Abstract

OBJECTIVES: To investigate the influence of kernels and iterative reconstructions on pericoronary adipose tissue (PCAT) attenuation in coronary CT angiography (CCTA). MATERIALS AND METHODS: Twenty otherwise healthy subjects (16 females; median age 52 years) with atypical chest pain, low risk of coronary artery disease (CAD), and without CAD in photon-counting detector CCTA were included. Images were reconstructed with a quantitative smooth (Qr36) and three vascular kernels of increasing sharpness levels (Bv36, Bv44, Bv56). Quantum iterative reconstruction (QIR) was either switched-off (QIRoff) or was used with strength levels 2 and 4. The fat-attenuation-index (FAI) of the PCAT surrounding the right coronary artery was calculated in each dataset. Histograms of FAI measurements were created. Intra- and inter-reader agreements were determined. A CT edge phantom was used to determine the edge spread function (ESF) for the same datasets. RESULTS: Intra- and inter-reader agreement of FAI was excellent (intra-class correlation coefficient = 0.99 and 0.98, respectively). Significant differences in FAI were observed depending on the kernel and iterative reconstruction strength level (each, p < 0.001), with considerable inter-individual variation up to 34 HU and intra-individual variation up to 33 HU, depending on kernels and iterative reconstruction levels. The ESFs showed a reduced range of edge-smoothing with increasing kernel sharpness, causing an FAI decrease. Histogram analyses revealed a narrower peak of PCAT values with increasing iterative reconstruction levels, causing a FAI increase. CONCLUSIONS: PCAT attenuation determined with CCTA heavily depends on kernels and iterative reconstruction levels both within and across subjects. Standardization of CT reconstruction parameters is mandatory for FAI studies to enable meaningful interpretations. KEY POINTS: Question Do kernels and iterative reconstructions influence pericoronary adipose tissue (PCAT) attenuation in coronary CT angiography (CCTA)? Findings Significant differences in fat-attenuation-index (FAI) were observed depending on the kernel and iterative reconstruction strength level with considerable inter- and intra-individual variation. Clinical relevance PCAT attenuation heavily depends on kernels and iterative reconstructions requiring CT reconstruction parameter standardization to enable meaningful interpretations of fat-attenuation differences across subjects.

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Cite This Study

Lisi et al. (2024) conducted an observational in Low risk of coronary artery disease (n=20). CT reconstruction kernels (Qr36, Bv36, Bv44, Bv56) and quantum iterative reconstruction (QIR) levels vs. Intra-individual comparison across different reconstructions was evaluated on Fat-attenuation-index (FAI) of the pericoronary adipose tissue (p=<0.001). Pericoronary adipose tissue attenuation measured by fat-attenuation-index varied significantly depending on CT reconstruction kernels and iterative reconstruction strength levels (p < 0.001).

synapsesocial.com/papers/6a1242691a516ab1cee33651https://doi.org/10.1007/s00330-024-11132-5
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