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February 27, 2026Korean Journal of Radiology4 citationsOpen Access

Photon-Counting CT in Cardiovascular Imaging: Clinical Applications

PRPrabhakar RajiahJWJ. E. WilliamsMLMichael LaVere

Key Points

  • This article reviews the clinical applications and benefits of photon-counting CT in cardiovascular imaging.
  • Review of photon-counting CT technology and its clinical uses.
  • Discussion of case examples illustrating benefits in cardiovascular imaging.
  • Overview of advantages such as ultra-high resolution and multi-energy capabilities.
  • Photon-counting CT enhances the assessment of small vessels and dense calcifications.
  • Multi-energy mode effectively improves iodine signal and reduces imaging artifacts.
  • Radiation dose efficiencies are significantly improved with photon-counting CT.

Abstract

Photon-counting CT (PCCT) uses semiconductor detectors to directly convert X-ray photons to electrical signals, the intensity of which is directly proportional to the energy of the individual photons. PCCT offers several advantages in cardiovascular imaging, including ultra-high-resolution (UHR) imaging, improved multi-energy capabilities, reduced noise and artifacts, and improved iodine signal and radiation dose efficiencies. UHR imaging enhances the assessment of small vessels, dense calcifications, and stents. Multienergy mode enhances the iodine signal, reduces artifacts, and allows for material separation and lesion characterization. In this article, we review PCCT technology, highlight the benefits of PCCT in cardiovascular imaging using case examples, and discuss its challenges.

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Cite This Study

Rajiah et al. (2026) studied this question.

synapsesocial.com/papers/69a1344fed1d949a99abe0b4https://doi.org/10.3348/kjr.2024.0261
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