Photon-counting-detector CT outperforms state-of-the-art cone-beam and energy-integrated-detector CT in delineation of dental root canals

S Stephan Rau M Martin Peter Pichotka A Alexander Rau M Marco Reisert M Markus Jörg Altenburger R Rainer Schmelzeisen F Fabian Cieplik F Fabian Bamberg M Maximilian Frederik Russe W Wiebke Semper-Hogg

Abstract

Abstract This experimental phantom study investigates current standard of care protocols in cone beam computed tomography (CBCT), energy-integrating-detector (EID) CT, and photon-counting-detector (PCD) CT regarding their potential in delineation of dental root canals. Artificial accessory canals (diameters: 1000, 600, 400, 300 and 200 μm) were drilled into three bovine teeth mounted on a bovine rib as a jaw substitute. The phantom was scanned in two dental CBCTs, two EID-CTs and a PCD-CT using standard clinical protocols. Scans from a micro-CT served as reference standard. Spatial resolution was evaluated via line profiles through the canals, whereby visibility compared to surrounding noise and compared to the ground truth were assessed. PCD-CT was able to delineate all artificial canals down to 200 μm diameter. In CBCT and EID-CT canals could only be reliably detected down to 300 μm. Also, PCD-CT showed a considerably smaller width-divergence from the ground trough with 4.4% at 1000 μm and 35.1% at 300 μm compared to CBCT (13.5 and 72.9%) and EID-CT (10.1 and 115.7%). PCD-CT provided superior resolution, accurate size measurement, and enhanced detection of small dental root canals, thereby offering improvements in diagnostic capabilities compared to CBCT and EID-CT systems.

Article Details

Volume / Issue Vol. 15, Issue 1
Published January 23, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (10)

S

Stephan Rau

M

Martin Peter Pichotka

A

Alexander Rau

M

Marco Reisert

M

Markus Jörg Altenburger

R

Rainer Schmelzeisen

F

Fabian Cieplik

F

Fabian Bamberg

M

Maximilian Frederik Russe

W

Wiebke Semper-Hogg