Review




Structured Review

Philips Healthcare 256 slice multislice scanner
Multidetector computed tomography (MDCT) was performed using <t>a</t> <t>256-slice</t> scanner (Philips Brilliance iCT), demonstrating measurements of the aortic root structures used for procedural planning prior to transcatheter valve implantation. (A) CT image demonstrating measurement of the aortic annulus diameter (24.2 mm) used for prosthetic valve sizing. (B) CT image demonstrating measurement of the sinotubular junction diameter (30.3 mm), an important anatomical landmark for valve positioning. (C) Multiplanar CT reconstruction demonstrating the spatial orientation and positioning of the prosthetic valve within the aortic root (arrow). These images represent original CT images obtained from the 74-year-old woman patient described in this case report, and written informed consent for publication was obtained.
256 Slice Multislice Scanner, supplied by Philips Healthcare, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/multislice/pmc13044468-44-7-10?v=Philips+Healthcare
Average 86 stars, based on 1 article reviews
256 slice multislice scanner - by Bioz Stars, 2026-06
86/100 stars

Images

1) Product Images from "Successful Valve-in-Valve-in-Valve Procedure in a Patient With Severe Aortic Prosthesis Dysfunction: A Case Report"

Article Title: Successful Valve-in-Valve-in-Valve Procedure in a Patient With Severe Aortic Prosthesis Dysfunction: A Case Report

Journal: Cureus

doi: 10.7759/cureus.106304

Multidetector computed tomography (MDCT) was performed using a 256-slice scanner (Philips Brilliance iCT), demonstrating measurements of the aortic root structures used for procedural planning prior to transcatheter valve implantation. (A) CT image demonstrating measurement of the aortic annulus diameter (24.2 mm) used for prosthetic valve sizing. (B) CT image demonstrating measurement of the sinotubular junction diameter (30.3 mm), an important anatomical landmark for valve positioning. (C) Multiplanar CT reconstruction demonstrating the spatial orientation and positioning of the prosthetic valve within the aortic root (arrow). These images represent original CT images obtained from the 74-year-old woman patient described in this case report, and written informed consent for publication was obtained.
Figure Legend Snippet: Multidetector computed tomography (MDCT) was performed using a 256-slice scanner (Philips Brilliance iCT), demonstrating measurements of the aortic root structures used for procedural planning prior to transcatheter valve implantation. (A) CT image demonstrating measurement of the aortic annulus diameter (24.2 mm) used for prosthetic valve sizing. (B) CT image demonstrating measurement of the sinotubular junction diameter (30.3 mm), an important anatomical landmark for valve positioning. (C) Multiplanar CT reconstruction demonstrating the spatial orientation and positioning of the prosthetic valve within the aortic root (arrow). These images represent original CT images obtained from the 74-year-old woman patient described in this case report, and written informed consent for publication was obtained.

Techniques Used: Computed Tomography



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Image Search Results


Multidetector computed tomography (MDCT) was performed using a 256-slice scanner (Philips Brilliance iCT), demonstrating measurements of the aortic root structures used for procedural planning prior to transcatheter valve implantation. (A) CT image demonstrating measurement of the aortic annulus diameter (24.2 mm) used for prosthetic valve sizing. (B) CT image demonstrating measurement of the sinotubular junction diameter (30.3 mm), an important anatomical landmark for valve positioning. (C) Multiplanar CT reconstruction demonstrating the spatial orientation and positioning of the prosthetic valve within the aortic root (arrow). These images represent original CT images obtained from the 74-year-old woman patient described in this case report, and written informed consent for publication was obtained.

Journal: Cureus

Article Title: Successful Valve-in-Valve-in-Valve Procedure in a Patient With Severe Aortic Prosthesis Dysfunction: A Case Report

doi: 10.7759/cureus.106304

Figure Lengend Snippet: Multidetector computed tomography (MDCT) was performed using a 256-slice scanner (Philips Brilliance iCT), demonstrating measurements of the aortic root structures used for procedural planning prior to transcatheter valve implantation. (A) CT image demonstrating measurement of the aortic annulus diameter (24.2 mm) used for prosthetic valve sizing. (B) CT image demonstrating measurement of the sinotubular junction diameter (30.3 mm), an important anatomical landmark for valve positioning. (C) Multiplanar CT reconstruction demonstrating the spatial orientation and positioning of the prosthetic valve within the aortic root (arrow). These images represent original CT images obtained from the 74-year-old woman patient described in this case report, and written informed consent for publication was obtained.

Article Snippet: A computed tomography (CT) scan using a 256-slice multislice scanner (Philips Brilliance iCT, Philips Healthcare, Best, The Netherlands) demonstrated extensive calcification of the ascending aorta consistent with a porcelain aorta, significantly increasing the risk of open surgery.

Techniques: Computed Tomography