We use cookies to understand how you use our site and to improve your experience. This includes personalizing content and advertising. To learn more, click here. By continuing to use our site, you accept our use of cookies. Cookie Policy.

Features Partner Sites Information LinkXpress
Sign In
Advertise with Us
GLOBETECH PUBLISHING LLC

Siemens Healthineers

Provides customized electronic systems and advanced imaging, diagnostics, therapy, and healthcare IT solutions for th... read more Featured Products: More products

Download Mobile App




Ultrasound Catheter, CT Software Developed for Transcatheter Aortic Valve Implantation Procedures

By MedImaging International staff writers
Posted on 07 Nov 2013
Print article
Image: Siemens’ Acuson AcuNav V ultrasound catheter has been developed for real-time volumetric intracardiac echocardiography (Photo courtesy of Siemens Healthcare).
Image: Siemens’ Acuson AcuNav V ultrasound catheter has been developed for real-time volumetric intracardiac echocardiography (Photo courtesy of Siemens Healthcare).
A new ultrasound catheter has been developed for use with real-time volumetric intracardiac echocardiography (ICE).

Real-time ICE provides high quality, dose-free imaging during interventional procedures, and the Acuson AcuNav V catheter, developed by Siemens Healthcare (Erlangen, Germany) is especially useful during transcatheter aortic valve implantation (TAVI) surgery. By using the volumetric ICE catheter, clinicians can perform TAVI procedures while the patient is under conscious sedation instead of general anesthesia. The catheter is also useful during electrophysiology (EP) ablation procedures.

Computed tomography (CT) systems also provide support for minimally invasive TAVI procedures. Siemens Healthcare has developed new software that helps physicians determine the right valve size for the patient and establish the precise angle at which the new valve must be inserted even before the intervention in the cardiac catheterization laboratory. This saves time and lessens the contrast agent dose needed for the patient during intervention. To select an appropriate artificial heart valve, clinicians must determine the exact dimensions of the aortic annulus. The syngo CT cardiac function--valve pilot application, in combination with three-dimensional (3D) CT imaging, automatically detects the annulus plane and determines the precise measurements of the annulus as the case is opened.

Related Links:

Siemens Healthcare


Gold Member
Solid State Kv/Dose Multi-Sensor
AGMS-DM+
Ultrasound Doppler System
Doppler BT-200
Brachytherapy Planning System
Oncentra Brachy
Ultrasound System
Acclarix AX9

Print article
Radcal

Channels

MRI

view channel
Image: The emerging role of MRI alongside PSA testing is redefining prostate cancer diagnostics (Photo courtesy of 123RF)

Combining MRI with PSA Testing Improves Clinical Outcomes for Prostate Cancer Patients

Prostate cancer is a leading health concern globally, consistently being one of the most common types of cancer among men and a major cause of cancer-related deaths. In the United States, it is the most... Read more

Nuclear Medicine

view channel
Image: The new SPECT/CT technique demonstrated impressive biomarker identification (Journal of Nuclear Medicine: doi.org/10.2967/jnumed.123.267189)

New SPECT/CT Technique Could Change Imaging Practices and Increase Patient Access

The development of lead-212 (212Pb)-PSMA–based targeted alpha therapy (TAT) is garnering significant interest in treating patients with metastatic castration-resistant prostate cancer. The imaging of 212Pb,... Read more

Imaging IT

view channel
Image: The new Medical Imaging Suite makes healthcare imaging data more accessible, interoperable and useful (Photo courtesy of Google Cloud)

New Google Cloud Medical Imaging Suite Makes Imaging Healthcare Data More Accessible

Medical imaging is a critical tool used to diagnose patients, and there are billions of medical images scanned globally each year. Imaging data accounts for about 90% of all healthcare data1 and, until... Read more
Copyright © 2000-2024 Globetech Media. All rights reserved.