Revolutionizing Ultrasound Imaging: Explore the Advanced Features of the MEDISON ACCUVIX V20
Since introducing the first commercially available 3D ultrasound system back in 1998, MEDISON has remained at the forefront of the global ultrasound industry, particularly in the realm of 3D/4D imaging. Over the years, MEDISON has continually pushed the boundaries of innovation, introducing a range of pioneering 3D/4D technologies. Among these advancements are MultiSlice View and Oblique View, which have significantly enhanced diagnostic confidence and workflow efficiency while concurrently reducing the risk of repetitive stress injuries.
Built upon a foundation of high-resolution 2D, 3D, and 4D imaging capabilities, the ACCUVIX V20 represents the pinnacle of MEDISON's ultrasound technology. This state-of-the-art system is equipped with revolutionary new features, including Color STIC, Inversion 3D, OVIX, and VCE. Notably, MEDISON has seamlessly integrated the precision and consistency of CT (computer tomography) and MRI (Magnetic Resonance Imaging) with 3D ultrasound through its groundbreaking Multi-Slice View technology. These interactive tools enable healthcare professionals to review more information in less time, with unparalleled accuracy, thereby significantly enhancing diagnostic capabilities.
In addition to its advanced imaging technologies, the ACCUVIX V20 boasts an ergonomic design geared towards maximizing comfort and efficiency during scanning procedures. The system features a high-resolution flat panel monitor complemented by an articulated arm, providing flexibility and ease of use for healthcare professionals. This thoughtful design ensures that clinicians can perform scans with optimal precision and minimal strain, ultimately enhancing both patient care and user experience.
Building upon the revolutionary capabilities of 3D XI (Multi-Slice View, Oblique View, Volume CT View), MEDISON has also incorporated XI VOCAL and OVIX (Oblique View eXtended).
XI VOCAL displays sequential parallel slices of 3D anatomy to facilitate more precise volume analysis of irregularly shaped structures.
OVIX (Oblique View eXtended) provides specific segmentation of anatomical structures located within the 3D data set.
The Orientation Cube is an intuitive tool providing confident orientation (right/left, anterior/posterior, cephalic/caudal) within the 3D data set. As planar images are rotated, the orientation cube automatically provides the appropriate orientation annotation resulting in more confident 3D evaluations.
VCE (Volume Contrast Enhancement) maximizes the quality of volume images to significantly reduce uncertain areas which appear unclear. Highly detailed images maximize diagnostic confidence.
3D DMR (3D DynamicMR) enriches the appearance of the displayed 3D image by increasing interface detection, decreasing image pixilation, and enhancing contrast resolution.
Color STIC enhances the dynamic motion of the fetal heart in combination with color Doppler, displayed in real time as multiplanar or rendered images. Color STIC provides greater comprehension of fetal heart hemodynamics to assist with the evaluation of a variety of cardiac defects.
The ergonomic design of the ACCUVIX V20 targets both form and function, ensuring a seamless user experience. The high-resolution flat-screen monitor with an articulated arm provides an optimal environment of comfort and functionality when performing ultrasound examinations.
Featuring a simplified console design, the ACCUVIX V20 boasts a large 10.4 LCD intuitive touch panel. This panel enables efficient system interaction, allowing users to effortlessly navigate through software functions with ease.
With a 17-inch LCD monitor and a 10.4-inch touch screen, the ACCUVIX V20 offers a comprehensive display for clear visualization and intuitive operation. Post-measurement and processing capabilities enhance workflow efficiency, while integrated features such as a DVD-RW and a 250GB HDD (External HDD Backup) ensure convenient data storage and management. Additionally, DICOM SR support facilitates seamless integration with existing medical systems, enhancing interoperability and data sharing.