Premium image quality reveals more detailed information
Macro Fidelity (MFI)
With the MFI technology, Apogee 5500 effectively makes up the spatial resolution gap caused by discrete signals and enhances filtering accuracy. By reducing signal distortion and eliminating unwanted noises, it renders premium images with outstanding resolution, high contrast and enhanced penetration.
Fusion Tissue Harmonic Imaging (Fusion THI)
Real-time fusing the information from different frequency bands, Fusion THI implements the broadband transmission and reception of harmonic waves. With enhanced image resolution and penetration, the system will help to boost your diagnostic confidence.
VS-Flow
VS-Flow collects the valid vector information from Doppler signals by frequency modulation. It enables high sensitivity of capillary vessels with extraordinary resolution.
New 4D imaging tools contribute to lifelike images and more reliable diagnosis
nSlice: Presenting multi-sections of the 4D object from different angles by rotating to find the needed section quickly. Diagnostic accuracy is improved by adjusting the thickness and angle of the section, so as to observe the shape, size and surroundings of the target area more clearly.
Q-Cut: By trimming the irregular images to present the target area more clearly, greatly improves diagnostic efficiency.
۳D printing
With a 3D printer, users can print the 3D imaging as a vivid baby. Meeting babies in advance will bring great fun to mothers.
Premium images and comprehensive assessment tools offer maximized clinical value
TDI(Tissue Doppler Image)
TDI helps to assess the directional and temporal phase of cardiac, so as to display the movement state of vascular wall and the movement speed of heart.
Simpson auto tracing
With three-point fix, the measurement saves your time and effort to obtain the information of cardiac function by automatically tracing the endocardium (fine-tuning available).
PISA
PISA serves as an important basis to regurgitation severity assessment.. With PISA, Apogee 5500 easily calculate regurgitation flow caused by cardiac valve disease, which provides significant evidence for clinical diagnosis.
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