Equipment



ProSound Alpha 7

High-performance for easier diagnosis, shorter exam times, and increased efficiency.

Hitachi Healthcare’s Prosound Alpha 7 offer superb performance with both high penetration and spatial resolution, more detailed image information, deeper penetration and and advanced 3D/4D functionality, and transducers designed for patient comfort.





ProSound Alpha 7 Overview

Recognized for our outstanding image quality, outstanding system reliability and intuitive use of cutting edge technology, Hitachi Healthcare remains the standard in the field of Surgery.

Hitachi Healthcare’s premium level systems provide:

Our advanced HemoDynamic Analytics (HDA) technologies provide a unique and comprehensive evaluation for your patient's cardiovascular health:

● Extraordinary high-resolution digital imaging with specifically designed transducers
● Real-time imaging that immediately provides valuable information necessary to assist in surgical planning and execution
● Guidance of biopsy procedures for more accurate placements of needles
● Instant feedback on tumor margin delineation
● Valuable information to guide tumor resections
● Assistance in achieving complete tumor resection
● Ability to visualize and account for blood flow
● Minimally invasive pituitary imaging
● Robotic surgery imaging
● Localization and orientation of relative anatomy
● Blending and overlaying of CT/MR images with ultrasound

 

ProSound Alpha 7 Image Technology

Clear images and advanced functions are what you have come to expect from Hitachi – Aloka. Our 60 years of experience and innovation continues with the ProSound Alpha 7 platform.

Compound Pulse Wave Generator Plus (CPWG+) – The most advanced broadband beam-forming technology combined with high speed image processing that allows for higher definition ultrasound imaging than ever before.
Broadband Harmonics™ (BbH) – Provides high quality imaging using an expanded range of harmonic signals. This technology results in excellent image resolution and sensitivity and improved penetration.
Adaptive Image Processing (AIP) – Clearly displays differences in tissues, reducing speckle noise while maintaining the frame rate. It can also display outlines more clearly by selectively emphasizing boundaries.
Spatial Compound Imaging (SCI) – The ultrasound beam is transmitted and received in real time and in the multiple directions resulting in a reduction of speckle noise, suppression of artifacts, and improvement of contrast resolution allowing lesions to be clearly observed.
Image Optimizer – At the touch of a button the B-mode image is instantly optimized to the user’s preference. This technology continually monitors the user’s typical settings to optimally adjust the image when pressed resulting in less manual adjustments and more efficient examinations.
SmartProbes – The new high-efficiency probes are very lightweight and designed to be high in energy conversion to transmit high-quality ultrasound beams.

 

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