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An ultrasound machine is a non-invasive medical device that uses high-frequency sound waves to create real-time images of the body's internal structures. It provides valuable diagnostic information by producing detailed images of organs, tissues, and blood flow, allowing healthcare professionals to assess pregnancy, detect abnormalities, and guide minimally invasive procedures with precision and safety.



Hitachi - ARIETTA 850

ARIETTA 850 ultrasound platform responds to high expectations to answer the ever increasing demands of medical professionals. Its fundamental performance has been refined with the goal of creating an ultimate ultrasound platform, based on its newly-developed Pure Symphonic Architecture. 


ARIETTA 850 is the flagship model of the ARIETTA series diagnostic of ultrasound platforms. Leading-edge technologies have been incorporated that generate premium performance in each aspect: imaging quality, operability, and advanced applications.


Hitachi - ARIETTA V70

ARIETTA V70 incorporates features that reduce stress and improve its ease-of-use. Detailed ergonomic design that meets recommended industry standards supports a comfortable working environment.


The platform is compact and light-weight, with excellent ergonomics designed to recommended industry standards using operator feedback.

  • The large palm rest at the centre of the operating console is designed to provide optimum wrist support to reduce stress when scanning for long periods

  • Two-way multi-rotary encoders offer intuitive operation, enabling the management of many functions in one control. This results in a significant reduction of hand and arm movements and a shortening of the examination time.

  • The panel height can be lowered to 70 cm, allowing the operator to perform lower extremity examinations with a safe, comfortable reach to the operating console.

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Hitachi - ARIETTA V60

ARIETTA V60 is a multi-purpose system which meets various needs in ultrasound examination. 


It is a model with high performance and suitable for routine examination at primary and secondary medical care facilities.

Hitachi ARIETTA V60 Ultrasound is equipped with multiple functions dedicated to each diagnostic field, supporting more accurate and efficient diagnoses.


Hitachi - ALOKA F31

A diagnostic ultrasound system that combines performance and ergonomics.

The Aloka F31 embodies these Japanese traditions combining quality and affordability in a compact ultrasound platform. Its ergonomics ensure efficient user workflow with a sympathetic design that safeguards patients’ confidence. The high performance capabilities and advanced system features enable the F31 to meet the requirements across a wide spectrum of clinical applications.


Hitachi - NOBLUS

The Noblus Ultrasound Scanner features the ultimate in versatility and adaptability for many clinical applications.


With its state of the arts functions and large user-friendly display, Noblus provides the ease of use needed for any kind of examination in any setting.



The ARIETTA Prologue offers superior imaging quality and is equipped with functions that improve efficiency and support rapid, accurate diagnosis when and where needed.


ARIETTA Prologue has been designed especially for the point-of-care (POC) ultrasound market. Thanks to its intuitive and simple operation, it fulfils the fundamental role of a portable ultrasound system, bringing the clinical benefits of diagnostic ultrasound into new areas of healthcare.


Hitachi - SOFIA

The new SOFIA 3D breast ultrasound system solves all the economic and logistic challenges associated with whole-breast ultrasound by using a full-field radial scanning method. The resulting throughput, efficiency, and patient comfort make SOFIA the ideal solution for women with dense breasts.


SOFIA offers a fully automated scan procedure providing rapid whole breast image acquisition with one button operation. Patients can be scheduled every 10 minutes for a bilateral breast examination. This automated process does not require operator interaction during the scanning procedure, ensuring reproducibility and efficiency. Due to the prone position of the breast and tomographic reconstruction of images, SOFIA™ data sets can be compared in the same plane and orientation as those acquired with other tomographic modalities such as DBT and MRI.

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