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Crystal-clear, exquisit image quality

Visualize microvascular structures in 3D-like display

MV-FlowTM 1 visualizes microcirculatory and slow blood flow to display the intensity of blood flow. It is suitable for observation of microcirculatory blood flow and volume of slow blood flow.

Show blood flow in vessels in a 3D-like display

LumiFlowTM is a function that visualizes blood flow in three dimensional-like to help understand the structure of blood flow and small vessels intuitively.

Visualize the boundary in three dimensional like display

Luminant is a function that visualizes the boundary of a 2D image in three dimentional-like to help understand the boundary of structures such as the fetal heart or brain.

Enhance hidden structures in shadowed regions

ShadowHDRTM selectively applies high-frequency and low-frequency of the ultrasound to identify shadow areas such as fetal head or spine where attenuation occurs.

Express 3D anatomy in detail and realistic view

RealisticVueTM 1 displays high resolution 3D anatomy with detailed expression and realistic depth perception. User selectable light source direction creates intricately graduated shadows for better defined anatomical structures.

Visualize internal and external structures using volume rendering

CrystalVueTM 1 is an advanced volume rendering technology that enhances visualization of both internal and external structures in a single rendered image using a combination of intensity, gradient and position.

Workflow efficiency and diagnostic accuracy with AI

Automatic structure segmentation for your desired view instantly

EzVolumeTM 1 is a feature based on AI technology that automatically segments the structures of the fetus in the acquired 3D image and allows the user to selectively view the structures they want. In addition, the user can intuitively view the desired 3D image by changing the color of each structure and adjusting transparency.

Measure the size and shape of the uterus with AI technology

UterineAssistTM 1, a feature based on Deep Learning technology, automatically measures the size and shape of the uterus, which helps in finding signs of uterine-related abnormalities, and also reduces scan time.

An automated reporting tool for fetal heart diagnosis

HeartAssistTM, a feature based on Deep Learning technology, provides automatic classification of ultrasound image into measurement views required for heart diagnosis and provides measurement results.

An automated fetal biometry measurement

BiometryAssistTM, a feature based on Deep Learning technology, is an automatic technology for biometric measurement. It enables users to measure the fetal growth parameters with one click while maintaining exam consistency.

A feature to extract the centerline and thickness of endometrium

UterineContourTM, a feature based on Deep Learning technology, is to help in identifying uterine malformation. It automatically extracts the centerline and thickness of the curved endometrium and provides a coronal view in 3D, flattened by the centerline. In addition, uterine malformation classification are reported according to the ESHRE/ESGE or ASRM guideline selection.
* ESHRE/ESGE : The European Society of Human Reproduction and Embryology/ The European Society for Gynaecological Endoscopy
ASRM : The American Society for Reproductive Medicine

Abundant women's health solutions for every stage

Measure the size of follicles based on 2D

2D FollicleTM is a function to measure the size of follicles based on 2D image and to provide information about the status during controlled ovarian simulation.

Support in deciding delivery method

LaborAssistTM is a function that provides information of the progress of delivery by the automatic measurement of AoP (Angle of Progression) and the direction of the fetal head. This not only helps in effective communication between the healthcare professionals and mothers, but also assists in making delivery decision for the healthcare professionals.
* AoP complies with the metrics specified in the ISUOG Guideline.

A predictive classification of the ovarian tumor

IOTA-SRrisk applies the Simple Rules Risk (SRrisk) model of the IOTA group to the ultrasound system. It provides the result calculated according to the SR risk Calculator through the Simple Rules’ Features and Type of Center information.

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  • This product, features, options, and transducers may not be commercially available in some countries.
  • Sales and shipments are effective only after the approval by the regulatory affairs.
    Please contact your local sales representative for further details.
  • This product is a medical device, please read the user manual carefully before use.
  • S-Vue TransducerTM is the name of Samsung’s advanced transducer technology

1. Optional feature which may require additional purchase

2. A purchase of Mobile Export option is required to use HelloMomTM.