Cardiac Ultrasound

Redefining the way we see

Announcing the New LISENDO DI

The LISENDO DI is designed to support faster workflows and greater diagnostic confidence, combining pioneering imaging technologies for exceptional image clarity, zero-click analysis, and innovative hemodynamic evaluation so clinicians can obtain consistent, reproducible insights—helping them focus on what matters most: delivering high-quality patient care.

Faster Workflows and Greater Diagnostic Confidence Through:

  • Pioneering Imaging Technologies for Exceptional Image Clarity
  • Zero-Click Analysis
  • Innovative Hemodynamic Evaluation

Timothy W. Casarez, MD Pediatric Cardiologist Pediatric Cardiology Medical Associates, Los Angeles, CA

Nancy Kim, MD Pediatric Cardiologist Pediatric Cardiology Medical Associates, Los Angeles, CA

Janet Barlow Sonography Instructor Austin, TX

Cardiac Imaging


VFM Atlas

Evaluate cardiac hemodynamics like never before.

VIRTUAL CONTRAST

Visualize left ventricular endocardial borders - without contrast

FETAL HEART

Assess Fetal Heart dynamics with leading edge automation.

STRAIN

Automate strain analysis for precise regional and global myocardial mechanics.

DUAL GATE DOPPLER

Accurately measure diastolic and systolic function in patients with arrhythmia

Road to Innovation

For more than 70 years, Fujifilm Healthcare has been at the forefront of ultrasound innovation, driving groundbreaking advancements and shaping the future of medical imaging. From pioneering new technologies to empowering healthcare professionals, our legacy continues to make an impact today.

1950

World's first diagnostic ultrasound imaging system

1960

Released world's first commercial medical ultrasound system

1971

Introduced world's first linear array, real-time B-Mode Scanner

1978

Introduced the world's first phased array transducer

1983

Introduced the world's first convex array transducer

1986

Introduced the world's first cardiac Color Flow Doppler ultrasound system

1989

Introduced the world's first bi-plane transducers for surgery

1995

Introduced the world's first 3D ultrasound system

2003

Introduced the world's first real-time Tissue Elastography technology to evaluate tissue stiffness in a color map

2009

Introduced the world's first CMUT transducer featuring a 2-22 MHz bandwidth

2011

Introduced the world's first robotic probe for surgery

2012

Introduced the world's first Vector Flow Mapping (VFM) technology for Cardiac application

2014

Introduced the world's first pituitary guidance transducer

2020

Introduced the world's smallest robotic probe for surgery

2023

DeepInsight cognitive technology released

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