Sample services provided to companies
Archive 2025-2026
DIAGNICS
Case Studies
These analysis and heart valve development case study samples are drawn from the comprehensive reports we delivered to medical device and heart valve companies. Each example has been adapted from client‑ready documentation, with all proprietary information removed.
We Quantify!
Hemodynamics & 3D fluid dynamics
Hydrodynamic performance
Durability / fatigue
Structural integrity
Thrombogenicity & hemolysis
Hydrodynamic performance
Durability / fatigue
Structural integrity
Thrombogenicity & hemolysis
Our analysis is not just descriptive;
it is quantitative and comprehensive!
Diagnics leverages a cutting-edge, integrated approach that combines several technologies for comprehensive & multiphase assessments of
intraventricular and valvular flow and structural dynamics.
intraventricular and valvular flow and structural dynamics.
Imaging
modalities
Computational Algorithms
fully patient-specific Tests
DIAGNICS Delivers FDA‑Expected Computational Models for Advanced Heart Valve Assessment
Rigorous computational evidence for next‑generation heart valve innovation
Structural mechanics
Hemodynamics
Fluid–structure interaction (FSI)
Virtual trials

New surgical mitral valve
Client sample Patient 1
Hydrodynamic in vitro test
Echo-based vortex analysis

SESAME
Client sample Patient 2
Intraventricular momentum thrust directional distribution
Pre and four-month post procedure comparison

Transcatheter mitral valve
Client sample Patient 3
Streamlines
Post procedure regurgitation

Transcatheter mitral valve
Client sample Patient 4
Mitral and intraventricular streamlines and velocity magnitude
Three-month & one-year followup

Transcatheter mitral valve
Client sample Patient 5
4D Flow MRI
Post procedure analysis

Transcatheter mitral valve
Client sample Animal 1
Animal study
Time-averaged wall shear stress

Transcatheter mitral valve
Client sample Animal 2
Animal study
Velocity field and streamlines

New transcatheter aortic valve
Client sample Patient 6
Doppler-based P-V loop analysis
Pre and post intervention comparison

Transcatheter mitral valve
Client sample Animal 3
Animal study
Streamlines

Transcatheter mitral valve
Client sample Animal 4
Animal study
Velocity field

Transcatheter mitral valve
Client sample Animal 5
Animal study
Intraventricular momentum thrust directional distribution

Transcatheter mitral valve
Client sample Animal 6
Animal study
Post procedure regurgitation

Transcatheter mitral valve
Client sample Patient 7
P-V loop and intraventricular flow analyses
Pre and post procedure comparison

Transcatheter mitral valve
Client sample Patient 8
P-V loop and intraventricular flow analyses
Pre and post procedure comparison

SESAME
Client sample Patient 9
Intraventricular flow analyses
Pre and four-month post procedure comparison

Transcatheter mitral valve
Client sample Patient 10
Streamlines
Post procedure regurgitation

Mitral valve intervention
Client sample Patient 11
Velocity
Pre and post intervention comparison

Transcatheter mitral valve
Client sample Patient 12
Streamlines and velocity
Pre and post intervention comparison

Transcatheter mitral valve
Client sample Patient 13
Intraventricular momentum thrust directional distribution
Three-month & one-year followup

New surgical mitral valve
Client sample Patient 14
Streamlines
Comparison of a new surgical mitral valve with existing valves.

Obstructive cardiomyopathy
Client sample Patient 15
Hemodynamics performance
Doppler echocardiography based computational investigation

Transcatheter mitral valve
Client sample Animal 7
Animal study
Q Criterion

New surgical mitral valve
Client sample Patient 16
Hydrodynamic in vitro test
Doppler echocardiography measurements

New surgical mitral valve
Client sample Patient 17
Hydrodynamic in vitro test
Pressure and flow waveforms

New surgical mitral valve
Client sample Patient 18
Hydrodynamic in vitro test
Closure volume

Transcatheter mitral valve
Client sample Patient 19
Intraventricular blood stagnation
Pre and three-month post intervention comparison