Biomedical Imaging Research

Building tools and insights across dimensions of biomedical imaging.

I develop AI-powered, cloud-native software and imaging methodologies that translate complex biomedical data into meaningful clinical and scientific impact.

Search publications, software, projects, videos, and more

Research Areas

Connecting imaging physics, AI, and cloud computing for biomedical impact.

Featured Work

Radiomics for Precision Diagnosis of FAI: How Close Are We to Clinical Translation? A Multi-Center Validation of a Single-Center Trained Model
Article2025

Radiomics for Precision Diagnosis of FAI: How Close Are We to Clinical Translation? A Multi-Center Validation of a Single-Center Trained Model

Eros Montin, Kartik Logishetty, Hariharan Subbiah Ponniah, Srikar Namireddy, Iman Khodarahmi, Sion Glin-Jones, Riccardo Lattanzi

Journal Of Clinical Medicine

mriradiomicsmachine-learningfeature-selection+2
A Serverless Implementation of a Tool for Temperature and SAR Estimation (TESS 2.0)
Article2024

A Serverless Implementation of a Tool for Temperature and SAR Estimation (TESS 2.0)

Eros Montin, Giuseppe Carluccio, Christopher Collins, Riccardo Lattanzi

2024 E-Health and Bioengineering Conference (EHB)

mricloud
Radiomics features outperform standard radiological measurements in detecting femoroacetabular impingement on three-dimensional magnetic resonance imaging.
Article2024

Radiomics features outperform standard radiological measurements in detecting femoroacetabular impingement on three-dimensional magnetic resonance imaging.

Eros Montin, Richard Kijowski, Thomas Youm, Riccardo Lattanzi

Journal of Orthopaedic Research

radiomicsmrifaicloud
A radiomics approach to the diagnosis of femoroacetabular impingement
Article2023

A radiomics approach to the diagnosis of femoroacetabular impingement

Eros Montin, Richard Kijowski, Thomas Youm, Riccardo Lattanzi

Frontiers In Radiology - Artificial Intelligence In Radiology

radiomicsmrifaicloud
CloudMR

CloudMR

Python

Cloud-native platform for MRI simulation, safety analysis, and protocol optimization. Connects open-source modules for coil modeling, spin excitation, and image reconstruction.

cloudmrisimulationawsopen-source

TESS

Python

Temperature Estimation from SAR Simulation. A serverless AWS-based tool for MRI safety evaluation using the bioheat equation.

mrisafetysarawsserverless

pyRadiomics Pipeline for FAI

Python

End-to-end automated radiomics pipeline for femoroacetabular impingement diagnosis using PyRadiomics and machine learning classifiers.

radiomicsmrifaimachine-learningpython

MRI Simulation Pipeline

Python / MATLAB

Open-source modular pipeline to simulate the entire MRI experiment from coil modeling to image reconstruction. Cloud-compatible and web-accessible.

mrisimulationcloudopen-source

Latest Publications

Recent peer-reviewed work and conference contributions.

MR Optimum: A web-based open-source tool for standardized signal-to-noise ratio evaluation in MRI
Article2026

MR Optimum: A web-based open-source tool for standardized signal-to-noise ratio evaluation in MRI

Eros Montin, Xuan Thao Nguyen, Riccardo Lattanzi

Computer Methods and Programs in Biomedicine Update

MR Optimum is a cloud-native open-source web platform for standardized MRI signal-to-noise ratio analysis. The tool brings multiple SNR estimation methods into a modular interface for upload, computation, visualization, and export of SNR maps, g-factor maps, coil sensitivity information, and related quality-assurance outputs.

mrisnrcloudwebapp+1
ACCURATE SEGMENTATIONS OF THE FEMUR AND ACETABULUM ON VOLUMETRIC 3 TESLA MAGNETIC RESONANCE IMAGING FOR FEMOROACETABULAR IMPINGEMENT EVALUATION
Conference2026

ACCURATE SEGMENTATIONS OF THE FEMUR AND ACETABULUM ON VOLUMETRIC 3 TESLA MAGNETIC RESONANCE IMAGING FOR FEMOROACETABULAR IMPINGEMENT EVALUATION

Ozkan Cigdem, Eros Montin, Naseem Machlovi, James Lee, Riccardo Lattanzi

Osteoarthritis and Cartilage

Conference abstract describing segmentation of the femur and acetabulum on volumetric 3T MRI for femoroacetabular impingement evaluation.

mrifaiimage-segmentation
Four-row MRI receive array with remote circuitry for improved parallel imaging in radiation therapy systems
Article2026

Four-row MRI receive array with remote circuitry for improved parallel imaging in radiation therapy systems

Karthik Lakshmanan, Lindsay Phillips, Bili Wang, Eros Montin, Jerzy Walczyk, Ryan Brown

Physics in Medicine & Biology

This work evaluates a four-row MRI receive-array design with remote circuitry for MR-guided radiation therapy systems. The design preserves the radiolucent window while improving parallel imaging options in the head-foot direction and supporting multidirectional acceleration.

mriradiation-therapyparallel-imagingcoil+1

Software & Tools

Open-source research software for the biomedical imaging community.

CloudMR

CloudMR

Python

Cloud-native platform for MRI simulation, safety analysis, and protocol optimization. Connects open-source modules for coil modeling, spin excitation, and image reconstruction.

cloudmrisimulationawsopen-source

TESS

Python

Temperature Estimation from SAR Simulation. A serverless AWS-based tool for MRI safety evaluation using the bioheat equation.

mrisafetysarawsserverless

pyRadiomics Pipeline for FAI

Python

End-to-end automated radiomics pipeline for femoroacetabular impingement diagnosis using PyRadiomics and machine learning classifiers.

radiomicsmrifaimachine-learningpython

MRI Simulation Pipeline

Python / MATLAB

Open-source modular pipeline to simulate the entire MRI experiment from coil modeling to image reconstruction. Cloud-compatible and web-accessible.

mrisimulationcloudopen-source

Let's work together

I help research teams translate complex biomedical imaging ideas into usable software, reproducible pipelines, and interpretable scientific outputs.