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Shrimanti Ghosh
Publication Activity (10 Years)
Years Active: 2017-2024
Publications (10 Years): 8
Top Topics
Convolutional Neural Network
Mri Data
Automated Segmentation
Magnetic Resonance
Top Venues
CoRR
ISBI
ICIP
CRV
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Publications
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Yuyue Zhou
,
Banafshe Felfeliyan
,
Shrimanti Ghosh
,
Jessica Knight
,
Fatima Alves-Pereira
,
Christopher Keen
,
Jessica Küpper
,
Abhilash Rakkunedeth Hareendranathan
,
Jacob L. Jaremko
A Simple Framework Uniting Visual In-context Learning with Masked Image Modeling to Improve Ultrasound Segmentation.
CoRR
(2024)
Banafshe Felfeliyan
,
Yuyue Zhou
,
Shrimanti Ghosh
,
Jessica Kupper
,
Shaobo Liu
,
Abhilash Rakkunedeth Hareendranathan
,
Jacob L. Jaremko
Application Of Vision-Language Models For Assessing Osteoarthritis Disease Severity.
CoRR
(2024)
Yuyue Zhou
,
Jessica Knight
,
Banafshe Felfeliyan
,
Shrimanti Ghosh
,
Fatima Alves-Pereira
,
Christopher Keen
,
Abhilash Rakkunedeth Hareendranathan
,
Jacob L. Jaremko
Self-Supervised Learning to More Efficiently Generate Segmentation Masks for Wrist Ultrasound.
ASMUS@MICCAI
(2023)
Shrimanti Ghosh
,
Kumaradevan Punithakumar
,
Fleur Huang
,
Geetha Menon
,
Pierre Boulanger
Deep Learning using Pre-Brachytherapy MRI to Automatically Predict Applicator Induced Complex Uterine Deformation.
EMBC
(2022)
Shrimanti Ghosh
,
Nilanjan Ray
,
Pierre Boulanger
,
Kumaradevan Punithakumar
,
Michelle Noga
Automated Left Atrial Segmentation from Magnetic Resonance Image Sequences Using Deep Convolutional Neural Network with Autoencoder.
ISBI
(2020)
Shrimanti Ghosh
,
Ankur Banerjee
,
Nilanjan Ray
,
Peter W. Wood
,
Pierre Boulanger
,
Raj Padwal
Using Accelerometric and Gyroscopic Data to Improve Blood Pressure Prediction from Pulse Transit Time Using Recurrent Neural Network.
ICASSP
(2018)
Shrimanti Ghosh
,
Nilanjan Ray
,
Pierre Boulanger
A Structured Deep-Learning Based Approach for the Automated Segmentation of Human Leg Muscle from 3D MRI.
CRV
(2017)
Shrimanti Ghosh
,
Pierre Boulanger
,
Scott T. Acton
,
Silvia S. Blemker
,
Nilanjan Ray
Automated 3D muscle segmentation from MRI data using convolutional neural network.
ICIP
(2017)