Login / Signup
Dhanannjay Deo
Publication Activity (10 Years)
Years Active: 2007-2011
Publications (10 Years): 0
</>
Publications
</>
Suvranu De
,
Dhanannjay Deo
,
Ganesh Sankaranarayanan
,
Venkata Sreekanth Arikatla
A Physics-Driven Neural Networks-Based Simulation System (PhyNNeSS) for Multimodal Interactive Virtual Environments Involving Nonlinear Deformable Objects.
Presence Teleoperators Virtual Environ.
20 (4) (2011)
Dhanannjay Deo
,
Dibakar Sen
Mesh Processing for Computerized Facial Anthropometry.
J. Comput. Inf. Sci. Eng.
10 (1) (2010)
Dhanannjay Deo
,
Suvranu De
A higher order polynomial reproducing radial basis function neural network (HOPR-RBFN) for real-time interactive simulations of nonlinear deformable bodies with haptic feedback.
HAPTICS
(2010)
Zhonghua Lu
,
Ganesh Sankaranarayanan
,
Dhanannjay Deo
,
Dingfang Chen
,
Suvranu De
Towards physics-based interactive simulation of electrocautery procedures using PhysX.
HAPTICS
(2010)
Ganesh Sankaranarayanan
,
Dhanannjay Deo
,
Suvranu De
Hybrid Network Architecture for Interactive Multi-User Surgical Simulator with Scalable Deformable Models.
MMVR
(2009)
Dhanannjay Deo
,
Suvranu De
PhyNeSS: A Physics-driven Neural Networks-based Surgery Simulation system with force feedback.
WHC
(2009)
Dhanannjay Deo
,
Suvranu De
A Machine Learning-Based Scalable Approach For Real-Time Surgery Simulation.
MMVR
(2009)
Dhanannjay Deo
,
Tejinder Paul Singh
,
Ward Dunnican
,
Suvranu De
Characterization of Anisotropy in Viscoelastic Properties of Intra-abdominal Soft Tissues.
MMVR
(2009)
Dhanannjay Deo
,
Suvranu De
,
Shivkumar Kalyanaraman
A Scalable Intermediate Representation for Remote Interaction with Soft Tissues.
MMVR
(2007)
Dhanannjay Deo
,
Suvranu De
,
Tejinder Paul Singh
Physics-based stereoscopic suturing simulation with force feedback and continuous multipoint interactions for training on the da Vinci ®surgical system.
MMVR
(2007)