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Manjunatha Mahadevappa

About


Research Statement


To develop advanced medical instrumentation and technologies to study the cortical signals at the whole brain - with the goal of translating the work into practical research and clinical use in stroke, incomplete spinal cord injury, cerebral palsy, and ALS. Our team members include independent and entrepreneurial group of under graduate and post graduate students, and research scholars who base their research on modern microfabrication, electrophysiology, signal processing, image processing and elctronic integrated circuit design technologies. Our collaborations are national clinical research hospital & laboratories to startup entrepreneurs, non-government organizations interested in translating the technology from bench-to-bedside.

Research

  • 1 Biomedical instrumentation
  • 2 Bio-Robotics and Neurorehabilitation
  • 3 Neural Engineering & Retinal Prosthesis
  • 4 Biomedical Signal Processing
  • 5 Functional Electrical Stimulation

Publications

  • Mahadevappa M., Classification of Artifactual EEG signal and Detection of Multiple Eye Movement Artifact zones using Novel Time-Amplitude Algorithm, Journal of Signal, Image, and Video Processing, Springer, 2018
  • Biswas S., Sikdar D. , Mahadevappa M. , Kumar C. S., A comparative study of light and electrically evoked response of retinal ganglion cells, In Engineering in Medicine and Biology Society (EMBC), 2017, 39th Annual International Conference of the IEEE, 1101-1104, 2017
  • Biswas S., Das D. , Mahadevappa M. , Das S, Characterization of retinal tissue and vitreous humor with Electrical Impedance Spectroscopy, In Neural Engineering (NER), 2017 8th International IEEE/EMBS Conference, 2017
  • Bakshi K., Biswas S. , Mahadevappa M. , Kumar C. S., Estimation of three degrees of freedom of wrist movement from electromyogram using Kernel Ridge Regression, In Neural Engineering (NER), 2017 8th International IEEE/EMBS Conference, 130-133, 2017
  • Sikdar D., Roy R. , Mahadevappa M., Multifractal analysis of electroencephalogram for human speech modalities, In Neural Engineering (NER), 2017 8th International IEEE/EMBS Conference on, 637-640, 2017
  • Roy R., Sikdar D. , Mahadevappa M. , Kumar C. S., A fingertip force prediction model for grasp patterns characterised from the chaotic behaviour of EEG, Medical & Biological Engineering & Computing, 2017
  • Biswas S., Das S. , Mahadevappa M., Design of electrode configuration for in vitro experiments of epiretinal electrical stimulation of retinal ganglion cells, Science, Measurement & Technology, 11, 480-488, 2017
  • Biswas S., Das S. , Mahadevappa M, Design of electrode configuration for in vitro experiments of epiretinal electrical stimulation of retinal ganglion cells, IET Science Measurement and Technology, 2017
  • Mukhopadhyay R., Lenka P. K., Biswas A. , Mahadevappa M., Evaluation of Functional Mobility Outcomes Following Electrical Stimulation in Children With Spastic Cerebral Palsy, Journal of child neurology, 650-656, 2017
  • Tibdewal M. N., Fate R. R., Mahadevappa M. , Ray A. K., Malokar M., Multiple Entropies Performance Measure for Detection and Localization of Multi-channel Epileptic EEG, Biomedical Signal Processing and Control, 38, 158-167, 2017
  • Biswas S., Sikdar D. , Das D. , Mahadevappa M. , Das S, PDMS based multielectrode arrays for superior in-vitro retinal stimulation and recording, Biomedical microdevices, 2017
  • Ghosh S., Mahadevappa M. , Mukhopadhyay J, A 2D electrode-skin model for electrical & contact impedance characterization of Bio Impedance, IEEE TENCON, 2016
  • LAP LAMBERT Academic Publishing, In vivo speckle imaging of microvasculature and tissue perfusion by Kausik Basak, Pranab Kumar Dutta, Manjunatha Mahadevappa, , 2016
  • Basak K., Dey G. , Mahadevappa M. , Mandal M. , Sheet D. , Dutta P. K., Learning of speckle statistics for in vivo and noninvasive characterization of cutaneous wound regions using laser speckle contrast imaging, Microvascular research, 107, 6-16, 2016
  • Design and Development of a low cost biphasic charge-balanced Functional Electrical Stimulator and its Clinical Validation, Design and Development of a low cost biphasic charge-balanced Functional Electrical Stimulator and its Clinical Validation, C. Shendkar, P. K. Lenka, A. Biswas, R. Kumar, and M. Mahadevappa, Healthc. Technol. Lett. (IET-UK), 2015
  • Shripad Bhatlawande , Manjunatha Mahadevappa , Jayanta Mukherjee , Mukul Biswas, Debabrata Das, and Somedeb Gupta, Design, Development, and Clinical Evaluation of the Electronic Mobility Cane for Vision Rehabilitation, TRANSACTIONS ON NEURAL SYSTEMS AND REHABILITATION ENGINEERING, 2014
  • Sabut SK, Sikdar C, Kumar R, Mahadevappa M., Functional electrical stimulation of dorsiflexor muscle: effects on dorsiflexor strength, plantarflexor spasticity, and motor recovery in stroke patients, NeuroRehabilitation, 2012
  • D. Sheet, H. Garud, A. Suveer, J. Chatterjee and M. Mahadevappa, Brightness Preserving Dynamic Fuzzy Histogram Equalization, IEEE Trans. on Consumer Electronics, 2010

Projects

  • Actuation and Control System Development for Independent Movement of Prosthesis Arm for Respective Degree of Freedom of Joints
  • Exploring Deep Learning for Screening / Staging of Retinal Diseases Using Fundus and OCT Imaging
  • To Evaluate the Clinical Feasibility and Effect of Neuromuscular Electrical Stimulation (NMES) Therapy of Quadriceps (QF) and Tibialis Anterior (TA) Muscles on Improving GAIT and Functional Outcomes in Children with Spastic Cerebral Palsy (CP)
  • Biomedical robotics for neuro - controlled prosthesis
  • Research in Humanoid robotics
  • Haptic torch for mobility of visually impaired and blind people (SGFSS)
  • Centre of Excellence in robotics
  • Cuff-less estimation of blood pressure using photoplethysmography for early assessment of hypertension and cardiovascular disease in Rural Population

Patents

  • CHARGE BALANCED SELF ADJUSTING ELECTRICAL STIMULATOR FOR CORRECTING FOOT DROP PROBLEM
  • VENUCANE: An Electronic Travel Aid for Visually Impaired Blind People
  • Digital Microscopy Equipment With Image Acquisition, Image Analysis and Image Communication
  • Method and apparatus for enhancing representations of microcalcifications in a digital mammogram image

Research Group

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Amritha Abdul Salam
Ph.D
Research Scholars
Medical Image Processing
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Anup Kumar Roy
Ph.D
Research Scholars
Medical Embedded Systems
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Chiranjib Bhowmick
Ph.D
Research Scholars
Biomedical Signal and Image Processing
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Karri Karthik
Ph.D
Research Scholars
Optical Coherence Tomogram (OCT) image analysis for retinal disease detection/classification
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Nimmalapalli Gowtham Reddy
Ph.D
Research Scholars
Multi criteria decision making and its applications in health care
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Poulomi Pal
Ph.D
Research Scholars
Medical Instrumentation and Bio-Signal Processing
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Priti Hazra
Ph.D
Research Scholars
Biomedical Signal Processing
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Rupsha Mukhopadhyay
Ph.D
Research Scholars
Functional Electrical Stimulation for Stroke
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Sanjeev Kumar
Ph.D
Research Scholars
Medical Imaging and Image Processing
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Sharique Ali Asghar
Ph.D
Research Scholars
Energy Management System
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Shatakshi Singh
Ph.D
Research Scholars
Biomedical Signal and Image Processing
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Somaraju Boda
Ph.D
Research Scholars
Biomedical instrumentation and Signal processing
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Srideep Maity
Ph.D
Research Scholars
Medical Image processing
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Sudipta Ghosh
Ph.D
Research Scholars
Embedded Systems and Medical Instrumentation
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Thirumagal J
Ph.D
Research Scholars
Medical Image Processing