Publications and patents
For citation counts and the most current list, see
Google Scholar and
ORCID.
Bold: principal investigator · dotted underline: lab members
Journal articles29
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A robust, real-time telemetry protocol for miniaturized neural implants using off-the-shelf hardware
Elgohary M, Recine M, Wong J, Datta-Chaudhuri T
Bioelectronic Medicine 12(1):8, 2026
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Dynamic, minimally invasive electrical brain stimulation improves speech perception
Akkol S, Herrero JL, Espinal E, Markowitz N, Datta-Chaudhuri T, Mehta AD, Bickel S
Hearing Research 476:109637, 2026
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Control of spatiotemporal activation of organ-specific fibers in the swine vagus nerve by intermittent interferential current stimulation
Rossetti N, Song W, Schnepel P, Jayaprakash N, Koutsouras DA, Fichman M, Wong J, Levy T, Elgohary M, Qanud K, Giannotti A, Barbe MF, Chen FL, Langereis G, Datta-Chaudhuri T, Mihajlović V, Zanos S
Nature Communications 16(1):4419, 2025
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Vagus nerve stimulation: A targeted approach for reducing tissue-specific ischemic reperfusion injury
Singh P, Chaudhary M, Kazmi JS, Kuschner CE, Volpe BT, Datta-Chaudhuri T, Becker LB
Biomedicine & Pharmacotherapy 184:117898, 2025
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Organ- and function-specific anatomical organization of vagal fibers supports fascicular vagus nerve stimulation
Jayaprakash N, Song W, Toth V, Vardhan A, Levy T, Tomaio J, Qanud K, Mughrabi I, Chang YC, Rob M, Daytz A, Abbas A, Nassrallah Z, Volpe BT, Tracey KJ, Al-Abed Y, Datta-Chaudhuri T, Miller L, Barbe MF, Lee SC, Zanos TP, Zanos S
Brain Stimulation 16(2):484-506, 2023
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Voltammetry in the spleen assesses real-time immunomodulatory norepinephrine release elicited by autonomic neurostimulation
Mughrabi IT, Gerber M, Jayaprakash N, Palandira SP, Al-Abed Y, Datta-Chaudhuri T, Smith C, Pavlov VA, Zanos S
Journal of Neuroinflammation 20(1):236, 2023
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The Fifth Bioelectronic Medicine Summit: today's tools, tomorrow's therapies
Chang EH, Gabalski AH, Huerta TS, Datta-Chaudhuri T, Zanos TP, Zanos S, Grill WM, Tracey KJ, Al-Abed Y
Bioelectronic Medicine 9(1):21, 2023
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A fully implantable wireless bidirectional neuromodulation system for mice
Wright JP, Mughrabi IT, Wong J, Mathew J, Jayaprakash N, Crosfield C, Chang EH, Chavan SS, Tracey KJ, Pavlov VA, Al-Abed Y, Zanos TP, Zanos S, Datta-Chaudhuri T
Biosensors and Bioelectronics 200:113886, 2022
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kHz-frequency electrical stimulation selectively activates small, unmyelinated vagus afferents
Chang YC, Ahmed U, Jayaprakash N, Mughrabi I, Lin Q, Wu YC, Gerber M, Abbas A, Daytz A, Gabalski AH, Ashville J, Dokos S, Rieth L, Datta-Chaudhuri T, Tracey KJ, Guo T, Al-Abed Y, Zanos S
Brain Stimulation 15(6):1389-1404, 2022
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High-frequency electrical stimulation attenuates neuronal release of inflammatory mediators and ameliorates neuropathic pain
Yang H, Datta-Chaudhuri T, George SJ, Haider B, Wong J, Hepler TD, Andersson U, Brines M, Tracey KJ, Chavan SS
Bioelectronic Medicine 8(1):16, 2022
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Effect of uniform capacitively coupled electric fields on matrix metabolism of osteoarthritic cartilage
Noruzi K, Swami P, Frejo L, Wright J, Wong J, Grande D, Datta-Chaudhuri T
Bioelectronic Medicine 8(1):14, 2022
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Vagus nerve stimulation: a potential therapeutic role in childhood nephrotic syndrome?
Sethna CB, Merchant K, Zanos S, Deutschman CS, Datta-Chaudhuri T, Chavan S, Tracey KJ
American Journal of Nephrology 53(4):290-296, 2022
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Transcutaneous auricular vagus nerve stimulation (taVNS) for the treatment of pediatric nephrotic syndrome: a pilot study
Merchant K, Zanos S, Datta-Chaudhuri T, Deutschman CS, Sethna CB
Bioelectronic Medicine 8(1):1, 2022
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Closed-loop neuromodulation will increase the utility of mouse models in Bioelectronic Medicine
Datta-Chaudhuri T
Bioelectronic Medicine 7(1):10, 2021
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The Fourth Bioelectronic Medicine Summit "Technology Targeting Molecular Mechanisms": current progress, challenges, and charting the future
Datta-Chaudhuri T, Zanos T, Chang EH, Olofsson PS, Bickel S, Bouton C, et al., Tracey KJ
Bioelectronic Medicine 7(1):7, 2021
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Development and characterization of a chronic implant mouse model for vagus nerve stimulation
Mughrabi IT, Hickman J, Jayaprakash N, Thompson D, Ahmed U, Papadoyannis ES, et al., Datta-Chaudhuri T, et al., Zanos S
eLife 10:e61270, 2021
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Transcutaneous auricular vagus nerve stimulation (tAVNS) delivered during upper limb interactive robotic training demonstrates novel antagonist control for reaching movements following stroke
Chang JL, Coggins AN, Saul M, Paget-Blanc A, Straka M, Wright J, Datta-Chaudhuri T, Zanos S, Volpe BT
Frontiers in Neuroscience 15:767302, 2021
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Implant- and anesthesia-related factors affecting cardiopulmonary threshold intensities for vagus nerve stimulation
Ahmed U, Chang YC, Lopez MF, Wong J, Datta-Chaudhuri T, Rieth L, Al-Abed Y, Zanos S
Journal of Neural Engineering 18(4):046075, 2021
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Electrochemical immunosensing of interleukin-6 in human cerebrospinal fluid and human serum as an early biomarker for traumatic brain injury
Oh C, Park B, Li C, Maldarelli C, Schaefer JL, Datta-Chaudhuri T, Bohn PW
ACS Measurement Science Au 1(2):65-73, 2021
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Transcutaneous auricular vagus nerve stimulation reduces pain and fatigue in patients with systemic lupus erythematosus: a randomised, double-blind, sham-controlled pilot trial
Aranow C, Atish-Fregoso Y, Lesser M, Mackay M, Anderson E, Chavan S, Zanos TP, Datta-Chaudhuri T, Bouton C, Tracey KJ, Diamond B
Annals of the Rheumatic Diseases 80(2):203-208, 2021
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Ultrasound powered piezoelectric neurostimulation devices: a commentary
Sun T, Wright J, Datta-Chaudhuri T
Bioelectronic Medicine 6:16, 2020
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Specific vagus nerve stimulation parameters alter serum cytokine levels in the absence of inflammation
Tsaava T, Datta-Chaudhuri T, Addorisio ME, Masi EB, Silverman HA, Newman JE, Imperato GH, Bouton C, Tracey KJ, Chavan SS, Chang EH
Bioelectronic Medicine 6:8, 2020
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Quantitative estimation of nerve fiber engagement by vagus nerve stimulation using physiological markers
Chang YC, Cracchiolo M, Ahmed U, Mughrabi I, Gabalski A, Daytz A, Rieth L, Becker L, Datta-Chaudhuri T, Al-Abed Y, Zanos TP, Zanos S
Brain Stimulation 13(6):1617-1630, 2020
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Anodal block permits directional vagus nerve stimulation
Ahmed U, Chang YC, Cracchiolo M, Lopez MF, Tomaio JN, Datta-Chaudhuri T, Zanos TP, Rieth L, Al-Abed Y, Zanos S
Scientific Reports 10:9221, 2020
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Auricular neural stimulation as a new non-invasive treatment for opioid detoxification
Qureshi IS, Datta-Chaudhuri T, Tracey KJ, Pavlov VA, Chen ACH
Bioelectronic Medicine 6:7, 2020
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System-on-chip considerations for heterogeneous integration of CMOS and fluidic bio-interfaces
Datta-Chaudhuri T, Smela E, Abshire PA
IEEE Transactions on Biomedical Circuits and Systems 10(6):1129-1142, 2016
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Low temperature co-fired ceramic packaging of CMOS capacitive sensor chip towards cell viability monitoring
Halonen N, Kilpijärvi J, Sobocinski M, Datta-Chaudhuri T, Hassinen A, Prakash SB, Möller P, Abshire P, Kellokumpu S, Lloyd Spetz A
Beilstein Journal of Nanotechnology 7(1):1871-1877, 2016
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Olfaction on a chip
Datta-Chaudhuri T, Araneda RC, Abshire P, Smela E
Sensors and Actuators B: Chemical 235:74-78, 2016
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Packaging commercial CMOS chips for lab on a chip integration
Datta-Chaudhuri T, Abshire P, Smela E
Lab on a Chip 14(10):1753-1766, 2014
Conference papers13
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A low-power implantable neurostimulator for small rodents with functional validation
Wright J, Wong J, Chang YC, Ahmed U, Zanos S, Datta-Chaudhuri T
IEEE Biomedical Circuits and Systems Conference (BioCAS), Nara, Japan, pp. 1-4, 2019
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Extraction of evoked compound nerve action potentials from vagus nerve recordings
Chang YC, Ahmed U, Tomaio JN, Rieth L, Datta-Chaudhuri T, Zanos S
41st Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), Berlin, Germany, pp. 6278-6281, 2019
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Characterization of an active micro-electrode array with spike detection and asynchronous readout
Senevirathna B, Castro A, Datta-Chaudhuri T, Smela E, Abshire P
IEEE 60th International Midwest Symposium on Circuits and Systems (MWSCAS), pp. 627-630, 2017
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A scalable 20×20 fully asynchronous SPAD-based imaging sensor with AER readout
Berkovich A, Datta-Chaudhuri T, Abshire P
IEEE International Symposium on Circuits and Systems (ISCAS), pp. 1110-1113, 2015
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Low temperature co-fired ceramic package for lab-on-CMOS applied in cell viability monitoring
Halonen N, Kilpijärvi J, Sobocinski M, Datta-Chaudhuri T, Hassinen A, Prakash SB, Möller P, Abshire P, Smela E, Kellokumpu S, Lloyd Spetz A
Procedia Engineering 120:1079-1082 (Eurosensors 2015), 2015
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An active micro-electrode array with spike detection and asynchronous readout
Datta-Chaudhuri T, Senevirathna B, Castro A, Smela E, Abshire P
IEEE Biomedical Circuits and Systems Conference (BioCAS), pp. 588-591, 2014
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System-on-chip considerations for CMOS fluidic and biointerface applications
Datta-Chaudhuri T, Abshire P, Smela E
IEEE International Symposium on Circuits and Systems (ISCAS), pp. 2009-2012, 2014
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High resolution capacitance sensor array for real-time monitoring of cell viability
Naviasky E, Datta-Chaudhuri T, Abshire P
IEEE International Symposium on Circuits and Systems (ISCAS), pp. 634-637, 2014
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Floating-gate capacitance sensor array for cell viability monitoring
Datta T, Naviasky E, Abshire P
IEEE Biomedical Circuits and Systems Conference (BioCAS), pp. 65-68, 2013
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Confession session: Learning from others' mistakes
Abshire P, Bermak A, Berner R, Cauwenberghs G, Chen S, Christen JB, Constandinou T, Culurciello E, Dandin M, Datta T, Delbruck T, et al.
IEEE International Symposium on Circuits and Systems (ISCAS), pp. 1149-1162, 2011
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Towards a legged chip
Datta T, Abshire P, Turner JA
IEEE International Symposium on Circuits and Systems (ISCAS), pp. 2501-2504, 2011
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Mismatch compensation of a subthreshold CMOS current normalizer
Sander D, Datta T, Abshire P
IEEE International Symposium on Circuits and Systems (ISCAS), pp. 3409-3412, 2010
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Mismatch compensation of CMOS current mirrors using floating-gate transistors
Datta T, Abshire P
IEEE International Symposium on Circuits and Systems (ISCAS), pp. 1823-1826, 2009
Conference abstracts12
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Spatiotemporal activation of vagus nerve fibers via intermittent interferential current stimulation
Schnepel P, Rossetti N, Song W, Jayaprakash N, Koutsouras D, et al.
Neuromodulation: Technology at the Neural Interface 29(1):S94, 2026
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Development of polymer-based packaging for chronic wireless neuromodulation implants in mice
Wong J, Mughrabi I, Hepler T, Elgohary M, Recine M, Datta-Chaudhuri T
Bioelectronic Medicine 11(Suppl 1):P12 (6th Bioelectronic Medicine Summit), 2025
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Data loss mitigation techniques for wireless streaming of neural recording data from an implanted device
Elgohary M, Recine M, Wong J, Datta-Chaudhuri T
Bioelectronic Medicine 11(Suppl 1):P14 (6th Bioelectronic Medicine Summit), 2025
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Selective peripheral nerve stimulation: computational models to the rescue
Rossetti N, Schnepel P, Mihajlović V, Song W, Datta-Chaudhuri T, Zanos S
Bioelectronic Medicine 11(Suppl 1):P2 (6th Bioelectronic Medicine Summit), 2025
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Starting phase of kHz stimulation bursts impacts spatio-temporal pattern of fiber activation in porcine vagus nerve
Rossetti N, Song W, Schnepel P, Jayaprakash N, Wong J, Elgohary M, et al.
Brain Stimulation, 2025
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High frequency electrical stimulation reduces neuronal HMGB1 release
Yang H, Datta-Chaudhuri T, George SJ, Haider B, Wong J, Tracey KJ, et al.
The Journal of Immunology 208(Suppl 1):52.13, 2022
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Transcutaneous auricular vagus nerve stimulation (taVNS) for the treatment of pediatric nephrotic syndrome (NS)
Sethna CB, Merchant K, Zanos S, Datta-Chaudhuri T, Singer P, et al.
Journal of the American Society of Nephrology 32(10S):513, 2021
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Engaging the cholinergic anti-inflammatory pathway by stimulating the vagus nerve reduces pain and fatigue in patients with SLE
Aranow C, Lesser M, Mackay M, Anderson E, Zanos TP, Datta-Chaudhuri T, Bouton C, Tracey KJ, Diamond B
Arthritis & Rheumatology 70 (suppl), ACR/ARHP Annual Meeting, 2018
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Specific cytokine responses induced by selective vagus nerve stimulation
Tsaava T, Datta-Chaudhuri T, Addorisio ME, Newman JE, Bouton C, Tracey KJ, Chavan SS
Shock 49(6):126-127, 2018
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Selective electrical stimulation of vagus nerve induces specific cytokine response
Datta-Chaudhuri T, Tsaava T, Addorisio M, Bouton C, Tracey KJ, Chavan SS
The Journal of Immunology 200(Suppl 1):43.11, 2018
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Cell clinic; CMOS chip measuring capacitance as indication of cell adhesion applied in evaluating the cytotoxicity of nanomaterials
Halonen N, Datta-Chaudhuri T, Hassinen A, Prakash SB, Möller P, Abshire P, Smela E, Kellokumpu S, Lloyd Spetz A
Eurosensors 2014, Brescia, Italy, 2014
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CMOS-based capacitance measurements applied in evaluating cell viability and cytotoxicity of nanomaterials
Halonen N, Datta-Chaudhuri T, Hassinen A, Prakash SB, Möller P, Abshire P, Smela E, Kellokumpu S, Lloyd Spetz A
E-MRS 2014 Spring Meeting, Lille, France, 2014
Thesis1
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Integration of CMOS technology into lab-on-chip systems applied to the development of a bioelectronic nose
Datta-Chaudhuri TB
PhD dissertation, University of Maryland, College Park, 2015
Patents5
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Systems and methods for closed-loop neuromodulation using multiple biological signals
A fully implantable system that senses several biological signals, such as neural activity, ECG, pressure and motion, and adjusts nerve stimulation on its own.
Datta-Chaudhuri TB
The Feinstein Institutes for Medical Research
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Apparatus for rapid detection of bacteria in fluids
A disposable two-chamber cartridge and reader that removes the patient's own ATP, then detects bacterial ATP as light.
Datta-Chaudhuri T, Danoff JR, Goldstein T, Asnis SE
The Feinstein Institutes for Medical Research
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Implantable neuromodulation system for closed-loop stimulation and recording simultaneously at multiple brain sites
An implantable system that records and stimulates at several brain sites at the same time, for closed-loop neuromodulation.
Pannu SS, Shah KG, Chen S, Crosetti M, Datta-Chaudhuri TB, Felix SH, Ivanovskaya AN, Jones J, Lee KY, Patra S, Tolosa V, Tooker AC
Lawrence Livermore National Security, LLC
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Air filtering surgical helmet
A helmet worn under a surgical gown that delivers filtered air from a waist-worn unit to the wearer's face.
Asnis S, Danoff J, Datta-Chaudhuri T, Goldstein T
Northwell Health, Inc.
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Auricular stimulation device, system and methods of use
An over-the-ear stimulator whose two offset electrodes rest on skin supplied by the auricular branch of the vagus nerve.
Beamer P, Bouton CE, Datta-Chaudhuri TB, Martin A, Montalbano C, Montalbano G, Zanos TP
The Feinstein Institutes for Medical Research