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Polina Anikeeva

Allen Institute for Brain Science · US
Area of research
Cellular and Molecular Neuroscience · Cognitive Neuroscience
Research interest
Research interests include Neuroscience and Neural Engineering, Photoreceptor and optogenetics research, Neural dynamics and brain function, and Quantum Dots Synthesis And Properties.
h-index
51
citations
12,859
works
152
NIH funding
primary concept
Biology
email

Recent publications

A gut sense for a microbial pattern regulates feeding
Nature 2025cited by 27position: middledoi
Multifunctional bioelectronics for brain–body circuits
Nature Reviews Bioengineering 2025cited by 23position: lastdoi
Magnetoelectric nanodiscs enable wireless transgene-free neuromodulation
Nature Nanotechnology 2024cited by 63position: lastdoi
Multifunctional microelectronic fibers enable wireless modulation of gut and brain neural circuits
Nature Biotechnology 2023cited by 134position: lastdoi
Magnetically Actuated Fiber‐Based Soft Robots
Advanced Materials 2023cited by 109position: lastdoi
Fatigue-resistant hydrogel optical fibers enable peripheral nerve optogenetics during locomotion
Nature Methods 2023cited by 93position: middledoi
The preference for sugar over sweetener depends on a gut sensor cell
Nature Neuroscience 2022cited by 178position: middledoi
Thermally Drawn Highly Conductive Fibers with Controlled Elasticity
Advanced Materials 2022cited by 63position: middledoi
Modulating cell signalling in vivo with magnetic nanotransducers
Nature Reviews Methods Primers 2022cited by 38position: lastdoi
Magnetothermal Modulation of Calcium‐Dependent Nerve Growth
Advanced Functional Materials 2022cited by 37position: lastdoi
Building a culture of responsible neurotech: Neuroethics as socio-technical challenges
Neuron 2022cited by 19position: middledoi
Adaptive and multifunctional hydrogel hybrid probes for long-term sensing and modulation of neural activity
Nature Communications 2021cited by 290position: lastdoi
Imaging phonon-mediated hydrodynamic flow in WTe2
Nature Physics 2021cited by 148position: middledoi
Magnetothermal nanoparticle technology alleviates parkinsonian-like symptoms in mice
Nature Communications 2021cited by 122position: middledoi
Functional Skeletal Muscle Regeneration with Thermally Drawn Porous Fibers and Reprogrammed Muscle Progenitors for Volumetric Muscle Injury
Advanced Materials 2021cited by 90position: middledoi
Fiber-Based Electrochemical Biosensors for Monitoring pH and Transient Neurometabolic Lactate
Analytical Chemistry 2021cited by 70position: middledoi
Customizing MRI‐Compatible Multifunctional Neural Interfaces through Fiber Drawing
Advanced Functional Materials 2021cited by 44position: lastdoi
Functionally Distinct Neuronal Ensembles within the Memory Engram
Cell 2020cited by 289position: middledoi
Magnetic Vortex Nanodiscs Enable Remote Magnetomechanical Neural Stimulation
ACS Nano 2020cited by 145position: lastdoi
In situ electrochemical generation of nitric oxide for neuronal modulation
Nature Nanotechnology 2020cited by 117position: lastdoi
Transgene-free remote magnetothermal regulation of adrenal hormones
Science Advances 2020cited by 93position: lastdoi
Magnetothermal Multiplexing for Selective Remote Control of Cell Signaling
Advanced Functional Materials 2020cited by 61position: lastdoi
Electron hydrodynamics in anisotropic materials
Nature Communications 2020cited by 60position: middledoi
Emerging Frontier of Peripheral Nerve and Organ Interfaces
Neuron 2020cited by 59position: lastdoi
Strain-programmable fiber-based artificial muscle
Science 2019cited by 455position: lastdoi
Next-generation interfaces for studying neural function
Nature Biotechnology 2019cited by 240position: lastdoi
Flexible fiber-based optoelectronics for neural interfaces
Chemical Society Reviews 2019cited by 142position: lastdoi
Remotely controlled chemomagnetic modulation of targeted neural circuits
Nature Nanotechnology 2019cited by 115position: lastdoi
Scalable Fabrication of Porous Microchannel Nerve Guidance Scaffolds with Complex Geometries
Advanced Materials 2019cited by 82position: lastdoi
Magnetic Strategies for Nervous System Control
Annual Review of Neuroscience 2019cited by 77position: lastdoi

Grants

CAREER: Optoelectronic neural scaffolds: materials platform for investigation and control of neuronal activity and development
NSF1253890$450,0002013–2018PIRePORTER

Frequent collaborators

Yoel Fink · Massachusetts Institute of Technology13 papers (2015–2023)Seongjun Park · Seoul National University13 papers (2015–2022)Dekel Rosenfeld · Massachusetts Institute of Technology9 papers (2020–2023)Michael G. Christiansen · Massachusetts Institute of Technology9 papers (2013–2021)Atharva Sahasrabudhe · Allen Institute for Brain Science9 papers (2020–2025)Andrés Canales · Massachusetts Institute of Technology7 papers (2014–2021)Georgios Varnavides · Massachusetts Institute of Technology7 papers (2019–2021)Ritchie Chen · University of California, San Francisco7 papers (2013–2019)Po‐Han Chiang · Massachusetts Institute of Technology7 papers (2019–2021)Florian Koehler · Massachusetts Institute of Technology6 papers (2020–2024)Siyuan Rao · Binghamton University6 papers (2017–2023)Gabriel Loke · National University of Singapore5 papers (2019–2023)Danijela Gregureć · Massachusetts Institute of Technology5 papers (2020–2024)Alexander W. Senko · Massachusetts Institute of Technology4 papers (2019–2020)Marc‐Joseph Antonini · Massachusetts Institute of Technology4 papers (2019–2023)Xiaoting Jia · Massachusetts Institute of Technology4 papers (2015–2017)Junsang Moon · Massachusetts Institute of Technology4 papers (2019–2021)Chi Lu · Massachusetts Institute of Technology4 papers (2014–2017)Ryan A. Koppes · Massachusetts Institute of Technology4 papers (2014–2015)Anthony Tabet · Massachusetts Institute of Technology3 papers (2021–2024)