Articles producció científicaQuímica Física i Inorgànica

Interfacing with the Brain: How Nanotechnology Can Contribute

  • Datos identificativos

    Identificador:  imarina:9452333
    Autores:  Ahmed, AAA; Alegret, N; Almeida, B; Alvarez-Puebla, R; Andrews, AM; Ballerini, L; Barrios-Capuchino, JJ; Becker, C; Blick, RH; Bonakdar, S; Chakraborty, I; Chen, XD; Cheon, J; Chilla, G; Conceicao, ALC; Delehanty, J; Dulle, M; Efros, AL; Epple, M; Fedyk, M; Feliu, N; Feng, M; Fernández-Chacón, R; Fernandez-Cuesta, I; Fertig, N; Förster, S; Garrido, JA; George, M; Guse, AH; Hampp, N; Harberts, J; Han, JL; Heekeren, HR; Hofmann, UG; Holzapfel, M; Hosseinkazemi, H; Huang, YL; Huber, P; Hyeon, T; Ingebrandt, S; Ienca, M; Iske, A; Kang, YA; Kasieczka, G; Kim, DH; Kostarelos, K; Lee, JH; Lin, KW; Liu, SJ; Liu, X; Liu, Y; Lohr, C; Mailänder, V; Maffongelli, L; Megahed, S; Mews, A; Mutas, M; Nack, L; Nakatsuka, N; Oertner, TG; Offenhäusser, A; Oheim, M; Otange, B; Otto, F; Patrono, E; Peng, B; Picchiotti, A; Pierini, F; Pötter-Nerger, M; Pozzi, M; Pralle, A; Prato, M; Qi, B; Ramos-Cabrer, P; Genger, UR; Ritter, N; Rittner, M; Roy, S; Santoro, F; Schuck, NW; Schulz, F; Seker, E; Skiba, M; Sosniok, M; Stephan, H; Wang, RX; Wang, T; Wegner, KD; Weiss, PS; Xu, M; Yang, CX; Zargarian, SS; Zeng, Y; Zhou, YF; Zhu, DC; Zierold, R; Parak, WJ
    Resumen:
    Interfacing artificial devices with the human brain is the central goal of neurotechnology. Yet, our imaginations are often limited by currently available paradigms and technologies. Suggestions for brain-machine interfaces have changed over time, along with the available technology. Mechanical levers and cable winches were used to move parts of the brain during the mechanical age. Sophisticated electronic wiring and remote control have arisen during the electronic age, ultimately leading to plug-and-play computer interfaces. Nonetheless, our brains are so complex that these visions, until recently, largely remained unreachable dreams. The general problem, thus far, is that most of our technology is mechanically and/or electrically engineered, whereas the brain is a living, dynamic entity. As a result, these worlds are difficult to interface with one another. Nanotechnology, which encompasses engineered solid-state objects and integrated circuits, excels at small length scales of single to a few hundred nanometers and, thus, matches the sizes of biomolecules, biomolecular assemblies, and parts of cells. Consequently, we envision nanomaterials and nanotools as opportunities to interface with the brain in alternative ways. Here, we review the existing literature on the use of nanotechnology in brain-machine interfaces and look forward in discussing perspectives and limitations based on the authors' expertise across a range of complementary disciplines-from neuroscience, engineering, physics, and chemistry to biology and medicine, computer science and mathematics, and social science and jurisprudence. We focus on nanotechnology but also include information from related fields when useful and complementary.
  • Otros:

    Enlace a la fuente original: https://pubs.acs.org/doi/10.1021/acsnano.4c10525
    Referencia de l'ítem segons les normes APA: Ahmed, AAA; Alegret, N; Almeida, B; Alvarez-Puebla, R; Andrews, AM; Ballerini, L; Barrios-Capuchino, JJ; Becker, C; Blick, RH; Bonakdar, S; Chakrabort (2025). Interfacing with the Brain: How Nanotechnology Can Contribute. Acs Nano, 19(11), 10630-10717. DOI: 10.1021/acsnano.4c10525
    Referencia al articulo segun fuente origial: Acs Nano. 19 (11): 10630-10717
    DOI del artículo: 10.1021/acsnano.4c10525
    Año de publicación de la revista: 2025-03-10
    Entidad: Universitat Rovira i Virgili
    Versión del articulo depositado: info:eu-repo/semantics/publishedVersion
    Fecha de alta del registro: 2026-02-13
    Autor/es de la URV: Alvarez Puebla, Ramon Angel
    Departamento: Química Física i Inorgànica
    URL Documento de licencia: https://repositori.urv.cat/ca/proteccio-de-dades/
    Tipo de publicación: Journal Publications
    Autor según el artículo: Ahmed, AAA; Alegret, N; Almeida, B; Alvarez-Puebla, R; Andrews, AM; Ballerini, L; Barrios-Capuchino, JJ; Becker, C; Blick, RH; Bonakdar, S; Chakraborty, I; Chen, XD; Cheon, J; Chilla, G; Conceicao, ALC; Delehanty, J; Dulle, M; Efros, AL; Epple, M; Fedyk, M; Feliu, N; Feng, M; Fernández-Chacón, R; Fernandez-Cuesta, I; Fertig, N; Förster, S; Garrido, JA; George, M; Guse, AH; Hampp, N; Harberts, J; Han, JL; Heekeren, HR; Hofmann, UG; Holzapfel, M; Hosseinkazemi, H; Huang, YL; Huber, P; Hyeon, T; Ingebrandt, S; Ienca, M; Iske, A; Kang, YA; Kasieczka, G; Kim, DH; Kostarelos, K; Lee, JH; Lin, KW; Liu, SJ; Liu, X; Liu, Y; Lohr, C; Mailänder, V; Maffongelli, L; Megahed, S; Mews, A; Mutas, M; Nack, L; Nakatsuka, N; Oertner, TG; Offenhäusser, A; Oheim, M; Otange, B; Otto, F; Patrono, E; Peng, B; Picchiotti, A; Pierini, F; Pötter-Nerger, M; Pozzi, M; Pralle, A; Prato, M; Qi, B; Ramos-Cabrer, P; Genger, UR; Ritter, N; Rittner, M; Roy, S; Santoro, F; Schuck, NW; Schulz, F; Seker, E; Skiba, M; Sosniok, M; Stephan, H; Wang, RX; Wang, T; Wegner, KD; Weiss, PS; Xu, M; Yang, CX; Zargarian, SS; Zeng, Y; Zhou, YF; Zhu, DC; Zierold, R; Parak, WJ
    Acceso a la licencia de uso: https://creativecommons.org/licenses/by/3.0/es/
    Áreas temáticas: Astronomia / física, Biotecnología, Chemistry, multidisciplinary, Chemistry, physical, Ciências biológicas i, Ciências biológicas ii, Engenharias iii, Engenharias iv, Engineering (all), Engineering (miscellaneous), Farmacia, General engineering, General materials science, General physics and astronomy, Interdisciplinar, Materiais, Materials science (all), Materials science (miscellaneous), Materials science, multidisciplinary, Medicina i, Nanoscience & nanotechnology, Nanoscience and nanotechnology, Odontología, Physics and astronomy (all), Physics and astronomy (miscellaneous), Química
    Direcció de correo del autor: ramon.alvarez@urv.cat
  • Palabras clave:

    Brain-machineinterfaces
    Brain-on-a-chip
    Brain−machine interfaces
    Carbon-nanotube
    Control of ion channels
    Deep brain stimulation
    Deepbrain stimulatio
    Electrode arrays
    Extracellular recordings
    Field-effect transistors
    Functional mri
    In-vitro models
    Long-term
    Nanoneuro interface
    Nanostructured interface
    Nanostructuredinterface
    Nanowire array
    Neuro-implants
    Neuronal communication
    Phase molecular recognition
    Proof-of-concept
    Quantum dots
    Up-conversion nanoparticles
    Chemistry
    Multidisciplinary
    Physical
    Engineering (Miscellaneous)
    Materials Science (Miscellaneous)
    Materials Science
    Nanoscience & Nanotechnology
    Nanoscience and Nanotechnology
    Physics and Astronomy (Miscellaneous)
    Astronomia / física
    Biotecnología
    Ciências biológicas i
    Ciências biológicas ii
    Engenharias iii
    Engenharias iv
    Engineering (all)
    Farmacia
    General engineering
    General materials science
    General physics and astronomy
    Interdisciplinar
    Materiais
    Materials science (all)
    Medicina i
    Odontología
    Physics and astronomy (all)
    Química
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