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Valeria Zampini

Explore the profile of Valeria Zampini including associated specialties, affiliations and a list of published articles. Areas
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Articles 22
Citations 670
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Recent Articles
1.
Accanto N, Blot F, Lorca-Camara A, Zampini V, Bui F, Tourain C, et al.
Neuron . 2022 Nov; 111(2):176-189.e6. PMID: 36395773
We developed a flexible two-photon microendoscope (2P-FENDO) capable of all-optical brain investigation at near cellular resolution in freely moving mice. The system performs fast two-photon (2P) functional imaging and 2P...
2.
Spampinato G, Ronzitti E, Zampini V, Ferrari U, Trapani F, Khabou H, et al.
Cell Rep Methods . 2022 Sep; 2(8):100268. PMID: 36046629
We developed a multi-unit microscope for all-optical inter-layers circuits interrogation. The system performs two-photon (2P) functional imaging and 2P multiplexed holographic optogenetics at axially distinct planes. We demonstrated the capability...
3.
Linghu C, Chen I, Tanese D, Zampini V, Shemesh O
Methods Mol Biol . 2022 Jul; 2501:229-257. PMID: 35857231
Optogenetics allows control of neural activity in genetically targeted neuron populations by light. Optogenetic control of individual neurons in neural circuits would enable powerful, causal investigations of neural connectivity and...
4.
Ronzitti E, Zampini V, Emiliani V
EMBO J . 2018 Dec; 37(24). PMID: 30509969
No abstract available.
5.
Shemesh O, Tanese D, Zampini V, Linghu C, Piatkevich K, Ronzitti E, et al.
Nat Neurosci . 2018 Mar; 21(6):896. PMID: 29549318
In the supplementary information originally posted online, Supplementary Tables 1-5 and the Supplementary Note were missing. The error has been corrected online.
6.
Shemesh O, Tanese D, Zampini V, Linghu C, Piatkevich K, Ronzitti E, et al.
Nat Neurosci . 2017 Nov; 20(12):1796-1806. PMID: 29184208
Optogenetic control of individual neurons with high temporal precision within intact mammalian brain circuitry would enable powerful explorations of how neural circuits operate. Two-photon computer-generated holography enables precise sculpting of...
7.
Filipis L, Ait Ouares K, Moreau P, Tanese D, Zampini V, Latini A, et al.
J Biophotonics . 2017 Nov; 11(3). PMID: 29165917
In brain slices, resolving fast Ca fluorescence signals from submicron structures is typically achieved using 2-photon or confocal scanning microscopy, an approach that limits the number of scanned points. The...
8.
Ronzitti E, Conti R, Zampini V, Tanese D, Foust A, Klapoetke N, et al.
J Neurosci . 2017 Oct; 37(44):10679-10689. PMID: 28972125
Optogenetic neuronal network manipulation promises to unravel a long-standing mystery in neuroscience: how does microcircuit activity relate causally to behavioral and pathological states? The challenge to evoke spikes with high...
9.
Tanese D, Weng J, Zampini V, de Sars V, Canepari M, Rozsa B, et al.
Neurophotonics . 2017 May; 4(3):031211. PMID: 28523281
Electrical properties of neuronal processes are extraordinarily complex, dynamic, and, in the general case, impossible to predict in the absence of detailed measurements. To obtain such a measurement one would,...
10.
Zampini V, Liu J, Diana M, Maldonado P, Brunel N, Dieudonne S
Elife . 2016 Sep; 5. PMID: 27642013
Synaptic currents display a large degree of heterogeneity of their temporal characteristics, but the functional role of such heterogeneities remains unknown. We investigated in rat cerebellar slices synaptic currents in...