83 publications found

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  • 2017
    *Crepaldi M.iit , Angotzi G.N.iit , Maviglia A.iit , *Berdondini L.iit

    A 1 Gpps asynchronous logic OOK IR-UWB transmitter based on master-slave PLL synthesis

    50th IEEE International Symposium of Circuits and Systems
    Conference Paper
  • 2017
    *Angotzi G.N.iit , Malerba M.iit , Maccione A.iit , Boi F.iit , Crepaldi M.iit , *Berdondini L.iit

    A high temporal resolution multiscale recording system for in vivo neural studies

    50th IEEE International Symposium of Circuits and Systems
    Conference Paper
  • 2017
    *Barca-Mayo O.iit , Pons-Espinal M.iit , Follert P.iit , Armirotti A.iit , Berdondini L.iit , *De Pietri Tonelli D.iit

    Astrocyte deletion of Bmal1 alters daily locomotor activity and cognitive functions via GABA signalling

    Nature Communications, vol. 8
    Article
  • 2017
    *Amin H.iit , Nieus T.iit , Lonardoni D.iit , Maccione A.iit , Berdondini L.iit

    High-resolution bioelectrical imaging of Aβ-induced network dysfunction on CMOS-MEAs for neurotoxicity and rescue studies

    Scientific Reports, vol. 7, (no. 1)
    Article
  • 2017
    Dipalo M.iit , Amin H.iit , Lovato L.iit , Moia F.iit , Caprettini V.iit , Messina G.C.iit , Tantussi F.iit , Berdondini L.iit , *De Angelis F.iit

    Intracellular and Extracellular Recording of Spontaneous Action Potentials in Mammalian Neurons and Cardiac Cells with 3D Plasmonic Nanoelectrodes

    Nano Letters, vol. 17, (no. 6), pp. 3932-3939
    Article
  • 2017
    *Lonardoni D.iit , Amin H.iit , Di Marco S.iit , Maccione A.iit , *Berdondini L.iit , *Nieus T.iit

    Recurrently connected and localized neuronal communities initiate coordinated spontaneous activity in neuronal networks

    PLoS Computational Biology, vol. 13, (no. 7)
    Article
  • 2017
    *Dante S.iit , Petrelli A.iit , Petrini E.M.iit , Marotta R.iit , Maccione A.iit , Alabastri A.iit , Quarta A.iit , De Donato F.iit , Ravasenga T.iit , Sathya A.iit , Cingolani R.iit , Proietti Zaccaria R.iit , Berdondini L.iit , Barberis A.iit , *Pellegrino T.iit

    Selective Targeting of Neurons with Inorganic Nanoparticles: Revealing the Crucial Role of Nanoparticle Surface Charge

    ACS Nano, vol. 11, (no. 7), pp. 6630-6640
    Article
  • 2017
    Hilgen G. , Sorbaro M. , Pirmoradian S. , Muthmann J.-O. , Kepiro I.E.iit , Ullo S.iit , Ramirez C.J. , Puente Encinas A. , Maccione A.iit , Berdondini L.iit , Murino V.iit , Sona D.iit , Cella Zanacchi F.iit , Sernagor E. , *Hennig M.H.

    Unsupervised Spike Sorting for Large-Scale, High-Density Multielectrode Arrays

    Cell Reports, vol. 18, (no. 10), pp. 2521-2532
    Article
  • 2016
    *Amin H.iit , Maccione A.iit , Marinaro F.iit , Zordan S.iit , Nieus T.iit , Berdondini L.iit

    Electrical responses and spontaneous activity of human iPS-derived neuronal networks characterized for 3-month culture with 4096-electrode arrays

    Frontiers in Neuroscience, vol. 10, (no. MAR)
    Article
  • 2016
    *Portelli G. , Barrett J.M. , Hilgen G. , Masquelier T. , Maccione A.iit , Di Marco S.iit , Berdondini L.iit , Kornprobst P. , Sernagor E.

    Rank order coding: A retinal information decoding strategy revealed by large-scale multielectrode array retinal recordings

    eNeuro, vol. 3, (no. 3), pp. 844-853
    Article
  • 2016
    *Mescola A.iit , Canale C.iit , Prato M.iit , Diaspro A.iit , Berdondini L.iit , MacCione A.iit , Dante S.iit

    Specific neuron placement on gold and silicon nitride-patterned substrates through a two-step functionalization method

    Langmuir, vol. 32, (no. 25), pp. 6319-6327
    Article
  • 2015
    Dipalo M.iit , Messina G.C.iit , Amin H.iit , La Rocca R.iit , Shalabaeva V.iit , Simi A.iit , Maccione A.iit , Zilio P.iit , *Berdondini L.iit , *De Angelis F.iit

    3D plasmonic nanoantennas integrated with MEA biosensors

    Nanoscale, vol. 7, (no. 8), pp. 3703-3711
    Article
  • 2015
    *Angotzi G.N.iit , Malerba M.iit , Zucca S.iit , Berdondini L.iit

    A 512-channels, whole array readout, CMOS implantable probe for acute recordings from the brain

    Annual International Conference of the IEEE Engineering in Medicine and Biology - Proceedings, vol. 2015-November, pp. 877-880
    Conference Paper
  • 2015
    *Angotzi G.N.iit , Berdondini L.iit

    A low-power, low-area modular architecture for high density neural probes

    International IEEE/EMBS Conference on Neural Engineering, NER, vol. 2015-July, pp. 521-524
    Conference Paper
  • 2015
    *Zordan S.iit , Zanotto M.iit , Nieus T.iit , Di Marco S.iit , Amin H.iit , Maccione A.iit , Berdondini L.iit

    A scalable high performance client/server framework to manage and analyze high dimensional datasets recorded by 4096 CMOS-MEAs

    International IEEE/EMBS Conference on Neural Engineering, NER, vol. 2015-July, pp. 968-971
    Conference Paper
  • 2015
    *Ullo S.iit , Murino V.iit , Maccione A.iit , Berdondini L.iit , Sona D.iit

    Bridging the gap in connectomic studies: A particle filtering framework for estimating structural connectivity at network scale

    Medical Image Analysis, vol. 21, (no. 1), pp. 1-14
    Article
  • 2015
    Bosi S. , Rauti R. , Laishram J. , Turco A. , Lonardoni D.iit , Nieus T.iit , *Prato M. , *Scaini D. , *Ballerini L.

    From 2D to 3D: Novel nanostructured scaffolds to investigate signalling in reconstructed neuronal networks

    Scientific Reports, vol. 5
    Article
  • 2015
    *Lonardoni D.iit , Di Marco S.iit , Amin H.iit , Maccione A.iit , Berdondini L.iit , Nieus T.iit

    High-density MEA recordings unveil the dynamics of bursting events in Cell Cultures

    Annual International Conference of the IEEE Engineering in Medicine and Biology - Proceedings, vol. 2015-November, pp. 3763-3766
    Conference Paper
  • 2015
    *Amin H.iit , Maccione A.iit , Zordan S.iit , Nieus T.iit , Berdondini L.iit

    High-density MEAs reveal lognormal firing patterns in neuronal networks for short and long term recordings

    International IEEE/EMBS Conference on Neural Engineering, NER, vol. 2015-July, pp. 1000-1003
    Conference Paper
  • 2015
    Nieus T.iit , Di Marco S.iit , Maccione A.iit , Amin H.iit , *Berdondini L.iit

    Investigating cell culture dynamics combining high density recordings with dimensional reduction techniques

    Annual International Conference of the IEEE Engineering in Medicine and Biology - Proceedings
    Conference Paper

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I numeri di IIT

L’Istituto Italiano di Tecnologia (IIT) è una fondazione di diritto privato - cfr. determinazione Corte dei Conti 23/2015 “IIT è una fondazione da inquadrare fra gli organismi di diritto pubblico con la scelta di un modello di organizzazione di diritto privato per rispondere all’esigenza di assicurare procedure più snelle nella selezione non solo nell’ambito nazionale dei collaboratori, scienziati e ricercatori ”.

IIT è sotto la vigilanza del Ministero dell'Istruzione, dell'Università e della Ricerca e del Ministero dell'Economia e delle Finanze ed è stato istituito con la Legge 326/2003. La Fondazione ha l'obiettivo di promuovere l'eccellenza nella ricerca di base e in quella applicata e di favorire lo sviluppo del sistema economico nazionale. La costruzione dei laboratori iniziata nel 2006 si è conclusa nel 2009.

Lo staff complessivo di IIT conta circa 1440 persone. L’area scientifica è rappresentata da circa l’85% del personale. Il 45% dei ricercatori proviene dall’estero: di questi, il 29% è costituito da stranieri provenienti da oltre 50 Paesi e il 16% da italiani rientrati. Oggi il personale scientifico è composto da circa 60 principal investigators, circa 110 ricercatori e tecnologi di staff, circa 350 post doc, circa 500 studenti di dottorato e borsisti, circa 130 tecnici. Oltre 330 posti su 1400 creati su fondi esterni. Età media 34 anni. 41% donne / 59 % uomini.

Nel 2015 IIT ha ricevuto finanziamenti pubblici per circa 96 milioni di euro (80% del budget), conseguendo fondi esterni per 22 milioni di euro (20% budget) provenienti da 18 progetti europei17 finanziamenti da istituzioni nazionali e internazionali, circa 60 progetti industriali

La produzione di IIT ad oggi vanta circa 6990 pubblicazioni, oltre 130 finanziamenti Europei e 11 ERC, più di 350 domande di brevetto attive, oltre 12 start up costituite e altrettante in fase di lancio. Dal 2009 l’attività scientifica è stata ulteriormente rafforzata con la creazione di dieci centri di ricerca nel territorio nazionale (a Torino, Milano, Trento, Parma, Roma, Pisa, Napoli, Lecce, Ferrara) e internazionale (MIT ed Harvard negli USA) che, unitamente al Laboratorio Centrale di Genova, sviluppano i programmi di ricerca del piano scientifico 2015-2017.

IIT: the numbers

Istituto Italiano di Tecnologia (IIT) is a public research institute that adopts the organizational model of a private law foundation. IIT is overseen by Ministero dell'Istruzione, dell'Università e della Ricerca and Ministero dell'Economia e delle Finanze (the Italian Ministries of Education, Economy and Finance).  The Institute was set up according to Italian law 326/2003 with the objective of promoting excellence in basic and applied research andfostering Italy’s economic development. Construction of the Laboratories started in 2006 and finished in 2009.

IIT has an overall staff of about 1,440 people. The scientific staff covers about 85% of the total. Out of 45% of researchers coming from abroad 29% are foreigners coming from more than 50 countries and 16% are returned Italians. The scientific staff currently consists of approximately 60 Principal Investigators110 researchers and technologists350 post-docs and 500 PhD students and grant holders and 130 technicians. External funding has allowed the creation of more than 330 positions . The average age is 34 and the gender balance proportion  is 41% female against 59% male.

In 2015 IIT received 96 million euros in public funding (accounting for 80% of its budget) and obtained 22 million euros in external funding (accounting for 20% of its budget). External funding comes from 18 European Projects, other 17 national and international competitive projects and approximately 60 industrial projects.

So far IIT accounts for: about 6990 publications, more than 130 European grants and 11 ERC grants, more than 350 patents or patent applications12 up start-ups and as many  which are about to be launched. The Institute’s scientific activity has been further strengthened since 2009 with the establishment of 11 research nodes throughout Italy (Torino, Milano, Trento, Parma, Roma, Pisa, Napoli, Lecce, Ferrara) and abroad (MIT and Harvard University, USA), which, along with the Genoa-based Central Lab, implement the research programs included in the 2015-2017 Strategic Plan.