Ultrasmall rigid particles as multimodal probes for medical applications.
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Claire Brunet
- Function : Author
- PersonId : 765426
- IdRef : 17546815X
Rodolphe Antoine
- Function : Author
- PersonId : 738161
- IdHAL : rodolphe-antoine
- ORCID : 0000-0001-5682-8550
- IdRef : 171234502
Philippe Dugourd
- Function : Author
- PersonId : 174556
- IdHAL : philippe-dugourd
- ORCID : 0000-0003-4395-1140
- IdRef : 076668959
Sophie Laurent
- Function : Author
- PersonId : 760188
- ORCID : 0000-0002-2589-3250
Lucie Sancey
- Function : Author
- PersonId : 179893
- IdHAL : lucie-sancey
- ORCID : 0000-0002-0084-3775
- IdRef : 110676858
Véronique Josserand
- Function : Author
- PersonId : 738684
- IdHAL : veronique-josserand
- ORCID : 0000-0001-6733-3801
- IdRef : 066761336
Emmanuel Barbier
- Function : Author
- PersonId : 745767
- IdHAL : emmanuel-barbier
- ORCID : 0000-0002-4952-1240
- IdRef : 120242079
Pascal Perriat
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- Function : Correspondent author
- PersonId : 881133
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Abstract
Ultrasmall but multifunctional: Rigid imaging particles that are smaller than 5 nm in size can be obtained in a top-down process starting from a core–shell structure (core=gadolinium oxide; shell=polysiloxane). They represent the first multifunctional silica-based particles that are sufficiently small to escape hepatic clearance and enable animal imaging by four complementary techniques
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