Cikkek nyilvánosan hozzáférhető megbízással - Danail HristozovTovábbi információ
Sehol sem hozzáférhető: 4
Risk associated with engineered nanomaterials: Different tools for different ways to govern
BD Trump, D Hristozov, T Malloy, I Linkov
Nano Today 21, 9-13, 2018
Megbízások: US Department of Defense, European Commission
Bayesian based similarity assessment of nanomaterials to inform grouping
G Tsiliki, DA Seleci, A Zabeo, G Basei, D Hristozov, N Jeliazkova, ...
NanoImpact 25, 100389, 2022
Megbízások: European Commission
140 A Framework for Grouping Inhaled Multi-Component Nanomaterials to Streamline Hazard Assessment
V Stone, A Oomen, H Johnston, D Hristozov, O Schmidt, T Stoeger, ...
Annals of Work Exposures and Health 67 (Supplement_1), i71-i72, 2023
Megbízások: European Commission
116 A Phase-Gate Nano-Risk Governance Approach Reflecting International Standards
KA Jensen, B Liguori, C Ribalta, N Shandilya, M Bakker, B Suarez-Merino, ...
Annals of Work Exposures and Health 67 (Supplement_1), i65-i66, 2023
Megbízások: European Commission
Valahol hozzáférhető: 39
Considerations of environmentally relevant test conditions for improved evaluation of ecological hazards of engineered nanomaterials
PA Holden, JL Gardea-Torresdey, F Klaessig, RF Turco, M Mortimer, ...
Environmental science & technology 50 (12), 6124-6145, 2016
Megbízások: US National Science Foundation, US National Institutes of Health
Concern-driven integrated approaches to nanomaterial testing and assessment–report of the NanoSafety Cluster Working Group 10
AG Oomen, PMJ Bos, TF Fernandes, K Hund-Rinke, D Boraschi, ...
Nanotoxicology 8 (3), 334-348, 2014
Megbízások: Swiss National Science Foundation, Government of Italy
Frameworks and tools for risk assessment of manufactured nanomaterials
D Hristozov, S Gottardo, E Semenzin, A Oomen, P Bos, W Peijnenburg, ...
Environment international 95, 36-53, 2016
Megbízások: UK Natural Environment Research Council
A framework for grouping and read-across of nanomaterials-supporting innovation and risk assessment
V Stone, S Gottardo, EAJ Bleeker, H Braakhuis, S Dekkers, T Fernandes, ...
Nano Today 35, 100941, 2020
Megbízások: European Commission
Predicting toxic potencies of metal oxide nanoparticles by means of nano-QSARs
Y Mu, F Wu, Q Zhao, R Ji, Y Qie, Y Zhou, Y Hu, C Pang, D Hristozov, ...
Nanotoxicology 10 (9), 1207-1214, 2016
Megbízások: National Natural Science Foundation of China
Demonstrating approaches to chemically modify the surface of Ag nanoparticles in order to influence their cytotoxicity and biodistribution after single dose acute intravenous …
C Pang, A Brunelli, C Zhu, D Hristozov, Y Liu, E Semenzin, W Wang, ...
Nanotoxicology 10 (2), 129-139, 2016
Megbízások: Chinese Academy of Sciences, National Natural Science Foundation of China
The MARINA risk assessment strategy: a flexible strategy for efficient information collection and risk assessment of nanomaterials
PMJ Bos, S Gottardo, JJ Scott-Fordsmand, M Van Tongeren, E Semenzin, ...
International journal of environmental research and public health 12 (12 …, 2015
Megbízások: UK Natural Environment Research Council
Risk governance of nanomaterials: review of criteria and tools for risk communication, evaluation, and mitigation
P Isigonis, D Hristozov, C Benighaus, E Giubilato, K Grieger, L Pizzol, ...
Nanomaterials 9 (5), 696, 2019
Megbízások: European Commission
Risk management framework for nano-biomaterials used in medical devices and advanced therapy medicinal products
E Giubilato, V Cazzagon, MJB Amorim, M Blosi, J Bouillard, ...
Materials 13 (20), 4532, 2020
Megbízások: Fundação para a Ciência e a Tecnologia, Portugal, European Commission
Environmental impacts by fragments released from nanoenabled products: a multiassay, multimaterial exploration by the SUN approach
MJB Amorim, S Lin, K Schlich, JM Navas, A Brunelli, N Neubauer, ...
Environmental science & technology 52 (3), 1514-1524, 2018
Megbízások: US National Science Foundation, Fundação para a Ciência e a Tecnologia …
How can we justify grouping of nanoforms for hazard assessment? Concepts and tools to quantify similarity
N Jeliazkova, E Bleeker, R Cross, A Haase, G Janer, W Peijnenburg, ...
NanoImpact 25, 100366, 2022
Megbízások: European Commission
Guiding the development of sustainable nano-enabled products for the conservation of works of art: proposal for a framework implementing the Safe by Design concept
E Semenzin, E Giubilato, E Badetti, M Picone, A Volpi Ghirardini, ...
Environmental Science and Pollution Research 26, 26146-26158, 2019
Megbízások: European Commission
Status, implications and challenges of European safe and sustainable by design paradigms applicable to nanomaterials and advanced materials
I Furxhi, A Costa, S Vázquez-Campos, C Fito-López, D Hristozov, ...
RSC Sustainability 1 (2), 234-250, 2023
Megbízások: European Commission, UK Research & Innovation
Probabilistic risk assessment of emerging materials: case study of titanium dioxide nanoparticles
MP Tsang, D Hristozov, A Zabeo, AJ Koivisto, ACØ Jensen, KA Jensen, ...
Nanotoxicology 11 (4), 558-568, 2017
Megbízások: European Commission
Comparison of species sensitivity distribution modeling approaches for environmental risk assessment of nanomaterials–a case study for silver and titanium dioxide …
SN Sørensen, H Wigger, A Zabeo, E Semenzin, D Hristozov, B Nowack, ...
Aquatic Toxicology 225, 105543, 2020
Megbízások: European Commission
Screening level approach to support companies in making safe and sustainable by design decisions at the early stages of innovation
L Pizzol, A Livieri, B Salieri, L Farcal, LG Soeteman-Hernández, ...
Cleaner Environmental Systems 10, 100132, 2023
Megbízások: European Commission
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