Leader
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001
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WKP|Q57064194
(VIAF cluster)
(Authority/Source Record)
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WKP |
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20241020233036.0 |
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(WKP)Q57064194
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0000-0003-4319-2631
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orcid
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6506303193
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scopus
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035
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‡a
(OCoLC)Q57064194
|
100
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0 |
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M. Bañobre-López
‡9
ast
|
375
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‡a
1
‡2
iso5218
|
400
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0 |
|
‡a
Manuel Bañobre-López
‡c
researcher
‡9
en
|
400
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0 |
|
‡a
Manuel Bañobre-López
‡c
forsker
‡9
nb
|
400
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0 |
|
‡a
M. Bañobre-López
‡c
wetenschapper
‡9
nl
|
670
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‡a
Author's A Magnetic Chameleon: Biocompatible Lanthanide Fluoride Nanoparticles with Magnetic Field Dependent Tunable Contrast Properties as a Versatile Contrast Agent for Low to Ultrahigh Field MRI and Optical Imaging in Biological Window.
|
670
|
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|
‡a
Author's A Tailor-Made Protocol to Synthesize Yolk-Shell Graphene-Based Magnetic Nanoparticles for Nanomedicine
|
670
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|
‡a
Author's Antibiofilm Efficacy of the <i>Pseudomonas aeruginosa</i> <i>Pbunavirus</i> vB_PaeM-SMS29 Loaded onto Dissolving Polyvinyl Alcohol Microneedles
|
670
|
|
|
‡a
Author's Antiphase boundaries in truncated octahedron-shaped Zn-doped magnetite nanocrystals
|
670
|
|
|
‡a
Author's Bacteriophages for Chronic Wound Treatment: from Traditional to Novel Delivery Systems
|
670
|
|
|
‡a
Author's Biomimetic magnetic silk scaffolds.
|
670
|
|
|
‡a
Author's Competing Magnetism and Superconductivity in NaxCoO2at Half Doping
|
670
|
|
|
‡a
Author's Design and validation of a new ratiometric intracellular pH imaging probe using lanthanide-doped upconverting nanoparticles
|
670
|
|
|
‡a
Author's Effect of magnetic hyperthermia on the structure of biofilm and cellular viability of a food spoilage bacterium.
|
670
|
|
|
‡a
Author's Evaluation of Novel Doxorubicin-Loaded Magnetic Wax Nanocomposite Vehicles as Cancer Combinatorial Therapy Agents
|
670
|
|
|
‡a
Author's Front Cover: A Magnetic Chameleon: Biocompatible Lanthanide Fluoride Nanoparticles with Magnetic Field Dependent Tunable Contrast Properties as a Versatile Contrast Agent for Low to Ultrahigh Field MRI and Optical Imaging in Biological Window
|
670
|
|
|
‡a
Author's Front Cover: A Magnetic Chameleon: Biocompatible Lanthanide Fluoride Nanoparticles with Magnetic Field Dependent Tunable Contrast Properties as a Versatile Contrast Agent for Low to Ultrahigh Field MRI and Optical Imaging in Biological Window (Chem.
|
670
|
|
|
‡a
Author's Front Cover: Tunable Performance of Manganese Oxide Nanostructures as MRI Contrast Agents
|
670
|
|
|
‡a
Author's Front Cover: Tunable Performance of Manganese Oxide Nanostructures as MRI Contrast Agents (Chem. Eur. J. 6/2018)
|
670
|
|
|
‡a
Author's High-Temperature Magnetism as a Probe for Structural and Compositional Uniformity in Ligand-Capped Magnetite Nanoparticles.
|
670
|
|
|
‡a
Author's Highly Effective Antibacterial Vesicles Based on Peptide-Mimetic Alternating Copolymers for Bone Repair.
|
670
|
|
|
‡a
Author's Hybrid, metal oxide-peptide amphiphile micelles for molecular magnetic resonance imaging of atherosclerosis
|
670
|
|
|
‡a
Author's Intrinsic magnetism and hyperthermia in bioactive Fe-doped hydroxyapatite.
|
670
|
|
|
‡a
Author's Kinetic impact of Pt seed morphology on the highly controlled growth of Ni-based nanostructures
|
670
|
|
|
‡a
Author's Magnetic Dehydrodipeptide-Based Self-Assembled Hydrogels for Theragnostic Applications.
|
670
|
|
|
‡a
Author's Magnetic Hybrid Wax Nanocomposites as Externally Controlled Theranostic Vehicles: High MRI Enhancement and Synergistic Magnetically Assisted Thermo/Chemo Therapy
|
670
|
|
|
‡a
Author's Magnetic nanoparticle-based hyperthermia for cancer treatment.
|
670
|
|
|
‡a
Author's Magnetic poly
|
670
|
|
|
‡a
Author's Magnetic poly(ε-caprolactone)/iron-doped hydroxyapatite nanocomposite substrates for advanced bone tissue engineering.
|
670
|
|
|
‡a
Author's Magnetic Properties of Ni/NiO Nanowires Deposited onto CNT/Pt Nanocomposites
|
670
|
|
|
‡a
Author's Magnetoliposomes as Contrast Agents for Longitudinal in vivo Assessment of Transplanted Pancreatic Islets in a Diabetic Rat Model
|
670
|
|
|
‡a
Author's Mapping intracellular thermal response of cancer cells to magnetic hyperthermia treatment
|
670
|
|
|
‡a
Author's Orthogonal Clickable Iron Oxide Nanoparticle Platform for Targeting, Imaging, and On-Demand Release
|
670
|
|
|
‡a
Author's (Para)magnetic hybrid nanocomposites for dual MRI detection and treatment of solid tumours
|
670
|
|
|
‡a
Author's Possible quantum criticality inNaxCoO2
|
670
|
|
|
‡a
Author's Probing T1-T2 interactions and their imaging implications through a thermally responsive nanoprobe
|
670
|
|
|
‡a
Author's Pseudomonas aeruginosa PAO 1 In Vitro Time–Kill Kinetics Using Single Phages and Phage Formulations—Modulating Death, Adaptation, and Resistance
|
670
|
|
|
‡a
Author's Recent Progress on Manganese-Based Nanostructures as Responsive MRI Contrast Agents
|
670
|
|
|
‡a
Author's Role of Doping and Dimensionality in the Superconductivity of NaxCoO2
|
670
|
|
|
‡a
Author's Smart magnetic poly
|
670
|
|
|
‡a
Author's Smart magnetic poly(N-isopropylacrylamide) to control the release of bio-active molecules
|
670
|
|
|
‡a
Author's Synthesis of small atomic copper clusters in microemulsions.
|
670
|
|
|
‡a
Author's Tailoring the magnetic properties of nickel nanoshells through controlled chemical growth
|
670
|
|
|
‡a
Author's Tunable Performance of Manganese Oxide Nanostructures as MRI Contrast Agents
|
909
|
|
|
‡a
(orcid) 0000000343192631
‡9
1
|
909
|
|
|
‡a
(scopus) 6506303193
‡9
1
|
919
|
|
|
‡a
magneticchameleonbiocompatiblelanthanidefluoridenanoparticleswithmagneticfielddependenttunablecontrastpropertiesasaversatilecontrastagentforlowtoultrahighfieldmriandopticalimaginginbiologicalwindow
‡A
A Magnetic Chameleon: Biocompatible Lanthanide Fluoride Nanoparticles with Magnetic Field Dependent Tunable Contrast Properties as a Versatile Contrast Agent for Low to Ultrahigh Field MRI and Optical Imaging in Biological Window.
‡9
1
|
919
|
|
|
‡a
tunableperformanceofmanganeseoxidenanostructuresasmricontrastagents
‡A
Tunable Performance of Manganese Oxide Nanostructures as MRI Contrast Agents
‡9
1
|
919
|
|
|
‡a
tailoringthemagneticpropertiesofnickelnanoshellsthroughcontrolledchemicalgrowth
‡A
Tailoring the magnetic properties of nickel nanoshells through controlled chemical growth
‡9
1
|
919
|
|
|
‡a
synthesisofsmallatomiccopperclustersinmicroemulsions
‡A
Synthesis of small atomic copper clusters in microemulsions.
‡9
1
|
919
|
|
|
‡a
smartmagneticpolynisopropylacrylamidetocontrolthereleaseofbioactivemolecules
‡A
Smart magnetic poly(N-isopropylacrylamide) to control the release of bio-active molecules
‡9
1
|
919
|
|
|
‡a
smartmagneticpoly
‡A
Smart magnetic poly
‡9
1
|
919
|
|
|
‡a
roleofdopinganddimensionalityinthesuperconductivityofnaxcoo2
‡A
Role of Doping and Dimensionality in the Superconductivity of NaxCoO2
‡9
1
|
919
|
|
|
‡a
recentprogressonmanganesebasednanostructuresasresponsivemricontrastagents
‡A
Recent Progress on Manganese-Based Nanostructures as Responsive MRI Contrast Agents
‡9
1
|
919
|
|
|
‡a
pseudomonasaeruginosapao1invitrotimekillkineticsusingsinglephagesandphageformulationsmodulatingdeathadaptationandresistance
‡A
Pseudomonas aeruginosa PAO 1 In Vitro Time–Kill Kinetics Using Single Phages and Phage Formulations—Modulating Death, Adaptation, and Resistance
‡9
1
|
919
|
|
|
‡a
probingt1t2interactionsandtheirimagingimplicationsthroughathermallyresponsivenanoprobe
‡A
Probing T1-T2 interactions and their imaging implications through a thermally responsive nanoprobe
‡9
1
|
919
|
|
|
‡a
possiblequantumcriticalityinnaxcoo2
‡A
Possible quantum criticality inNaxCoO2
‡9
1
|
919
|
|
|
‡a
paramagnetichybridnanocompositesfordualmridetectionandtreatmentofsolidtumours
‡A
(Para)magnetic hybrid nanocomposites for dual MRI detection and treatment of solid tumours
‡9
1
|
919
|
|
|
‡a
orthogonalclickableironoxidenanoparticleplatformfortargetingimagingandondemandrelease
‡A
Orthogonal Clickable Iron Oxide Nanoparticle Platform for Targeting, Imaging, and On-Demand Release
‡9
1
|
919
|
|
|
‡a
mappingintracellularthermalresponseofcancercellstomagnetichyperthermiatreatment
‡A
Mapping intracellular thermal response of cancer cells to magnetic hyperthermia treatment
‡9
1
|
919
|
|
|
‡a
magnetoliposomesascontrastagentsforlongitudinalinvivoassessmentoftransplantedpancreaticisletsinadiabeticratmodel
‡A
Magnetoliposomes as Contrast Agents for Longitudinal in vivo Assessment of Transplanted Pancreatic Islets in a Diabetic Rat Model
‡9
1
|
919
|
|
|
‡a
magneticpropertiesof2nionanowiresdepositedontocntptnanocomposites
‡A
Magnetic Properties of Ni/NiO Nanowires Deposited onto CNT/Pt Nanocomposites
‡9
1
|
919
|
|
|
‡a
magneticpolyεcaprolactoneirondopedhydroxyapatitenanocompositesubstratesforadvancedbonetissueengineering
‡A
Magnetic poly(ε-caprolactone)/iron-doped hydroxyapatite nanocomposite substrates for advanced bone tissue engineering.
‡9
1
|
919
|
|
|
‡a
magneticpoly
‡A
Magnetic poly
‡9
1
|
919
|
|
|
‡a
magneticnanoparticlebasedhyperthermiaforcancertreatment
‡A
Magnetic nanoparticle-based hyperthermia for cancer treatment.
‡9
1
|
919
|
|
|
‡a
magnetichybridwaxnanocompositesasexternallycontrolledtheranosticvehicleshighmrienhancementandsynergisticmagneticallyassistedthermochemotherapy
‡A
Magnetic Hybrid Wax Nanocomposites as Externally Controlled Theranostic Vehicles: High MRI Enhancement and Synergistic Magnetically Assisted Thermo/Chemo Therapy
‡9
1
|
919
|
|
|
‡a
magneticdehydrodipeptidebasedselfassembledhydrogelsfortheragnosticapplications
‡A
Magnetic Dehydrodipeptide-Based Self-Assembled Hydrogels for Theragnostic Applications.
‡9
1
|
919
|
|
|
‡a
kineticimpactofptseedmorphologyonthehighlycontrolledgrowthof2basednanostructures
‡A
Kinetic impact of Pt seed morphology on the highly controlled growth of Ni-based nanostructures
‡9
1
|
919
|
|
|
‡a
intrinsicmagnetismandhyperthermiainbioactivefedopedhydroxyapatite
‡A
Intrinsic magnetism and hyperthermia in bioactive Fe-doped hydroxyapatite.
‡9
1
|
919
|
|
|
‡a
hybridmetaloxidepeptideamphiphilemicellesformolecularmagneticresonanceimagingofatherosclerosis
‡A
Hybrid, metal oxide-peptide amphiphile micelles for molecular magnetic resonance imaging of atherosclerosis
‡9
1
|
919
|
|
|
‡a
highlyeffectiveantibacterialvesiclesbasedonpeptidemimeticalternatingcopolymersforbonerepair
‡A
Highly Effective Antibacterial Vesicles Based on Peptide-Mimetic Alternating Copolymers for Bone Repair.
‡9
1
|
919
|
|
|
‡a
hightemperaturemagnetismasaprobeforstructuralandcompositionaluniformityinligandcappedmagnetitenanoparticles
‡A
High-Temperature Magnetism as a Probe for Structural and Compositional Uniformity in Ligand-Capped Magnetite Nanoparticles.
‡9
1
|
919
|
|
|
‡a
frontcovertunableperformanceofmanganeseoxidenanostructuresasmricontrastagentschemeurj6
‡A
Front Cover: Tunable Performance of Manganese Oxide Nanostructures as MRI Contrast Agents (Chem. Eur. J. 6/2018)
‡9
1
|
919
|
|
|
‡a
frontcovertunableperformanceofmanganeseoxidenanostructuresasmricontrastagents
‡A
Front Cover: Tunable Performance of Manganese Oxide Nanostructures as MRI Contrast Agents
‡9
1
|
919
|
|
|
‡a
frontcoveramagneticchameleonbiocompatiblelanthanidefluoridenanoparticleswithmagneticfielddependenttunablecontrastpropertiesasaversatilecontrastagentforlowtoultrahighfieldmriandopticalimaginginbiologicalwindowchem
‡A
Front Cover: A Magnetic Chameleon: Biocompatible Lanthanide Fluoride Nanoparticles with Magnetic Field Dependent Tunable Contrast Properties as a Versatile Contrast Agent for Low to Ultrahigh Field MRI and Optical Imaging in Biological Window (Chem.
‡9
1
|
919
|
|
|
‡a
frontcoveramagneticchameleonbiocompatiblelanthanidefluoridenanoparticleswithmagneticfielddependenttunablecontrastpropertiesasaversatilecontrastagentforlowtoultrahighfieldmriandopticalimaginginbiologicalwindow
‡A
Front Cover: A Magnetic Chameleon: Biocompatible Lanthanide Fluoride Nanoparticles with Magnetic Field Dependent Tunable Contrast Properties as a Versatile Contrast Agent for Low to Ultrahigh Field MRI and Optical Imaging in Biological Window
‡9
1
|
919
|
|
|
‡a
evaluationofnoveldoxorubicinloadedmagneticwaxnanocompositevehiclesascancercombinatorialtherapyagents
‡A
Evaluation of Novel Doxorubicin-Loaded Magnetic Wax Nanocomposite Vehicles as Cancer Combinatorial Therapy Agents
‡9
1
|
919
|
|
|
‡a
effectofmagnetichyperthermiaonthestructureofbiofilmandcellularviabilityofafoodspoilagebacterium
‡A
Effect of magnetic hyperthermia on the structure of biofilm and cellular viability of a food spoilage bacterium.
‡9
1
|
919
|
|
|
‡a
designandvalidationofanewratiometricintracellularphimagingprobeusinglanthanidedopedupconvertingnanoparticles
‡A
Design and validation of a new ratiometric intracellular pH imaging probe using lanthanide-doped upconverting nanoparticles
‡9
1
|
919
|
|
|
‡a
competingmagnetismandsuperconductivityinnaxcoo2athalfdoping
‡A
Competing Magnetism and Superconductivity in NaxCoO2at Half Doping
‡9
1
|
919
|
|
|
‡a
biomimeticmagneticsilkscaffolds
‡A
Biomimetic magnetic silk scaffolds.
‡9
1
|
919
|
|
|
‡a
bacteriophagesforchronicwoundtreatmentfromtraditionaltonoveldeliverysystems
‡A
Bacteriophages for Chronic Wound Treatment: from Traditional to Novel Delivery Systems
‡9
1
|
919
|
|
|
‡a
antiphaseboundariesintruncatedoctahedronshapedzndopedmagnetitenanocrystals
‡A
Antiphase boundaries in truncated octahedron-shaped Zn-doped magnetite nanocrystals
‡9
1
|
919
|
|
|
‡a
antibiofilmefficacyofthe1pseudomonasaeruginosa11pbunavirus1vbpaemsms29loadedontodissolvingpolyvinylalcoholmicroneedles
‡A
Antibiofilm Efficacy of the <i>Pseudomonas aeruginosa</i> <i>Pbunavirus</i> vB_PaeM-SMS29 Loaded onto Dissolving Polyvinyl Alcohol Microneedles
‡9
1
|
919
|
|
|
‡a
tailormadeprotocoltosynthesizeyolkshellgraphenebasedmagneticnanoparticlesfornanomedicine
‡A
A Tailor-Made Protocol to Synthesize Yolk-Shell Graphene-Based Magnetic Nanoparticles for Nanomedicine
‡9
1
|
943
|
|
|
‡a
201x
‡A
2018
‡9
1
|
946
|
|
|
‡a
b
‡9
1
|
996
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BNE|XX1671633
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996
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BNE|XX5184101
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ISNI|0000000078221605
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996
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NII|DA02449869
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996
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LC|n 79006766
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996
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BNE|XX1781154
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996
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JPG|500345417
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BNF|13337740
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BNE|XX1728063
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996
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BNE|XX1408847
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996
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LC|no2014160460
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996
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LC|no2008103837
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996
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ISNI|0000000080154739
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BNE|XX1094670
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ISNI|0000000029778511
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LC|no2007051773
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BNE|XX938683
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SUDOC|076733564
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LC|n 79007108
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|
‡2
ISNI|0000000060208963
|
996
|
|
|
‡2
LC|no2021075158
|
996
|
|
|
‡2
SUDOC|028434072
|
996
|
|
|
‡2
BNC|981058510139106706
|
996
|
|
|
‡2
LC|nr2004020980
|
996
|
|
|
‡2
SUDOC|185064949
|
996
|
|
|
‡2
BNF|13478375
|
996
|
|
|
‡2
BNCHL|10000000000000000119034
|
996
|
|
|
‡2
LC|n 2024052296
|
996
|
|
|
‡2
BNCHL|10000000000000000116199
|
996
|
|
|
‡2
DNB|1143551168
|
996
|
|
|
‡2
BNF|12197602
|
996
|
|
|
‡2
BNE|XX1022387
|
996
|
|
|
‡2
BAV|495_107463
|
996
|
|
|
‡2
LIH|LNB:H_p_N;=B_c_
|
996
|
|
|
‡2
CAOONL|ncf11946464
|
996
|
|
|
‡2
RERO|A014361610
|
996
|
|
|
‡2
RERO|A003541278
|
996
|
|
|
‡2
BNF|16696282
|
996
|
|
|
‡2
BNE|XX1752455
|
996
|
|
|
‡2
NII|DA06077325
|
996
|
|
|
‡2
BIBSYS|98051231
|
996
|
|
|
‡2
SUDOC|099456400
|
996
|
|
|
‡2
ISNI|0000000501534992
|
996
|
|
|
‡2
SUDOC|132275651
|
996
|
|
|
‡2
NLR|RU NLR AUTH 770214090
|
996
|
|
|
‡2
LC|n 78040700
|
996
|
|
|
‡2
ISNI|0000000060564175
|
996
|
|
|
‡2
DNB|1226784070
|
996
|
|
|
‡2
ISNI|0000000061353513
|
996
|
|
|
‡2
BIBSYS|15016802
|
996
|
|
|
‡2
BNE|XX1274302
|
996
|
|
|
‡2
ISNI|0000000079761208
|
996
|
|
|
‡2
DNB|1340471728
|
996
|
|
|
‡2
LC|n 82019381
|
996
|
|
|
‡2
ISNI|0000000060534013
|
996
|
|
|
‡2
BNE|XX1647292
|
996
|
|
|
‡2
ISNI|0000000078927317
|
996
|
|
|
‡2
ISNI|0000000054820486
|
996
|
|
|
‡2
ISNI|0000000371236208
|
996
|
|
|
‡2
BNE|XX1347329
|
996
|
|
|
‡2
RERO|A003113964
|
996
|
|
|
‡2
DNB|1286615577
|
996
|
|
|
‡2
BNE|XX1132550
|
996
|
|
|
‡2
BNE|XX6087473
|
996
|
|
|
‡2
DNB|1056365587
|
996
|
|
|
‡2
ISNI|0000000034791198
|
996
|
|
|
‡2
BNE|XX1035930
|
996
|
|
|
‡2
ISNI|0000000056543865
|
996
|
|
|
‡2
J9U|987007498603305171
|
996
|
|
|
‡2
BNE|XX944887
|
996
|
|
|
‡2
SUDOC|144448963
|
996
|
|
|
‡2
BNC|981058515076406706
|
996
|
|
|
‡2
LC|ns2016001548
|
996
|
|
|
‡2
BNE|XX5152810
|
996
|
|
|
‡2
ISNI|0000000077332741
|
996
|
|
|
‡2
SUDOC|100464092
|
996
|
|
|
‡2
DNB|118968769
|
996
|
|
|
‡2
LC|ns2017000356
|
996
|
|
|
‡2
SUDOC|264529782
|
996
|
|
|
‡2
ISNI|0000000449360760
|
996
|
|
|
‡2
BNE|XX1581823
|
996
|
|
|
‡2
BNCHL|10000000000000000007568
|
996
|
|
|
‡2
BNE|XX1281440
|
996
|
|
|
‡2
LC|n 91117918
|
996
|
|
|
‡2
BNC|981059719170906706
|
996
|
|
|
‡2
LC|no2017083090
|
996
|
|
|
‡2
BNE|XX4951506
|
996
|
|
|
‡2
BNE|XX5309020
|
996
|
|
|
‡2
BNC|981058581343106706
|
996
|
|
|
‡2
BLBNB|000596542
|
996
|
|
|
‡2
ISNI|0000000060907633
|
996
|
|
|
‡2
BNF|16247454
|
996
|
|
|
‡2
BNE|XX1075441
|
996
|
|
|
‡2
PTBNP|1341746
|
996
|
|
|
‡2
SUDOC|030719844
|
996
|
|
|
‡2
BNE|XX5607332
|
996
|
|
|
‡2
BNE|XX974324
|
996
|
|
|
‡2
ISNI|0000000055157356
|
996
|
|
|
‡2
BNE|XX1346352
|
996
|
|
|
‡2
BNC|981058527075706706
|
996
|
|
|
‡2
ICCU|RAVV072687
|
996
|
|
|
‡2
SUDOC|030247780
|
996
|
|
|
‡2
ISNI|0000000110570304
|
996
|
|
|
‡2
RERO|A000127345
|
996
|
|
|
‡2
BNCHL|10000000000000000068106
|
996
|
|
|
‡2
ISNI|0000000121394692
|
996
|
|
|
‡2
DNB|1157365973
|
996
|
|
|
‡2
NTA|071370072
|
996
|
|
|
‡2
NKC|mzk2016914363
|
996
|
|
|
‡2
BNE|XX1186860
|
996
|
|
|
‡2
ISNI|0000000116985244
|
996
|
|
|
‡2
SUDOC|033136858
|
996
|
|
|
‡2
DNB|1076578314
|
996
|
|
|
‡2
LC|n 79125823
|
996
|
|
|
‡2
BNE|XX1342332
|
996
|
|
|
‡2
BNF|16271288
|
996
|
|
|
‡2
LC|n 2008067979
|
996
|
|
|
‡2
BNE|XX1149059
|
996
|
|
|
‡2
BNE|XX1377291
|
996
|
|
|
‡2
ISNI|0000000060405350
|
996
|
|
|
‡2
SUDOC|06026005X
|
996
|
|
|
‡2
SUDOC|185299024
|
996
|
|
|
‡2
ISNI|000000011072342X
|
996
|
|
|
‡2
PLWABN|9810684322205606
|
996
|
|
|
‡2
ISNI|0000000044762083
|
996
|
|
|
‡2
RERO|A000096210
|
996
|
|
|
‡2
BNE|XX944102
|
996
|
|
|
‡2
BNC|981058589163906706
|
996
|
|
|
‡2
ISNI|0000000060526646
|
996
|
|
|
‡2
ISNI|0000000059273477
|
996
|
|
|
‡2
BNE|XX6104070
|
996
|
|
|
‡2
LC|n 2001112169
|
996
|
|
|
‡2
ISNI|0000000046702527
|
996
|
|
|
‡2
BNC|981058512880306706
|
996
|
|
|
‡2
BNC|981058601794106706
|
996
|
|
|
‡2
DNB|105619703X
|
996
|
|
|
‡2
ISNI|0000000059333652
|
996
|
|
|
‡2
BNE|XX946287
|
996
|
|
|
‡2
ISNI|0000000051060880
|
996
|
|
|
‡2
NTA|129478091
|
996
|
|
|
‡2
BNE|XX4916824
|
996
|
|
|
‡2
ISNI|0000000080937741
|
996
|
|
|
‡2
LC|no 90006503
|
996
|
|
|
‡2
SUDOC|26634075X
|
996
|
|
|
‡2
LC|no2021040872
|
996
|
|
|
‡2
SUDOC|030591597
|
996
|
|
|
‡2
BNF|17167836
|
996
|
|
|
‡2
SUDOC|234895055
|
996
|
|
|
‡2
DNB|1122701438
|
996
|
|
|
‡2
NUKAT|n 97006572
|
996
|
|
|
‡2
BNCHL|10000000000000000081166
|
996
|
|
|
‡2
BNC|981058613619606706
|
996
|
|
|
‡2
ISNI|0000000060554778
|
996
|
|
|
‡2
LC|no2017081718
|
996
|
|
|
‡2
SUDOC|055387896
|
996
|
|
|
‡2
NTA|133441903
|
996
|
|
|
‡2
DNB|1122698143
|
996
|
|
|
‡2
SUDOC|032192916
|
996
|
|
|
‡2
BNC|981058618208006706
|
996
|
|
|
‡2
DNB|134780388
|
996
|
|
|
‡2
BNE|XX1363809
|
996
|
|
|
‡2
BNE|XX1136815
|
996
|
|
|
‡2
LC|n 95056482
|
996
|
|
|
‡2
ISNI|0000000077954014
|
996
|
|
|
‡2
NUKAT|n 2016004101
|
996
|
|
|
‡2
BNE|XX1702913
|
996
|
|
|
‡2
SUDOC|170036138
|
996
|
|
|
‡2
BNC|981058516759706706
|
996
|
|
|
‡2
BNC|981058525074606706
|
996
|
|
|
‡2
DNB|119038485X
|
996
|
|
|
‡2
BNE|XX1317143
|
996
|
|
|
‡2
LC|no2001015103
|
996
|
|
|
‡2
PTBNP|1589572
|
996
|
|
|
‡2
SUDOC|092696694
|
996
|
|
|
‡2
SUDOC|179263560
|
996
|
|
|
‡2
BNE|XX6002169
|
996
|
|
|
‡2
BNE|XX5712970
|
997
|
|
|
‡a
0 0 lived 0 0
‡9
1
|
998
|
|
|
‡a
Bañobre-López, Manuel
‡2
PLWABN|9810638856305606
‡3
exact title: (1.00, 'magneticnanoparticlebasedhyperthermiaforcancertreatment', 'magneticnanoparticlebasedhyperthermiaforcancertreatment')
‡3
viafid
|