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Thomas Wagner publication distribution in Earth Science in 2026

The chart shows the distribution of publications by all Research.com ranked scientists in the field of Earth Science in 2026. The highlighted bar marks where Thomas Wagner sits on this spectrum.

38–42 publications: 1 scientists 43–47 publications: 0 scientists 48–52 publications: 3 scientists 53–57 publications: 8 scientists 58–62 publications: 11 scientists 63–67 publications: 16 scientists 68–72 publications: 24 scientists 73–77 publications: 31 scientists 78–82 publications: 49 scientists 83–87 publications: 77 scientists 88–92 publications: 86 scientists 93–97 publications: 88 scientists 98–102 publications: 92 scientists 103–107 publications: 84 scientists 108–112 publications: 102 scientists 113–117 publications: 108 scientists 118–122 publications: 117 scientists 123–127 publications: 126 scientists 128–132 publications: 146 scientists 133–137 publications: 114 scientists 138–142 publications: 102 scientists 143–147 publications: 127 scientists 148–152 publications: 102 scientists 153–157 publications: 112 scientists 158–162 publications: 102 scientists 163–167 publications: 127 scientists 168–172 publications: 121 scientists 173–177 publications: 112 scientists 178–182 publications: 109 scientists 183–187 publications: 98 scientists 188–192 publications: 92 scientists 193–197 publications: 105 scientists 198–202 publications: 77 scientists 203–207 publications: 80 scientists 208–212 publications: 89 scientists 213–217 publications: 70 scientists 218–222 publications: 74 scientists 223–227 publications: 74 scientists 228–232 publications: 70 scientists 233–237 publications: 67 scientists 238–242 publications: 59 scientists 243–247 publications: 67 scientists 248–252 publications: 51 scientists 253–257 publications: 46 scientists 258–262 publications: 41 scientists 263–267 publications: 39 scientists 268–272 publications: 34 scientists 273–277 publications: 39 scientists 278–282 publications: 35 scientists 283–287 publications: 36 scientists 288–292 publications: 35 scientists 293–297 publications: 29 scientists 298–302 publications: 23 scientists 303–307 publications: 39 scientists 308–312 publications: 34 scientists 313–317 publications: 23 scientists 318–322 publications: 18 scientists 323–327 publications: 18 scientists 328–332 publications: 21 scientists 333–337 publications: 20 scientists 338–342 publications: 15 scientists 343–347 publications: 13 scientists 348–352 publications: 24 scientists 353–357 publications: 25 scientists 358–362 publications: 10 scientists 363–367 publications: 20 scientists 368–372 publications: 17 scientists 373–377 publications: 18 scientists 378–382 publications: 15 scientists 383–387 publications: 7 scientists 388–392 publications: 22 scientists 393–397 publications: 9 scientists 398–402 publications: 11 scientists 403–407 publications: 16 scientists 408–412 publications: 4 scientists 413–417 publications: 5 scientists 418–422 publications: 14 scientists 423–427 publications: 8 scientists 428–432 publications: 7 scientists 433–437 publications: 7 scientists 438–442 publications: 10 scientists 443–447 publications: 10 scientists 448–452 publications: 3 scientists 453–457 publications: 9 scientists 458–462 publications: 11 scientists 463–467 publications: 4 scientists 468–472 publications: 6 scientists 473–477 publications: 11 scientists 478–482 publications: 8 scientists 483–487 publications: 2 scientists 488–492 publications: 3 scientists 493–497 publications: 4 scientists 498–502 publications: 4 scientists 503–507 publications: 4 scientists 508–509 publications: 4 scientists 510+ publications: 100 scientists
38 publications 510+

The last bar groups every scientist with 510 publications or more.

Thomas Wagner D-index placement in Earth Science in 2026

The chart shows the D-index (discipline H-index) distribution of Earth Science scientists ranked by Research.com in 2026. The highlighted bar marks where Thomas Wagner sits on this spectrum.

30 D-Index: 15 scientists 31 D-Index: 42 scientists 32 D-Index: 60 scientists 33 D-Index: 90 scientists 34 D-Index: 103 scientists 35 D-Index: 108 scientists 36 D-Index: 142 scientists 37 D-Index: 147 scientists 38 D-Index: 147 scientists 39 D-Index: 152 scientists 40 D-Index: 143 scientists 41 D-Index: 157 scientists 42 D-Index: 141 scientists 43 D-Index: 151 scientists 44 D-Index: 140 scientists 45 D-Index: 135 scientists 46 D-Index: 121 scientists 47 D-Index: 108 scientists 48 D-Index: 128 scientists 49 D-Index: 111 scientists 50 D-Index: 106 scientists 51 D-Index: 112 scientists 52 D-Index: 102 scientists 53 D-Index: 103 scientists 54 D-Index: 94 scientists 55 D-Index: 61 scientists 56 D-Index: 101 scientists 57 D-Index: 71 scientists 58 D-Index: 65 scientists 59 D-Index: 78 scientists 60 D-Index: 93 scientists 61 D-Index: 56 scientists 62 D-Index: 58 scientists 63 D-Index: 52 scientists 64 D-Index: 63 scientists 65 D-Index: 49 scientists 66 D-Index: 53 scientists 67 D-Index: 57 scientists 68 D-Index: 50 scientists 69 D-Index: 44 scientists 70 D-Index: 44 scientists 71 D-Index: 31 scientists 72 D-Index: 33 scientists 73 D-Index: 33 scientists 74 D-Index: 23 scientists 75 D-Index: 32 scientists 76 D-Index: 24 scientists 77 D-Index: 17 scientists 78 D-Index: 19 scientists 79 D-Index: 9 scientists 80 D-Index: 21 scientists 81 D-Index: 20 scientists 82 D-Index: 17 scientists 83 D-Index: 19 scientists 84 D-Index: 19 scientists 85 D-Index: 14 scientists 86 D-Index: 6 scientists 87 D-Index: 14 scientists 88 D-Index: 17 scientists 89 D-Index: 10 scientists 90 D-Index: 8 scientists 91 D-Index: 8 scientists 92 D-Index: 9 scientists 93 D-Index: 6 scientists 94+ D-Index: 98 scientists
30 D-Index 94+

The last bar groups every scientist with 94 D-Index or more.

Overview

Thomas Wagner is affiliated with Heriot-Watt University in the United Kingdom. Their primary research contributions lie within Biochemistry, Genetics and Molecular Biology, Medicine, and Immunology and Microbiology. Subfields of particular focus include Immunology, Oncology, Molecular Biology, Biotechnology, and Genetics.

The main topics covered in Wagner's research encompass Immunotherapy and Immune Responses, vaccines and immunoinformatics approaches, Cancer Research and Treatments, Cancer Immunotherapy and Biomarkers, CAR-T cell therapy research, Hippo pathway signaling and YAP/TAZ, and Genetic and Kidney Cyst Diseases.

Wagner has published extensively across a range of scientific journals. Frequent publication venues include Regular and Young Investigator Award Abstracts, Journal of Clinical Oncology, Annals of Surgical Oncology, Molecular Cancer, and Journal for ImmunoTherapy of Cancer.

Their recent papers include:

  • "A Phase IIb Randomized Controlled Trial of the TLPLDC Vaccine as Adjuvant Therapy After Surgical Resection of Stage III/IV Melanoma: A Primary Analysis" (2021, Annals of Surgical Oncology)
  • "Pals1 prevents Rac1-dependent colorectal cancer cell metastasis by inhibiting Arf6" (2021, Molecular Cancer)
  • "Prospective, randomized, double-blind phase 2B trial of the TLPO and TLPLDC vaccines to prevent recurrence of resected stage III/IV melanoma: a prespecified 36-month analysis" (2023, Journal for ImmunoTherapy of Cancer)
  • "Multi-institutional, prospective, randomized, double-blind, placebo-controlled phase IIb trial of the tumor lysate, particle-loaded, dendritic cell (TLPLDC) vaccine to prevent recurrence in high-risk melanoma patients: A subgroup analysis" (2021, Cancer Medicine)
  • "Divergent clinical outcomes in a phase 2B trial of the TLPLDC vaccine in preventing melanoma recurrence and the impact of dendritic cell collection methodology: a randomized clinical trial" (2022, Cancer Immunology Immunotherapy)

Wagner frequently collaborates with a group of researchers, including:

  • Timothy J. Vreeland
  • Guy T. Clifton
  • Diane F. Hale
  • Robert C. Chick
  • George E. Peoples

Best Publications

  • GEM-Selektor geochemical modeling package: revised algorithm and GEMS3K numerical kernel for coupled simulation codes

    Dmitrii A. Kulik;Thomas Wagner;Svitlana V. Dmytrieva;Georg Kosakowski

  • Experimental and natural partitioning of Th, U, Pb and other trace elements between garnet, clinopyroxene and basaltic melts

    Erik H. Hauri;Thomas P. Wagner;Timothy L. Grove

  • Cretaceous sea-surface temperature evolution: Constraints from TEX86 and planktonic foraminiferal oxygen isotopes

    Charlotte L. O'Brien;Stuart A. Robinson;Richard D. Pancost;Jaap S. Sinninghe Damsté

  • GEM-SELEKTOR GEOCHEMICAL MODELING PACKAGE: TSolMod LIBRARY AND DATA INTERFACE FOR MULTICOMPONENT PHASE MODELS

    Unknown

  • Carbon-isotope stratigraphy recorded by the Cenomanian–Turonian Oceanic Anoxic Event: correlation and implications based on three key localities

    H. Tsikos;H. Tsikos;H.C. Jenkyns;B. Walsworth-Bell;M.R. Petrizzo

  • Early diagenesis of organic matter from sediments of the eastern subtropical Atlantic: evidence from stable nitrogen and carbon isotopes

    Tim Freudenthal;Thomas Wagner;Frank Wenzhöfer;Matthias Zabel

  • An experimental study of the solubility and speciation of the Rare Earth Elements (III) in fluoride- and chloride-bearing aqueous solutions at temperatures up to 300 C

    A.A. Migdisov;A.E. Williams-Jones;Thomas Wagner

  • Isotopic Evidence for Glaciation During the Cretaceous Supergreenhouse

    André Bornemann;Richard D. Norris;Oliver Friedrich;Britta Beckmann

  • Redox sensitivity of P cycling during marine black shale formation: Dynamics of sulfidic and anoxic, non-sulfidic bottom waters

    Christian März;Simon W Poulton;Britta Beckmann;K Küster

  • Gold upgrading in metamorphosed massive sulfide ore deposits: Direct evidence from laser-ablation–inductively coupled plasma–mass spectrometry analysis of invisible gold

    Thomas Wagner;Reiner Klemd;Thomas Wenzel;Benny Mattsson

  • A thermodynamic model for di-trioctahedral chlorite from experimental and natural data in the system MgO–FeO–Al2O3–SiO2–H2O: applications to P–T sections and geothermometry

    Pierre Lanari;Pierre Lanari;Thomas Wagner;Olivier Vidal

  • Orbital forcing of Cretaceous river discharge in tropical Africa and ocean response.

    Britta Beckmann;Sascha Flögel;Peter Hofmann;Michael Schulz

  • Integrated depositional model for the Cenomanian–Turonian organic-rich strata in North Africa

    S. Lüning;S. Kolonic;E.M. Belhadj;Z. Belhadj

  • Sources and distributions of tetraether lipids in surface sediments across a large river-dominated continental margin

    Chun Zhu;Johan W H Weijers;Thomas Wagner;Jian Ming Pan

  • Late Quaternary Climate Changes in Central Africa as Inferred from Terrigenous Input to the Niger Fan

    Matthias Zabel;Ralph R. Schneider;Thomas Wagner;Adesina T. Adegbie

  • Eclogite-facies quartz veins within metabasites of the Dabie Shan (eastern China): pressure–temperature–time–deformation path, composition of the fluid phase and fluid flow during exhumation of high-pressure rocks

    Leander Franz;R. Oberhänsli;Thomas Wagner;S. Dong

  • Black shale deposition on the northwest African Shelf during the Cenomanian/Turonian oceanic anoxic event: Climate coupling and global organic carbon burial

    Sadat Kolonic;Thomas Wagner;Astrid Forster;Jaap S. Sinninghe Damsté

  • Euxinia and primary production in Late Cretaceous eastern equatorial Atlantic surface waters fostered orbitally driven formation of marine black shales

    Thomas Wagner;Jaap S. Sinninghe Damsté;Peter Hofmann;Britta Beckmann

  • Iron isotope fractionation during hydrothermal ore deposition and alteration

    Gregor Markl;Friedhelm von Blanckenburg;Thomas Wagner

  • Lateral transport controls distribution, quality, and burial of organic matter along continental slopes in high-productivity areas

    Maik Inthorn;Thomas Wagner;Georg Scheeder;Matthias Zabel

  • Sea-level changes and black shales associated with the late Paleocene thermal maximum: Organic-geochemical and micropaleontologic evidence from the southern Tethyan margin (Egypt-Israel)

    Robert P. Speijer;Thomas Wagner

  • Orbital-scale record of the late Cenomanian–Turonian oceanic anoxic event (OAE-2) in the Tarfaya Basin (Morocco)

    Wolfgang Kuhnt;Florian Luderer;Sandra Nederbragt;Jürgen Thurow

  • MINERALS OF THE SYSTEM Bi–Te–Se–S RELATED TO THE TETRADYMITE ARCHETYPE: REVIEW OF CLASSIFICATION AND COMPOSITIONAL VARIATION

    Nigel J. Cook;Cristiana L. Ciobanu;Thomas Wagner;Christopher J. Stanley

  • Nature and origin of organic matter in carbonates from speleothems, marine cements and coral skeletons

    Karl Ramseyer;Teodoro M. Miano;Valeria D'orazio;Andres Wildberger

  • Quantification of mixing processes in ore-forming hydrothermal systems by combination of stable isotope and fluid inclusion analyses

    Gregor Schwinn;Thomas Wagner;Baldorj Baatartsogt;Gregor Markl

  • Thermodynamic modeling of non-ideal mineral–fluid equilibria in the system Si–Al–Fe–Mg–Ca–Na–K–H–O–Cl at elevated temperatures and pressures: Implications for hydrothermal mass transfer in granitic rocks

    David Dolejš;Thomas Wagner

  • Contrasting paleofluid systems in the continental basement: A fluid inclusion and stable isotope study of hydrothermal vein mineralization, Schwarzwald district, Germany

    B. Baatartsogt;G. Schwinn;Thomas Wagner;H. Taubald

  • Fluid mixing from below in unconformity-related hydrothermal ore deposits

    Paul D. Bons;Tobias Fusswinkel;Enrique Gomez-Rivas;Enrique Gomez-Rivas;Gregor Markl

  • Negative Ce anomalies in Mn oxides: The role of Ce4+ mobility during water–mineral interaction

    Anselm Loges;Thomas Wagner;Matthias Barth;Michael Bau

  • Fluid mixing forms basement-hosted Pb-Zn deposits: Insight from metal and halogen geochemistry of individual fluid inclusions

    Tobias Fusswinkel;Thomas Wagner;Markus Wälle;Thomas Wenzel

  • An experimental study of the aqueous solubility and speciation of Y(III) fluoride at temperatures up to 250 °C

    Anselm Loges;Artas A. Migdisov;Thomas Wagner;Anthony E. Williams-Jones

  • Stable Isotope Constraints on Ore Formation at the San Rafael Tin-Copper Deposit, Southeast Peru

    Thomas Wagner;Michael S. J. Mlynarczyk;Anthony E. Williams-Jones;Adrian J. Boyce

  • Apatite as a tracer of the source, chemistry and evolution of ore-forming fluids: The case of the Olserum-Djupedal REE-phosphate mineralisation, SE Sweden

    Stefan S. Andersson;Thomas Wagner;Erik Jonsson;Erik Jonsson;Tobias Fusswinkel

  • Laser combustion analysis of δ34S of sulfosalt minerals

    Thomas Wagner;Adrian J Boyce;Anthony E Fallick

  • Unusual rare earth element fractionation in a tin-bearing magmatic-hydrothermal system

    Thomas Monecke;Ulf Kempe;Michael Trinkler;Rainer Thomas

  • Stable isotope (B, H, O) and mineral-chemistry constraints on the magmatic to hydrothermal evolution of the Varuträsk rare-element pegmatite (Northern Sweden)

    Karin Siegel;Thomas Wagner;Robert B. Trumbull;Erik Jonsson;Erik Jonsson

  • Redox sensitivity of P cycling during marine black shale formation

    C März;SW Poulton;B Beckmann;K Küster

Frequent Co-Authors

Christian März
Christian März University of Bonn
Helen M. Talbot
Helen M. Talbot University of York
Matthias Zabel
Matthias Zabel University of Bremen
Jaap S. Sinninghe Damsté
Jaap S. Sinninghe Damsté Royal Netherlands Institute for Sea Research
Rüdiger Henrich
Rüdiger Henrich University of Bremen
Richard D. Pancost
Richard D. Pancost University of Bristol
Simon W. Poulton
Simon W. Poulton University of Leeds
Alessandra Negri
Alessandra Negri Marche Polytechnic University
Stefan Schouten
Stefan Schouten Utrecht University
Ralf W. Dittmann
Ralf W. Dittmann Heidelberg University

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