,
“3D integrated imaging of a gold-silver epithermal deposit in British Columbia, Canada”, Interpretation.
, “Evidence of magmatism and rifting in the southern superior craton from the Temagami geophysical anomaly”, Precambrian Research, vol. 362, p. 106310, 2021.
, “Crustal conductivity footprint of the orogenic gold district in the Red Lake greenstone belt, western Superior craton, Canada”, Geology, 2023.
, “Trace element distribution in sulfide assemblages from the Levack-Morrison ore systems, Sudbury, Ontario; looking for chemical fingerprints of ore processes”, in GAC-MAC Winnipeg 2013 joint annual meeting, vol. 36, Geological Association of Canada, Waterloo, ON, Canada, 2013, p. 60.
, GeoRef, Copyright 2018, American Geological Institute.690871-6
“Trace elements in sulfide assemblages form the Levack-Morrison Ni-Cu-PGE ore system, Sudbury, Ontario; looking for chemical fingerprints of ore processes”, in Geological Association of Canada-MAC/Atlantic Geoscience Society joint annual meeting; illuminating the past for 175 years, vol. 37, Geological Association of Canada, Waterloo, ON, Canada, 2014, pp. 3-4.
, GeoRef, Copyright 2018, American Geological Institute.2016-108718Levack-Morrison Deposit
“Trace element distribution in sulphide assemblages of the Levack-Morrison ore system, Sudbury, Ontario: Looking for chemical fingerprints of mineralization processes”, Geological Survey of Canada, 2015.
, “Trace element distribution in sulphide assemblages of the Levack-Morrison ore system, Sudbury, Ontario; looking for chemical fingerprints of mineralization processes”, in Targeted Geoscience Initiative 4; Canadian nickel-copper-platinum group elements-chromium ore systems; fertility, pathfinders, new and revised models, Geological Survey of Canada, Calgary, AB, Canada, 2015, pp. 257-268.
, GeoRef, Copyright 2018, American Geological Institute.2016-108642Levack-Morrison Deposit
“A convolutional neural network for semi-automated lineament detection and vectorisation of remote sensing data using probabilistic clustering: A method and a challenge”, Computers & Geosciences, p. 104724, 2021.
, , , “On the preparation of iron pyrite from synthetic and natural targets by pulsed electron deposition”, Advances in nano researchAdvances in nano research, vol. 1, pp. 219-228, 2013.
, “Application of ASTER data for exploration of porphyry copper deposits; a case study of Daraloo-Sarmeshk area, southern part of the Kerman copper belt, Iran”, Ore Geology ReviewsOre Geology Reviews, vol. 70, pp. 290-304, 2015.
, GeoRef, Copyright 2018, American Geological Institute.2017-012675Daraloo-Sarmeshk areaKerman copper beltUrumieh-Dokhtar Belt
“Porphyry-style alteration and mineralization associated with high-level tonalite-grano-diorite intrusions at the Darloo and Sarmeshk copper deposits, South Iran”, in St. John's 2012; geoscience at the edge, abstracts, vol. 35, Geological Association of Canada, Waterloo, ON, Canada, 2012, p. 3.
, GeoRef, Copyright 2018, American Geological Institute.690866-10
“Application of ASTER data for exploration of porphyry copper deposits: A case study of Daraloo–Sarmeshk area, southern part of the Kerman copper belt, Iran”, Ore Geology ReviewsOre Geology Reviews, vol. 70, pp. 290-304, 2015.
, “The geology, petrogenesis and geological setting of the volcanic and plutonic rocks from Daraloo and Sarmeshk porphyry copper deposits, South Kerman copper belt, Iran”, ULUM-I ZAMINULUM-I ZAMIN, vol. 25, pp. 159-170, 2016.
, “Stable isotopes (O, H, S, C) and fluid inclusions document fluid mixing in the ore-forming systems of the Daraloo and Sarmeshk copper deposits, central part of the Dehaj-Sardoeieh Belt, south Iran”, in Geological Association of Canada-MAC/Atlantic Geoscience Society joint annual meeting; illuminating the past for 175 years, vol. 37, Geological Association of Canada, Waterloo, ON, Canada, 2014, p. 6.
, GeoRef, Copyright 2018, American Geological Institute.2016-108722Daraloo DepositDehaj-Sardoeieh BeltSarmeshk Depositsouthern Iran
“Geological setting, petrology and nature of mineralization and alteration of the Daraloo and Sarmeshk porphyry copper deposits, south Iran”, Mineralium Deposita.
, “Stromatolite reef from the Early Archaean era of Australia”, Nature, vol. 441, pp. 714-718, 2006.
, Compilation and indexing terms, Copyright 2018 Elsevier Inc.2006249943643BiogenicityPalaeoenvironmental studyPalaeontologyStromatolites
“Large semi-conformable alteration zones within the Onaping Formation, Whitewater Group, Sudbury Structure, Ontario”, in New directions for geosciences; abstracts, vol. 1995, Geological Survey of Canada, Ottawa, ON, Canada, 1995, p. 27.
, , GeoRef, Copyright 2018, American Geological Institute.2006-001668Errington DepositVermillion Deposit
“Hanging-wall vectoring for buried volcanogenic massive sulfide deposits, Paleoproterozoic Flin Flon mining camp, Manitoba, Canada”, Economic GeologyEconomic Geology, vol. 111, pp. 963-1000, 2016.
, Compilation and indexing terms, Copyright 2018 Elsevier Inc.20162102418666Hydrothermal alterationsLow-temperature hydrothermal fluidsMassive sulfide depositsSeafloor hydrothermal activityStratigraphic intervalsVolcaniclastic sedimentsVolcanogenic massive sulfide depositsVolcanogenic massive sulfides
“Impact-Generated Hydrothermal System — Constraints from the Large Paleoproterozoic Sudbury Crater, Canada”, in Biological Processes Associated with Impact Events, Berlin, Heidelberg: Springer Berlin Heidelberg, 2006, pp. 55-100.
, “Update on Research Activities in the Targeted Geoscience Initiative 4 Magmatic-Hydrothermal Nickel-Copper-Platinum Group Elements Ore System Subproject: System Fertility and Ore Vectors”, in Summary of Field Work and Other Activities 2012, vol. Open File Report 6280, Ontario Geological Survey, 2012, pp. 41-1 to 41-11.
, “Update on Research Activities in the Targeted Geoscience Initiative 4 Magmatic-Hydrothermal Nickel-Copper-Platinum Group Elements Ore System Subproject: System Fertility and Ore Vectors”, in Summary of Field Work and Other Activities 2012, vol. Open File Report 6280, Ontario Geological Survey, 2012, pp. 41-1 to 41-11.
,