آقانباتی، ع. (1383). زمینشناسی ایران، انتشارات سازمان زمینشناسی و اکتشافات معدنی کشور، 538 ص.
سپهریفر، پ. (1390). بررسی ژنز کانسار پلیمتال ندوشن یزد، پایاننامه کارشناسی ارشد، پژوهشکده علوم زمین، 179 ص.
شرکت مهندسین مشاور زمین دانش پارس (1403). گزارش پایان عملیات اکتشاف محدوده تپه مورگاریس، شرکت تهیه و تولید مواد معدنی ایران، 439 ص.
عمیدی، س. (1362). نقشه زمینشناسی آباده در مقیاس 1:250.000، سازمان زمینشناسی و اکتشافات معدنی کشور.
قلمقاش، ج.، محمدیها، م. (1386). نقشه و گزارش ورقه 1:100.000 کفه طاقستان، سری 6653، سازمان زمینشناسی و اکتشافات معدنی کشور.
نوذری، ن.، قادری، م.، تاجالدین، ح. (1403). زمینشناسی، کانیشناسی، و ساخت و بافت در کانسار سرب، مس و روی مورگاریس، جنوبغرب ندوشن، ایران، بیست و هفتمین همایش انجمن زمینشناسی ایران، دانشگاه صنعتی امیرکبیر.
Abrams, M. (2000). The Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER): Data products for the high spatial resolution imager on NASA’s Terra platform. International Journal of Remote Sensing 21, 847–859.
Abrams, M., Hook, S.J. (1995). Simulated ASTER data for geologic studies. IEEE Transactions on Geoscience and Remote Sensing 33(3), 692–699.
Abubakar, J., Zhang, Z., Cheng, Z., Yao, F., Bio Sidi D. Bouko, A.A. (2024). Advancing skarn iron ore detection through multispectral image fusion and 3D Convolutional Neural Networks (3D-CNNs). Remote Sensing 16(17), 3250.
Aghanabati, A. (1998). Major sedimentary and structural units of Iran (map). Geosciences 7, Geological Survey of Iran.
Alavi, M. (1991). Sedimentary and structural characteristics of the Paleo-Tethys remnants in northeastern Iran. Geological Society of America Bulletin 103, 983–992.
Alavi, M. (2004). Regional stratigraphy of the Zagros fold-thrust belt of Iran and its proforeland evolution. American Journal of Science 304(1), 1–20.
Azizi, H., Tarverdi, M.A., Akbarpour, A. (2010). Extraction of hydrothermal alterations from ASTER SWIR data from east Zanjan, northern Iran. Advances in Space Research 46(1), 99–109.
Bedell, R.L. (2001). Geological mapping with ASTER satellite: New global satellite data that is a significant leap in remote sensing geologic and alteration mapping. Special Publication Geology Society of Nevada 33, 329–334.
Berberian, M., King, G.C. (1981). Towards a paleogeography and tectonics evolution of Iran. Canadian Journal of Earth Sciences 18, 210–265.
Boloki, N., Poormirzaee, R. (2009). Using ASTER image processing for hydrothermal alteration and key alteration minerals mapping in Siyahrud, Iran. International Journal of Geology 2(3), 38–43.
Di Tommaso, I., Rubinstein, N. (2007). Hydrothermal alteration mapping using ASTER data in the Infiernillo porphyry deposit, Argentina. Ore Geology Reviews 32(1-2), 275–290.
Einaudi, M.T., Meinert, L.D., Newberry, R.J. (1981). Skarn deposits. SEG Economic Geology 75th Anniversary Volume, Society of Economic Geologists, Littleton, Colorado, 317–339.
Gabr, S., Ghulam, A., Kusky, T. (2010). Detecting areas of high-potential gold mineralization using ASTER data. Ore Geology Reviews 38, 59–69.
Ghasemi, A., Talbot, C.J. (2006). A new scenario for the Sanandaj-Sirjan zone (Iran). Journal of Asian Earth Sciences 26, 683–693.
Kalinowski, A., Oliver, S. (2004). ASTER mineral index processing manual. Remote Sensing Applications, Geoscience Australia 37, 36.
Mars, J.C., Rowan, L.C. (2006). Regional mapping of phyllic- and argillic-altered rocks in the Zagros magmatic arc, Iran, using Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) data and logical operator algorithms. Geosphere 2(3), 161–186.
Mohajjel, M., Fergusson, C.L., Sahandi, M.R. (2003). Cretaceous-Tertiary convergence and continental collision, Sanandaj-Sirjan Zone, western Iran. Journal of Asian Earth Sciences 21, 397–412.
Moradpour, H., Rostami Paydar, G., Pour, A. B., Valizadeh Kamran, K., Feizizadeh, B., Muslim, A.M., Hossain, M. S. (2020). Landsat-7 and ASTER remote sensing satellite imagery for identification of iron skarn mineralization in metamorphic regions. Geocarto International 37(7), 1971–1998.
Nabatian, G.H., Rastad, E., Neubauer, F., Honarmand, M., Ghaderi, M. (2015). Iron and Fe- Mn mineralization in Iran: Implications for Tethyan metallogeny. Australian Journal of Earth Sciences 62(2), 211–241.
Ninomiya, Y. (2003). A stabilized vegetation index and several mineralogic indices defined for ASTER VNIR and SWIR data. In: Proceedings of the IEEE 2003 International Geoscience and Remote Sensing Symposium (IGARSS’03), vol. 3, Toulouse, France, 21–25 July 2003, p. 1552–1554.
Omrani, J., Agard, P., Whitechurch, H., Benoit, M., Prouteau, G., Jolivet, L. (2008). Arc magmatism and subduction history beneath the Zagros Mountains, Iran: A new report of adakites and geodynamic consequences. Lithos 106, 380–398.
Prost, G.L. (2002). Remote Sensing for Geologists: A Guide to Image Interpretation. Second edition, CRC Press, 456 p.
Rajendran, S., Nasir, S. (2017). Characterization of ASTER spectral bands for mapping of alteration zones of volcanogenic massive sulphide deposits. Ore Geology Reviews 88, 317–335.
Rockwell, B.W., Hofstra, A.H. (2008). Identification of quartz and carbonate minerals across northern Nevada using ASTER thermal infrared emissivity data Implications for geologic mapping and mineral resource investigations in well-studied and frontier areas. Geosphere 4(1), 218–246.
Rowan, L.C., Mars, J.C. (2003). Lithologic mapping in the Mountain Pass, California area using Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) data. Remote Sensing of Environment 84, 350–366.
Rowan, L.C., Mars, J.C.) 2003(. Lithologic mapping in the Mountain Pass, California area using Advanced Spaceborne Thermal Emission and Reflection Radiometer (ASTER) data. Remote Sensing of Environment 84, 350–366.
Seo, M., Aung Kyaw, T., Takashima, I. (2005). Application of remote sensing techniques on iron oxide detection from ASTER and Landsat images of Tanintharyi coastal area, Myanmar. Akita University, 26, 21–28.
Shabynin, L.I. (1971). Deposition of magnetite ores, magmatic stage, in the magnesioskarnal ore-bearing formation. International Geology Review 13(12), 1798–1805.
Shahsavari Alavijeh, B., Rashidnejad-Omran, N., Toksoy-Köksal, F., Xu, W., Ghalamghash, J. (2019). Oligocene subduction-related plutonism in the Nodoushan area, Urumieh-Dokhtar magmatic belt: Petrogenetic constraints from U-Pb zircon geochronology and isotope geochemistry. Geoscience Frontiers 10(2), 725–751.
Stöcklin, J. (1968). Structural history and tectonics of Iran: A review. American Association of Petroleum Geologists Bulletin 52(7), 1229–1258.
Warr, L.N. (2021). IMA–CNMNC approved mineral symbols. Mineralogical Magazine 85(3), 291–320.
Yamaguchi, Y.I., Fujisada, H., Kudoh, M., Kawakami, T., Tsu, H., Kahle, A.B., Pniel, M. (1999). ASTER instrument characterization and operation scnorio. Advanced Space Research 23(8), 1415–1424.
Zhang, S., Wang, H., Fan, Y., Hu, N., Liu, H., Yang, C., Liao, Y. (2018). Application of high-resolution remote sensing image in the exploration of skarn-type iron deposit in Hutouya area of East Kunlun. IOP Conference Series: Earth and Environmental Science 170, 022094.