1. [1] Cross W., "Constitution and Origin of Spherulites in Acid Eruptive Rocks", Philosophical Society of Washington, 1891.
2. [2] Iddings W., "Spherulitic crystallization" Bulletin of the Philosophical Society of Washington 11(1891) 445-64.
3. [3] Harker Alfred, "On a Question relative to Extinction-angles in rock-slices1" Mineralogical magazine and journal of the Mineralogical Society 13.59 (1901): 66-68. [
DOI:10.1180/minmag.1901.013.59.06]
4. [4] Magill J. H., "Review spherulites: A personal perspective." Journal of materials science 36 (2001): 3143-3164. [
DOI:10.1023/A:1017974016928]
5. [5] Lofgren Gary, "An experimental study of plagioclase crystal morphology; isothermal crystallization", American journal of Science 274.3 (1974): 243-273. [
DOI:10.2475/ajs.274.3.243]
6. [6] Vernon R. H., "A Practical Guide to Rock Microstructure" Cambridge university press (2004) 655. [
DOI:10.1017/CBO9780511807206]
7. [7] Whitney D. L., Evans B. W., "Abbreviations for names of rock-forming minerals." American mineralogist 95.1 (2010): 185-187. [
DOI:10.2138/am.2010.3371]
8. [8] Stöcklin J., "Structural history and tectonics of Iran: a review" AAPG bulletin 52.7 (1968): 1229-1258. [
DOI:10.1306/5D25C4A5-16C1-11D7-8645000102C1865D]
9. [9] Berberian Manuel, King G. C. P., "Towards a paleogeography and tectonic evolution of Iran", Canadian journal of earth sciences 18.2 (1981): 210-265. [
DOI:10.1139/e81-019]
10. [10] Badr A., Davoudian A. R., Shabanian N., Azizi H., Asahara Y., Neubauer F., Dong Y., Yamamoto K., "A-and I-type metagranites from the North Shahrekord Metamorphic Complex, Iran: Evidence for Early Paleozoic post-collisional magmatism", Lithos 300 (2018): 86-104. [
DOI:10.1016/j.lithos.2017.12.008]
11. [11] Davoudian A. R., Genser J., Neubauer F., Shabanian N., "40Ar/39Ar mineral ages of eclogites from North Shahrekord in the Sanandaj-Sirjan Zone, Iran: implications for the tectonic evolution of Zagros orogen", Gondwana Research 37 (2016) 216-240. [
DOI:10.1016/j.gr.2016.05.013]
12. [12] Shabanian N., Neubauer F., "From Early Jurassic intracontinental subduction to Early-Middle Jurassic slab break-off magmatism during the Cimmerian orogeny in the Sanandaj-Sirjan Zone, Iran", Journal of Asian Earth Sciences (2024): 106153. [
DOI:10.1016/j.jseaes.2024.106153]
13. [13] Davoudian A. R., Genser J., Dachs E., Shabanian N., "Petrology of eclogites from north of Shahrekord, Sanandaj-Sirjan zone, Iran" Mineralogy and Petrology 92 (2008) 393-413. [
DOI:10.1007/s00710-007-0204-6]
14. [14] Malek-Mahmoudi F., Davoudian A., Shabanian N., Azizi H., Asahara Y., Neubauer F., Dong Y., "Geochemistry of metabasites from the North Shahrekord metamorphic complex, Sanandaj-Sirjan Zone: Geodynamic implications for the Pan-African basement in Iran" Precambrian Research 293 (2017) 56-72. [
DOI:10.1016/j.precamres.2017.03.003]
15. [15] Moradian E., Shabanian N., Davoudian A. R., Dong Y., Cottle J M., "Geochronology, petrogenesis, and tectonic setting of amphibolitic rocks from the Tutak metamorphic Complex, Sanandaj-Sirjan Zone, Iran" Journal of Asian Earth Sciences 255 (2023) 105764. [
DOI:10.1016/j.jseaes.2023.105764]
16. [16] Mohjjal M., "Geological map of Golpaygan area, scale 1:100000, number 6056 (in Persian)" Geological and mineral exploration organization of the country Iran (1371).
17. [17] Ghasemi H., Valizadeh M V., "Petrogenesis of granitoid body of Boein-Miandasht (SE Aligudarz) " Geosciences Quarterly GSI 2 (7) (1993) 74-83.
18. [18] Sabeti M., Emami M. H., Saeedi A., Ajdary K., Minaee, A., Nadimi A. R., "Petrological, Geochemical, and Tectonomagmatic Setting of Bouin-Miandasht Intrusion in Sanandaj-Sirjan Zone (SSZ) (West of Iran) " Scientific Quarterly Journal of Geosciences 21(84) (2012) 43-56.
19. [19] Tavakoli N., Davoudian A R., Shabanian N., Azizi H., Neubauer F., Asahara Y., "Bernroider M., Zircon U-Pb dating, mineralogy and geochemical characteristics of the gabbro and gabbro-diorite bodies, Boein-Miandasht, western Iran" International Geology Review 62(13-14) (2020) 1658-1676. [
DOI:10.1080/00206814.2019.1583139]
20. [20] Tavakoli N., Shabanian N., Davoudian A R., Azizi H., Neubauer F., Asahara Y., Lee J K., "A-type granite in the Boein-Miandasht Complex: Evidence for a Late Jurassic extensional regime in the Sanandaj-Sirjan Zone, western Iran" Journal of Asian Earth Sciences 213(2021) 104771. [
DOI:10.1016/j.jseaes.2021.104771]
21. [21] Yang J., Cui Y., Chen M., Wang Y., Xu S., Wu S., Gong J., "Transformation between two types of spherulitic growth: tuning the morphology of spherulitic nitroguanidine in a gelatin solution" Industrial & Engineering Chemistry Research 59(48) (2020) 21167-21176 [
DOI:10.1021/acs.iecr.0c03039]
22. [22] Manley C., "Extended cooling and viscous flow of large, hot rhyolite lavas: implications of numerical modeling results" J Volcanology and Geotherm Res 53(1992) 27-46. [
DOI:10.1016/0377-0273(92)90072-L]
23. [23] MacArthur A., Cas R., Orton G., "Distribution and significance of crystalline, perlitic and vesicular textures in the Ordovician Garth Tuff (Wales) " Bull Volcano 60(1998) 260-285. [
DOI:10.1007/s004450050232]
24. [24] Watkins J., Manga M., Huber C., Martin M., "Diffusion-controlled spherulite growth in obsidian inferred from H2O concentration profiles" Contributions to Mineralogy and Petrology 157(2009)163-172. [
DOI:10.1007/s00410-008-0327-8]
25. [25] Morse H. W., Donnay J. D. H., "Optics and structure of three-dimensional spherulites" American Mineralogist: Journal of Earth and Planetary Materials 21(7) (1936) 391-426.
26. [26] Donaldson C. H., "Olivine crystal types in harrisitic rocks of the Rhum pluton and in Archean spinifex rocks" Geological Society of America Bulletin, 85(11) (1974) 1721-1726.
https://doi.org/10.1130/0016-7606(1974)85<1721:OCTIHR>2.0.CO;2 [
DOI:10.1130/0016-7606(1974)852.0.CO;2]
27. [27] Lofgren G., "Spherulitic textures in glassy and crystalline rocks" Journal of Geophysical Research 76 (23) (1971) 5635-5648. [
DOI:10.1029/JB076i023p05635]
28. [28] Shabanian N., Davoudian A. R., Panahdar., "Geochemistry of Qaraboltaq granitoid massif, Boyin Miandasht (southeast of Aliguderz) (in Persian)" Petrology 3.11 (2012): 59-76.
29. [29] GEORGE J.R. R. P., "Structural petrology of the Olympus ultramafic complex in the Troodos ophiolite, Cyprus" Geological Society of America Bulletin 89(6) (1978) 845-865.
https://doi.org/10.1130/0016-7606(1978)89<845:SPOTOU>2.0.CO;2 [
DOI:10.1130/0016-7606(1978)892.0.CO;2]
30. [30] Paterson S. R., Vernon R H., Tobisch O. T., "A review of criteria for the identification of magmatic and tectonic foliations in granitoids" Journal of structural geology, 11(3) (1989) 349-363. [
DOI:10.1016/0191-8141(89)90074-6]
31. [31] Ramsay J. G., "The techniques of modern structural geology" The Techniques of Modern Structural Geology, Folds and Fractures 2 (1986) 309-700
32. [32] Paquet J., Francois P., Nedelec A., "Effect of partial melting on rock deformation: experimental and natural evidences on rocks of granitic compositions" Tectonophysics, 78(1-4) (1981) 545-565. [
DOI:10.1016/0040-1951(81)90028-7]
33. [33] Bouchez J. L., Delas C., Gleizes G., Nédélec A., Cuney M., "Submagmatic microfractures in granites" Geology 20(1) (1992) 35-38.
https://doi.org/10.1130/0091-7613(1992)020<0035:SMIG>2.3.CO;2 [
DOI:10.1130/0091-7613(1992)0202.3.CO;2]
34. [34] Davidson C., Schmid S. M., Hollister L. S., "Role of melt during deformation in the deep crust" Terra Nova 6(2) (1994) 133-142. [
DOI:10.1111/j.1365-3121.1994.tb00646.x]
35. [35] Hibbard M.J., "Petrography to petrogenesis", Prentice Hall, New Jersey (1995) 587p.
36. [36] Smith J. V., Brown W. L., "Feldspar minerals" Springer Berlin Heidelberg New York vol 1(1988) 828p. [
DOI:10.1007/978-3-642-72594-4]
37. [37] Passchier C. W., Trouw A., "Microtectonics" Springer Science & Business Media (2005).
38. [38] Bucher K., Grapes R., "Metamorphism of Dolomites and Limestones. In Petrogenesis of metamorphic rocks" Springer Berlin Heidelberg (2011) 225- 255. [
DOI:10.1007/978-3-540-74169-5_6]
39. [39] Shau Y. H., Yang H. Y., Peacor D. R., "On oriented titanite and rutile inclusions in sagenitic biotite" American Mineralogist 76(7-8) (1991) 1205-1217.
40. [40] Henry D. J., Guidotti C. V., Thomson J. A., "The Ti-saturation surface for low-to-medium pressure metapelitic biotites: Implications for geothermometry and Ti-substitution mechanisms" American mineralogist 90(2-3) (2005) pp 316-328. [
DOI:10.2138/am.2005.1498]
41. [41] Sawyer E. W., "Criteria for the recognition of partial melting" Physics and Chemistry of the Earth, Part A: Solid Earth and Geodesy 24 (3) (1999) 269-279. [
DOI:10.1016/S1464-1895(99)00029-0]
42. [42] Mehnert K. R., Schneider G., "Initial melting at grain boundaries of quartz and feldspar in gneisses and granulites" Neues Jahrbuch für Mineralogie-Monatshefte (1973) 165-183. [
DOI:10.1127/njmm/1973/1973/165]
43. [43] Busch W., "Initial melting at grain boundaries Part II: Melting in rocks of granodioritic, quartz dioritic and tonalitic composition" Neues Jahrb. Mineral. Mh 8(1974) 345-370.
44. [44] Watson E. B., Jurewicz S. R., "Behavior of alkalis during diffusive interaction of granitic xenoliths with basaltic magma" The Journal of Geology 92.2 (1984) 121-131. [
DOI:10.1086/628843]
45. [45] Keith H. D., Padden Jr. F. J., "A phenomenological theory of spherulitic crystallization" Journal of Applied Physics 34(8) (1963) 2409-2421. [
DOI:10.1063/1.1702757]
46. [46] Shelley D., "Igneous and metamorphic rocks under the microscope: classification, textures, microstructures and mineral preferred- orientations" (No Title) (1993).
47. [47] Vernon R. H., Clarke G. L., Collins W. J., "Local, mid-crustal granulite facies metamorphism and melting: an example in the Mount Stafford area, central Australia." High-temperature metamorphism and crustal anatexis. Dordrecht: Springer Netherlands (1990) 272-319. [
DOI:10.1007/978-94-015-3929-6_11]
48. [48] Arjamand M., "The importance of co-evolutionary textures in the interpretation of petrogenesis and the depth of placement of intrusive rocks in the northwest of the Middle West (in Persian)" Petrology (2014).
49. [49] Jahns R. H., Tuttle O. F., "Layered pegmatite-aplite intrusions" American Mineralogist (1962) 47, 94.
50. [50] Webber K. L., Simmons W.B., Falster A. U., Foord E. E., "Cooling rates and crystallization dynamics of shallow level pegmatite-aplite dikes, San Diego County, California" American Mineralogist 84 (5-6) (1999) 708-717. [
DOI:10.2138/am-1999-5-602]
51. [51] Rockhold J. R., Nabelek P. I., Glascock M. D., "Origin of rhythmic layering in the Calamity Peak satellite pluton of the Harney Peak Granite, South Dakota: The role of boron." Geochimica et Cosmochimica Acta 51.3 (1987): 487-496. [
DOI:10.1016/0016-7037(87)90063-9]