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Articles published in Rice Research: Open 91桃色 have been cited by esteemed scholars and scientists all around the world. Rice Research: Open 91桃色 has got h-index 25, which means every article in Rice Research: Open 91桃色 has got 25 average citations.
Following are the list of articles that have cited the articles published in Rice Research: Open 91桃色.
2024 | 2023 | 2022 | 2021 | 2020 | 2019 | 2018 | 2017 | 2016 | |
---|---|---|---|---|---|---|---|---|---|
Total published articles |
32 | 35 | 61 | 60 | 26 | 12 | 14 | 12 | 22 |
Conference proceedings |
0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 | 0 |
Citations received as per Google Scholar, other indexing platforms and portals |
30 | 67 | 288 | 249 | 241 | 217 | 178 | 123 | 122 |
Journal total citations count | 2497 |
Journal impact factor | 5.63 |
Journal 5 years impact factor | 6.78 |
Journal cite score | 6.25 |
Journal h-index | 25 |
Journal h-index since 2019 | 17 |
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Abebrese, S. O., Dartey, P. K. A., Akromah, R., Gracen, V. E., Offei, S. K., & Danquah, E. Y. (2018). Identification of CMS maintainers and restorers for hybrid rice development in Ghana. Journal of Crop Improvement, 32(5), 690-704. |
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K Srivastava, R., Bollam, S., Pujarula, V., Pusuluri, M., Singh, R. B., Potupureddi, G., & Gupta, R. (2020). Exploitation of heterosis in pearl millet: a review. Plants, 9(7), 807. |
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Toppo, N. N., & Maiti, D. (2017). Capturing Plant Genetic Potential of Upland Rice for Exploiting Arbuscular Mycorrhiza Responsiveness to Improve Rice Variety for Higher Phosphorus (P) Acquisition Under P Limiting Environments. In Mycorrhiza-Nutrient Uptake, Biocontrol, Ecorestoration (pp. 45-73). Springer, Cham. |
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Chang, J., Sun, Y., Tian, L., Ji, L., Luo, S., Nasir, F., ... & Tian, C. (2021). The structure of rhizosphere fungal communities of wild and domesticated rice: changes in diversity and co-occurrence patterns. Frontiers in microbiology, 12, 45. |
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Chang, J., Sun, Y., Tian, L., Ji, L., Luo, S., Nasir, F., ... & Tian, C. (2021). The structure of rhizosphere fungal communities of wild and domesticated rice: changes in diversity and co-occurrence patterns. Frontiers in microbiology, 12, 45. |
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Panneerselvam, P., Kumar, U., Sugitha, T. C. K., Parameswaran, C., Sahoo, S., Binodh, A. K., ... & Anandan, A. (2017). Arbuscular mycorrhizal fungi (AMF) for sustainable rice production. In Advances in soil microbiology: recent trends and future prospects (pp. 99-126). Springer, Singapore. |
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Masinire, F., Adenuga, D. O., Tichapondwa, S. M., & Chirwa, E. M. (2021). Phytoremediation of Cr (VI) in wastewater using the vetiver grass (Chrysopogon zizanioides). Minerals Engineering, 172, 107141. |
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Saha, P., Shinde, O., & Sarkar, S. (2017). Phytoremediation of industrial mines wastewater using water hyacinth. International journal of phytoremediation, 19(1), 87-96. |
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Ijah, U. J. J., Abioye, O. P., & Bala, J. D. (2021). Vermicompost Assisted Phytoremediation of Heavy Metal Contaminated Soil in Madaka District, Nigeria Using Melissa officinalis L (Lemon balm) and Sida acuta (Stubborn weed). |
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Mousavi Kouhi, S. M., Sarafraz Ardakani, M. R., & Beykkhormizi, A. (2019). Irrigation of Helianthus annuus with Pb-polluted water: Improvement of phytoremediation using vermicompost. Journal of Plant Process and Function, 8(31), 77-83. |
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Kouhi, S. M. M., Ardakani, M. R. S., & Beykkhormizi, A. (2019). Irrigation of Helianthus annuus with Pb-polluted water: Improvement of phytoremediation using vermicompost. Journal of Plant Process and Function, 8(31), 78. |
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Bellit脙录rk, K., Turan, H. S., G脙露脙搂mez, S., Solmaz, Y., 脙聹ST脙聹NDA?, 脙聳., & AD?LO?LU, A. (2020). Effects of Vermicompost Applications on Microelemental Contents of Olive Saplings芒聙聶 Production Material. Tekirda? Ziraat Fak脙录ltesi Dergisi, 17(3), 285-291. |
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Ipeaiyeda, A. R., Adenipekun, C. O., & Oluwole, O. (2020). Bioremediation potential of Ganoderma lucidum (Curt: Fr) P. Karsten to remove toxic metals from abandoned battery slag dumpsite soil and immobilisation of metal absorbed fungi in bricks. Cogent Environmental Science, 6(1), 1847400. |
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Gayatri, N., Sailesh, A. R., & Srinivas, N. (2019). Phytoremediation Potential of Brassica juncea for removal of selected heavy metals in urban soil amended with cow dung. J Mater Environ Sci, 10(5), 463-469. |
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Chaudhary, K., Jan, S., & Khan, S. (2016). Heavy metal ATPase (HMA2, HMA3, and HMA4) genes in hyperaccumulation mechanism of heavy metals. In Plant Metal Interaction (pp. 545-556). Elsevier. |
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Bellit脙录rk, K. (2018). Vermicomposting in Turkey: Challenges and opportunities in future. Eurasian Journal of Forest Science, 6(4), 32-41. |
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Baran, M. F., L脙录le, F., & G脙露kdo?an, O. (2017). Energy input-output analysis of organic grape production: a case study from Adiyaman Province. Erwerbs-Obstbau, 59(4), 275-279. |
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Chavez, E., He, Z. L., Stoffella, P. J., Mylavarapu, R., Li, Y., & Baligar, V. C. (2016). Evaluation of soil amendments as a remediation alternative for cadmium-contaminated soils under cacao plantations. Environmental Science and Pollution Research, 23(17), 17571-17580. |
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Settu, R., Selvaraj, D., & Padikasan, I. A. (2021). GCMS profiling and in silico screening of alpha-amylase inhibitors in traditional pigmented rice varieties (Oryza sativa Linn) of Tamil Nadu. Food Bioscience, 101154. |
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Pandita脗鹿, D., Pandita, A., & Pandita, S. Pharmacological and Phytochemical Portrayal of Monocotyledonous Medicinal Plants of Jammu and Kashmir abound with Antidiabetic Potential. |
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