Institution
Annamalai University
Education•Chidambaram, Tamil Nadu, India•
About: Annamalai University is a education organization based out in Chidambaram, Tamil Nadu, India. It is known for research contribution in the topics: Lipid peroxidation & Antioxidant. The organization has 8098 authors who have published 10758 publications receiving 203872 citations.
Papers published on a yearly basis
Papers
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TL;DR: Sesamol pretreated lymphocytes were exposed to different doses of gamma-radiation and the cellular changes were estimated by using cytokinesis blocked micronucleus assay and the possible mechanism involved in the radioprotective influence of sESamol is discussed.
141 citations
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TL;DR: In this paper, a new mathematical model was developed to predict the abrasive wear rate of AA7075 aluminum alloy matrix composites reinforced with SiC particles, five factors, five levels, central composite, rotable design matrix was used to optimise the required number of experiments.
141 citations
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University of Hyderabad1, Indian Institute of Technology Kharagpur2, International Centre for Integrated Mountain Development3, Indian Institute of Remote Sensing4, Remote Sensing Center5, TERI University6, Banaras Hindu University7, University of Twente8, International Water Management Institute9, Centre for Development of Advanced Computing10, International Center for Agricultural Research in the Dry Areas11, Wildlife Institute of India12, Annamalai University13, Berhampur University14, United Nations University15, Indian Institutes of Information Technology16, University of Agricultural Sciences, Dharwad17, World Agroforestry Centre18, University of Kashmir19, National Botanical Research Institute20, Assam University21, Kerala Forest Research Institute22, North Orissa University23, Botanical Survey of India24, University of Calcutta25, Lincoln University (Pennsylvania)26, Pondicherry University27, Mohanlal Sukhadia University28, University of Jammu29, Council of Scientific and Industrial Research30
TL;DR: This vegetation type map is the most comprehensive one developed for India so far and was prepared using 23.5 m seasonal satellite remote sensing data, field samples and information relating to the biogeography, climate and soil.
140 citations
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TL;DR: The spine morphogenesis process, the activity-dependent structural plasticity and mechanisms by which synaptic activity sculpts the dendritic spines, the structural and functional changes in spines during learning and memory using LTP and LTD processes are highlighted.
Abstract: Dendritic spines are small, thin, specialized protrusions from neuronal dendrites, primarily localized in the excitatory synapses. Sophisticated imaging techniques revealed that dendritic spines are complex structures consisting of a dense network of cytoskeletal, transmembrane and scaffolding molecules, and numerous surface receptors. Molecular signaling pathways, mainly Rho and Ras family small GTPases pathways that converge on actin cytoskeleton, regulate the spine morphology and dynamics bi-directionally during synaptic activity. During synaptic plasticity the number and shapes of dendritic spines undergo radical reorganizations. Long-term potentiation (LTP) induction promote spine head enlargement and the formation and stabilization of new spines. Long-term depression (LTD) results in their shrinkage and retraction. Reports indicate increased spine density in the pyramidal neurons of autism and Fragile X syndrome patients and reduced density in the temporal gyrus loci of schizophrenic patients. Post-mortem reports of Alzheimer's brains showed reduced spine number in the hippocampus and cortex. This review highlights the spine morphogenesis process, the activity-dependent structural plasticity and mechanisms by which synaptic activity sculpts the dendritic spines, the structural and functional changes in spines during learning and memory using LTP and LTD processes. It also discusses on spine status in neurodegenerative diseases and the impact of nootropics and neuroprotective agents on the functional restoration of dendritic spines.
140 citations
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TL;DR: In this article, the effect of current, Pulse ON-time (P) and flushing pressure (F) on metal removal rate (MRR), tool wear rate (TWR), taper (T), radial overcut (ROC), and surface roughness (SR) on machining as-cast Al-MMC with 10% SiCP reinforcement was investigated.
139 citations
Authors
Showing all 8164 results
Name | H-index | Papers | Citations |
---|---|---|---|
Dinesh Mohan | 79 | 283 | 35775 |
Sampath Parthasarathy | 77 | 268 | 34280 |
Mandyam V. Srinivasan | 68 | 344 | 15572 |
Leelavinothan Pari | 58 | 160 | 8374 |
Venugopal P. Menon | 54 | 195 | 10111 |
Kadarkarai Murugan | 54 | 286 | 9280 |
V. Balasubramanian | 54 | 457 | 10951 |
Marimuthu Govindarajan | 52 | 212 | 6738 |
Annamalai Subramanian | 49 | 95 | 6021 |
Meenakshisundaram Swaminathan | 48 | 239 | 8698 |
Siddavaram Nagini | 47 | 185 | 7371 |
Mohan K. Balasubramanian | 47 | 130 | 6238 |
Subash C. B. Gopinath | 45 | 455 | 7855 |
Sunil Sazawal | 44 | 111 | 9774 |
Al. Ramanathan | 43 | 235 | 6132 |