Erin M. Schuman

Active 1991–2025

126
Papers
31,007
Citations
90
h-index
125
i10-index

Citations

Citations per year for Erin M. Schuman1986: 1 citations1988: 1 citations1990: 1 citations1991: 1 citations1992: 27 citations1993: 47 citations1994: 74 citations1995: 88 citations1996: 113 citations1997: 131 citations1998: 188 citations1999: 225 citations2000: 224 citations2001: 247 citations2002: 306 citations2003: 250 citations2004: 335 citations2005: 290 citations2006: 335 citations2007: 329 citations2008: 333 citations2009: 278 citations2010: 331 citations2011: 312 citations2012: 269 citations2013: 351 citations2014: 317 citations2015: 286 citations2016: 309 citations2017: 268 citations2018: 307 citations2019: 814 citations2020: 1,088 citations2021: 1,070 citations2022: 789 citations2023: 673 citations2024: 893 citations2025: 406 citations2026: 10 citations1987: no citations, so this year is not shown1989: no citations, so this year is not shown

Citation sources

Countries

World map of the countries and regions citing this authorUnited States: 4,219 citing papers, 37.1% of this breakdownGermany: 968 citing papers, 8.5% of this breakdownChina: 932 citing papers, 8.2% of this breakdownUnited Kingdom: 750 citing papers, 6.6% of this breakdownCanada: 455 citing papers, 4% of this breakdownItaly: 405 citing papers, 3.6% of this breakdownJapan: 377 citing papers, 3.3% of this breakdownFrance: 340 citing papers, 3% of this breakdownSpain: 220 citing papers, 1.9% of this breakdownNetherlands: 217 citing papers, 1.9% of this breakdownSwitzerland: 199 citing papers, 1.8% of this breakdownAustralia: 175 citing papers, 1.5% of this breakdown
0%37.1%Other 18.6%

Fields

  • Biochemistry, Genetics and Molecular Biology41.8%
  • Neuroscience38.7%
  • Medicine12.5%
  • Chemistry2.7%
  • Engineering1.5%
  • Psychology0.8%
  • Other2%

Topics

  • Neuroscience and Neuropharmacology Research9.9%
  • RNA Research and Splicing3.9%
  • Neurogenesis and neuroplasticity mechanisms3.3%
  • Nerve injury and regeneration3.2%
  • Memory and Neural Mechanisms2.9%
  • Neural dynamics and brain function2.9%
  • Other73.9%

Coauthors

All papers

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  1. Neural circular RNAs are derived from synaptic genes and regulated by development and plasticity

    Authors: , , , , , , , , , , , , , , , , , - Nature Neuroscience 2015 cited by 1,184

  2. Local protein synthesis is a ubiquitous feature of neuronal pre- and postsynaptic compartments

    Authors: , , , , - Science 2019 cited by 451

  3. Local translation in neurons: visualization and function

    Authors: , , - Nature Structural & Molecular Biology 2019 cited by 556

  4. Spatially Stable Mitochondrial Compartments Fuel Local Translation during Plasticity

    Authors: , , - Cell 2019 cited by 408

  5. Alternative 3′ UTRs Modify the Localization, Regulatory Potential, Stability, and Plasticity of mRNAs in Neuronal Compartments

    Authors: , , , , , - Neuron 2018 cited by 400

  6. Monosomes actively translate synaptic mRNAs in neuronal processes

    Authors: , , , , , , - Science 2020 cited by 285

  7. The Local Transcriptome in the Synaptic Neuropil Revealed by Deep Sequencing and High-Resolution Imaging

    Authors: , , , , , - Neuron 2012 cited by 750

  8. The translatome of neuronal cell bodies, dendrites, and axons

    Authors: , , , , , , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2021 cited by 200

  9. Selective identification of newly synthesized proteins in mammalian cells using bioorthogonal noncanonical amino acid tagging (BONCAT)

    Authors: , , , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2006 cited by 902

  10. Local and global influences on protein turnover in neurons and glia

    Authors: , , , - eLife 2018 cited by 269

  11. Cell-type-specific metabolic labeling of nascent proteomes in vivo

    Authors: , , , , , , , , , , , , , - Nature Biotechnology 2017 cited by 243

  12. Neuronal ribosomes exhibit dynamic and context-dependent exchange of ribosomal proteins

    Authors: , , , , , , , , , - Nature Communications 2021 cited by 160

  13. Human memory strength is predicted by theta-frequency phase-locking of single neurons

    Authors: , , , - Nature 2010 cited by 665

  14. Online detection and sorting of extracellularly recorded action potentials in human medial temporal lobe recordings, in vivo

    Authors: , , - Journal of Neuroscience Methods 2006 cited by 359

  15. De-centralizing the Central Dogma: mRNA translation in space and time

    Authors: , , - Molecular Cell 2023 cited by 104

  16. Ubiquitin, the proteasome and protein degradation in neuronal function and dysfunction

    Authors: , - Nature reviews. Neuroscience 2008 cited by 525

  17. Dendritic Protein Synthesis, Synaptic Plasticity, and Memory

    Authors: , - Cell 2006 cited by 910

  18. The prevalence and specificity of local protein synthesis during neuronal synaptic plasticity

    Authors: , , , , , , - Science Advances 2021 cited by 104

  19. The integrated stress response contributes to tRNA synthetase–associated peripheral neuropathy

    Authors: , , , , , , , , , , , , , , , , , , , , , , - Science 2021 cited by 133

  20. Direct visualization of newly synthesized target proteins in situ

    Authors: , , , , , , , , , , , - Nature Methods 2015 cited by 317

  21. Local translation in neuronal compartments: how local is local?

    Authors: , , - EMBO Reports 2017 cited by 199

  22. An abundance of free regulatory (19 S ) proteasome particles regulates neuronal synapses

    Authors: , , , , , , - Science 2023 cited by 52

  23. In situ visualization and dynamics of newly synthesized proteins in rat hippocampal neurons

    Authors: , , , , , , , - Nature Neuroscience 2010 cited by 487

  24. Cell-type-specific metabolic labeling, detection and identification of nascent proteomes in vivo

    Authors: , , , - Nature Protocols 2019 cited by 90