Trackademia

Welcome to Trackademia

The idea behind Trackademia is to build on existing academic databases like Google Scholar and OpenAlex so that you can trust the data and use it for whatever you want. That comes down to two things.

More data, and more ways to use it. We aggregate publication data from every major source into a single dataset and add information pulled from faculty CVs. Then we let you slice it however you want: choose which sources to build from, write your own formulas, weight journals, adjust for department size.

More accurate, and honest about where it isn’t. We focus on a smaller set of schools so we can verify everything carefully. Faculty lists come from department websites rather than being inferred from publication records, so we know who should be in the data before we go looking. When we can’t find data on someone, we record the gap instead of dropping them. Every number comes with a coverage rate you can check against ground truth.

Everything in Trackademia is built from seven units. AI merges duplicate records across sources and tags each publication so these categories hold up:

  • Publication — citation counts, authors, journal, peer review status, and more
  • Publication group — versions of the same work combined into one entity, such as a working paper and the article it became
  • Academic
  • Department
  • University
  • Field
  • Journal

There are two modes. In Database mode you browse the underlying records and filter by any of the seven units. In Analytics mode you get graphs and comparisons, and you switch views to compare two departments, compare one department against the average of the others, or see them all at once. Tabs let you focus on a particular level of the data.

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Journal

Cell

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Citation weight

TierA
Weight in force
Weightingoff

Weight inputs

Each figure with its percentile among the ranked journals. A is the median, over the academics with a work here, of that academic’s citations to the works this site counts for them - never a Google Scholar profile total. Over every academic of this field, all years, whatever the filters select.

A · academics’ median14,099.5 · 60%
B · citations per work626.4 · 94%
N · works66 · 59%
P · academics22 · 59%
Formula result1.137

From this institution

Under these filters. A work with no citation count is unknown here, never a zero.

Works54
Citations29,946 over 49 of 54 works
Citations per counted work611.1
Weighted citations
Academics19
Departments7
First seen2006

Works placed per year

54 of these 54 works carry a year; an undated work is in no year. Works placed, under these filters.

Departments publishing there 7

DepartmentWorks
Harvard Chemistry33
Princeton Chemistry10
Dartmouth Chemistry4
Yale Chemistry3
Columbia Chemistry2
Penn Chemistry2
Cornell Chemistry1

A work held by two departments counts once in each, so these add up to more than the works above.

Works placed there 54

YearTitleAcademicsCitations
2014Regulation of Ferroptotic Cancer Cell Death by GPX4Virginia W. Cornish7,741
2010Breaking the diffraction barrier: Super-resolution imaging of cellsXiaowei Zhuang1,499
2017CRISPR-Based Technologies for the Manipulation of Eukaryotic GenomesDavid R. Liu1,497
2012The RIP1/RIP3 necrosome forms a functional amyloid signaling complex required for programmed necrosisAnn E. McDermott1,492
2018Metabolomics and isotope tracingJoshua Rabinowitz1,045
2021Enhanced Prime Editing Systems by Manipulating Cellular Determinants of Editing OutcomesDavid R. Liu985
2020Competing protein–RNA interaction networks control multiphase intracellular organizationWilliam M. Jacobs873
2011Amyloid-like Aggregates Sequester Numerous Metastable Proteins with Essential Cellular FunctionsMichael Hecht842
2021Small RNAs are modified with N-glycans and are primarily displayed on the surface of living cellsStacy Malaker761
2022Engineered Virus-Like Particles for Efficient In Vivo Delivery of Therapeutic ProteinsDavid R. Liu757
2006Ligands for clathrin-mediated endocytosis are differentially sorted into distinct populations of early endosomesXiaowei Zhuang715
2015Single-cell genomics unveils critical regulators of Th17 cell pathogenicityHongkun Park702
2020The human tumor atlas network: charting tumor transitions across space and time at single-cell resolutionXiaowei Zhuang670
2009RAD6-Mediated Transcription-Coupled H2B Ubiquitylation Directly Stimulates H3K4 Methylation in Human CellsTom Muir650
2013Super-resolution fluorescence imaging of telomeres reveals TRF2-dependent t-loop formationXiaowei Zhuang629
2020Genome-scale imaging of the 3D organization and transcriptional activity of chromatinXiaowei Zhuang621
2022Therapeutic In Vivo Delivery of Gene Editing AgentsDavid R. Liu591
2013Transcriptional and epigenetic dynamics during specification of human embryonic stem cellsHongkun Park542
2015CD5L/AIM regulates lipid biosynthesis and restrains Th17 cell pathogenicityHongkun Park479
2015Photoswitchable Inhibitors of Microtubule Dynamics Optically Control Mitosis and Cell DeathDirk Trauner470
2023Molecular and spatial signatures of mouse brain aging at single cell resolutionXiaowei Zhuang457
2011BPTF recognizes a mononucleosome-level histone modification pattern via multivalent interactionsTom Muir451
2016Real-time imaging of translation on single mRNA transcripts in live cellsXiaowei Zhuang434
2018Cell membranes resist flowAdam Cohen · Tobias Baumgart428
2021Massively Parallel Assessment of Human Variants with Base Editor ScreensDavid R. Liu384
2023Phage-Assisted Evolution and Protein Engineering Yield Compact, Efficient Prime EditorsDavid R. Liu380
2020Determinants of Base Editing Outcomes from Target Library Analysis and Machine LearningDavid R. Liu362
2014Chemosensation of bacterial secondary metabolites modulates neuroendocrine signaling and behavior of C. elegansFrank C. Schroeder342
2014Structurally Distinct Ca2+ Signaling Domains of Sperm Flagella Orchestrate Tyrosine Phosphorylation and MotilityXiaowei Zhuang323
2022Mucus sialylation determines intestinal host-commensal homeostasisStacy Malaker296
2012Architecture of the Atg17 complex as a scaffold for autophagosome biogenesisMichael J. Ragusa290
2022Spatially resolved epigenomic profiling of single cells in complex tissuesXiaowei Zhuang242
2013ISWI remodelers slide nucleosomes with coordinated multi-base-pair entry steps and single- base- pair exit stepsXiaowei Zhuang227
2011Systematic discovery of TLR signaling components delineates viral-sensing circuitsHongkun Park225
2010Biological Applications of Protein SplicingTom Muir219
2020All-optical electrophysiology reveals the role of lateral inhibition in sensory processing in cortical layer 1Adam Cohen208
2013Set1 and p300 synergy through coupled histone modifications in transcriptional activation of p53Tom Muir198
2015Mapping synaptic input fields of neurons with super-resolution imagingXiaowei Zhuang158
2023All-optical physiology resolves a synaptic basis for behavioral timescale plasticityAdam Cohen149
2019Intellectual disability-associated mutations in SMARCB1 reveal a conserved coiled-coil nucleosome interaction that potentiates mSWI/SNF chromatin remodelingTom Muir138
2019Identification of a DNA methyltransferase complex and the impact of N6-methyladenine on chromatin organizationTom Muir120
2024Gut bacteria convert glucocorticoids into progestins in the presence of hydrogen gasEmily Balskus101
2025Perturb-Multimodal: A platform for pooled genetic screens with imaging and sequencing in intact mammalian tissueXiaowei Zhuang77
2009ATPase cycle of the nonmotile kinesin NOD allows microtubule end tracking and drives chromosome movement.F. Jon Kull58
2024A metabolomics pipeline highlights microbial metabolism in bloodstream infectionsEmily Balskus52
2013Foundations of Biomolecular ModelingWilliam Jorgensen38
2014A slow dance for microtubule acetylationF. Jon Kull19
2008Kinesin motors: no strain, no gain.F. Jon Kull7
2013Bumping Up Kinase Activity with an ATP-Derived Neo-SubstrateRalph Kleiner2
2020Optical electrophysiology reveals the role of lateral inhibition in cortical layer 1Adam Cohen
2025In Vivo Prime Editing Rescues Alternating Hemiplegia of Childhood in MiceDavid R. Liu
2023Human T Cell Generation Is Restored in CD3d Severe Combined Immunodeficiency Through Adenine Base EditingDavid R. Liu
2019A High-Throughput Platform to Identify Small-Molecule Inhibitors of CRISPR-Cas9David R. Liu
2023Massively Parallel Base Editing to Map Variant Effects in Human HematopoiesisDavid R. Liu

Citations as counted, before any journal weight: 49 of these 54 works carry a count, and a work with no count is unknown, never a zero.