Department of Computer Science
Parent: UC Santa Barbara
eScholarship stats: Breakdown by Item for May through August, 2026
| Item | Title | Total requests | Download | View-only | %Dnld |
|---|---|---|---|---|---|
| 1d92r05z | Drops for Stuff: An Analysis of Reshipping Mule Scams | 799 | 58 | 741 | 7.3% |
| 4wp0c3th | Subsampled Rényi Differential Privacy and Analytical Moments Accountant | 723 | 31 | 692 | 4.3% |
| 1k9033cx | Non-Abelian braiding of graph vertices in a superconducting processor | 281 | 156 | 125 | 55.5% |
| 2n55r713 | Functional neuronal circuitry and oscillatory dynamics in human brain organoids | 241 | 158 | 83 | 65.6% |
| 26s3b5jk | Towards a Smart Bionic Eye: AI-powered artificial vision for the treatment of incurable blindness | 227 | 136 | 91 | 59.9% |
| 6008n591 | Stress affects navigation strategies in immersive virtual reality | 213 | 82 | 131 | 38.5% |
| 9hd7x6v2 | Effects of noisy galvanic vestibular stimulation on spatial memory in virtual reality | 211 | 65 | 146 | 30.8% |
| 0wv3578f | Experimentally Validated Reconstruction and Analysis of a Genome-Scale Metabolic Model of an Anaerobic Neocallimastigomycota Fungus | 210 | 116 | 94 | 55.2% |
| 5631w9dq | Image Themes and Frames in US Print News Stories about Climate Change | 195 | 96 | 99 | 49.2% |
| 22t8v14c | Image Themes and Frames in US Print News Stories about Climate Change | 194 | 80 | 114 | 41.2% |
| 4w75b3gd | Integrating machine learning and multiscale modeling—perspectives, challenges, and opportunities in the biological, biomedical, and behavioral sciences | 184 | 69 | 115 | 37.5% |
| 9xh0g7mz | OpenPiton4HPC: Optimizing OpenPiton Toward High-Performance Manycores | 181 | 111 | 70 | 61.3% |
| 8vv0v48r | An arbitrary Lagrangian Eulerian smoothed particle hydrodynamics (ALE-SPH) method with a boundary volume fraction formulation for fluid-structure interaction | 169 | 56 | 113 | 33.1% |
| 4kj7h8wq | Home-Use and Portable Biofeedback Lowers Anxiety and Pain in Chronic Pain Subjects. | 161 | 94 | 67 | 58.4% |
| 063153hd | Interpretable polynomial neural ordinary differential equations | 156 | 60 | 96 | 38.5% |
| 3ks6j87g | Robust estimation of SARS-CoV-2 epidemic in US counties. | 149 | 106 | 43 | 71.1% |
| 72n731tp | Aligning Visual Prosthetic Development With Implantee Needs | 149 | 68 | 81 | 45.6% |
| 47g4k5q7 | Functional network inference of the suprachiasmatic nucleus | 146 | 99 | 47 | 67.8% |
| 31p930j5 | Opinion Dynamics and Social Power Evolution over Reducible Influence Networks | 143 | 42 | 101 | 29.4% |
| 5fb6m0m4 | Stramash: A Fused-Kernel Operating System For Cache-Coherent, Heterogeneous-ISA Platforms | 141 | 79 | 62 | 56.0% |
| 7327s0dm | Immersive Virtual Reality Simulations of Bionic Vision | 141 | 60 | 81 | 42.6% |
| 91f283qf | Parallel processing of filtered queries in attributed semantic graphs | 137 | 88 | 49 | 64.2% |
| 00j1z444 | Enumerating Active IPv6 Hosts for Large-scale Security Scans via DNSSEC-signed Reverse Zones | 132 | 42 | 90 | 31.8% |
| 5kp7822p | Learning to see again: biological constraints on cortical plasticity and the implications for sight restoration technologies | 131 | 36 | 95 | 27.5% |
| 01r9n44v | SMT-Based Observer Design for Cyber-Physical Systems Under Sensor Attacks | 130 | 62 | 68 | 47.7% |
| 3kq8p52r | A systematic review of extended reality (XR) for understanding and augmenting vision loss | 130 | 62 | 68 | 47.7% |
| 8m72n8sz | Uncovering social network Sybils in the wild | 128 | 48 | 80 | 37.5% |
| 68x9c1sd | Meerkat: Detecting Website Defacements through Image-based Object Recognition | 127 | 37 | 90 | 29.1% |
| 9vb5d5w0 | What You Submit is Who You Are: A Multi-Modal Approach for Deanonymizing Scientific Publications | 127 | 74 | 53 | 58.3% |
| 2v25637h | Multiscale Modeling Meets Machine Learning: What Can We Learn? | 123 | 39 | 84 | 31.7% |
| 29t94525 | Something From Nothing (There): Collecting Global IPv6 Datasets From DNS | 122 | 59 | 63 | 48.4% |
| 17g115xs | High-performance analysis of filtered semantic graphs | 119 | 60 | 59 | 50.4% |
| 2v16x5pm | Challenges and Opportunities for Beyond-5G Wireless Security | 119 | 43 | 76 | 36.1% |
| 3px6g8zk | LiRa: A New Likelihood-Based Similarity Score for Collaborative Filtering | 118 | 35 | 83 | 29.7% |
| 55d6c8x2 | Preserving Location Privacy in Geosocial Applications | 118 | 53 | 65 | 44.9% |
| 0w33p0zm | Assistive technology use in domestic activities by people who are blind | 115 | 52 | 63 | 45.2% |
| 3hc4k8zj | Factors affecting two-point discrimination in Argus II patients | 115 | 43 | 72 | 37.4% |
| 0dg54766 | Relevant Change Detection: Framework for the Precise Extraction of Modified and Novel Web-based Content as a Filtering Technique for Analysis Engines | 111 | 28 | 83 | 25.2% |
| 69r799hr | Understanding latent interactions in online social networks | 111 | 46 | 65 | 41.4% |
| 3829d2nq | Stochastic Simulation Service: Bridging the Gap between the Computational Expert and the Biologist | 110 | 39 | 71 | 35.5% |
| 9r59r676 | Cloud Strife: Mitigating the Security Risks of Domain-Validated Certificates | 110 | 50 | 60 | 45.5% |
| 2zz8m965 | Comparison of Rapid-, Kaolin-, and Native-TEG Parameters in Burn Patient Cohorts With Acute Burn-induced Coagulopathy and Abnormal Fibrinolytic Function | 108 | 54 | 54 | 50.0% |
| 7fz0v1hs | Rampart: Protecting Web Applications from CPU-Exhaustion Denial-of-Service Attacks | 108 | 37 | 71 | 34.3% |
| 2d80h1vd | BioSimulators: a central registry of simulation engines and services for recommending specific tools | 107 | 29 | 78 | 27.1% |
| 53j7j69m | Noise resistant synchronization and collective rhythm switching in a model of animal group locomotion | 107 | 21 | 86 | 19.6% |
| 9xd62548 | Assessing Factor V Antigen and Degradation Products in Burn and Trauma Patients | 106 | 49 | 57 | 46.2% |
| 2f27r9gh | Ontogeny of Circadian Rhythms and Synchrony in the Suprachiasmatic Nucleus | 105 | 31 | 74 | 29.5% |
| 73p26393 | A theory for the slip and drag of superhydrophobic surfaces with surfactant | 105 | 30 | 75 | 28.6% |
| 8dc2z85m | Contributed Session I: What limits the spatial resolution of artificial vision in epiretinal implant patients? | 105 | 29 | 76 | 27.6% |
| 3931s2d5 | A Computational Model of Phosphene Appearance for Epiretinal Prostheses | 104 | 28 | 76 | 26.9% |
Note: Due to the evolving nature of web traffic, the data presented here should be considered approximate and subject to revision. Learn more.