Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-06T05:33:43.542935Z
Paper Citation Record · LEDGER
As of 7 August 2026, this Paper Citation Record lists 46 of 46 outbound references and 0 inbound Pith citation observations for arXiv:2508.01668.
A citation records a reference. It does not transfer a finding from one paper to another.
Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-06T05:33:43.542935Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-07T06:34:17.273281+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links
A source-named dated measurement, never combined with another source.
Source: cited_works
46 of 46 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation 259f3e77-39e0-4d50-bed5-b1844b47e4a9 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Unresolved cited work
Reference 5
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Alternatively, clients communicate some Parameter-Independent Messages (PIM) with the server for knowledge sharing, such as prototypes and feature covariates
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Enmao Diao, Jie Ding, and Vahid Tarokh
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Dinh, Nguyen H
Reference 8
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer A guide to convolution arithmetic for deep learning
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Observation b3d4b9a9-c389-4c75-87fc-e63fc64f7900 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Deep residual learning for image recog- nition
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Overcoming Data and Model Heterogeneities in Decentralized Federated Learning via Synthetic Anchors
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Towards understanding biased client selection in federated learning
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Model pruning enables efficient federated learning on edge devices.IEEE Transactions on Neural Networks and Learning Systems,
Reference 15
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer SCAFFOLD: Stochastic controlled averaging for federated learning
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer DepthFL : Depthwise federated learning for heterogeneous clients
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Observation 2ef5fc91-c734-4bc0-a848-3b264acd0f28 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Auto-Encoding Variational Bayes
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Observation 8a212164-63e4-45b9-a13b-1d148c7c1299 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer FedMD: Heterogenous Federated Learning via Model Distillation
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer No fear of heterogene- ity: Classifier calibration for federated learning with non-IID data
Reference 23
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Personalized federated learning via feature distribution adaptation
Reference 24
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Duy Phuong Nguyen, Sixing Yu, J
Reference 25
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer doi: 10.1145/3624062.3626325
Reference 26
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Unresolved cited work
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Nalavala Partheswar Reddy, Shaik Khaja Hassain, P Baraneedharan, and Shaik Abdul Rahman
Reference 29
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Himadri Nath Saha, Supratim Auddy, Subrata Pal, Shubham Kumar, Shivesh Pandey, Rocky Singh, Amrendra Kumar Singh, Priyanshu Sharan, Debmalya Ghosh, and Sanhita Saha
Reference 30
Source-reported events for the cited work
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Observation 3658a54e-972a-4f30-a2e9-04e11e125f08 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Felix Sattler, Tim Korjakow, Roman Rischke, and Wojciech Samek
Reference 31
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Observation 3ebf0ae6-77da-4211-b5f5-1e1a4f95aabb · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer 13 Published as a conference paper at ICLR 2026 Virginia Smith, Chao-Kai Chiang, Maziar Sanjabi, and Ameet S Talwalkar
Reference 32
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Observation 9d134637-1a49-4ba7-8ff3-4db6e3204a26 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Phoenix: A federated generative diffusion model
Reference 33
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Observation 863ea4a2-ec21-460b-bc0f-b8098e397928 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Robustfed: A truth inference approach for robust federated learning
Reference 34
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Observation 275ac6d7-0469-4f6c-a1f8-1eb5e59c8244 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Yue Tan, Guodong Long, Lu Liu, Tianyi Zhou, Qinghua Lu, Jing Jiang, and Chengqi Zhang
Reference 35
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Observation 85aa8f7e-b5f9-4cac-b816-7ba1a9b3e918 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Bridging model heterogeneity in federated learning via uncertainty-based asymmetrical reciprocity learn- ing
Reference 36
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Observation 69710fa1-c5b3-485b-af38-828d3a6614ea · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Liping Yi, Han Yu, Gang Wang, Xiaoguang Liu, and Xiaoxiao Li
Reference 37
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Observation 91c14261-f9dc-416d-a163-a00ede273957 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Fedtgp: Trainable global prototypes with adaptive-margin-enhanced contrastive learning for data and model heterogeneity in federated learning
Reference 38
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Fed-CBS: A heterogeneity-aware client sampling mechanism for federated learning via class-imbalance reduction
Reference 39
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Observation 507881e9-65af-4bc2-9bab-3e9df186109e · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Improved distribution matching for dataset condensation
Reference 40
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Observation 8587cf2a-6dba-475e-bd40-8b4fe23d2b0d · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Data-free knowledge distillation for heterogeneous federated learning
Reference 41
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Observation 4c800272-4810-4408-b083-229e8c52a6a7 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Unresolved cited work
Reference 42
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Observation df06d90a-3cd0-466d-ba51-198e2f030b20 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer (Jiang et al., 2023; Li et al., 2021a; Jiang et al.,
Reference 43
Source-reported events for the cited work
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Despite this, we additionally tune�on the MNIST dataset to study the impact of different�values
Reference 46
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Observation bd97a6a9-1136-4b0b-bd42-c7fecc42048f · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Ang Li, Jingwei Sun, Pengcheng Li, Yu Pu, Hai Li, and Yiran Chen
Reference 1998
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Observation cdfb9747-4a70-4a60-83b3-b236f9a44137 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Madhyastha, and Mosharaf Chowdhury
Reference 2009
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Feddc: Federated learning with non-iid data via local drift decoupling and correction
Reference 2016
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer ISBN 9781510860964
Reference 2017
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Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer FLTrust: Byzantine-robust Federated Learning via Trust Bootstrapping
Reference 2018
Source-reported events for the cited work
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Observation 60fad88a-e755-47fc-8599-b6fc0005eb77 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Learning to Detect Malicious Clients for Robust Federated Learning
Reference 2019
Source-reported events for the cited work
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Observation 9b1826b9-3b38-46c2-ae9c-0076d9a0f774 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Ex- planatory object part aggregation for zero-shot learning.IEEE Transactions on Pattern Analysis and Machine Intelligence, 46(2):851–868,
Reference 2020
Source-reported events for the cited work
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Observation 8d0003fa-eaa3-4865-9615-018c0612f8c2 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Fedrolex: model-heterogeneous federated learning with rolling sub-model extraction
Reference 2021
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Observation c1b0a515-b1e4-4b42-9f07-aad493d9ba91 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer A Downsampled Variant of ImageNet as an Alternative to the CIFAR datasets
Reference 2022
Source-reported events for the cited work
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Observation 07c92988-0a9f-47da-9918-1b073350346d · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Durmus Alp Emre Acar, Yue Zhao, Ramon Matas, Matthew Mattina, Paul Whatmough, and Venkatesh Saligrama
Reference 2023
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
Observation 6bf2fe76-3411-4490-b505-d53ad0414f06 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Sijie Cheng, Jingwen Wu, Yanghua Xiao, Yang Liu, and Yang Liu
Reference 2024
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Observation bfec7110-f3d3-4c0d-909f-7e5c613c0fd6 · outbound
Measuring and Predicting Where and When Pathologists Focus their Visual Attention while Grading Whole Slide Images of Cancer Kilian Pfeiffer, Ramin Khalili, and Joerg Henkel
Reference 2025
Source-reported events for the cited work
Unavailable: canonical work link unavailable.
No inbound Pith citation observations are available.