Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-15T20:41:31.871231Z
Paper Citation Record · LEDGER
As of 19 August 2026, this Paper Citation Record lists 56 of 56 outbound references and 0 inbound Pith citation observations for arXiv:2505.12317.
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 2026-08-15T20:41:31.871231Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-18T06:34:40.430872+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
56 of 56 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation caf5f906-8cbf-4269-bd0a-b1d8b6cc791f · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Unresolved cited work
Reference 1
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Unavailable: canonical work link unavailable.
Observation a230eeec-6725-4bc1-ad06-b0063ec61b6c · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces The iWildCam 2021 Competition Dataset
Reference 2
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Observation 6af53401-81d4-4220-8599-8e17210af99b · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Recognition in terra incognita
Reference 3
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Unavailable: canonical work link unavailable.
Observation 28e553bc-7965-4438-a1fd-7bc88081432c · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Unsupervised learning of visual features by contrasting cluster assignments.Advances in neural information processing systems, 33:9912–9924, 2020
Reference 4
Source-reported events for the cited work
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Observation dc63579e-aeee-490b-9587-87060013cbe8 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces A simple framework for contrastive learning of visual representations
Reference 5
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Observation 0403bca4-e80b-44af-a25c-6d3cbe5398be · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Randaugment: Practical automated data augmentation with a reduced search space
Reference 6
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Observation d9b0096f-4434-4aed-b999-6dcb1a2a37a9 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Improved Regularization of Convolutional Neural Networks with Cutout
Reference 7
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Observation 153371be-d1fd-4c01-96b9-fdd257de3e77 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Domain-adversarial training of neural networks
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Observation 345188af-5af8-4bac-a9dc-421e1d68fe31 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Out-of-domain robustness via targeted augmentations
Reference 9
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Observation 1ebd3975-9c8e-4a9d-a57a-d5ed12f29857 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces In search of lost domain generalization
Reference 10
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Observation 7e89aa9d-e5ba-4c81-b54e-23d94ebca7ec · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Structural sparseness and spatial phase alignment in natural scenes.Journal of the Optical Society of America A, 24(7):1873–1885, 2007
Reference 11
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Observation 0a579ba2-9973-4c81-8fd4-d21655f2c70c · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Deep residual learning for image recognition
Reference 12
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Observation d2c7ed48-19b1-4f04-9e23-9beb08e3ff31 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces The many faces of robustness: A critical analysis of out-of-distribution generalization
Reference 13
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Observation e4316063-e891-437d-9d75-afe4b4790899 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Augmix: A simple data processing method to improve robustness and uncertainty
Reference 14
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Observation 30424cd7-b194-4a99-86ea-baa896472144 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Galaxy10 decals dataset
Reference 15
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Observation fc0ce764-10d4-4d7d-a4e7-771feb320052 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Cycada: Cycle-consistent adversarial domain adaptation
Reference 16
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Observation 00be2327-7172-4ac3-8c07-9b6b49c41267 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Cycada: Cycle-consistent adversarial domain adaptation
Reference 17
Source-reported events for the cited work
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Observation a3c8dadc-3e20-433f-9c2b-d5806b73da62 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Selecting data augmentation for simulating interventions
Reference 18
Source-reported events for the cited work
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Observation 4f65173d-12ff-4fbc-bb72-5e7220b1bc8d · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Overview of lifeclef 2022: an evaluation of machine-learning based species identification and species distribution prediction
Reference 19
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.
Observation 4ddc8fc1-e1f3-4176-80fa-a48283f5a075 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Contrastive adaptation network for unsupervised domain adaptation
Reference 20
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Observation 1341debd-add3-41e1-b152-1dab6d5f7b3d · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Wilds: A benchmark of in-the-wild distribution shifts
Reference 21
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.
Observation 43c1a4e5-c48c-46a0-a616-57e1c227edcb · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Imagenet classification with deep convolutional neural networks.Advances in neural information processing systems, 25, 2012
Reference 22
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Observation 1814f815-1681-4573-b696-16217b54b3f2 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Fine-tuning can distort pretrained features and underperform out-of-distribution
Reference 23
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Observation e82a0e55-ebc4-4054-a58e-31f84e57b4e3 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Conditional adversarial domain adaptation.Advances in neural information processing systems, 31, 2018
Reference 24
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Observation 4ea96b76-ac5b-4df3-8868-6e6828353832 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces SSMBA: Self-Supervised Manifold Based Data Augmentation for Improving Out-of-Domain Robustness
Reference 25
Source-reported events for the cited work
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Observation 454ca581-e94b-4af3-a817-f0eb4590eb54 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Phase in speech and pictures
Reference 26
Source-reported events for the cited work
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Observation 6ee02520-9d84-493f-ae83-d557d2b4ed91 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces The importance of phase in signals.Proceedings of the IEEE, 69(5):529–541, 1981
Reference 27
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Observation 961d4178-ebeb-4354-a09b-4d127b1c0fc0 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces SpecAugment: A Simple Data Augmentation Method for Automatic Speech Recognition
Reference 28
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Observation 47b5d1d1-5b00-4229-8d9c-a664dfd0ed50 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces A demonstration of the visual importance and flexibility of spatial-frequency amplitude and phase.Perception, 11(3):337–346, 1982
Reference 29
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Observation b3dc6fb2-3bf0-4406-9934-73dac02f41b2 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Connect later: improving fine-tuning for robustness with targeted augmentations
Reference 30
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Observation 34587cff-7518-43ee-abaa-04150dcee112 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Learning transferable visual models from natural language supervision
Reference 31
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Unavailable: canonical work link unavailable.
Observation cb973d11-0ce1-4a26-8ba1-e81edba68090 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Data augmentation can improve robustness.Advances in neural information processing systems, 34:29935–29948, 2021
Reference 32
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Observation 9de55e2e-c884-456d-9859-537021131964 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Extending the wilds bench- mark for unsupervised adaptation
Reference 33
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Observation d2d87e28-0e62-4c27-a5f8-f0dcc31e1f3f · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Noisereduce: Domain General Noise Reduction for Time Series Signals
Reference 34
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Observation d2ba4d25-98c2-439d-85ba-1b2d663f8cc6 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Demystifying galaxy classification: An elegant and powerful hybrid approach
Reference 35
Source-reported events for the cited work
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Observation d0af395b-e124-4716-96e3-e180d405bc77 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Connect, not collapse: Explaining contrastive learning for unsupervised domain adaptation
Reference 36
Source-reported events for the cited work
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Observation 6cd63e64-0572-4b45-be94-ea79670a9da1 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Best practices for convolutional neural networks applied to visual document analysis
Reference 37
Source-reported events for the cited work
No event found in the named queried sources as of 2026-08-18T06:34:40.430872+00:00.
Observation 7c869be5-db68-4d38-85d8-1162fff10b49 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Fixmatch: Simplifying semi- supervised learning with consistency and confidence.Advances in neural information processing systems, 33:596–608, 2020
Reference 38
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Observation 8e7e60ad-0f5e-4b49-bca1-94c9d98034bb · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Correlation alignment for unsupervised domain adaptation.Domain adaptation in computer vision applications, pages 153–171, 2017
Reference 39
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Observation a5749cf6-0216-413d-984c-9050c372fe4f · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Deep coral: Correlation alignment for deep domain adaptation
Reference 40
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Observation 23493965-840e-4bd2-a74a-cc2c4968a016 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Unresolved cited work
Reference 41
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Observation 3cda2302-1ac0-4977-8a40-0554c600bd21 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Galaxy morphology classification with densenet
Reference 42
Source-reported events for the cited work
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Observation 9a6ebd73-f5bb-4417-8878-fedc69759c3a · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces A fine-grained analysis on distribution shift
Reference 43
Source-reported events for the cited work
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Observation b766a63a-427e-4001-b887-f05ccb8e3e49 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Unsupervised data augmenta- tion for consistency training.Advances in neural information processing systems, 33:6256–6268, 2020
Reference 44
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Observation 7c54389f-da27-4665-b1ce-3b93fb55e560 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Self-training with noisy student improves imagenet classification
Reference 45
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Observation 75b79ad5-007a-407e-8a26-d98e2e87f9d1 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Fourier-based augmentation with applications to domain generalization.Pattern Recognition, 139:109474, 2023
Reference 46
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Observation 442bbda8-83e0-4ad4-ad83-24e247de314c · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Improve Unsupervised Domain Adaptation with Mixup Training
Reference 47
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Observation d8a888e2-90c5-4322-88ef-8130f40901f3 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Interactive self-training with mean teachers for semi-supervised object detection
Reference 48
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Observation 79b3cf18-86fa-43d4-a89a-35d291d6b2de · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Phase consistent ecological domain adaptation
Reference 49
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Observation 80a70567-5d7c-44c1-988b-d03297ab7cf6 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Fda: Fourier domain adaptation for semantic segmentation
Reference 50
Source-reported events for the cited work
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Observation 5e9d56e6-e1fc-43c5-a863-a958c20b43ce · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Im- proving out-of-distribution robustness via selective augmentation
Reference 51
Source-reported events for the cited work
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Observation c1f0b18d-b93f-4a93-92af-9f4427446292 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Cutmix: Regularization strategy to train strong classifiers with localizable features
Reference 52
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Observation 51bc31fc-a2d0-4f33-8152-804426000917 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces mixup: Beyond Empirical Risk Minimization
Reference 53
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Observation 9830623a-d5fd-4ff9-bd6b-f51d2b0075ed · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Deep domain-adversarial image generation for domain generalisation
Reference 54
Source-reported events for the cited work
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Observation 3bf7920f-6bfa-480c-b01a-6b3e0e624504 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces This underscores the importance of pretrained representations in achieving robustness gains
Reference 55
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Observation 4fd4ff25-98db-4d34-9380-895f21b85b19 · outbound
Improving Out-of-Domain Robustness with Targeted Augmentation in Frequency and Pixel Spaces Xu et al
Reference 56
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No inbound Pith citation observations are available.