Typed states for the displayed outbound observations.
Source: paper_references, paper_reference_links, observed 2026-08-12T14:44:10.622485Z
Paper Citation Record · LEDGER
As of 13 August 2026, this Paper Citation Record lists 72 of 72 outbound references and 1 inbound Pith citation observation for arXiv:2411.15274.
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 2026-08-12T14:44:10.622485Z
One-hop event checks from named stored sources.
Source: scholarly_work_events, retraction_status_cache, observed 2026-08-13T06:32:02.005865+00:00
Pith citing papers itemized under the disclosed page cap.
Source: paper_references, paper_reference_links, observed 2026-05-20T20:03:05.589380Z
A source-named dated measurement, never combined with another source.
Source: arxiv_reference, observed 2026-05-20T20:03:43.321071Z
72 of 72 outbound references displayed
External citation measurements
No source-named external measurement is stored.
Observation 5c5bd26e-7f05-4f6b-94a2-2df84b6a5a07 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Tumor islands in resected early -stage lung adenocarcinomas are associated with unique clinicopathologic and molecular characteristics and worse prognosis,
Reference 1
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Observation b5a67fcd-f884-4011-9c94-baf5b09d6b51 · outbound
Reference 2
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Observation 6f7a661e-5d37-49aa-99ab-7e3196b97534 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Prognostic impact of intra -alveolar tumor spread in pulmonary adenocarcinoma,
Reference 3
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Observation 756fb4cf-1ceb-4d8c-a484-ae01ee6f5383 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Prognostic significance of tumor spread through air spaces in patients with stage IA part -solid lung adenocarcinoma after sublobar resection,
Reference 4
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Lobectomy is associated with better outcomes than sublobar resection in spread through air spaces (ST AS)- positive T1 lung adenocarcinoma: a propensity score–matched analysis,
Reference 5
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Observation 89fc6d9e-1d9b-4b6d-b356-6e2e0dd4736a · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Spread through air spaces is a predictive factor of recurrence and a prognostic factor in stage I lung adenocarcinoma,
Reference 6
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Tumor spread through air spaces affects the recurrence and overall survival in patients with lung adenocarcinoma> 2 to 3 cm,
Reference 7
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Observation f3c3304b-a6c8-4fed-8186-438c5299ca34 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Pathological prognostic factors of recurrence in early stage lung adenocarcinoma,
Reference 8
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Observation 9bf08a69-c60c-4c6f-ae3d-c7b82fea6f6f · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Spread through air spaces is an independent predictor of recurrence in stage III (N2) lung adenocarcinoma,
Reference 9
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Observation a135bf83-06da-431a-9b35-347fb0a96769 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Analysis of recurrence in lung adenocarcinoma with spread through air spaces,
Reference 10
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Observation c0c64f93-15ff-49cd-ae59-61d5b6ba8d25 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer STAS: New explorations and challenges for thoracic surgeons,
Reference 11
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Observation 9ab0937d-9463-4f96-a9f2-43a418079d3a · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Unresolved cited work
Reference 12
Source-reported events for the cited work
correction dated 2026-06-26. Source: crossref record 10.1016/j.jtho.2025.08.020->10.1016/j.jtho.2024.03.015:correction, observed 2026-07-11T03:16:10.139274+00:00. This notice travels one citation hop only.
Observation 44341fbd-3484-47c5-b1ca-6e12fb5ae5a5 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Prognostic significance of limited resection in pathologic stage I lung adenocarcinoma with spread through air spaces,
Reference 13
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Observation f4c561c9-94b9-42a9-8b42-5b7800649d73 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Colorimetric histology using plasmonically active microscope slides,
Reference 14
Source-reported events for the cited work
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Observation 0f40da57-8991-47ae-8883-b4a0745ac82f · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Deep learning outperformed 11 pathologists in the classification of histopathological melanoma images,
Reference 15
Source-reported events for the cited work
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Observation 1e6f3864-8504-4fe7-b024-390832660bef · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Pathology Visions 2020: Through the Prism of Innovation,
Reference 16
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Observation fe560bbb-e5c7-40e3-ac53-17daa190752b · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Pathology: the clinical description of human disease,
Reference 17
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Observation c1f88e96-c7af-4df8-86a9-cb088a92f031 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer The NanoSuit method: a novel histological approach for examining paraffin sections in a nondestructive manner by correlative light and electron microscopy ,
Reference 18
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer The value of frozen section diagnosis of tumor spread through air spaces in small -sized (≤ 2 cm) non -small cell lung cancer,
Reference 19
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Observation d3b4d5fa-aa6f-449c-beda-4b302c90e3e5 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Unresolved cited work
Reference 20
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Accuracy and reproducibility of intraoperative assessment on tumor spread through air spaces in stage 1 lung adenocarcinomas,
Reference 21
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Observation cf2f6955-37c1-4bc7-85f0-8c026275d817 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Assessment of the feasibility of frozen sections for the detection of spread through air spaces (STAS) in pulmonary adenocarcinoma,
Reference 22
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Artificial intelligence in radiology ,
Reference 23
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Observation 27a87e88-3da8-4bbb-9feb-4b3970bfd892 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Recent advances and applications of deep learning methods in materials science,
Reference 24
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Observation 477f5489-9921-4921-a413-853b0de82da6 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Semi - supervised training of deep convolutional neural networks with heterogeneous data and few local annotations: An experiment on prostate histopathology image classification,
Reference 25
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Observation f133ca75-940b-4293-adfa-df628ccaa2b5 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Classification and mutation prediction based on histopathology H&E images in liver cancer using deep learning,
Reference 26
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Observation a8723b21-ecea-473f-b14f-fb4b83fee7c0 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer MIST: multiple instance learning network based on Swin Transformer for whole slide image classification of colorectal adenomas,
Reference 27
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Observation a8c5ccc5-b5b7-413a-91dd-4b5bc695108c · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Deconv -transformer (DecT): A histopathological image classification model for breast cancer based on color deconvolution and transformer architecture,
Reference 28
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Topological Tumor Graphs: A Graph - Based Spatial Model to Infer Stromal Recruitment for Immunosuppression in Melanoma Histology,
Reference 29
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Integrating spatial gene expression and breast tumour morphology via deep learning,
Reference 31
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Observation 40e9af2a-eb5a-4af0-b39d-acb3a96c0691 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Attention -based deep multiple instance learning,
Reference 32
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Dual-stream multiple instance learning network for whole slide image classification with self- supervised contrastive learning,
Reference 33
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Transmil: Transformer based correlated multiple instance learning for whole slide image classification,
Reference 34
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer DTFD-MIL: Double-Tier Feature Distillation Multiple Instance Learning for Histopathology Whole Slide Image Classification,
Reference 35
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Observation 2b4fe3b8-4442-4970-beda-c850e444ed58 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Interventional Bag Multi -Instance Learning On Whole -Slide Pathological Images,
Reference 36
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Observation 2363efa4-7cd6-4aa9-95c8-8b0e97994332 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Nuclear morphology is a deep learning biomarker of cellular senescence,
Reference 37
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Observation 7183076e-86fb-4f5f-95c1-9bb73a3ab83b · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer A Comprehensive Overview and Comparative Analysis on Deep Learning Models: CNN, RNN, LSTM, GRU
Reference 38
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Observation 798afeed-bcb5-4e33-99be-3e03f6f00f17 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Gross specimen handling procedures do not impact the occurrence of spread through air spaces (STAS) in lung cancer,
Reference 39
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Observation 70d9dc0d-ba04-4302-ae51-1cda73e7775f · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Histopathological aspects of resected non -small cell lung cancer, with emphasis on spread through air spaces and collapsed adenocarcinoma in situ,
Reference 40
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Observation 72a72bc6-91a8-48ce-b9db-6b30dc7fa83e · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Graph learning considering dynamic structure and random structure,
Reference 41
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Gas exchange and ventilation– perfusion relationships in the lung,
Reference 42
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Observation 09dd21e8-8ceb-4848-a279-48476eab70d7 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Global variations in lung cancer incidence by histological subtype in 2020: a population -based study ,
Reference 43
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Prognostic impact of tumor spread through air spaces for T2aN0 stage IB non‐small cell lung cancer,
Reference 44
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Observation 44f3bbb7-71dd-42b4-9575-5cba4bb66a6c · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Correlation of tumor spread through air spaces and clinicopathological characteristics in surgically resected lung adenocarcinomas,
Reference 45
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Relationship between MTA1 and spread through air space and their joint influence on prognosis of patients with stage I-III lung adenocarcinoma,
Reference 46
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Genetic and clinicopathologic characteristics of lung adenocarcinoma with tumor spread through air spaces,
Reference 47
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Observation 47c7d7f5-9b6c-4182-adda-bf1cd3c1220a · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer p53 immunohistochemistry is an accurate surrogate for TP53 mutational analysis in endometrial carcinoma biopsies,
Reference 48
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Correlative assessment of p53 immunostaining patterns and TP53 mutation status by next - generation sequencing in high-grade endometrial carcinomas,
Reference 49
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Concordance of ALK fusion gene - rearrangement between immunohistochemistry and next - generation sequencing,
Reference 50
Source-reported events for the cited work
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Integration of clinicopathological and mutational data offers insight into lung cancer with tumor spread through air spaces,
Reference 51
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Observation f21780e2-34f9-41c6-a0d3-6f8dfb9762af · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer An individualized nomogram for predicting and validating spread through air space (STAS) in surgically resected lung adenocarcinoma: a single center retrospective analysis,
Reference 52
Source-reported events for the cited work
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Observation c47b5fdb-d930-4c92-b9ec-78ba05ce3d0f · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Comprehensive analysis of spread through air spaces in lung adenocarcinoma and squamous cell carcinoma using the 8th edition AJCC/UICC staging system,
Reference 53
Source-reported events for the cited work
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Observation 2fbbd3ce-d84d-4a51-a964-5799c53cb0e3 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Spread through air spaces (STAS) is a predictor of poor outcome in atypical carcinoids of the lung,
Reference 54
Source-reported events for the cited work
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Dynamic monitoring of PD‐L1 and Ki67 in circulating tumor cells of metastatic non‐small cell lung cancer patients treated with pembrolizumab,
Reference 55
Source-reported events for the cited work
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Observation cde81df3-a1a4-47b2-9fd7-1ab4d02604a3 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Spectral imaging with deep learning,
Reference 56
Source-reported events for the cited work
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Observation e8474ce6-e4db-48a9-bcaa-c2769f7b2071 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Fine-Tuning and training of densenet for histopathology image representation using TCGA diagnostic slides,
Reference 57
Source-reported events for the cited work
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Observation af1df53e-1576-4655-893d-b1f92340a2d2 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Transformer-based unsupervised contrastive learning for histopathological image classification,
Reference 58
Source-reported events for the cited work
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Observation 9ef59daa-ab33-4d10-8782-c6e6fa38d779 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Densely Connected Convolutional Networks,
Reference 59
Source-reported events for the cited work
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Observation 7ec9d979-c47f-4dc4-a75c-824ea9bc6a90 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Swin transformer: Hierarchical vision transformer using shifted windows,
Reference 60
Source-reported events for the cited work
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Observation ed665dcb-11a1-40be-a7de-87e7c8b2b971 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer A fuzzy k-nearest neighbor algorithm,
Reference 61
Source-reported events for the cited work
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Observation bdd9b14a-e1de-486e-9ba7-bc762e41886e · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Pathomic Fusion: An Integrated Framework for Fusing Histopathology and Genomic Features for C ancer Diagnosis and Prognosis,
Reference 62
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Observation 62495e2f-2bc7-464b-8fbd-4b4211175bec · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Semi-Supervised Classification with Graph Convolutional Networks
Reference 63
Source-reported events for the cited work
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Observation 0046d672-c412-4a05-9517-858746436f6d · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Inductive Representation Learning on Large Graphs,
Reference 64
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Observation 64f233cf-7a96-40d3-9ba3-dbb1fa07e958 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Deep Learning using Rectified Linear Units (ReLU)
Reference 65
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Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Local-aggregation graph networks,
Reference 66
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Observation d637ccff-5811-4698-9498-6f641445de04 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Multilayer perceptron (MLP),
Reference 67
Source-reported events for the cited work
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Observation 0eb6f70d-82c6-4bc8-8e94-f50743741115 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Prevalence of neural collapse during the terminal phase of deep learning training,
Reference 68
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Observation 2f329df2-55d7-498d-8403-e9531d840798 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Uctransnet: rethinking the skip connections in u -net from a channel-wise perspective with transformer,
Reference 69
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Observation 5ebe9679-c28e-49d0-bb0c-500164277103 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Deep learning modelling techniques: current progress, applications, advantages, and challenges,
Reference 70
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Observation 2427da9b-dd5c-4955-85c6-75f00e1d136a · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer A sufficient condition for convergences of adam and rmsprop,
Reference 71
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Observation db87b3c2-eaa1-4f58-8396-51ee0f917a23 · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer The advantages of the Matthews correlation coefficient (MCC) over F1 score and accuracy in binary classification evaluation,
Reference 72
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Observation 943cf8ed-6f7e-490a-af8e-9e0613a56ecb · outbound
Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer Comparison of deep learning approaches to predict COVID-19 infection,
Reference 73
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Observation 9a5e55f6-a502-4edf-92ee-51717a9538f7 · inbound
Diffusion Attention Expert Model for Predicting and Semi-automatic Localizing STAS in Lung Cancer Histopathological Images Feature-interactive Siamese graph encoder-based image analysis to predict STAS from histopathology images in lung cancer
Reference 35
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