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Paper Citation Record · LEDGER

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications

As of 16 August 2026, this Paper Citation Record lists 100 of 300 outbound references and 1 inbound Pith citation observation for arXiv:2501.15489.

A citation records a reference. It does not transfer a finding from one paper to another.

pith.paper-citation-record.v1
2501.15489 v1

Coverage vector

measured 100 of 300 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-08-10T14:16:54.901069Z

measured 101 of 101 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-16T06:30:59.297886+00:00

measured 1 of 1 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-08-15T14:17:38.314020Z

measured 0 of 1 external citation measurements

A source-named dated measurement, never combined with another source.

Source: pith, observed 2026-08-15T14:17:40.009163Z

Reference resolution

100 of 300 outbound references displayed

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  • verified fuzzy0
  • unresolved99
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Outbound references

Observation 383a61dc-25a5-45d7-b7bd-d0d560c6ff98 · outbound

This paper cites World Oncology Forum amplifies its appeal in global fight against cancer,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications World Oncology Forum amplifies its appeal in global fight against cancer,

Reference 1

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Observation 544e9088-4eac-427e-bb6f-280ca10fdaba · outbound

This paper cites Artificial intelligence in r adiation oncology,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Artificial intelligence in r adiation oncology,

Reference 2

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Observation 8d440ab2-04b9-4f6a-8da8-d8525cdc46c7 · outbound

This paper cites Cancer statistics, 2024,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Cancer statistics, 2024,

Reference 3

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Observation 3d44c9ea-a817-437e-b076-a5284d5778c4 · outbound

This paper cites ChemGenX: AI in the Chemistry Classroom,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications ChemGenX: AI in the Chemistry Classroom,

Reference 4

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Observation 212714e5-4fa9-4ebb-8f9e-96e36ada8b4c · outbound

This paper cites Current State of Artificial Intelligence (AI) in Oncology: A Review,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Current State of Artificial Intelligence (AI) in Oncology: A Review,

Reference 5

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Observation ad9fafc3-e133-4606-b912-1c59783c877b · outbound

This paper cites Biomarker Discovery and Validation for Gastrointestinal Tumors: A Comprehensive review of Colorectal, Gastric, and Liver Cancers,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Biomarker Discovery and Validation for Gastrointestinal Tumors: A Comprehensive review of Colorectal, Gastric, and Liver Cancers,

Reference 6

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Observation 85aaed96-fda6-466e-b38b-0b3ea4dee96a · outbound

This paper cites Deep learning–based multi-omics integration robustly predicts survival in liver cancer,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Deep learning–based multi-omics integration robustly predicts survival in liver cancer,

Reference 7

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Observation d0a178c0-4dcf-48b0-ac96-254ce8ee98d0 · outbound

This paper cites Premenopausal breast cancer: potential clinical utility of a multi -omics based machine learning approach for patient stratification,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Premenopausal breast cancer: potential clinical utility of a multi -omics based machine learning approach for patient stratification,

Reference 8

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Observation a9fb8041-971d-462a-b530-da26c252309b · outbound

This paper cites Variational autoencoders for cancer data integration: design principles and computational practice,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Variational autoencoders for cancer data integration: design principles and computational practice,

Reference 9

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Observation cdf0de3d-f9ad-499d-9956-d88cf9ef0505 · outbound

This paper cites Deep learning-based multi-omics data integration reveals two prognostic subtypes in high-risk neuroblastoma,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Deep learning-based multi-omics data integration reveals two prognostic subtypes in high-risk neuroblastoma,

Reference 10

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Observation c6422b6c-e69a-4e04-aa20-35660958ecb2 · outbound

This paper cites Genome-wide multi-omics profiling of colorectal cancer identifies immune determinants strongly associated with relapse,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Genome-wide multi-omics profiling of colorectal cancer identifies immune determinants strongly associated with relapse,

Reference 11

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Observation 346781aa-ba1f-4bfd-9465-f6b2024096c2 · outbound

This paper cites SALMON: survival analysis learning with multi -omics neural networks on breast cancer,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications SALMON: survival analysis learning with multi -omics neural networks on breast cancer,

Reference 12

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Observation eb95320d-fd44-4243-a376-bee8f9081e7d · outbound

This paper cites Advancements in Human Action Recognition Through 5G/6G Technology for Smart Cities: Fuzzy Integral -Based Fusion,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Advancements in Human Action Recognition Through 5G/6G Technology for Smart Cities: Fuzzy Integral -Based Fusion,

Reference 13

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Observation cc13721f-7761-4363-af32-081a760eec89 · outbound

This paper cites Integrating clinical and multiple omics data for prognostic assessment across human cancers. Sci Rep,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Integrating clinical and multiple omics data for prognostic assessment across human cancers. Sci Rep,

Reference 14

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Observation 14b99913-2438-4f5b-be47-11469efc9b95 · outbound

This paper cites Modelling liver cancer microenvironment using a novel 3D culture system,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Modelling liver cancer microenvironment using a novel 3D culture system,

Reference 15

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Observation 93ef240a-b599-4a14-97e6-6eddf7770bde · outbound

This paper cites Artificial intelligence in lung cancer diagnosis and prognosis: Current application and future perspective,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Artificial intelligence in lung cancer diagnosis and prognosis: Current application and future perspective,

Reference 16

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Observation aaae6a3d-5b35-486e-a86e-a55b79bb6fa2 · outbound

This paper cites Artificial intelligence in pancreatic cancer: diagnosis, limitations, and the future prospects —a narrative review,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Artificial intelligence in pancreatic cancer: diagnosis, limitations, and the future prospects —a narrative review,

Reference 17

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Observation 3a986f88-2a14-40d7-b9a4-c80eefa26d01 · outbound

This paper cites Machine learning applications in cancer prognosis and prediction,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Machine learning applications in cancer prognosis and prediction,

Reference 18

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Observation d0478e5d-e5b4-456a-a749-960a45673173 · outbound

This paper cites Artifi cial intelligence (AI) and big data in cancer and precision oncology,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Artifi cial intelligence (AI) and big data in cancer and precision oncology,

Reference 19

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Observation 2915f470-704e-4447-9ab0-b67184d78c88 · outbound

This paper cites Clinical applications of artificial intelligence and machine learning in cancer diagnosis: looking into the future,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Clinical applications of artificial intelligence and machine learning in cancer diagnosis: looking into the future,

Reference 20

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Observation 33dc207d-c49d-4867-824d-82ba01f07bc8 · outbound

This paper cites Advances in artificial intelligence to predict cancer immunotherapy efficacy,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Advances in artificial intelligence to predict cancer immunotherapy efficacy,

Reference 21

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Observation 6c5df636-e25c-4784-90ca-ebb3396cc1a2 · outbound

This paper cites Liquid biopsies: the future of cancer early detection,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Liquid biopsies: the future of cancer early detection,

Reference 22

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Observation 95eeaa17-f1f9-4c09-8a13-55cf57aca054 · outbound

This paper cites Narrowing the gap: imaging disparities in radiology,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Narrowing the gap: imaging disparities in radiology,

Reference 23

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Observation f913c2cd-ee6c-4109-87a6-1c93456a4d0a · outbound

This paper cites Clinically applicable deep learning for diagnosis and referral in retinal disease,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Clinically applicable deep learning for diagnosis and referral in retinal disease,

Reference 24

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Observation 0cb7eb51-0c86-401a-aa2c-e434354a110a · outbound

This paper cites Artificial intelligence in digital pathology—new tools for diagnosis and precision oncology,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Artificial intelligence in digital pathology—new tools for diagnosis and precision oncology,

Reference 25

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Observation 82957ebb-5106-4778-b730-fa76e864e613 · outbound

This paper cites Human Action Recognition (HAR) Using Skeleton-based Spatial Temporal Relative Transformer Network: ST-RTR.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Human Action Recognition (HAR) Using Skeleton-based Spatial Temporal Relative Transformer Network: ST-RTR

Reference 26

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Observation aa3c27d5-9f5e-4afd-b74b-3e4d704dcec2 · outbound

This paper cites Artificial intelligence of things for smarter healthcare: a survey of advancements, challenges, and opportunities,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Artificial intelligence of things for smarter healthcare: a survey of advancements, challenges, and opportunities,

Reference 27

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Observation 393f8257-4121-4f23-8fb0-d207decec28c · outbound

This paper cites Russo, The Future of Prevention and Treatment of Breast Cancer.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Russo, The Future of Prevention and Treatment of Breast Cancer

Reference 28

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Observation fa600b37-b688-4a7a-96ca-1fcf3ef4a09f · outbound

This paper cites Global percep tions of women on breast cancer and barriers to screening,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Global percep tions of women on breast cancer and barriers to screening,

Reference 29

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Observation a846c6c6-10d9-4f45-a4f2-9a4e9edc613e · outbound

This paper cites A hybrid deep learning model for effective segmentation and classification of lung nodules from CT images,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications A hybrid deep learning model for effective segmentation and classification of lung nodules from CT images,

Reference 30

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Observation b64d2434-e1bc-44eb-b74f-b56b3dc1405f · outbound

This paper cites Prostate cancer classification from ultrasound and MRI images using deep learning based Explainable Artificial Intelligence,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Prostate cancer classification from ultrasound and MRI images using deep learning based Explainable Artificial Intelligence,

Reference 31

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Observation 12206706-2eed-428b-93d1-5c701b594879 · outbound

This paper cites Application of machine learning in CT images and X -rays of COVID -19 pneumonia,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Application of machine learning in CT images and X -rays of COVID -19 pneumonia,

Reference 32

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Observation 8e747591-89c1-40f1-be82-14d7872bdd57 · outbound

This paper cites Digital pathology and computational image analysis in nephropathology,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Digital pathology and computational image analysis in nephropathology,

Reference 33

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Observation c7910e5b-21e5-42be-a8ce-01153808d840 · outbound

This paper cites Next-generation sequencing: insights to advance clinical investigations of the microbiome,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Next-generation sequencing: insights to advance clinical investigations of the microbiome,

Reference 34

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Observation 599750d6-4120-4488-8096-a9a14a3955c3 · outbound

This paper cites Harnessing multimodal data integration to advance precision oncology,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Harnessing multimodal data integration to advance precision oncology,

Reference 35

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Observation b8084279-a19c-496b-9293-d1d78fb24beb · outbound

This paper cites Artificial intelligence in cancer research and precision medicine: Applications, limitations and priorities to drive transformation in the delivery of equitable and unbiased care,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Artificial intelligence in cancer research and precision medicine: Applications, limitations and priorities to drive transformation in the delivery of equitable and unbiased care,

Reference 36

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Observation 6c0ffebd-bec0-4d6d-bf52-c86f8a81d7f6 · outbound

This paper cites Artificial intelligence -based multi -omics analysis fuels cancer precision medicine,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Artificial intelligence -based multi -omics analysis fuels cancer precision medicine,

Reference 37

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Observation 55a5f026-de7b-4a80-b19b-a84053065649 · outbound

This paper cites A machine learning model identifies patients in need of autoimmune disease testing using electronic health records,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications A machine learning model identifies patients in need of autoimmune disease testing using electronic health records,

Reference 38

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Observation a083da9b-fadf-4212-a05e-0ad85ac6cb47 · outbound

This paper cites Artificial intelligence in clinical research of cancers,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Artificial intelligence in clinical research of cancers,

Reference 39

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Observation 1dce9ca4-d314-4ff3-a7b3-e78c5c51ae21 · outbound

This paper cites Artificial Intelligence Failure at IBM'Watson for Oncology',.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Artificial Intelligence Failure at IBM'Watson for Oncology',

Reference 40

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Observation 487fb368-ac75-4ad3-b470-596a71393ffb · outbound

This paper cites Can Artificial Intelligence Help See Cancer in New Ways,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Can Artificial Intelligence Help See Cancer in New Ways,

Reference 41

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Observation 046cd640-e901-49aa-9750-db60d77503fb · outbound

This paper cites Artificial intelligence in ne uro-oncology: advances and challenges in brain tumor diagnosis, prognosis, and precision treatment,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Artificial intelligence in ne uro-oncology: advances and challenges in brain tumor diagnosis, prognosis, and precision treatment,

Reference 42

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Observation 6ba4e868-f5ab-43ee-8ccd-664af0c7f2bf · outbound

This paper cites Extended multi- stream temporal-attention module for skeleton -based human action recognition (HAR),.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Extended multi- stream temporal-attention module for skeleton -based human action recognition (HAR),

Reference 43

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Observation e53410eb-8f66-4833-b2a7-c403af6f95b1 · outbound

This paper cites High -dimensional role of AI and machine learning in cancer research,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications High -dimensional role of AI and machine learning in cancer research,

Reference 44

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Observation 5ad0e35a-02ef-4250-9131-622332d5c6cd · outbound

This paper cites Predicting cancer outcomes with radiomics and artificial intelligence in radiology,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Predicting cancer outcomes with radiomics and artificial intelligence in radiology,

Reference 45

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Observation cab2f911-eec1-48f2-a3cb-e05438b9ad1d · outbound

This paper cites Recent advances in machine -learning-based chemoinformatics: a comprehensive review,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Recent advances in machine -learning-based chemoinformatics: a comprehensive review,

Reference 46

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Observation 89201289-47b3-4e47-8b25-f9eb2a5abcce · outbound

This paper cites European cancer mortality predictions for the year 2023 with focus on lung cancer,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications European cancer mortality predictions for the year 2023 with focus on lung cancer,

Reference 47

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Observation a821cad2-c835-4f81-b1b9-e3e57a942033 · outbound

This paper cites Metastatic non -small-cell lung cancer: ESMO Clinical Practice Guidelines for diagnosis, treatment and follow -up,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Metastatic non -small-cell lung cancer: ESMO Clinical Practice Guidelines for diagnosis, treatment and follow -up,

Reference 48

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source=pdf_text observed=2026-08-10T14:16:54.735219Z digest=sha256:8e6475c6f61c6f6060f6058327cc1fce64797ef30ccee82fd2c7eb7fd696d911

Observation 1c664fdd-0be4-44a1-a37b-d9320e7c9204 · outbound

This paper cites Roles of tumor heterogeneity in the development of drug resistance: A call for precision therapy,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Roles of tumor heterogeneity in the development of drug resistance: A call for precision therapy,

Reference 49

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Observation 12625e3f-5899-45f8-a673-3c4f7d5511d4 · outbound

This paper cites Radiomics: the bri dge between medical imaging and personalized medicine,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Radiomics: the bri dge between medical imaging and personalized medicine,

Reference 50

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Observation 95d7f202-1d9c-4638-9583-365dfd363761 · outbound

This paper cites Cloud computing for genomic data analysis and collaboration,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Cloud computing for genomic data analysis and collaboration,

Reference 51

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Observation dddd8a2a-4e41-4c77-9357-ba9a5cfb72b5 · outbound

This paper cites A five -gene signature and clinical outcome in non –small-cell lung cancer,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications A five -gene signature and clinical outcome in non –small-cell lung cancer,

Reference 52

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source=pdf_text observed=2026-08-10T14:16:54.746937Z digest=sha256:1a865c227509c54fc70f06ce6c0d0bf95a5f326328a49c061d907bc794684f21

Observation 6cad3a2b-eb00-427b-929a-61b73ec087cb · outbound

This paper cites Compar ative mass spectrometry- based metabolomics strategies for the investigation of microbial secondary metabolites,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Compar ative mass spectrometry- based metabolomics strategies for the investigation of microbial secondary metabolites,

Reference 53

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Observation c960d7f5-7fd5-46b5-9b50-bc01325a86c4 · outbound

This paper cites Similarity network fusion for aggregating data types on a genomic scale,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Similarity network fusion for aggregating data types on a genomic scale,

Reference 54

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Observation 171b581c-b53d-4189-806f-9a42feefb4e7 · outbound

This paper cites Extended Multi- Stream Adaptive Graph Convolutional Networks (EMS -AAGCN) for Skeleton -Based Human Action Recognition,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Extended Multi- Stream Adaptive Graph Convolutional Networks (EMS -AAGCN) for Skeleton -Based Human Action Recognition,

Reference 55

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source=pdf_text observed=2026-08-10T14:16:54.755428Z digest=sha256:6794aab72cf285541ed2d4381af2fbdc6937bab7f5e60b8c3c215f29808c9e6c

Observation 3d9990d2-5e0a-4e0a-bcdb-b9884a413399 · outbound

This paper cites Overview and comparative study of dimensionality reduction techniques for high dimensional data,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Overview and comparative study of dimensionality reduction techniques for high dimensional data,

Reference 56

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source=pdf_text observed=2026-08-10T14:16:54.758183Z digest=sha256:d936f8c323acc5f2759504af8b2d23a6be1d51ff59579a3e6c1b9a80e4284a7c

Observation 9e2fe106-ca15-4d6d-b1a6-8c27cc45a6bd · outbound

This paper cites Gut microbiome, big data and machine learning to promote precision medicine for cancer,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Gut microbiome, big data and machine learning to promote precision medicine for cancer,

Reference 57

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source=pdf_text observed=2026-08-10T14:16:54.761460Z digest=sha256:65be00d8446b4a8db3099379b3a3261fdff09c0ab0240ea9f6098b7ec01fa1c4

Observation 66a70052-c049-42f4-97e3-093a15daedbd · outbound

This paper cites Applications of machine learning in drug discovery and development,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Applications of machine learning in drug discovery and development,

Reference 58

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Observation 17b30cf6-bc47-4698-a2c7-80cda90600a3 · outbound

This paper cites Lung cancer LDCT screening and mortality reduction —evidence, pitfalls and future perspectives,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Lung cancer LDCT screening and mortality reduction —evidence, pitfalls and future perspectives,

Reference 59

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source=pdf_text observed=2026-08-10T14:16:54.767924Z digest=sha256:d770da155d42444a1ce97a7b4d06a569f71915ff9da8334ef971963cbf122b40

Observation 938b6293-d897-41c9-a729-c38809ac8ae6 · outbound

This paper cites Exposure to low dose computed tomography for lung cancer screening and risk of cancer: secondary analysis of trial data and risk -benefit analysis,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Exposure to low dose computed tomography for lung cancer screening and risk of cancer: secondary analysis of trial data and risk -benefit analysis,

Reference 60

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source=pdf_text observed=2026-08-10T14:16:54.771137Z digest=sha256:aee3f3a2875b24e96599621757e381d9b40b8730429b81ee0556849b7e513bab

Observation 57d151d6-3fe0-4f7f-b587-1b540d797f9a · outbound

This paper cites A systematic survey of computer -aided diagnosis in medicine: Past and present developments,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications A systematic survey of computer -aided diagnosis in medicine: Past and present developments,

Reference 61

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Observation 135eddd6-f1a0-4718-a1d1-de3862deefce · outbound

This paper cites Malignancy risk estimation of pulmonary nodules in screening CTs: Comparison between a computer model and human observers,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Malignancy risk estimation of pulmonary nodules in screening CTs: Comparison between a computer model and human observers,

Reference 62

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source=pdf_text observed=2026-08-10T14:16:54.777531Z digest=sha256:1fc064ea28619d758e80cd5b2340acb4ae46ff0b4b427916f55946583f08e1bb

Observation 2eb2424f-b0f3-4acf-b03a-bd654d18f64f · outbound

This paper cites an unresolved cited work.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Unresolved cited work

Reference 63

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source=pdf_text observed=2026-08-10T14:16:54.780852Z digest=sha256:3ba4b029e0dc8766841c7834bf1e5e6f8d23e8fba8d35649284c9d50121deeb7

Observation 21cf7531-50a1-4c48-af49-5bfa7163a2e5 · outbound

This paper cites A review of lung cancer screening and the role of computer-aided detection,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications A review of lung cancer screening and the role of computer-aided detection,

Reference 64

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source=pdf_text observed=2026-08-10T14:16:54.784141Z digest=sha256:b0596b5b1532904c96ace9fb32510811c9e9979809e72e7a5bdb57c20681fefd

Observation 167fabe6-e242-409c-8032-831fee638306 · outbound

This paper cites Machine learning for lung cancer diagnosis, treatment, and prognosis,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Machine learning for lung cancer diagnosis, treatment, and prognosis,

Reference 65

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source=pdf_text observed=2026-08-10T14:16:54.787444Z digest=sha256:75a16e1c199bc666c4b2b3c1d929972d8fd86cc2c9682d3ff1aeea059ccb569f

Observation 4cd53a5c-b177-4ef6-9e0d-63814500366c · outbound

This paper cites COVID-MTL: Multitask learning with Shift3D and random -weighted loss for COVID -19 diagnosis and severity assessment,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications COVID-MTL: Multitask learning with Shift3D and random -weighted loss for COVID -19 diagnosis and severity assessment,

Reference 66

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source=pdf_text observed=2026-08-10T14:16:54.790500Z digest=sha256:f852fb2f840c28db6be290da9e55c3e059bbab7812444e1617f350abf0545c62

Observation 497338d3-0a70-40a3-a1cf-3ea0499e3f03 · outbound

This paper cites Eye tracking based deep learning analysis for the early detection of diabetic retinopathy: A pilot study,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Eye tracking based deep learning analysis for the early detection of diabetic retinopathy: A pilot study,

Reference 67

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source=pdf_text observed=2026-08-10T14:16:54.793674Z digest=sha256:564b0280ae2fb8a3f7467bb084d7ef7c1648c3f0b49eab38040158d2bfa24381

Observation 4c3a28c2-3757-4ec0-97d8-47dcc73e12eb · outbound

This paper cites LCSCNet: A multi -level approach for lung cancer stage classification using 3D dense convolutional neural networks with concurrent squeeze-and- excitation module,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications LCSCNet: A multi -level approach for lung cancer stage classification using 3D dense convolutional neural networks with concurrent squeeze-and- excitation module,

Reference 68

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source=pdf_text observed=2026-08-10T14:16:54.796939Z digest=sha256:0ec585207153641d1931c45c983ffb06a7b32220d136d55289fdb75c8ebacd60

Observation 4f935f6d-5b2a-45cd-b6fa-521c238b80f0 · outbound

This paper cites Solid waste image classification using deep convolutional neural network,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Solid waste image classification using deep convolutional neural network,

Reference 69

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source=pdf_text observed=2026-08-10T14:16:54.799994Z digest=sha256:96c8b1f05e4b98add5027250d9c9394579995db3acaad7bcbbb02fc37e07d3db

Observation fe2b654e-cd7c-4216-99c4-3035cd7ba569 · outbound

This paper cites Texture appearance model, a new model-based segmentation paradigm, application on the segmentation of lung nodule in the CT scan of the chest,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Texture appearance model, a new model-based segmentation paradigm, application on the segmentation of lung nodule in the CT scan of the chest,

Reference 70

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source=pdf_text observed=2026-08-10T14:16:54.803106Z digest=sha256:943a9150a7dbc7513d639412f889685339c6ea0fe90232a8f0f68374bab7befa

Observation 3615c5f8-2d10-47d0-9fe6-cf26a5e49ac4 · outbound

This paper cites Computational conformal geometric methods for vision,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Computational conformal geometric methods for vision,

Reference 71

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source=pdf_text observed=2026-08-10T14:16:54.806321Z digest=sha256:6a9c8279b3d56650e412b75cf66a9da78e5b7ec66abc0ad96477aafe07dd5bdf

Observation 9cf1e7cb-b7d6-4878-9982-ba92a260e081 · outbound

This paper cites Image classification of root-trimmed garlic using multi-label and multi-class classification with deep convolutional neural network,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Image classification of root-trimmed garlic using multi-label and multi-class classification with deep convolutional neural network,

Reference 72

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source=pdf_text observed=2026-08-10T14:16:54.810366Z digest=sha256:46aedd51270d684a6573e25729ba0ce147d2ee76018d10137acf930fe125e222

Observation 495667b4-bb5e-494d-89d2-672be48802a2 · outbound

This paper cites Prior CT improves deep learning for malignancy risk estimation of screening-detected pulmonary nodules,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Prior CT improves deep learning for malignancy risk estimation of screening-detected pulmonary nodules,

Reference 73

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source=pdf_text observed=2026-08-10T14:16:54.814206Z digest=sha256:43fecdaf14430c6a16a315730ce4765b470c1fdb47f4a3e20d924482a87203c3

Observation cb5c3c55-c62c-4255-a363-58e417f2cce2 · outbound

This paper cites Deep residual learning for image recognition: A survey,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Deep residual learning for image recognition: A survey,

Reference 74

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source=pdf_text observed=2026-08-10T14:16:54.817477Z digest=sha256:f0c740906ff3917bdcc32e9024a815b02ebb855c826ca73215fd6b6c4fa1e23a

Observation c2d93a18-915c-4091-83d5-98bca6eeb251 · outbound

This paper cites A heterogeneous two -stream network for human action recognition,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications A heterogeneous two -stream network for human action recognition,

Reference 75

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Observation 3dc46aa4-fedf-4003-bf70-ad25cd68ab3c · outbound

This paper cites Sybil: A validated deep learning model to predict future lung cancer risk from a single low -dose chest computed tomography,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Sybil: A validated deep learning model to predict future lung cancer risk from a single low -dose chest computed tomography,

Reference 76

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Observation f6e66531-8e6f-4859-974d-93da944cf505 · outbound

This paper cites mask R -CNN models,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications mask R -CNN models,

Reference 77

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Observation cdb49f4a-7804-41c9-9366-f724d75ae36e · outbound

This paper cites Modified U‐Net for cytological medical image segmentation,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Modified U‐Net for cytological medical image segmentation,

Reference 78

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Observation 3381f56e-d84f-45bd-91dc-89875df94141 · outbound

This paper cites Few-shot out-of-distribution detection for automated screening in retinal OCT images using deep learning,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Few-shot out-of-distribution detection for automated screening in retinal OCT images using deep learning,

Reference 79

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Observation 4fd4f861-0913-4e13-ad1b-c441ea0d952b · outbound

This paper cites Geospatial immune variability illuminates differential evolution of lung adenocarcinoma,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Geospatial immune variability illuminates differential evolution of lung adenocarcinoma,

Reference 80

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Observation 4e268629-6093-4ef0-b5db-ffec8c78765d · outbound

This paper cites Multiple endocrine neoplasia type 1 with Zollinger –Ellison syndrome: clinicopathological analysis of a Japanese family with focus on menin immunohistochemistry,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Multiple endocrine neoplasia type 1 with Zollinger –Ellison syndrome: clinicopathological analysis of a Japanese family with focus on menin immunohistochemistry,

Reference 81

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Observation 4084e116-bde2-4e7a-a556-98bed9355bfa · outbound

This paper cites Separated channel attention convolutional neural network (SC -CNN- attention) to identify ADHD in multi-site rs-fMRI dataset,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Separated channel attention convolutional neural network (SC -CNN- attention) to identify ADHD in multi-site rs-fMRI dataset,

Reference 82

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Observation 49e754f9-5cec-4dc1-8efe-b36525707f26 · outbound

This paper cites Performance of Lung -RADS in different targ et populations: a systematic review and meta-analysis,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Performance of Lung -RADS in different targ et populations: a systematic review and meta-analysis,

Reference 83

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Observation a561daa1-f663-4c79-b123-118756149975 · outbound

This paper cites Lung cancer screening with low-dose computed tomography: current status in Germany,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Lung cancer screening with low-dose computed tomography: current status in Germany,

Reference 84

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Observation 5b23903a-e279-4339-abc7-80d4b41a264e · outbound

This paper cites frontiers Frontiers in Oncology ORIGINAL RESEARCH published: 08 June 2022,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications frontiers Frontiers in Oncology ORIGINAL RESEARCH published: 08 June 2022,

Reference 85

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Observation b626ee00-a60c-47bd-8936-f5596321a195 · outbound

This paper cites miRNAs in lung cancer. A systematic review identifies predictive and prognostic miRNA candidates for precision medicine in lung cancer,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications miRNAs in lung cancer. A systematic review identifies predictive and prognostic miRNA candidates for precision medicine in lung cancer,

Reference 86

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Observation 751fcde4-fddf-4f91-8b05-aa7ec7eb528d · outbound

This paper cites Lung adenocarcinoma and lung squamous cell carcinoma cancer classification, biomarker identification, and gene expression analysis using overlapping feature selection methods,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Lung adenocarcinoma and lung squamous cell carcinoma cancer classification, biomarker identification, and gene expression analysis using overlapping feature selection methods,

Reference 87

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Observation 178a2d92-dd33-4ffe-93fe-3aa79787922d · outbound

This paper cites Classification and mutation prediction from non–small cell lung cancer histopathology images using deep learning,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Classification and mutation prediction from non–small cell lung cancer histopathology images using deep learning,

Reference 88

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Observation 6f44d0eb-9c5f-4905-966b-500ada8f3396 · outbound

This paper cites Classification of distribution power grid structures using inception v3 deep neural network,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Classification of distribution power grid structures using inception v3 deep neural network,

Reference 89

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Observation 5a9aca1f-0d28-42db-91ef-bfc8cda902a9 · outbound

This paper cites New controlled and unmonitored learning methods pulmonary and cancer progression characterisation,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications New controlled and unmonitored learning methods pulmonary and cancer progression characterisation,

Reference 90

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Observation 5f6fdfff-5eb1-4e6a-b119-23a8beee8880 · outbound

This paper cites PANTHER: pathway augmented nonnegative tensor factorization for HighER-order feature learning,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications PANTHER: pathway augmented nonnegative tensor factorization for HighER-order feature learning,

Reference 91

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Observation 25caedef-0995-4fac-833b-0779a1d2e583 · outbound

This paper cites ScanMap: supervised confounding aware non -negative matrix factorization for polygenic risk modeling,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications ScanMap: supervised confounding aware non -negative matrix factorization for polygenic risk modeling,

Reference 92

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Observation 725512af-860c-4878-94d9-524c5e5bbbca · outbound

This paper cites Extremely high genetic diversity in a single tumor points to prevalence of non-Darwinian cell evolution,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Extremely high genetic diversity in a single tumor points to prevalence of non-Darwinian cell evolution,

Reference 93

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Observation e5e1bfd3-3563-4a45-b9cd-34f0d80697c2 · outbound

This paper cites Pan -cancer analysis of whole -genome doubling and its association with patient prognosis,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Pan -cancer analysis of whole -genome doubling and its association with patient prognosis,

Reference 94

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Observation 55219c7e-7692-46aa-b6ef-e647ba811f29 · outbound

This paper cites Probability of cancer in pulmonary nodules detected on first screening CT,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Probability of cancer in pulmonary nodules detected on first screening CT,

Reference 95

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Observation 424c0b88-eb1d-4396-a237-588e0a49f0ea · outbound

This paper cites Characterization of lung nodule malignancy using hybrid shape and appearance features,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Characterization of lung nodule malignancy using hybrid shape and appearance features,

Reference 96

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Observation c6b049eb-46aa-4555-a71e-9cc5ae9fc72e · outbound

This paper cites Risk stratification of lung nodule s using 3D CNN-based multi -task learning,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Risk stratification of lung nodule s using 3D CNN-based multi -task learning,

Reference 97

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Observation 3a4cc3d3-1317-4a89-becb-339fafd3ed42 · outbound

This paper cites A collaborative computer aided diagnosis (C -CAD) system with eye -tracking, sparse attentional model, and deep learning,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications A collaborative computer aided diagnosis (C -CAD) system with eye -tracking, sparse attentional model, and deep learning,

Reference 98

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Observation 7eacac90-ed88-4909-a333-09d044958c13 · outbound

This paper cites Automatic classification of pulmonary peri-fissural nodules in computed tomography using an ensemble of 2D views and a convolutional neural network out -of- the-box,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Automatic classification of pulmonary peri-fissural nodules in computed tomography using an ensemble of 2D views and a convolutional neural network out -of- the-box,

Reference 99

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Observation 19bc4c71-e9d0-4cb2-b635-fc99ebd7826c · outbound

This paper cites Deep learning for malignancy risk estimation of pulmonary nodules detected at low-dose screening CT,.

AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications Deep learning for malignancy risk estimation of pulmonary nodules detected at low-dose screening CT,

Reference 100

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Pith citing papers

Observation 5f3e4d98-feeb-4d03-afc8-ce9a22cf45bf · inbound

Benchmarking Quantum and Classical Machine Learning Models on Oncological Data cites this paper.

Benchmarking Quantum and Classical Machine Learning Models on Oncological Data AI in Oncology: Transforming Cancer Detection through Machine Learning and Deep Learning Applications

Reference 6

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source=pdf_text observed=2026-08-15T14:17:38.314020Z digest=sha256:3ad3ec26064b1eaf52a9c32be30c477f7bdf1d4fa1c5bc11494ac807049fa713