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Paper Citation Record · LEDGER

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction

As of 21 August 2026, this Paper Citation Record lists 77 of 77 outbound references and 1 inbound Pith citation observation for arXiv:2509.11046.

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

pith.paper-citation-record.v1
2509.11046 v1

Coverage vector

measured 77 of 77 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-08-04T17:14:42.570814Z

measured 78 of 78 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-21T06:32:19.484+00:00

measured 1 of 1 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links, observed 2026-06-30T10:13:49.569711Z

measured 0 of 1 external citation measurements

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

Source: arxiv_reference, observed 2026-06-30T10:14:35.950275Z

Reference resolution

77 of 77 outbound references displayed

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External citation measurements

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Outbound references

Observation b2b0e56a-21fa-469f-9559-1867ce8283f5 · outbound

This paper cites Nature Reviews Drug Discovery3(11), 935–949 (2004).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Nature Reviews Drug Discovery3(11), 935–949 (2004)

Reference 1

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Observation 54c3fb6a-7dc1-4645-b096-2124695c8d95 · outbound

This paper cites ACS omega4(14), 15956–15965 (2019).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction ACS omega4(14), 15956–15965 (2019)

Reference 2

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Observation e61f92c8-215d-4691-be5f-4b73558df605 · outbound

This paper cites Nucleic Acids Research47(D1), 464–474 (2019).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Nucleic Acids Research47(D1), 464–474 (2019)

Reference 3

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Observation c6b758ff-1d31-44b1-8eae-1812d348a77f · outbound

This paper cites Proteins: Structure, Function, and Bioinformatics68(3), 726–737 (2007).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Proteins: Structure, Function, and Bioinformatics68(3), 726–737 (2007)

Reference 4

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Observation fede5972-4878-4a4b-aaaf-732031cc121f · outbound

This paper cites Journal of Chemical Information and Modeling60(4), 2189–2198 (2020).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Journal of Chemical Information and Modeling60(4), 2189–2198 (2020)

Reference 5

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Observation acbcb09f-0969-444f-8c58-f825cbf3d5f6 · outbound

This paper cites ACS Publications (2013) 37.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction ACS Publications (2013) 37

Reference 6

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Observation 327f9e1c-9268-4ea4-b8da-4db30f3c0974 · outbound

This paper cites Journal of Chemical Information and Modeling53(12), 3399–3409 (2013).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Journal of Chemical Information and Modeling53(12), 3399–3409 (2013)

Reference 7

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Observation 4bff271f-baba-4415-b97e-abef38d299b0 · outbound

This paper cites Bioinformatics34(21), 3666–3674 (2018).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Bioinformatics34(21), 3666–3674 (2018)

Reference 8

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Observation fb4473db-af75-427b-b2cb-27ee43c0e72a · outbound

This paper cites ChemRxiv (2019) https://doi.org/10.26434/chemrxiv.9866912.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction ChemRxiv (2019) https://doi.org/10.26434/chemrxiv.9866912

Reference 9

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Observation 14999acd-e43e-42c3-8ff6-a3f880d567bc · outbound

This paper cites PLoS computational biology13(7), 1005690 (2017).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction PLoS computational biology13(7), 1005690 (2017)

Reference 10

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Observation 4ce55a0b-a1ee-4484-ae2e-acefa7c2404a · outbound

This paper cites Briefings in Bioinformatics22(5), 117 (2021).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Briefings in Bioinformatics22(5), 117 (2021)

Reference 11

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Observation 8fb2e57d-edca-4f17-987f-acf242a32007 · outbound

This paper cites WideDTA: prediction of drug-target binding affinity.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction WideDTA: prediction of drug-target binding affinity

Reference 12

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Observation 37fd6643-7504-4811-adf4-96ad1d1ae048 · outbound

This paper cites Briefings in Bioinformatics22(5), 072 (2021).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Briefings in Bioinformatics22(5), 072 (2021)

Reference 13

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Observation 06696e28-6ad7-4e9b-b888-43c1a610c2ec · outbound

This paper cites Artificial Intelligence Review56(7), 5975–6037 (2023).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Artificial Intelligence Review56(7), 5975–6037 (2023)

Reference 14

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Observation 8a75d59d-0c3e-40e8-a554-83d0760954b5 · outbound

This paper cites EPJ Quantum Technology12(1), 32 (2025).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction EPJ Quantum Technology12(1), 32 (2025)

Reference 15

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Observation c7699c44-a7e3-4aa1-bfd3-45ef67426a0a · outbound

This paper cites IEEE Access11, 113726–113739 (2023).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction IEEE Access11, 113726–113739 (2023)

Reference 16

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Observation cc80ddfa-8a28-49ce-b32e-aa05cbbfd83a · outbound

This paper cites ICT Express10(3), 608–613 (2024).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction ICT Express10(3), 608–613 (2024)

Reference 17

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Observation 4b2ae738-8794-4976-8d50-b7872a00e765 · outbound

This paper cites Quantum4, 226 (2020).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Quantum4, 226 (2020)

Reference 18

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Observation 7cb7ff5e-ba24-440d-98cb-af087098bf28 · outbound

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Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Unresolved cited work

Reference 19

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Observation 653108ca-3ee1-4cf4-940a-2f33708c6f46 · outbound

This paper cites Physical Review Research3(3), 032049 (2021).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Physical Review Research3(3), 032049 (2021)

Reference 20

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Observation fca46877-c832-48a6-b4b7-878faec53d38 · outbound

This paper cites IBM Journal of Research and Development62(6), 6–1620 (2018).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction IBM Journal of Research and Development62(6), 6–1620 (2018)

Reference 21

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Observation d144d122-a2d7-4bff-8968-03b15f21b5c2 · outbound

This paper cites Journal of Chemical Theory and Computation18(12), 7001–7023 (2022).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Journal of Chemical Theory and Computation18(12), 7001–7023 (2022)

Reference 22

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Observation 8445bb90-edc5-4f46-92ca-362677f65750 · outbound

This paper cites Advances in Neural Information Processing Systems 35, 27810–27823 (2022).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Advances in Neural Information Processing Systems 35, 27810–27823 (2022)

Reference 23

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Observation 040327d5-fb72-4e78-b71e-2a6230d5aadd · outbound

This paper cites Nature Communications14(1), 6001 (2023).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Nature Communications14(1), 6001 (2023)

Reference 24

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Observation 909272b3-93a6-4f63-ba84-fa52f277bc4a · outbound

This paper cites IEEE Internet of Things Journal, 1–1 (2025).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction IEEE Internet of Things Journal, 1–1 (2025)

Reference 25

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Observation 458f9740-9377-4786-a3c0-3a4fe586bad1 · outbound

This paper cites IEEE Trans- actions on Computer-Aided Design of Integrated Circuits and Systems42(10), 3301–3314 (2023).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction IEEE Trans- actions on Computer-Aided Design of Integrated Circuits and Systems42(10), 3301–3314 (2023)

Reference 26

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This paper cites Physical Review A102(3), 032420 (2020).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Physical Review A102(3), 032420 (2020)

Reference 27

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Observation 324967cf-f2a4-41db-8e9c-1ffb72544091 · outbound

This paper cites Accounts of Chemical Research50(2), 302–309 (2017).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Accounts of Chemical Research50(2), 302–309 (2017)

Reference 28

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Observation 251db9f6-3e32-4071-bebf-b3e2fd954aba · outbound

This paper cites Quantum Neuron: an elementary building block for machine learning on quantum computers.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Quantum Neuron: an elementary building block for machine learning on quantum computers

Reference 29

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Observation 53a03768-de12-40f6-b46b-50693235d67d · outbound

This paper cites Europhysics Letters125(3), 30004 (2019).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Europhysics Letters125(3), 30004 (2019)

Reference 30

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Observation 815c4377-e339-4092-ac48-b627ebb4d8ff · outbound

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Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Quantum Information Processing21(4), 128 (2022) 39

Reference 31

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This paper cites In: International Conference on Computational Science, pp.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction In: International Conference on Computational Science, pp

Reference 32

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This paper cites Physical Review A101(1), 010301 (2020).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Physical Review A101(1), 010301 (2020)

Reference 33

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This paper cites Bioinformatics34(17), 821–829 (2018).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Bioinformatics34(17), 821–829 (2018)

Reference 34

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Observation 5bab6615-4ab3-4430-808e-79e8e3a64884 · outbound

This paper cites In: 2019 IEEE International Conference on Bioinformatics and Biomedicine (BIBM), pp.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction In: 2019 IEEE International Conference on Bioinformatics and Biomedicine (BIBM), pp

Reference 35

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This paper cites Bioinformatics35(18), 3329–3338 (2019).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Bioinformatics35(18), 3329–3338 (2019)

Reference 36

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This paper cites Scientific Reports 13(1), 17951 (2023).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Scientific Reports 13(1), 17951 (2023)

Reference 37

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Observation c4f61da0-ed41-44e0-8d95-aeb6045ff23a · outbound

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Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Advanced Quantum Technologies6(9), 2300107 (2023)

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Observation 4c207583-4f41-4cbc-b011-21632f90cba2 · outbound

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Observation d689ebf9-633f-414c-93b3-68b167c6bada · outbound

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Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Quantum Machine Intelligence3, 1–20 (2021)

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Observation 7112324a-ee68-48a5-8c90-923271bcad93 · outbound

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Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Machine Learning: Science and Technology5(1), 015040 (2024)

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Observation 2044712b-c18c-4c1f-9265-ebed8a59031d · outbound

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Observation f0a2e719-dd9b-4bcc-8688-4ab061d2a144 · outbound

This paper cites Quantum Machine Intelligence 7(1), 1–20 (2025).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Quantum Machine Intelligence 7(1), 1–20 (2025)

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Observation 9f97e6a3-d2e3-433f-894b-6a95fea695d7 · outbound

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Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Nature reviews Molecular cell biology7(3), 188–197 (2006)

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Observation 76b56b43-7469-4e74-88da-2fe5e1bf59d3 · outbound

This paper cites Quantum embeddings for machine learning.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Quantum embeddings for machine learning

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Observation 360dd60e-78f3-4b81-a546-266fee8c4751 · outbound

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Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Advances in neural information processing systems30(2017)

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Observation 79ecdf3a-9614-46f2-a1c7-40d2b8111f1b · outbound

This paper cites an unresolved cited work.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Unresolved cited work

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Observation d27e3f64-c4df-4f88-a6df-41f8799b3373 · outbound

This paper cites Journal of cheminformatics3, 1–14 (2011).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Journal of cheminformatics3, 1–14 (2011)

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Observation 21bc0228-344b-4ce1-9db4-8716b5a1acf4 · outbound

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Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Biotechnology Advances, 108459 (2024)

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Observation 6b6bc619-f02d-4553-b81a-296c49d6ddc0 · outbound

This paper cites Bioinformatics36(Supplement 2), 735–744 (2020).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Bioinformatics36(Supplement 2), 735–744 (2020)

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Observation cebcdfe5-dba3-4abb-9179-abaad941ee8e · outbound

This paper cites Bioinformatics30(18), 2592–2597 (2014).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Bioinformatics30(18), 2592–2597 (2014)

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Observation b1a0e29e-df6c-4417-a810-34b9e5beb126 · outbound

This paper cites Proceedings of the National Academy of Sciences108(4), 1326–1330 (2011).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Proceedings of the National Academy of Sciences108(4), 1326–1330 (2011)

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Observation 94b25b64-2925-426f-b16b-11a4092b9a19 · outbound

This paper cites Applied Acoustics148, 123–132 (2019).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Applied Acoustics148, 123–132 (2019)

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Observation 9b420847-1474-489f-9643-3e38eb04c1f8 · outbound

This paper cites In: Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition, pp.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction In: Proceedings of the IEEE Conference on Computer Vision and Pattern Recognition, pp

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Observation 314e8c51-a23e-40b3-925f-79b855e809b8 · outbound

This paper cites Physical Review A101(3), 032308 (2020).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Physical Review A101(3), 032308 (2020)

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Observation 5b3aff54-06f4-43ac-b08b-5edcaa78e6e4 · outbound

This paper cites Cambridge University Press, Cambridge, UK (2010).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Cambridge University Press, Cambridge, UK (2010)

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Observation c59d7737-a6af-43ab-bfd3-c944c977c8e6 · outbound

This paper cites Physical Review A98(3), 032309 (2018).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Physical Review A98(3), 032309 (2018)

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Observation ca5d4442-f22d-47df-ad21-bf1cbebd7e71 · outbound

This paper cites Journal of Cheminformatics13(1), 59 (2021).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Journal of Cheminformatics13(1), 59 (2021)

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Observation 68cea3fa-84d9-409c-9317-0180772f8519 · outbound

This paper cites Journal of chemical information and modeling58(2), 287–296 (2018).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Journal of chemical information and modeling58(2), 287–296 (2018)

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Observation e22f6e04-5ddf-41b3-ab2f-284a4c6371fe · outbound

This paper cites PloS one8(12), 82138 (2013).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction PloS one8(12), 82138 (2013)

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Observation 82564a9a-20dc-45a3-bd0b-64483a7239b5 · outbound

This paper cites Decoupled Weight Decay Regularization.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Decoupled Weight Decay Regularization

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Observation d585ec80-18e1-4c09-acf5-1aea05621e92 · outbound

This paper cites PennyLane: Automatic differentiation of hybrid quantum-classical computations.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction PennyLane: Automatic differentiation of hybrid quantum-classical computations

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Observation 82969008-b4b8-4afc-aa96-eafbe4652233 · outbound

This paper cites Noise reduction in speech processing, 1–4 (2009).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Noise reduction in speech processing, 1–4 (2009)

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Observation 2a00e9ab-c96b-4ca4-844e-ff02c7874eb3 · outbound

This paper cites The Clinical Biochemist Reviews 29(Suppl 1), 23 (2008).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction The Clinical Biochemist Reviews 29(Suppl 1), 23 (2008)

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Observation e730e71f-a7d1-4d8a-84ae-bb2e2b82f2f9 · outbound

This paper cites Briefings in Bioinformatics16(2), 325–337 (2015) 42.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Briefings in Bioinformatics16(2), 325–337 (2015) 42

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Observation 91d67cf6-4e12-4118-a579-7a82d95b8b0a · outbound

This paper cites In: International Conference on Machine Learning, pp.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction In: International Conference on Machine Learning, pp

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Observation 8bebf28d-1faa-4a20-bafa-d4a25d996d06 · outbound

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Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Unresolved cited work

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Observation 24dba351-b0ca-457a-9767-c6a4f673a280 · outbound

This paper cites The annals of mathematical statistics22(1), 79–86 (1951).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction The annals of mathematical statistics22(1), 79–86 (1951)

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Observation 6f84a674-f47b-40be-975e-3e7a5f7df9c8 · outbound

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Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Unresolved cited work

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Observation 8b2e9cf1-5ad7-4464-8c93-64d67076d1ce · outbound

This paper cites Quantum Machine Intelligence2(1), 2 (2020).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Quantum Machine Intelligence2(1), 2 (2020)

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Observation e57c7ab1-a7e0-4060-bc81-ad3353f88acc · outbound

This paper cites IEEE Transactions on Pattern Analysis and Machine Intelligence46(12), 10184– 10195 (2024).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction IEEE Transactions on Pattern Analysis and Machine Intelligence46(12), 10184– 10195 (2024)

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Observation 940de7c6-517f-48b9-a6c3-5328b43cfd43 · outbound

This paper cites Reviews of Modern Physics94(1), 015004 (2022).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Reviews of Modern Physics94(1), 015004 (2022)

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Observation 355ce1b9-2483-4335-bd24-cb0fe0b09653 · outbound

This paper cites IBM Quantum Computers: Evolution, Performance, and Future Directions.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction IBM Quantum Computers: Evolution, Performance, and Future Directions

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Observation 6b8b88fe-c5c4-40cd-a6bd-43c92a1457c1 · outbound

This paper cites Quantum5, 412 (2021).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Quantum5, 412 (2021)

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Observation 474d7990-bace-4908-bf42-c552d23fa93c · outbound

This paper cites Physical review letters119(18), 180509 (2017).

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Physical review letters119(18), 180509 (2017)

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Observation f99ceebd-2de3-47dc-a08b-0c90c60f4987 · outbound

This paper cites The Solovay-Kitaev algorithm.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction The Solovay-Kitaev algorithm

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Observation bab932e0-89a8-4354-85e5-3a6e5d636a7d · outbound

This paper cites Physical Review A52(5), 3457 (1995) 43.

Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction Physical Review A52(5), 3457 (1995) 43

Reference 77

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Pith citing papers

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Exploring the Effects of Entanglement on Quantum Machine Learning of Pathogen Epitope-Receptor Binding cites this paper.

Exploring the Effects of Entanglement on Quantum Machine Learning of Pathogen Epitope-Receptor Binding Hybrid Quantum Neural Networks for Efficient Protein-Ligand Binding Affinity Prediction

Reference 8

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