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Paper Citation Record · LEDGER

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning

As of 11 August 2026, this Paper Citation Record lists 93 of 93 outbound references and 0 inbound Pith citation observations for arXiv:2607.11530.

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

pith.paper-citation-record.v1
2607.11530 v1

Coverage vector

measured 93 of 93 reference resolution

Typed states for the displayed outbound observations.

Source: paper_references, paper_reference_links, observed 2026-07-14T04:58:13.844348Z

measured 93 of 93 standing notices

One-hop event checks from named stored sources.

Source: scholarly_work_events, retraction_status_cache, observed 2026-08-11T06:34:44.6726+00:00

measured 0 of 0 inbound itemization

Pith citing papers itemized under the disclosed page cap.

Source: paper_references, paper_reference_links

measured 0 of 1 external citation measurements

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

Source: cited_works

Reference resolution

93 of 93 outbound references displayed

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External citation measurements

No source-named external measurement is stored.

Outbound references

Observation 62f3c59c-e4a3-4a55-b705-b8d62cddd2c8 · outbound

This paper cites Proceedings of the 25th.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Proceedings of the 25th

Reference 3

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Observation 92ce1831-1872-4c10-a03e-a1af55155daa · outbound

This paper cites Frontiers in neuroscience , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Frontiers in neuroscience , volume=

Reference 4

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Observation 9b842f0c-5fc5-400b-8ea1-89bc23c94f12 · outbound

This paper cites Annals of clinical and translational neurology , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Annals of clinical and translational neurology , volume=

Reference 5

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Observation 44e8342f-8d77-4cb7-91cc-ec51ced69b52 · outbound

This paper cites Nature , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Nature , volume=

Reference 6

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Observation 4559b0f8-7ffd-4d9b-97bd-7d787146d6f9 · outbound

This paper cites Nature , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Nature , volume=

Reference 7

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Observation 26442d3c-274f-498b-a616-783daf4cf397 · outbound

This paper cites Nature , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Nature , volume=

Reference 8

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Observation fd0c087b-b923-4858-af7f-c0aeed02474c · outbound

This paper cites IEEE Transactions on Computational Intelligence and AI in Games , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning IEEE Transactions on Computational Intelligence and AI in Games , volume=

Reference 9

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Observation 0dac9e48-f0b2-4594-a82a-34ebdeb170f9 · outbound

This paper cites IEEE Transactions on Computational Intelligence and AI in Games , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning IEEE Transactions on Computational Intelligence and AI in Games , volume=

Reference 10

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Observation 50c1d121-0de8-4d5a-99cd-90beb8c52d07 · outbound

This paper cites Nature , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Nature , volume=

Reference 11

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Observation bbb8bb99-8afc-4dbd-82a6-0e5a358ae2be · outbound

This paper cites Science robotics , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Science robotics , volume=

Reference 12

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Observation 5dacc4e1-102d-4da5-b679-aaf4191289c2 · outbound

This paper cites The Lancet , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning The Lancet , volume=

Reference 13

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Observation 57fc387e-f475-4a66-a37c-9d7ed60346a1 · outbound

This paper cites TRENDS in Neurosciences , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning TRENDS in Neurosciences , volume=

Reference 14

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Observation 469a77d5-073b-475c-a8b2-f0f53bd50f45 · outbound

This paper cites Journal of neural engineering , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Journal of neural engineering , volume=

Reference 15

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Observation 3d5c2dae-8b68-4e9c-9e06-dc67ca90ddbc · outbound

This paper cites Journal of neural engineering , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Journal of neural engineering , volume=

Reference 16

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Observation 662f2201-e37a-4545-8d4e-bcc401564be7 · outbound

This paper cites 2022 IEEE International Conference on Metrology for Extended Reality, Artificial Intelligence and Neural Engineering (Metroxraine) , pages=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning 2022 IEEE International Conference on Metrology for Extended Reality, Artificial Intelligence and Neural Engineering (Metroxraine) , pages=

Reference 17

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Observation c1ab89c7-9471-4f78-b56d-74a913caed15 · outbound

This paper cites 2023 IEEE International Conference on Metrology for eXtended Reality, Artificial Intelligence and Neural Engineering (MetroXRAINE) , pages=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning 2023 IEEE International Conference on Metrology for eXtended Reality, Artificial Intelligence and Neural Engineering (MetroXRAINE) , pages=

Reference 18

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Observation 909d05f4-29a8-42ac-a9b9-969b10731d68 · outbound

This paper cites Frontiers in neuroscience , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Frontiers in neuroscience , volume=

Reference 19

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Observation a374808c-f178-45a8-8195-7c636d678924 · outbound

This paper cites Journal of neuroscience , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Journal of neuroscience , volume=

Reference 20

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Observation cc2bbb51-35df-4d8f-b515-4d3cd93dc66b · outbound

This paper cites IEEE Transactions on Neural Systems and Rehabilitation Engineering , year=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning IEEE Transactions on Neural Systems and Rehabilitation Engineering , year=

Reference 21

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Observation 611d5d48-ca29-444e-bc24-f55051fe84bb · outbound

This paper cites IEEE Journal of Biomedical and Health Informatics , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning IEEE Journal of Biomedical and Health Informatics , volume=

Reference 22

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Observation 9d26beea-3dcc-4406-8440-2792bddce8be · outbound

This paper cites IEEE Transactions on Neural Systems and Rehabilitation Engineering , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning IEEE Transactions on Neural Systems and Rehabilitation Engineering , volume=

Reference 23

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Observation 3b37d130-94b5-4052-9cd5-8f62d7489c4e · outbound

This paper cites 1998 , publisher=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning 1998 , publisher=

Reference 24

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Observation 5afa9f27-30c5-426b-bdac-b25937fd1040 · outbound

This paper cites The International Journal of Robotics Research , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning The International Journal of Robotics Research , volume=

Reference 25

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Observation 4bb01a67-8dde-425d-87cd-a3ed0d0d5670 · outbound

This paper cites Artificial intelligence review , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Artificial intelligence review , volume=

Reference 26

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Observation 1c93d3d9-9c57-4700-86cb-e09abb88793f · outbound

This paper cites Journal of Neural Engineering , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Journal of Neural Engineering , volume=

Reference 27

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Observation a0fa4ac3-f8b6-4642-9488-6869e3c35826 · outbound

This paper cites Scientific reports , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Scientific reports , volume=

Reference 28

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Observation 4913ef64-f674-481e-b1f8-318b10e6e0aa · outbound

This paper cites 2019 international conference on robotics and automation (ICRA) , pages=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning 2019 international conference on robotics and automation (ICRA) , pages=

Reference 29

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Observation 7a1d5331-85cb-44e7-976f-af802f1992ed · outbound

This paper cites IEEE Robotics and Automation Letters , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning IEEE Robotics and Automation Letters , volume=

Reference 31

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Observation e9a9619c-c773-4f28-97d4-4fb0ef1545e8 · outbound

This paper cites Breakthroughs in statistics: Methodology and distribution , pages=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Breakthroughs in statistics: Methodology and distribution , pages=

Reference 32

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Observation a6b1142f-74e2-4ae0-887b-5273858cca19 · outbound

This paper cites 2013 , publisher=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning 2013 , publisher=

Reference 33

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Observation fa92cc78-3abc-4be2-a1b6-da4cbd00d3af · outbound

This paper cites Frontiers in Human Neuroscience , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Frontiers in Human Neuroscience , volume=

Reference 34

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Observation 45918b5b-f804-4c31-8022-9963725eee5d · outbound

This paper cites Expert Systems with Applications , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Expert Systems with Applications , volume=

Reference 35

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Observation 8f85548b-6b2c-46c3-9ddb-a790a819548e · outbound

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Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Applied Sciences , volume=

Reference 36

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Observation 0ac0e400-d294-4584-b137-fed04a78eb3d · outbound

This paper cites Neurocomputing , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Neurocomputing , volume=

Reference 37

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Observation 5a7a2527-625b-426b-b220-7eed6a276e1e · outbound

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Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Proceedings of the 6th ACM Workshop on Wearable Systems and Applications , pages=

Reference 38

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Observation e92b6de6-ad99-431b-ae4a-92cbcd8bce62 · outbound

This paper cites Annual Review of Control, Robotics, and Autonomous Systems , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Annual Review of Control, Robotics, and Autonomous Systems , volume=

Reference 39

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Observation b5bdefb8-c81f-4504-ad72-6cf9e2a23321 · outbound

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Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning IEEE Transactions on Systems, Man, and Cybernetics: Systems , year=

Reference 40

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Observation bb170d09-e263-486c-8960-f7719af98c22 · outbound

This paper cites Computers in Biology and Medicine , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Computers in Biology and Medicine , volume=

Reference 41

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Observation d0ce8018-6e6a-4b3c-836f-beeebff4e3cf · outbound

This paper cites Brain Hemorrhages , year=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Brain Hemorrhages , year=

Reference 42

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Observation 6a4e8c56-0c82-4e2e-a50a-71c13233cd59 · outbound

This paper cites Scandinavian journal of statistics , pages=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Scandinavian journal of statistics , pages=

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Observation 5d9982ae-6e60-4a97-b73d-b3e3c0683f88 · outbound

This paper cites Journal of neuroengineering and rehabilitation , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Journal of neuroengineering and rehabilitation , volume=

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Observation 7d3e1f77-a360-4d43-a493-cd4539dc7ffb · outbound

This paper cites Communications medicine , year=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Communications medicine , year=

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Observation 6e47f301-ee7a-4926-b893-043957a49a34 · outbound

This paper cites Electroencephalography and clinical neurophysiology , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Electroencephalography and clinical neurophysiology , volume=

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:e6b72c684d19865ddf9adbd22425c2cbddbe2331e198d6573df177030a35e042

Observation 2e30f6cb-6fe2-46af-b0ba-2fc16cf64ce7 · outbound

This paper cites 1992 , publisher=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning 1992 , publisher=

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:8bccc4888d2e324c76449fa12416e5f5fcc7fb10f0eb85cbfc0ae850e9eb8c6a

Observation 3ce60992-7873-4bfa-a6f7-0d992bc2af11 · outbound

This paper cites Journal of the american statistical association , volume=.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Journal of the american statistical association , volume=

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Observation 84c09d98-2346-46c3-9c2a-07cd53b5c61f · outbound

This paper cites u diger Rupp, Gernot R M \.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning u diger Rupp, Gernot R M \

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:a92e56df627c96ea2fc3464926fae58be9a616e70e94313af2330a2f5da39b16

Observation 13774123-c844-41e9-b2d7-f601f307a3f9 · outbound

This paper cites Applying a brain-computer interface to support motor imagery practice in people with stroke for upper limb recovery: a feasibility study.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Applying a brain-computer interface to support motor imagery practice in people with stroke for upper limb recovery: a feasibility study

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:1586396180c05033310e5f753632d4bc6ad88493fcca9ccdfe77a0d35e931fb7

Observation 2462a2ed-d8d1-46ba-a34d-48c2225397ab · outbound

This paper cites Brain-computer interfaces for post-stroke motor rehabilitation: a meta-analysis.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Brain-computer interfaces for post-stroke motor rehabilitation: a meta-analysis

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:c3beb64d67a67abf4393dd2ca3957e9a9a130c5ebf305621bd2309d81495cee2

Observation 2c498aa4-c0a7-4158-ab2b-858e2998d8a6 · outbound

This paper cites High-performance brain-to-text communication via handwriting.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning High-performance brain-to-text communication via handwriting

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:92b3f9df586a3e06c84bee3afd6c3674049f1aa0af03d33704483417772738af

Observation 67257c8a-45cc-4d5a-a520-a9ccf0fed897 · outbound

This paper cites A high-performance speech neuroprosthesis.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning A high-performance speech neuroprosthesis

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:f1a59ffbcfec02ffb6e81b2ada5b015144a5a33131b35fa21b2b0c9cd2ff8f4f

Observation 58e408ac-8247-4ccb-858d-ab860ea25313 · outbound

This paper cites Speech synthesis from neural decoding of spoken sentences.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Speech synthesis from neural decoding of spoken sentences

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:d17c859c9808885751ec57bf8a26c274879287e6040dcdacd047edbb90a02b65

Observation 049522dc-011e-45ed-ad28-38fd60ab2b13 · outbound

This paper cites Advancing eeg-based assessment of consciousness and cognition in prolonged disorders of consciousness.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Advancing eeg-based assessment of consciousness and cognition in prolonged disorders of consciousness

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:da868b1e4542c8a1a3b63ac596c52e742ef73f2a35d7b1fb56ce8ed5e854ab48

Observation fabf0f5c-f1a1-477d-bebc-cc9dd7f85d80 · outbound

This paper cites Games, gameplay, and bci: the state of the art.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Games, gameplay, and bci: the state of the art

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:0844c033b73384721edc4cc8c21e4b53fc325df9f55d655a748edfe0ca2494e1

Observation fc3c01c3-15ce-4d69-9e3a-c2fd773b5e3d · outbound

This paper cites Experiencing bci control in a popular computer game.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Experiencing bci control in a popular computer game

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:d8ac1dda21acb61ed3a44f1ddc3bf2ca30a1179a167c79cbc874abc4bf6c5f8c

Observation 9860de73-6f7e-4509-86ae-54ed6683aa2c · outbound

This paper cites Reach and grasp by people with tetraplegia using a neurally controlled robotic arm.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Reach and grasp by people with tetraplegia using a neurally controlled robotic arm

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:037593e5037e2a91c5455f864b87b418bdaba29168e4aa0724a5b1b1411a7a42

Observation 7665cbde-1ab3-4ce7-950d-1f6047c612d7 · outbound

This paper cites Restoration of reaching and grasping movements through brain-controlled muscle stimulation in a person with tetraplegia: a proof-of-concept demonstration.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Restoration of reaching and grasping movements through brain-controlled muscle stimulation in a person with tetraplegia: a proof-of-concept demonstration

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:df6e664ead1d73ce82386c46fd456c6df925e3233e1b9ff88adfc3233c438252

Observation b223ab63-5a62-4396-a4c7-6e84ee8046d0 · outbound

This paper cites Noninvasive neuroimaging enhances continuous neural tracking for robotic device control.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Noninvasive neuroimaging enhances continuous neural tracking for robotic device control

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:b600fbb603748a7f30af86ae6ce3bd98316a324624e7864b05039853111ea3af

Observation ea8854b2-1738-4aed-a983-399588d4c62f · outbound

This paper cites Brain--machine interfaces: past, present and future.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Brain--machine interfaces: past, present and future

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:3284e3a7dffeef5ef3e3f1e42b887d2fa7a66c00d098ad884bf1ca1fbf41768e

Observation 03696943-fd8f-47a5-bd48-73de064cd3f2 · outbound

This paper cites A review of classification algorithms for eeg-based brain--computer interfaces: a 10 year update.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning A review of classification algorithms for eeg-based brain--computer interfaces: a 10 year update

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:e7b7966eaa26e1a29c6cb37b816bee568bb2a2fe88ce4b3682be38a393e2ed80

Observation 9a0f0550-03e7-4d16-9457-20212f598291 · outbound

This paper cites A comprehensive review of eeg-based brain--computer interface paradigms.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning A comprehensive review of eeg-based brain--computer interface paradigms

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:c8000f06ac2bb93247cc1881c7ddf45332b5673f8032b6e42589f529bf8e6ad5

Observation a257272a-e239-498f-b2fe-ea815b1de43b · outbound

This paper cites Reconstructing three-dimensional hand movements from noninvasive electroencephalographic signals.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Reconstructing three-dimensional hand movements from noninvasive electroencephalographic signals

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:5196782af0c97bdca2cb92792e743f359ef72df81980a263929df7e520ab7517

Observation 96d37dcc-f2a0-4b2d-ab44-3bbc69682b73 · outbound

This paper cites Continuous bimanual trajectory decoding of coordinated movement from eeg signals.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Continuous bimanual trajectory decoding of coordinated movement from eeg signals

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:6537487de367c248e681cdebfadfaf86a247108497b8af1b9625a30f417fbbf0

Observation 3a083eab-28e5-4bc4-a0e5-0367063a2996 · outbound

This paper cites A comprehensive review on motion trajectory reconstruction for eeg-based brain-computer interface.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning A comprehensive review on motion trajectory reconstruction for eeg-based brain-computer interface

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:bdaf7e1488b2713ce03c404b529fec2336c3c49bbefe9e0efd14c46731590732

Observation 977a6a35-ce0c-45fc-b55f-b728ee07ff71 · outbound

This paper cites Decoding hand movement types and kinematic information from electroencephalogram.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Decoding hand movement types and kinematic information from electroencephalogram

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:c117a61ec667fd6edefbb32715eb840a92b9b06a3c4b4164aaab1346a956d7ca

Observation bca9cda3-dab0-4fba-b18b-3abed6659d0d · outbound

This paper cites Decoding the variable velocity of lower-limb stepping movements from eeg.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Decoding the variable velocity of lower-limb stepping movements from eeg

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:2858b00eed92e4d7fb95f46b93e647ac882e21857b3bcb09c6a3e623096ee917

Observation f714550b-3b59-49bf-93b6-fba1de81cbb9 · outbound

This paper cites Decoding motion trajectories in an upper limb bci: Linear regression vs deep learning.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Decoding motion trajectories in an upper limb bci: Linear regression vs deep learning

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:ccaec26a0126999558821050cf8a19a53cf93174d4162a5bca0bf90cb3bd789b

Observation e6b93b77-da76-4d7e-ae20-f5e30cca2d36 · outbound

This paper cites Embodied Virtual Reality Feedback Reshapes Neural Representations to Support Continuous Three-Dimensional Motor Imagery Decoding.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Embodied Virtual Reality Feedback Reshapes Neural Representations to Support Continuous Three-Dimensional Motor Imagery Decoding

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:035622a44451da49c51083a002f594405b72dbcf432726a6f54032dcee9dcc05

Observation 85750255-ca20-4a28-be47-b611a3897039 · outbound

This paper cites Online 3d motion decoder bci for embodied virtual reality upper limb control: A pilot study.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Online 3d motion decoder bci for embodied virtual reality upper limb control: A pilot study

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:8ff2f619905a71cd5bb4c2dd728a525cbf7be303d6cc0ed8f18dbfe7f10d258a

Observation 5fa4d3d3-2b6b-4336-bff0-2e81439d3f75 · outbound

This paper cites Reinforcement learning: An introduction, volume 1.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Reinforcement learning: An introduction, volume 1

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:1a5e8d5a6bccd9b09ab4edbafc59613706c70c843372f197920c6baa79cba3c1

Observation 8128a8cb-ae0a-43c6-b4df-8ded3ad46fee · outbound

This paper cites Reinforcement learning in robotics: A survey.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Reinforcement learning in robotics: A survey

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:dcb47a5a7641be772e2d5d45ee3a10d2fd37dea453d681cfb9e838db6f962bd8

Observation 19ecdb52-6c1a-4237-9998-86b768ed84c0 · outbound

This paper cites Reinforcement learning in robotic applications: a comprehensive survey.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Reinforcement learning in robotic applications: a comprehensive survey

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:b17d9937e4e2c1cd81fe963fadec8ec617cf46bde0a956919f3c30adfbacb84c

Observation fe5effa8-cefc-46f8-b7f7-22762ee0a9cc · outbound

This paper cites Deep reinforcement learning for robotics: A survey of real-world successes.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Deep reinforcement learning for robotics: A survey of real-world successes

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:8bd0359016e02abaf4564fc585eb87bef5db4ad72c915a3a3e9cc2f7125dd3e8

Observation 82006e38-2536-4397-8c5c-9a7ff1fcd3a8 · outbound

This paper cites Reinforcement learning methods for assistive and rehabilitation robotic systems: A survey.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Reinforcement learning methods for assistive and rehabilitation robotic systems: A survey

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:3c988e68b0beac90b31c385466e6acbdc5926d8915930b4a306fc4286e3fb74f

Observation 6ba9207a-2526-4712-852a-bf7586f45160 · outbound

This paper cites Intrinsic interactive reinforcement learning--using error-related potentials for real world human-robot interaction.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Intrinsic interactive reinforcement learning--using error-related potentials for real world human-robot interaction

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:18bc017534682511e4bffebe1046d9ef082a6420b027224f5975a09fd4a45eab

Observation 344d5322-c7a1-4204-8081-caab90812c68 · outbound

This paper cites Error-related potential-based shared autonomy via deep recurrent reinforcement learning.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Error-related potential-based shared autonomy via deep recurrent reinforcement learning

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:e5cc0cd0a81bca1b0d39842be1e2b77bdd62a579f9cfd9c55df57bc6ebfeebb4

Observation e737ce28-40e8-405e-8347-5af32def6791 · outbound

This paper cites Hybrid brain-computer interface using error-related potential and reinforcement learning.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Hybrid brain-computer interface using error-related potential and reinforcement learning

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:2551c4192066d5262a4aeea7be077b5520ecba309539fad7d5d1f7e00f0dda39

Observation 3f16d6d0-dae9-444d-8f79-9f604bd75891 · outbound

This paper cites Brain-controlled operator model-driven deep reinforcement learning for adaptive brain-machine collaborative control.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Brain-controlled operator model-driven deep reinforcement learning for adaptive brain-machine collaborative control

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:6588e9ea5bc2e0914d6d2b07bc72c73ddfe83868818010b324f886ba74748566

Observation 1e07fbd9-3c5b-4e74-be02-27296ae189ef · outbound

This paper cites Human-in-the-loop rl with an eeg wearable headset: On effective use of brainwaves to accelerate learning.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Human-in-the-loop rl with an eeg wearable headset: On effective use of brainwaves to accelerate learning

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:9e4cd650b0cd8208bb2a8abe4f7e0f2355585d5d15266f686fd7a204af31c025

Observation fb16863b-fbdf-4335-951f-88151c95f0c2 · outbound

This paper cites Accelerating reinforcement learning using eeg-based implicit human feedback.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Accelerating reinforcement learning using eeg-based implicit human feedback

Reference 83

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:c1bd6f7f2835a48cd20279faad63e79454b946655b8fdd4a26f29ce8c6c4172d

Observation f0412560-a376-4f04-a3c3-8646494201bd · outbound

This paper cites Eeg-based inverse reinforcement learning for safety-oriented global path planning in dynamic environments.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Eeg-based inverse reinforcement learning for safety-oriented global path planning in dynamic environments

Reference 84

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:2c5540dc339a1ec1c842283dd830c576c2965aea7aca7648fc662c9dcd6800ed

Observation 17936bba-81f2-4b38-ae24-f211348d7bb7 · outbound

This paper cites Residual Policy Learning.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Residual Policy Learning

Reference 85

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Observation 362c1101-022a-47f5-9da2-4fbd017b477f · outbound

This paper cites Residual reinforcement learning for robot control.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Residual reinforcement learning for robot control

Reference 86

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:7138ea4a82b2d511bcd08679f54541ff28cc588a9e0c12a7872ba656965fd562

Observation 39f3b7dc-eabd-46f7-b679-5e2a17397182 · outbound

This paper cites Residual Reinforcement Learning from Demonstrations.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Residual Reinforcement Learning from Demonstrations

Reference 87

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:bdae16cd7291fda3c2ce22b7df64eb08d351f621e69bc5d64cebb5fcc411a136

Observation 0afcdb67-8339-4257-9dce-3c0eedb946b0 · outbound

This paper cites Residual learning from demonstration: Adapting dmps for contact-rich manipulation.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Residual learning from demonstration: Adapting dmps for contact-rich manipulation

Reference 88

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:e93184b420f9e0b4240f6a05033d365a8bd31472824da8f0f88e7010b7218d08

Observation efb2f0c7-dbd7-460a-b095-b6d321071313 · outbound

This paper cites Enhancing motor imagery eeg signal decoding through machine learning: A systematic review of recent progress.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Enhancing motor imagery eeg signal decoding through machine learning: A systematic review of recent progress

Reference 89

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:8e5a1573e173f2f81ab86010059a09b4872e694bedc545c93aa6493b57e0fd3c

Observation 33ddd554-b1b1-4bd9-86c4-ab654c670add · outbound

This paper cites Auditory event-related dynamics of the eeg spectrum and effects of exposure to tones.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Auditory event-related dynamics of the eeg spectrum and effects of exposure to tones

Reference 90

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:8ecd69ce9e28dae3284e5ad6a569fa32d165d7a9ae81fdaa49ee816f238d371e

Observation 55305183-2ea4-4584-8599-35f8ec879a49 · outbound

This paper cites Soft Actor-Critic Algorithms and Applications.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Soft Actor-Critic Algorithms and Applications

Reference 91

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Observation 947ea91d-ad84-49cd-b144-7def06062f60 · outbound

This paper cites Optuna: A next-generation hyperparameter optimization framework.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Optuna: A next-generation hyperparameter optimization framework

Reference 92

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:c77c7fdb5a067a501adb2b331197518ee14d64c5c6c6ab7db197e737b561e359

Observation 3ead3636-61d6-4291-a6b3-954e530c5261 · outbound

This paper cites ANOVA: Repeated measures.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning ANOVA: Repeated measures

Reference 93

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:3ecdfe4c6622da37d2947cb6f050f738a97b059ba3f4149b14c2c85d4baef923

Observation 294337ae-4280-427e-9240-6537bc64d48f · outbound

This paper cites The use of ranks to avoid the assumption of normality implicit in the analysis of variance.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning The use of ranks to avoid the assumption of normality implicit in the analysis of variance

Reference 94

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source=arxiv_source observed=2026-07-14T04:58:13.844348Z digest=sha256:9120edcb13a8c7f3d2ea6790be7a7bf1bf658c9df81f47e8883042ca1fc0e00f

Observation 6ee7c695-20f6-45d9-a10b-b9e92a4c83a9 · outbound

This paper cites Individual comparisons by ranking methods.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Individual comparisons by ranking methods

Reference 95

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Observation 7a86788e-d3da-4b5f-84a3-daf53377b131 · outbound

This paper cites Statistical power analysis for the behavioral sciences.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning Statistical power analysis for the behavioral sciences

Reference 96

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Observation fc349d19-558e-42f5-93cf-f3cea4ed8eec · outbound

This paper cites A simple sequentially rejective multiple test procedure.

Learning Residual Kinematic Corrections for Continuous Neural Decoding via Reinforcement Learning A simple sequentially rejective multiple test procedure

Reference 97

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