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1
Distinguishing Distinct Neural Systems for Proximal vs Distal Upper Extremity Motor Control After Acute Stroke.
Neurology. 2023 Jul 25;101(4):e347-e357. doi: 10.1212/WNL.0000000000207417. Epub 2023 Jun 2.
2
Association of Modified Rankin Scale With Recovery Phenotypes in Patients With Upper Extremity Weakness After Stroke.
Neurology. 2022 May 3;98(18):e1877-e1885. doi: 10.1212/WNL.0000000000200154. Epub 2022 Mar 11.
4
[Virtual reality in upper extremity dysfunction: specific features of usage in acute stroke].
Vopr Kurortol Fizioter Lech Fiz Kult. 2019;96(5):19-28. doi: 10.17116/kurort20199605119.
6
Corticospinal Tract Injury Estimated From Acute Stroke Imaging Predicts Upper Extremity Motor Recovery After Stroke.
Stroke. 2019 Dec;50(12):3569-3577. doi: 10.1161/STROKEAHA.119.025898. Epub 2019 Oct 25.
7
Lesion location impact on functional recovery of the hemiparetic upper limb.
PLoS One. 2019 Jul 19;14(7):e0219738. doi: 10.1371/journal.pone.0219738. eCollection 2019.
9
Proprioceptive Training with Visual Feedback Improves Upper Limb Function in Stroke Patients: A Pilot Study.
Neural Plast. 2022 Jan 15;2022:1588090. doi: 10.1155/2022/1588090. eCollection 2022.
10
Effects of Kinect-based virtual reality game training on upper extremity motor recovery in chronic stroke.
Somatosens Mot Res. 2018 Mar;35(1):25-32. doi: 10.1080/08990220.2018.1444599. Epub 2018 Mar 13.

引用本文的文献

1
Neural control meets biomechanics in the motor assessment of neurological disorders: a narrative review.
Front Neural Circuits. 2025 Jun 27;19:1608328. doi: 10.3389/fncir.2025.1608328. eCollection 2025.
2
Trial-By-Trial Variation In Upper Extremity Movement Smoothness After Acute Stroke Relates To Clinical Assessments And Corticospinal Tract Injury.
Neurorehabil Neural Repair. 2025 Aug;39(8):639-652. doi: 10.1177/15459683251340916. Epub 2025 May 31.
4
Corticospinal premotor fibers facilitate complex motor control after stroke.
Ann Clin Transl Neurol. 2024 Sep;11(9):2439-2449. doi: 10.1002/acn3.52159. Epub 2024 Jul 28.
5
NSF DARE-Transforming modeling in neurorehabilitation: Four threads for catalyzing progress.
J Neuroeng Rehabil. 2024 Apr 3;21(1):46. doi: 10.1186/s12984-024-01324-x.

本文引用的文献

1
Dissociation between abnormal motor synergies and impaired reaching dexterity after stroke.
J Neurophysiol. 2022 Apr 1;127(4):856-868. doi: 10.1152/jn.00447.2021. Epub 2022 Feb 2.
2
Challenges of Estimating Accurate Prevalence of Arm Weakness Early After Stroke.
Neurorehabil Neural Repair. 2021 Oct;35(10):871-879. doi: 10.1177/15459683211028240. Epub 2021 Jul 28.
3
Predicting Clinically Significant Improvement After Robot-Assisted Upper Limb Rehabilitation in Subacute and Chronic Stroke.
Front Neurol. 2021 Jul 1;12:668923. doi: 10.3389/fneur.2021.668923. eCollection 2021.
4
Cognitive Demands Influence Upper Extremity Motor Performance During Recovery From Acute Stroke.
Neurology. 2021 May 25;96(21):e2576-e2586. doi: 10.1212/WNL.0000000000011992. Epub 2021 Apr 15.
5
Neural population dynamics in motor cortex are different for reach and grasp.
Elife. 2020 Nov 17;9:e58848. doi: 10.7554/eLife.58848.
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Hand Knob Area of Premotor Cortex Represents the Whole Body in a Compositional Way.
Cell. 2020 Apr 16;181(2):396-409.e26. doi: 10.1016/j.cell.2020.02.043. Epub 2020 Mar 26.
8
Corticospinal Tract Injury Estimated From Acute Stroke Imaging Predicts Upper Extremity Motor Recovery After Stroke.
Stroke. 2019 Dec;50(12):3569-3577. doi: 10.1161/STROKEAHA.119.025898. Epub 2019 Oct 25.
10
The Role of Human Primary Motor Cortex in the Production of Skilled Finger Sequences.
J Neurosci. 2018 Feb 7;38(6):1430-1442. doi: 10.1523/JNEUROSCI.2798-17.2017. Epub 2018 Jan 5.

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