Ghosh M, Pearse D
Int J Mol Sci. 2023; 24(24.
PMID: 38139147
PMC: 10743801.
DOI: 10.3390/ijms242417317.
Boakye M, Ball T, Dietz N, Sharma M, Angeli C, Rejc E
Surg Neurol Int. 2023; 14:87.
PMID: 37025529
PMC: 10070319.
DOI: 10.25259/SNI_1074_2022.
Tharu N, Alam M, Ling Y, Wong A, Zheng Y
Biomedicines. 2023; 11(1).
PMID: 36672542
PMC: 9855778.
DOI: 10.3390/biomedicines11010034.
Flett S, Garcia J, Cowley K
J Neurophysiol. 2022; 128(3):649-670.
PMID: 35894427
PMC: 9668071.
DOI: 10.1152/jn.00205.2022.
Merkulyeva N, Lyakhovetskii V, Gorskii O, Musienko P
J Exp Biol. 2022; 225(9).
PMID: 35438747
PMC: 9163443.
DOI: 10.1242/jeb.244210.
Effects of Chronic High-Frequency rTMS Protocol on Respiratory Neuroplasticity Following C2 Spinal Cord Hemisection in Rats.
Michel-Flutot P, Jesus I, Vanhee V, Bourcier C, Emam L, Ouguerroudj A
Biology (Basel). 2022; 11(3).
PMID: 35336846
PMC: 8945729.
DOI: 10.3390/biology11030473.
Respiratory plasticity following spinal cord injury: perspectives from mouse to man.
Locke K, Randelman M, Hoh D, Zholudeva L, Lane M
Neural Regen Res. 2022; 17(10):2141-2148.
PMID: 35259820
PMC: 9083159.
DOI: 10.4103/1673-5374.335839.
Temporal and spatial cellular and molecular pathological alterations with single-cell resolution in the adult spinal cord after injury.
Li C, Wu Z, Zhou L, Shao J, Hu X, Xu W
Signal Transduct Target Ther. 2022; 7(1):65.
PMID: 35232960
PMC: 8888618.
DOI: 10.1038/s41392-022-00885-4.
Activity-dependent spinal cord neuromodulation rapidly restores trunk and leg motor functions after complete paralysis.
Rowald A, Komi S, Demesmaeker R, Baaklini E, Hernandez-Charpak S, Paoles E
Nat Med. 2022; 28(2):260-271.
PMID: 35132264
DOI: 10.1038/s41591-021-01663-5.
Closed-Loop, Cervical, Epidural Stimulation Elicits Respiratory Neuroplasticity after Spinal Cord Injury in Freely Behaving Rats.
Malone I, Kelly M, Nosacka R, Nash M, Yue S, Xue W
eNeuro. 2022; 9(1).
PMID: 35058311
PMC: 8856702.
DOI: 10.1523/ENEURO.0426-21.2021.
A Controlled Clinical Study of Intensive Neurorehabilitation in Post-Surgical Dogs with Severe Acute Intervertebral Disc Extrusion.
Martins A, Gouveia D, Cardoso A, Carvalho C, Coelho T, Silva C
Animals (Basel). 2021; 11(11).
PMID: 34827767
PMC: 8614363.
DOI: 10.3390/ani11113034.
Therapeutic acute intermittent hypoxia: A translational roadmap for spinal cord injury and neuromuscular disease.
Vose A, Welch J, Nair J, Dale E, Fox E, Muir G
Exp Neurol. 2021; 347:113891.
PMID: 34637802
PMC: 8820239.
DOI: 10.1016/j.expneurol.2021.113891.
Functional Neurorehabilitation in Dogs with an Incomplete Recovery 3 Months following Intervertebral Disc Surgery: A Case Series.
Martins A, Gouveia D, Cardoso A, Carvalho C, Silva C, Coelho T
Animals (Basel). 2021; 11(8).
PMID: 34438900
PMC: 8388785.
DOI: 10.3390/ani11082442.
Long noncoding RNA XIST knockdown relieves the injury of microglia cells after spinal cord injury by sponging miR-219-5p.
Zhong X, Bao Y, Wu Q, Xi X, Zhu W, Chen S
Open Med (Wars). 2021; 16(1):1090-1100.
PMID: 34414282
PMC: 8336727.
DOI: 10.1515/med-2021-0292.
A wireless spinal stimulation system for ventral activation of the rat cervical spinal cord.
Hogan M, Barber S, Rao Z, Kondiles B, Huang M, Steele W
Sci Rep. 2021; 11(1):14900.
PMID: 34290260
PMC: 8295294.
DOI: 10.1038/s41598-021-94047-1.
Electrical epidural stimulation of the cervical spinal cord: implications for spinal respiratory neuroplasticity after spinal cord injury.
Malone I, Nosacka R, Nash M, Otto K, Dale E
J Neurophysiol. 2021; 126(2):607-626.
PMID: 34232771
PMC: 8409953.
DOI: 10.1152/jn.00625.2020.
Spinal Interneurons as Gatekeepers to Neuroplasticity after Injury or Disease.
Zholudeva L, Abraira V, Satkunendrarajah K, McDevitt T, Goulding M, Magnuson D
J Neurosci. 2021; 41(5):845-854.
PMID: 33472820
PMC: 7880285.
DOI: 10.1523/JNEUROSCI.1654-20.2020.
Rostrocaudal Distribution of the C-Fos-Immunopositive Spinal Network Defined by Muscle Activity during Locomotion.
Merkulyeva N, Lyakhovetskii V, Veshchitskii A, Gorskii O, Musienko P
Brain Sci. 2021; 11(1).
PMID: 33430215
PMC: 7825657.
DOI: 10.3390/brainsci11010069.
Epidural Electrical Stimulation: A Review of Plasticity Mechanisms That Are Hypothesized to Underlie Enhanced Recovery From Spinal Cord Injury With Stimulation.
Eisdorfer J, Smit R, Keefe K, Lemay M, Smith G, Spence A
Front Mol Neurosci. 2020; 13:163.
PMID: 33013317
PMC: 7497436.
DOI: 10.3389/fnmol.2020.00163.
Vagus Nerve Stimulation Paired With Rehabilitative Training Enhances Motor Recovery After Bilateral Spinal Cord Injury to Cervical Forelimb Motor Pools.
Darrow M, Torres M, Sosa M, Danaphongse T, Haider Z, Rennaker R
Neurorehabil Neural Repair. 2020; 34(3):200-209.
PMID: 31969052
PMC: 7080607.
DOI: 10.1177/1545968319895480.