Publication date: Available online 1 March 2018
Source:Journal of Electromyography and Kinesiology
Author(s): Moniek A.M. Munneke, Chantal D. Bakker, Eline A. Goverde, Jaco W. Pasman, Dick F. Stegeman
After stroke, motor pathways are often affected, leading to paresis. It remains difficult to reliably predict motor recovery of the upper extremity, for which transcranial magnetic stimulation (TMS) may add to clinical examination. Placement of the surface electromyography (sEMG) electrodes in TMS is essential for information about specific muscle groups and corticospinal pathways. This study primarily aimed to determine the optimal sEMG electrode positions for recording activity of forearm flexor and extensor muscles. The first goal was to optimize sensitivity in measuring any motor evoked potentials (MEP), because they may be reduced or absent in stroke patients. The second goal was adequate distinction between forearm flexor and extensor muscle groups. For optimal flexibility in choosing montages, a multichannel sEMG set-up with 37 electrodes encircled the forearm. The determination of optimal pairs was based upon electrical peripheral nerve stimulation. We found pairs with the highest compound nerve action potential (CMAP) amplitudes and pairs that optimally distinguished between the flexor and extensor muscles. Large interelectrode distances lead to responses with larger amplitudes and therefore sensitively measure any remaining corticomuscular connections. As a follow-up, specific muscle group responses can be targeted with smaller interelectrode distances. In conclusion, this study helps to identify better electrode locations for the use of clinical TMS studies.
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Σφακιανάκης Αλέξανδρος
ΩτοΡινοΛαρυγγολόγος
Αναπαύσεως 5 Άγιος Νικόλαος
Κρήτη 72100
00302841026182
00306932607174
alsfakia@gmail.com
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! # Ola via Alexandros G.Sfakianakis on Inoreader
Η λίστα ιστολογίων μου
Πέμπτη 1 Μαρτίου 2018
On the electrode positioning for bipolar EMG recording of forearm extensor and flexor muscle activity after transcranial magnetic stimulation
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- Reversing Time: Ezh1 Deficiency Hastens Definitive...
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- Organoid Models of Cancer Explode with Possibilities
- Engineering a Strong Bond between Stem Cells and B...
- Mentoring the Next Generation: Robert Langer
- Human Pluripotent Stem Cell-Derived Engineered Tis...
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- Understanding the Extracellular Matrix to Enhance ...
- Regenerative Rehabilitation: Applied Biophysics Me...
- Organs-on-a-Chip: A Fast Track for Engineered Huma...
- Engineering Stem and Stromal Cell Therapies for Mu...
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- The Transcriptionally Permissive Chromatin State o...
- CD157 Marks Tissue-Resident Endothelial Stem Cells...
- Vangl2/RhoA Signaling Pathway Regulates Stem Cell ...
- SETD7 Drives Cardiac Lineage Commitment through St...
- Eliminating bias and accelerating the clinical tra...
- Impact of perioperative hyperglycemia in patients ...
- A new technique for evaluating heel xerosis grade ...
- Poor inter-rater reliability of hidradenitis suppu...
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- Does cerebral infarction ameliorate essential trem...
- Comparative Study of Management of BPPV (Benign Pa...
- Chemical Shift Magnetic Resonance Imaging Could Pr...
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