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corticospinal functional magnetic resonance imaging  (Eppendorf AG)


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    Structured Review

    Eppendorf AG corticospinal functional magnetic resonance imaging
    Alterations in <t>corticospinal</t> coupling during force generation for ventral premotor cortex (PMV). Psycho-physiological interaction analysis between ipsilesional PMV ( A ) and the spinal cord and overview of the slices displayed along the z axis. B , Group comparison stroke (S) > control (C), controlled for maximum grip force. C , Patients with stroke: correlation with motor impairment, controlled for maximum grip force, age, side; ( Z maps were thresholded by Z >2.0 [group comparison] and | Z |>2.4 [correlation analysis], cluster significance threshold of P <0.05). Spinal cord activations are overlaid on the PAM50_t2-template, and Montreal Neurological Institute (MNI) coordinates are given. All images are in radiological orientation. The coupling strengths in spinal cluster voxels (MNI coordinates as indicated) were extracted and displayed in B and C . au indicates arbitrary units; NHP, Nine-Hole Peg Test; and UEFM, Fugl Meyer assessment of the upper extremity.
    Corticospinal Functional Magnetic Resonance Imaging, supplied by Eppendorf AG, used in various techniques. Bioz Stars score: 99/100, based on 201118 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/corticospinal+functional+magnetic+resonance+imaging/Eppendorf/pmc12036787-4-12-29
    Average 99 stars, based on 201118 article reviews
    corticospinal functional magnetic resonance imaging - by Bioz Stars, 2026-10
    99/100 stars

    Images

    1) Product Images from "Altered Functional Connectivity Between Cortical Premotor Areas and the Spinal Cord in Chronic Stroke"

    Article Title: Altered Functional Connectivity Between Cortical Premotor Areas and the Spinal Cord in Chronic Stroke

    Journal: Stroke

    doi: 10.1161/STROKEAHA.124.048384

    Alterations in corticospinal coupling during force generation for ventral premotor cortex (PMV). Psycho-physiological interaction analysis between ipsilesional PMV ( A ) and the spinal cord and overview of the slices displayed along the z axis. B , Group comparison stroke (S) > control (C), controlled for maximum grip force. C , Patients with stroke: correlation with motor impairment, controlled for maximum grip force, age, side; ( Z maps were thresholded by Z >2.0 [group comparison] and | Z |>2.4 [correlation analysis], cluster significance threshold of P <0.05). Spinal cord activations are overlaid on the PAM50_t2-template, and Montreal Neurological Institute (MNI) coordinates are given. All images are in radiological orientation. The coupling strengths in spinal cluster voxels (MNI coordinates as indicated) were extracted and displayed in B and C . au indicates arbitrary units; NHP, Nine-Hole Peg Test; and UEFM, Fugl Meyer assessment of the upper extremity.
    Figure Legend Snippet: Alterations in corticospinal coupling during force generation for ventral premotor cortex (PMV). Psycho-physiological interaction analysis between ipsilesional PMV ( A ) and the spinal cord and overview of the slices displayed along the z axis. B , Group comparison stroke (S) > control (C), controlled for maximum grip force. C , Patients with stroke: correlation with motor impairment, controlled for maximum grip force, age, side; ( Z maps were thresholded by Z >2.0 [group comparison] and | Z |>2.4 [correlation analysis], cluster significance threshold of P <0.05). Spinal cord activations are overlaid on the PAM50_t2-template, and Montreal Neurological Institute (MNI) coordinates are given. All images are in radiological orientation. The coupling strengths in spinal cluster voxels (MNI coordinates as indicated) were extracted and displayed in B and C . au indicates arbitrary units; NHP, Nine-Hole Peg Test; and UEFM, Fugl Meyer assessment of the upper extremity.

    Techniques Used: Comparison, Control

    Alterations in corticospinal coupling during force generation for supplementary motor area (SMA). Psycho-physiological interaction (PPI) analysis between ipsilesional SMA ( A ) and the spinal cord and overview of the slices displayed along the z axis. B , Comparison control (C) >stroke (S), controlled for maximum grip force. C , Patients with stroke: correlation with motor impairment, controlled for maximum grip force, age, side; Z thresholds, and image presentations are identical to Figure 3 (exception: | Z |>1.9 for the correlation between PPI-SMA and Fugl Meyer assessment of the upper extremity [UEFM]). au indicates arbitrary units; and NHP, Nine-Hole Peg Test.
    Figure Legend Snippet: Alterations in corticospinal coupling during force generation for supplementary motor area (SMA). Psycho-physiological interaction (PPI) analysis between ipsilesional SMA ( A ) and the spinal cord and overview of the slices displayed along the z axis. B , Comparison control (C) >stroke (S), controlled for maximum grip force. C , Patients with stroke: correlation with motor impairment, controlled for maximum grip force, age, side; Z thresholds, and image presentations are identical to Figure 3 (exception: | Z |>1.9 for the correlation between PPI-SMA and Fugl Meyer assessment of the upper extremity [UEFM]). au indicates arbitrary units; and NHP, Nine-Hole Peg Test.

    Techniques Used: Comparison, Control

    Related Articles

    Functional Assay:

    Article Title: Altered Functional Connectivity Between Cortical Premotor Areas and the Spinal Cord in Chronic Stroke
    Article Snippet: .. In this cross-sectional study, patients with chronic stroke and healthy controls underwent corticospinal functional magnetic resonance imaging while performing a simple force generation task at the University Medical Center Hamburg-Eppendorf between September 2021 and June 2023. ..

    Magnetic Resonance Imaging:

    Article Title: Altered Functional Connectivity Between Cortical Premotor Areas and the Spinal Cord in Chronic Stroke
    Article Snippet: .. In this cross-sectional study, patients with chronic stroke and healthy controls underwent corticospinal functional magnetic resonance imaging while performing a simple force generation task at the University Medical Center Hamburg-Eppendorf between September 2021 and June 2023. ..



    Similar Products

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    Eppendorf AG corticospinal functional magnetic resonance imaging
    Alterations in <t>corticospinal</t> coupling during force generation for ventral premotor cortex (PMV). Psycho-physiological interaction analysis between ipsilesional PMV ( A ) and the spinal cord and overview of the slices displayed along the z axis. B , Group comparison stroke (S) > control (C), controlled for maximum grip force. C , Patients with stroke: correlation with motor impairment, controlled for maximum grip force, age, side; ( Z maps were thresholded by Z >2.0 [group comparison] and | Z |>2.4 [correlation analysis], cluster significance threshold of P <0.05). Spinal cord activations are overlaid on the PAM50_t2-template, and Montreal Neurological Institute (MNI) coordinates are given. All images are in radiological orientation. The coupling strengths in spinal cluster voxels (MNI coordinates as indicated) were extracted and displayed in B and C . au indicates arbitrary units; NHP, Nine-Hole Peg Test; and UEFM, Fugl Meyer assessment of the upper extremity.
    Corticospinal Functional Magnetic Resonance Imaging, supplied by Eppendorf AG, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/corticospinal+functional+magnetic+resonance+imaging/Eppendorf/pmc12036787-4-12-29
    Average 99 stars, based on 1 article reviews
    corticospinal functional magnetic resonance imaging - by Bioz Stars, 2026-10
    99/100 stars
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    Image Search Results


    Alterations in corticospinal coupling during force generation for ventral premotor cortex (PMV). Psycho-physiological interaction analysis between ipsilesional PMV ( A ) and the spinal cord and overview of the slices displayed along the z axis. B , Group comparison stroke (S) > control (C), controlled for maximum grip force. C , Patients with stroke: correlation with motor impairment, controlled for maximum grip force, age, side; ( Z maps were thresholded by Z >2.0 [group comparison] and | Z |>2.4 [correlation analysis], cluster significance threshold of P <0.05). Spinal cord activations are overlaid on the PAM50_t2-template, and Montreal Neurological Institute (MNI) coordinates are given. All images are in radiological orientation. The coupling strengths in spinal cluster voxels (MNI coordinates as indicated) were extracted and displayed in B and C . au indicates arbitrary units; NHP, Nine-Hole Peg Test; and UEFM, Fugl Meyer assessment of the upper extremity.

    Journal: Stroke

    Article Title: Altered Functional Connectivity Between Cortical Premotor Areas and the Spinal Cord in Chronic Stroke

    doi: 10.1161/STROKEAHA.124.048384

    Figure Lengend Snippet: Alterations in corticospinal coupling during force generation for ventral premotor cortex (PMV). Psycho-physiological interaction analysis between ipsilesional PMV ( A ) and the spinal cord and overview of the slices displayed along the z axis. B , Group comparison stroke (S) > control (C), controlled for maximum grip force. C , Patients with stroke: correlation with motor impairment, controlled for maximum grip force, age, side; ( Z maps were thresholded by Z >2.0 [group comparison] and | Z |>2.4 [correlation analysis], cluster significance threshold of P <0.05). Spinal cord activations are overlaid on the PAM50_t2-template, and Montreal Neurological Institute (MNI) coordinates are given. All images are in radiological orientation. The coupling strengths in spinal cluster voxels (MNI coordinates as indicated) were extracted and displayed in B and C . au indicates arbitrary units; NHP, Nine-Hole Peg Test; and UEFM, Fugl Meyer assessment of the upper extremity.

    Article Snippet: In this cross-sectional study, patients with chronic stroke and healthy controls underwent corticospinal functional magnetic resonance imaging while performing a simple force generation task at the University Medical Center Hamburg-Eppendorf between September 2021 and June 2023.

    Techniques: Comparison, Control

    Alterations in corticospinal coupling during force generation for supplementary motor area (SMA). Psycho-physiological interaction (PPI) analysis between ipsilesional SMA ( A ) and the spinal cord and overview of the slices displayed along the z axis. B , Comparison control (C) >stroke (S), controlled for maximum grip force. C , Patients with stroke: correlation with motor impairment, controlled for maximum grip force, age, side; Z thresholds, and image presentations are identical to Figure 3 (exception: | Z |>1.9 for the correlation between PPI-SMA and Fugl Meyer assessment of the upper extremity [UEFM]). au indicates arbitrary units; and NHP, Nine-Hole Peg Test.

    Journal: Stroke

    Article Title: Altered Functional Connectivity Between Cortical Premotor Areas and the Spinal Cord in Chronic Stroke

    doi: 10.1161/STROKEAHA.124.048384

    Figure Lengend Snippet: Alterations in corticospinal coupling during force generation for supplementary motor area (SMA). Psycho-physiological interaction (PPI) analysis between ipsilesional SMA ( A ) and the spinal cord and overview of the slices displayed along the z axis. B , Comparison control (C) >stroke (S), controlled for maximum grip force. C , Patients with stroke: correlation with motor impairment, controlled for maximum grip force, age, side; Z thresholds, and image presentations are identical to Figure 3 (exception: | Z |>1.9 for the correlation between PPI-SMA and Fugl Meyer assessment of the upper extremity [UEFM]). au indicates arbitrary units; and NHP, Nine-Hole Peg Test.

    Article Snippet: In this cross-sectional study, patients with chronic stroke and healthy controls underwent corticospinal functional magnetic resonance imaging while performing a simple force generation task at the University Medical Center Hamburg-Eppendorf between September 2021 and June 2023.

    Techniques: Comparison, Control