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high-voltage direct electrical current stimulator digitimer ds7ah current stimulator  (Digitimer North America LLC)


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    Digitimer North America LLC high-voltage direct electrical current stimulator digitimer ds7ah current stimulator
    High Voltage Direct Electrical Current Stimulator Digitimer Ds7ah Current Stimulator, supplied by Digitimer North America LLC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/high-voltage+electrical+current+ds7ah/constant+current+stimulator+ds7a/pmc11743497-122-4-9
    Average 90 stars, based on 1 article reviews
    high-voltage direct electrical current stimulator digitimer ds7ah current stimulator - by Bioz Stars, 2026-09
    90/100 stars

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    Related Articles

    BAC Assay:

    Article Title: Subcortical contribution to late TMS-induced I-waves in intact humans.
    Article Snippet: Cervicomedullary junction stimulation was applied by a high-voltage electrical current (100- μs duration; DS7AH Digitimer) passed between adhesive AgAgCl electrodes fixed to the skin behind the mastoid process (Ugawa et al., 1992; Taylor and Gandevia, 2004).

    Article Title: Distinct Corticospinal and Reticulospinal Contributions to Voluntary Control of Elbow Flexor and Extensor Muscles in Humans with Tetraplegia
    Article Snippet: CMEPs The corticospinal tract was stimulated by high-voltage electrical current (200 μs duration, DS7AH, Digitimer) passed between two electrodes (Ag-AgCl, 10 mm diameter) fixed to the skin behind each mastoid process at the cervicomedullary level ( Taylor and Gandevia, 2004 ).

    Article Title: Distinct Corticospinal and Reticulospinal Contributions to Voluntary Control of Elbow Flexor and Extensor Muscles in Humans with Tetraplegia
    Article Snippet: The corticospinal tract was stimulated by high-voltage electrical current (200 μs duration, DS7AH, Digitimer) passed between two electrodes (Ag-AgCl, 10 mm diameter) fixed to the skin behind each mastoid process at the cervicomedullary level ( Taylor and Gandevia, 2004 ).

    Article Title: Subcortical contribution to late TMS-induced I-waves in intact humans
    Article Snippet: Cervicomedullary junction stimulation was applied by a high-voltage electrical current (100-μs duration; DS7AH Digitimer) passed between adhesive Ag-AgCl electrodes fixed to the skin behind the mastoid process (Ugawa et al., ; Taylor and Gandevia, ).

    Article Title: Impaired crossed facilitation of the corticospinal pathway after cervical spinal cord injury
    Article Snippet: The corticospinal tract was stimulated at the cervicomedullary level by a high-voltage electrical current (100-μs duration; DS7AH Digitimer) passed between adhesive Ag-AgCl electrodes fixed to the skin behind the mastoid process ( Taylor and Gandevia 2004 ; Ugawa et al. 1992 ).

    Article Title: Impaired crossed facilitation of the corticospinal pathway after cervical spinal cord injury.
    Article Snippet: The corticospinal tract was stimulated at the cervicomedullary level by a high-voltage electrical current (100- s duration; DS7AH Digitimer) passed between adhesive AgAgCl electrodes fixed to the skin behind the mastoid process (Taylor and Gandevia 2004; Ugawa et al. 1992).

    Article Title: Subcortical Control of Precision Grip after Human Spinal Cord Injury
    Article Snippet: For cervicomedullary MEPs (CMEPs), the corticospinal tract was stimulated at the cervicomedullary level in controls ( n = 7), SCI Bac ( n = 3), and SCI No-Bac ( n = 2) by a high-voltage electrical current (100 μs duration, DS7AH; Digitimer) passed between adhesive Ag-AgCl electrodes fixed to the skin behind the mastoid process and by using a double cone magnetic coil over the back of the head ( Taylor and Gandevia, 2004 ).

    Article Title: Cortical and Subcortical Effects of Transcutaneous Spinal Cord Stimulation in Humans with Tetraplegia
    Article Snippet: CMEPs were elicited by simulation after elicited at the cervicomedullary junction by using high-voltage electrical current (100 μs duration; DS7AH, Digitimer) passed between adhesive Ag-AgCl electrodes fixed to the skin behind the mastoid process.

    Adhesive:

    Article Title: Subcortical contribution to late TMS-induced I-waves in intact humans.
    Article Snippet: Cervicomedullary junction stimulation was applied by a high-voltage electrical current (100- μs duration; DS7AH Digitimer) passed between adhesive AgAgCl electrodes fixed to the skin behind the mastoid process (Ugawa et al., 1992; Taylor and Gandevia, 2004).

    Article Title: Distinct Corticospinal and Reticulospinal Contributions to Voluntary Control of Elbow Flexor and Extensor Muscles in Humans with Tetraplegia
    Article Snippet: CMEPs The corticospinal tract was stimulated by high-voltage electrical current (200 μs duration, DS7AH, Digitimer) passed between two electrodes (Ag-AgCl, 10 mm diameter) fixed to the skin behind each mastoid process at the cervicomedullary level ( Taylor and Gandevia, 2004 ).

    Article Title: Distinct Corticospinal and Reticulospinal Contributions to Voluntary Control of Elbow Flexor and Extensor Muscles in Humans with Tetraplegia
    Article Snippet: The corticospinal tract was stimulated by high-voltage electrical current (200 μs duration, DS7AH, Digitimer) passed between two electrodes (Ag-AgCl, 10 mm diameter) fixed to the skin behind each mastoid process at the cervicomedullary level ( Taylor and Gandevia, 2004 ).

    Article Title: Subcortical contribution to late TMS-induced I-waves in intact humans
    Article Snippet: Cervicomedullary junction stimulation was applied by a high-voltage electrical current (100-μs duration; DS7AH Digitimer) passed between adhesive Ag-AgCl electrodes fixed to the skin behind the mastoid process (Ugawa et al., ; Taylor and Gandevia, ).

    Article Title: Impaired crossed facilitation of the corticospinal pathway after cervical spinal cord injury
    Article Snippet: The corticospinal tract was stimulated at the cervicomedullary level by a high-voltage electrical current (100-μs duration; DS7AH Digitimer) passed between adhesive Ag-AgCl electrodes fixed to the skin behind the mastoid process ( Taylor and Gandevia 2004 ; Ugawa et al. 1992 ).

    Article Title: Impaired crossed facilitation of the corticospinal pathway after cervical spinal cord injury.
    Article Snippet: The corticospinal tract was stimulated at the cervicomedullary level by a high-voltage electrical current (100- s duration; DS7AH Digitimer) passed between adhesive AgAgCl electrodes fixed to the skin behind the mastoid process (Taylor and Gandevia 2004; Ugawa et al. 1992).

    Article Title: Subcortical Control of Precision Grip after Human Spinal Cord Injury
    Article Snippet: For cervicomedullary MEPs (CMEPs), the corticospinal tract was stimulated at the cervicomedullary level in controls ( n = 7), SCI Bac ( n = 3), and SCI No-Bac ( n = 2) by a high-voltage electrical current (100 μs duration, DS7AH; Digitimer) passed between adhesive Ag-AgCl electrodes fixed to the skin behind the mastoid process and by using a double cone magnetic coil over the back of the head ( Taylor and Gandevia, 2004 ).

    Article Title: Cortical and Subcortical Effects of Transcutaneous Spinal Cord Stimulation in Humans with Tetraplegia
    Article Snippet: CMEPs were elicited by simulation after elicited at the cervicomedullary junction by using high-voltage electrical current (100 μs duration; DS7AH, Digitimer) passed between adhesive Ag-AgCl electrodes fixed to the skin behind the mastoid process.



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