high-voltage constant-current electrical stimulator (Digitimer Ltd)
90
Structured Review
Digitimer Ltd
high-voltage constant-current electrical stimulator
High Voltage Constant Current Electrical Stimulator, supplied by Digitimer Ltd, 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%2C+constant-current+electrical+stimulator/ds7a/pmc08969115-94-9-12
Average 90 stars, based on 1 article reviews
High Voltage Constant Current Electrical Stimulator, supplied by Digitimer Ltd, 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%2C+constant-current+electrical+stimulator/ds7a/pmc08969115-94-9-12
Average 90 stars, based on 1 article reviews
high-voltage constant-current electrical stimulator - by Bioz Stars,
2026-09
90/100 stars
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other:Article Title: Effects of three neuromuscular electrical stimulation methods on muscle force production and neuromuscular fatigue Article Snippet: Electrical stimulation was delivered by a high‐voltage‐constant‐current electrical stimulator (400 V, DS7AH‐1580‐2010, Digitimer Ltd.,) via 2–7.5 × 10 cm rectangular self‐adhesive neurostimulation electrodes (Axelgaard, PALS,). Article Title: The Impact of Eye Closure on Anticipatory α Activity in a Tactile Discrimination Task Article Snippet: We used the same setup as in : electrical stimuli were delivered with two constant-current high-voltage stimulators (Digitimer Ltd, Model DS7A) to the right and left thumb. Article Title: The effects of verbal cueing for high intended movement velocity on power, neuromuscular activation, and performance. Article Snippet: There is evidence that verbal cues can increase maximal efforts during resistance training (RT).1 The practice of cueing is widely used by strength and conditioning coaches in athletic and recreational settings.24 Seminal research showed that cueing individuals to move with a high “intended” movement velocity (HIMV), despite restricting the actual movement velocity, might enable performance gains in line with actual highvelocity dynamic training.5 This work has led to the widespread use of “explosive” cueing in strength and conditioning practice, despite limited supporting evidence and understanding of the physiological mechanisms that might underpin the benefits of training with HIMV.. Komi and Hakkinen proposed that training adaptations occurred only at the specific velocities at which training occurred (ie, velocity specificity).6,7 In order to achieve the highvelocity training adaptations desired by most athletes Received: 15 October 2020 | Revised: 10 January 2021 | Accepted: 18 January 2021 DOI: 10.1111/sms.13926 Article Title: Diagnostic accuracy of Tensiomyography parameters for monitoring peripheral neuromuscular fatigue. Article Snippet: The femoral nerve was stimulated with square-wave impulses of the duration of 1 ms delivered by a high-voltage constant current electrical stimulator (DS7R; Digitimer, Hertfordshire, UK). Article Title: Stimulation of peroneal nerves reveals maintained somatosensory representation in transtibial amputees Article Snippet: Electrical stimulation was controlled by a Constant Current High Voltage Stimulator (DS7A; Digitimer, Hertfordshire, England) that delivered constant current wave pulses with a duration of 0.2 ms. Article Title: Effects of whole-body vibrations on neuromuscular fatigue: a study with sets of different durations Article Snippet: Electrical impulses (single, square wave, 1-ms duration) elicited by a high voltage constant current electrical stimulator (DS7A; Digitimer, Hertfordshire, UK) were used to trigger the muscle response, which was detected as a change in torque of the knee extensors. Sequencing:Article Title: Velocity ratings and perceptual qualities of electrotactile stimulation of the foot sole are impacted by direction, stimulus interval, and cutaneous saltation. Article Snippet: Electrotactile stimulation is a çmethod of activating the tactile system by bypassing cutaneous mechanoreceptors and exciting the cutaneous afferent endings directly.. This method is of interest for its potential in wearable tactile augmentation technologies.. The generation of meaningful electrotactile sensation could benefit cases of peripheral neuropathy or prosthesis. |