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Nagi, S. S.

Publications and source records attributed to Nagi, S. S..

2 recordsLinked to original sources

Tactile sensory channels over-ruled by frequency decoding system that utilizes spike pattern regardless of receptor type

The established view is that vibrotactile stimuli evoke two qualitatively distinctive cutaneous sensations, flutter (frequencies < 60 Hz) and vibratory hum (frequencies > 60 Hz), subserved by two distinct receptor types (Meissners and Pacinian corpuscle, respectively) which may engage different neural processing pathways or channels and fulfill quite different biological roles. In psychological and physiological literature those two systems have been labelled as Pacinian and non-Pacinian channels. However, we present evidence that low-frequency spike trains in Pacinian afferents can readily induce a vibratory percept with the same low frequency attributes as sinusoidal stimuli of the same frequency thus demonstrating a universal frequency decoding system. We achieved this using brief low-amplitude pulsatile mechanical stimuli to selectively activate Pacinian afferents. This indicates that spiking pattern, regardless of receptor type, determines vibrotactile frequency perception. This mechanism may underlie the constancy of vibrotactile frequency perception across different skin regions innervated by distinct afferent types.

neuroscience

Regionally diffuse muscle pain-hypersensitivity in humans during acute muscle pain

BackgroundWe have previously shown that an intramuscular infusion of 5% hypertonic saline (HS) produces a painful response to normally innocuous stimuli applied to overlying and adjacent skin regions. In the current study, we explored whether a similar interaction could be observed between adjacent, contralateral and remote muscles. Indeed, widespread muscle pain-hypersensitivity is a hallmark of chronic pain conditions such as fibromyalgia.\n\nMethods5% HS was infused into the flexor carpi ulnaris (FCU) muscle to develop a stable baseline pain (n=30). In separate experiments, each of the three test locations (n=10 per site), the adjacent abductor digiti minimi (ADM), contralateral FCU and contralateral tibialis anterior (TA) (part 1-3, respectively), 50L of 0.9% normal saline (NS) was infused (in triplicate) prior to, during and following HS-induced muscle pain.\n\nResultsUnder control conditions (no background pain), the infusion of NS was imperceptible by all subjects. In the presence of HS-induced background pain (FCU), in part 1 the NS co-infusion into ADM increased overall pain by 17%. This was replicated in the contralateral FCU (part 2) with a 12% pain increase, and in the TA (part 3) with a 15% pain increase in response to the NS co-infusions. Notably, over 80% of subjects perceived the NS-induced increase in pain at the HS-infusion location (FCU) rather than the NS-infusion location (adjacent, contralateral and remote).\n\nConclusionsIntramuscular infusion of HS results in pain-hypersensitivity to sub-perceptual stimulation of muscle afferents in a somatotopically unrestricted manner, indicating the involvement of a central (likely supra-spinal) mechanism.\n\nSignificanceThis work provides evidence for a regionally diffuse type of pain hypersensitivity, manifesting as a painful response to normally sub-perceptual stimulation in the context of acute experimentally induced muscle pain. This phenomenon may provide parallels to clinically relevant painful conditions and neuropathies.

neuroscience