How do we selectively activate skin nociceptors with a high power infrared laser? Physiology and biophysics of laser stimulation.
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Thermal detection thresholds of Aδ- and C-fibre afferents activated by brief CO2 laser pulses applied onto the human hairy skinWas it a pain or a sound? Across-species variability in sensory sensitivity.Laser-induced thermoelastic effects can evoke tactile sensationsTaking into account latency, amplitude, and morphology: improved estimation of single-trial ERPs by wavelet filtering and multiple linear regressionThe fine tuning of pain thresholds: a sophisticated double alarm system.Neurophysiological assessment of painful neuropathies.Prestimulus functional connectivity determines pain perception in humans.Similar nociceptive afferents mediate psychophysical and electrophysiological responses to heat stimulation of glabrous and hairy skin in humans.Laser-evoked cortical potentials in cluster headache.Analgesic and antinociceptive effects of peripheral nerve neurostimulation in an advanced human experimental model.Temperature-dependent activation of neurons by continuous near-infrared laserQuick discrimination of A(delta) and C fiber mediated pain based on three verbal descriptors.Selective nociceptor activation in volunteers by infrared diode laserAsymptomatic small fiber neuropathy in diabetes mellitus: investigations with intraepidermal nerve fiber density, quantitative sensory testing and laser-evoked potentials.[Clinical application of pain-related evoked potentials].Inhibition of cortical laser-evoked potentials by transcutaneous electrical nerve stimulation.Peripheral nerve stimulation inhibits nociceptive processing: an electrophysiological study in healthy volunteers.Repetitive ipsilateral painful A-delta fibre stimuli induce bilateral LEP amplitude habituation.Unmasking the obligatory components of nociceptive event-related brain potentials.Laser heat hyperalgesia is not a feature of non-specific chronic low back pain.Effects of aging on laser evoked potentials.Temporal and spatial temperature distributions on glabrous skin irradiated by a 1940 nm continuous-wave laser stimulator.Central habituation and distraction alter C-fibre-mediated laser-evoked potential amplitudes.A small yet comprehensive subset of human experimental pain models emerging from correlation analysis with a clinical quantitative sensory testing protocol in healthy subjects.Cortical Responsiveness to Nociceptive Stimuli in Patients with Chronic Disorders of Consciousness: Do C-Fiber Laser Evoked Potentials Have a Role?Contextual modulation of pain in masochists: involvement of the parietal operculum and insulaPoor judgment of distance between nociceptive stimuli.Activation of C-fiber nociceptors by low-power diode laser.Spatial attention to thermal pain stimuli in subjects with visual spatial hemi-neglect: extinction, mislocalization and misidentification of stimulus modality.Exploring the Mechanisms of Exercise-Induced Hypoalgesia Using Somatosensory and Laser Evoked Potentials.A novel dual-wavelength laser stimulator to elicit transient and tonic nociceptive stimulation.An inhibitory interaction of human cortical responses to stimuli preferentially exciting Adelta or C fibers.EEG frequency tagging to dissociate the cortical responses to nociceptive and nonnociceptive stimuli.New technologies for the assessment of neuropathies.Occlusion of blood flow attenuates exercise-induced hypoalgesia in the occluded limb of healthy adults.Mismatch responses evoked by nociceptive stimuli.Evidence-based source modeling of nociceptive cortical responses: A direct comparison of scalp and intracranial activity in humans.γ Oscillations are involved in the sensorimotor transformation of pain.Laser parameters for efficient biomedical stimulation: A study to increase cognitive response rate.Distinct patterns of brain activity mediate perceptual and motor and autonomic responses to noxious stimuli
P2860
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P2860
How do we selectively activate skin nociceptors with a high power infrared laser? Physiology and biophysics of laser stimulation.
description
2003 nî lūn-bûn
@nan
2003 թուականի Դեկտեմբերին հրատարակուած գիտական յօդուած
@hyw
2003 թվականի դեկտեմբերին հրատարակված գիտական հոդված
@hy
2003年の論文
@ja
2003年論文
@yue
2003年論文
@zh-hant
2003年論文
@zh-hk
2003年論文
@zh-mo
2003年論文
@zh-tw
2003年论文
@wuu
name
How do we selectively activate ...... ophysics of laser stimulation.
@ast
How do we selectively activate ...... ophysics of laser stimulation.
@en
type
label
How do we selectively activate ...... ophysics of laser stimulation.
@ast
How do we selectively activate ...... ophysics of laser stimulation.
@en
prefLabel
How do we selectively activate ...... ophysics of laser stimulation.
@ast
How do we selectively activate ...... ophysics of laser stimulation.
@en
P1476
How do we selectively activate ...... ophysics of laser stimulation.
@en
P2093
P304
P356
10.1016/J.NEUCLI.2003.10.003
P577
2003-12-01T00:00:00Z