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Experimental studies on the effects of vibration and noise on sympathetic nerve activity in skin

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Summary

Multi-unit sympathetic activity was recorded at elbow level from median nerve fascicles supplying glabrous skin of the left hand in five healthy subjects. The resultant vasomotor responses accompanying the neural activity were monitored by simultaneous recordings of skin blood flow using the laser doppler method and skin temperature in the innervation zones. No significant change in sympathetic activity was observed during handgrip exercise of the right hand under a constant gripping force of 2 kg. Subjects maintained the same gripping force of the right hand during exposure in random order to local vibration and/or noise, each type of exposure lasting 5 min with intervals of 20 min. A two-peaked significant increase in outflow from sympathetic nerves was observed during local exposure of the right hand to vibration with a frequency of 60 Hz and an acceleration of 50 m·s−2, followed by a postexposure period which revealed a relative suppression of sympathetic nerve activity and a significant increase in blood flow. Noise at 100 dB(A) showed only an initial effect on skin sympathetic nerve activity (SSA), whereas when combined with local vibration at 60 Hz, a pronounced increase in neural activity was noticed, indicating a combined effect of vibration and noise. These results from direct recordings of SSA suggest a sympathetic vasomotor reflex mechanism triggered by local vibration stimuli to the hand.

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References

  • Dupuis H (1987) Combined effects of hand-arm vibration, air temperature, noise and static load on skin temperature. In: Okada A, Manninen O (eds) Recent advances in researches on the combined effects of environmental factors. Hashimoto Kakubundo, Kanazawa, pp 295–307

    Google Scholar 

  • Ekenvall L, Lindblad LE (1986) Is vibration white finger a primary sympathetic nerve injury? Br J Ind Med 43:702–706

    Google Scholar 

  • Färkkilä M, Pyykkö I (1979) Blood flow in the contralateral hand during vibration and handgrip contractions of lumberjacks. Scand J Work Environ Health 5:368–374

    Google Scholar 

  • Hagbarth KE, Hallin RG, Hongel A, Torebjörk HE, Wallin BG (1972) General characteristics of sympathetic activity in human skin nerves. Acta Physiol Scand 84:164–176

    Google Scholar 

  • Hyvärinen J, Pyykkö I, Sundburg S (1973) Vibration frequencies and amplitudes in the etiology of traumatic vasospastic disease. Lancet i:791–794

    Google Scholar 

  • International Standards Organisation (1982) Guide for the measurement and the assessment of human exposure to vibration transmitted to the hand. Draft International Standard 5349, TC 108. ISO, Gent

  • Kondo T, Sakakibara H, Miyao M, Akamatsu Y, Yamada S, Nakagawa T, Koike Y (1987) Effect of exposure to hand transmitted vibration on digital skin temperature change. Ind Health 25:41–53

    Google Scholar 

  • Lundström R (1986) Responses of mechanoreceptive afferent units in the glabrous skin of the human hand to vibration. Scand J Work Environ Health 12:413–416

    Google Scholar 

  • Mano T (1983a) Microneurography (I). Rinsho-Noha 25:493–500

    Google Scholar 

  • Mano T (1983b) Microneurography (III). Rinsho-Noha 25:629–638

    Google Scholar 

  • Miyamoto J, Alanis J (1970) Reflex sympathetic responses produced by activation of vibrational receptors. Jpn J Physiol 20:725–740

    Google Scholar 

  • Nagasaka T, Shido O, Takano N (1990) Understanding human physiology, vol 2. Eiko-print, Kanazawa

    Google Scholar 

  • Nakamura H, Nohara S, Nakamura H, Okada A (1987) Combined effects of local vibration and noise on peripheral circulatory function. In: Okada A, Manninen O (eds) Recent advances in researches on the combined effects of environmental factors. Hashimoto Kakubundo, Kanazawa, pp 762–781

    Google Scholar 

  • Nasu Y (1977) Changes of the skin temperature caused by local vibratory stimulation in normals and patients with vibration syndrome. Yonago Acta Med 21:83–99

    Google Scholar 

  • Okada A, Yamashita T, Nagano C, Ikeda T, Yachi A, Shibata S (1971) Studies on the diagnosis and pathogenesis of Raynaud's phenomenon of occupational origin. Br J Ind Med 28:353–357

    Google Scholar 

  • Okada A, Ariizumi M, Inaba R (1984) Combined effect of whole body vibration and noise on brain norepinephrine. In: Manninen O (ed) Combined effects of environmental factors. Keskuspaino Central Printing House, Tampere, pp 233–244

    Google Scholar 

  • Okada A, Nasu Y, Inoue N (1988) Vibration hazards: fundamental and practical aspects. Japan Institute of Labor Research, Tokyo

    Google Scholar 

  • Pyykkö I, Hyvärinen J (1973) The physiological basis of the traumatic vasospastic disease: a sympathetic vasoconstrictor reflex triggered by high frequency vibration? Scand J Work Environ Health 10:36–47

    Google Scholar 

  • Sakurai T (1977) Vibration effects on hand-arm system, part 2. Observation of skin temperature. Ind Health 15:59–66

    Google Scholar 

  • Santini M, Ibata Y, Pappas G (1971) The fine structure of the sympathetic axons within the Pacinian corpuscle. Brain Res 33:279–287

    Google Scholar 

  • Schmidt RF, Schönfuss K (1970) An analysis of the reflex activity in the cervical sympathetic trunk induced by myelinated somatic afferents. Arch Ges Physiol 314:197–198

    Google Scholar 

  • Taylor W (1974) The vibration syndrome: introduction. In: Taylor W (ed) The vibration syndrome. Academic Press, London, pp 1–12

    Google Scholar 

  • Vallbo AB, Hagbarth KE, Torebjörk HE, Wallin BG (1979) Somato-sensory, proprioceptive, and sympathetic activity in peripheral nerves. Physiol Rev 59:919–957

    Google Scholar 

  • Welsh CL (1980) The effect of vibration on digital blood flow. Br J Surg 67:708–710

    Google Scholar 

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Okada, A., Naito, M., Ariizumi, M. et al. Experimental studies on the effects of vibration and noise on sympathetic nerve activity in skin. Europ. J. Appl. Physiol. 62, 324–331 (1991). https://doi.org/10.1007/BF00634967

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  • DOI: https://doi.org/10.1007/BF00634967

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