Publication Cover
Neurological Research
A Journal of Progress in Neurosurgery, Neurology and Neurosciences
Volume 14, 1992 - Issue 1
23
Views
84
CrossRef citations to date
0
Altmetric
Review

New trend in neuroscience: Low-power laser effect on peripheral and central nervous system (basic science, preclinical and clinical studies)

&
Pages 2-11 | Accepted 01 Jul 1991, Published online: 20 Jul 2016

References

  • Rochkind SE. Stimulation effect of laser energy on the regeneration of traumatically injured peripheral nerves Morphogenesis and Regeneration 1978; 83: 48–50
  • Rochkind S, Nissan M, Lubart R, Avram J, Bartal A. The in-vivo nerve response to direct low energy laser irradiation Acta Neurochirurgia (Wien) 1988; 94: 74–77
  • Rochkind S, Lubart R, Nissan M. Peripheral nerve response-to green 540 nm, red 632 nm and IR 908 nm lasers (unpublished data)
  • Rochkind S, Nissan M, Lubart R. The effects of a single transcutaneous irradiation of peripheral nerve: Comparative study with 5 different wavelengths. Lasers Med Sci 1990; 4: 259–263
  • Rochkind S, Lubart R, Wollman Y, Simantov R, Nissan M, Barr-Nea L. Central nervous system transplantation benefitted by low-level laser irradiation, In: Joffe SN, Atsumi K, eds, Laser Surgery: Advanced Characterization, Therapeutics and Systems 11, SPIE 1990; 1200: 301–312
  • Wollman Y, Rochkind S, Simantov R. Low-power laser irradiation enhances rat brain nerve cell growth in tissue culture J Photochem Photobiol submitted
  • Lubart R, Wollman Y, Friedmann H, Rochkind S, Laulicht I. Effects of visible and near infra-red lasers on cell cultures. J Photochem Photobiol 1992 in press
  • Lubart R, Malik Z, Rochkind S, Fisher T. A possible mechanism of low level laser living cell interaction. Laser Ther 1990; 2: 65–68
  • Kanofsky R. Singlet oxygen production by biological systems. Chem Biol Interact 1989; 70: 1–28
  • Williams JP. The necessary and desirable production of radicals in biology. Phil Trans R Soc Lond (B) 1985; 311: 593–603
  • Friedmann H, Lubart R, Laulicht I, Rochkind S. A possible explanation of laser-induced stimulation and damage of cell culture Photochem Photobiol 1991; 11: 87–91
  • Barker MA. Prevention of peroxide produced DNA strand scission in human tumor cells by lipoxygenase inhibitors. Photochem Photobiol in press
  • Karu Tl. Molecular mechanism of therapeutic effect of low intensity laser irradiation. Laser Life Sci 1988; 2: 53–74
  • Cannistraro S, Van de Vorsts S, Jori G. EPR studies on singlet oxygen production by porphyrins. Photochem Photobiol 1978; 28: 257–259
  • Jung J, Kim HS. The chromophores as endogenous sensitizers involved in the photogeneration of singlet oxygen in spinach thylakoids. Photochem Photobiol 1990; 52: 1003–1009
  • Rochkind S, Nissan M, Razon N, Schwartz M, Bartal A. Electrophysiological effect of He-Ne laser on normal and injured sciatic nerve in rat. Acta Neurochir (Wien) 1986; 83: 125–130
  • Rochkind S, Nissan M, Barr-Nea L, Razon N, Schwartz M, Bartal A. Response of peripheral nerve to He-Ne laser: Experimental studies. Lasers Surg Med 1987; 7: 441–443
  • Rochkind S, Barr-Nea L, Razon N, Bartal A, Schwartz M Stimulatory effect of He-Ne low-dose laser on injured sciatic nerves of rats. Neurosurgery 1987; 20: 843–847
  • Rochkind S, Lubart R, Nissan M, Barr-Nea L. Low-energy lase irradiation and nervous system: Methods and Results. In: Joffe SN, Atsumi K, eds, Laser Surgery: Characterization anc Therapeutics, SPIE 1988; 907: 100–106
  • Rochkind S, Nissan M, Lubart R. Low-power laser irradiatior on the spinal cord promotes regeneration of the injure peripheral nerve. Spine (submitted for publication, 1992)
  • Nissan M, Rochkind S, Ringel M. Strain gauged hemostati' forceps for clinical and experimental use. Med Biol Eng CompL 1988; 26: 448–450.
  • Nissan M, Rochkind S, Razon N, Bartal A. He-Ne laser irradiatio delivered transcutaneously: its effect on the sciatic nerve c rats. Lasers Surg Med 1986; 6: 435–438
  • Rochkind S, Barr-Nea L, Vogler I. Spinal cord response to lase treatment of injured peripheral nerve. Spine 1990; 15: 6-1C
  • Grafstein B. Chromatolysis reconsidered: A new view of th reaction of the nerve cell body to axon injury. In: Seil F ed., Nerve, Organ and Tissue Regeneration: Research Perspectives. Academic Press, New York, 1983; pp. 51–88
  • Watson WE. Observation on the nuclear and total cell body nucleic acid of injured nerve cells. J Physiol 1968; 196:655–676
  • Willard M, Skene JHP. In: Nicholls JG, ed., Repair and Regeneration of the Nervous System. Springer Verlag, New York, 1982; pp. 71–89
  • Varon S, Somjen GG. Neuron-glia interactions. Neurosci Res Prog Bull 1979; 17: 9–239
  • Krikorian JG, Guth L, Donati EJ. Origin of the connective tissue scar in the transected spinal cord. Exp Neurol 1981; 72: 698–707
  • David S, Aguayo AJ. Axonal regeneration after crush injury of rat central nervous system fibers innervating peripheral nerve grafts. J Neurocytol 1985; 14: 1–2
  • Rochkind S, Barr-Nea L, Bartal A, Nissan M, Lunbart R, Razon N. New methods of treatment of severely injured sciatic nerve and spinal cord: An experimental study. Acta Neurochirurgica (Suppl.) 1988; 43: 91–93
  • Rochkind S. Spinal cord injury in dogs treated by peripheral nerve graft and low power laser irradiation. Paraplegia (submitted for publication, 1992)
  • Aguayo AJ, Benfey M, David S. A potential for axonal regeneration in neurons of the adult mammalian nerve system. Birth Defects. Original Article Series 1983; 19: 327–340
  • Bjorklund A, Steveni U, Dunnet SB. Models transplantation of brainstem monoaminergic ‘command’ systems: for functional reactivation of damaged CNS circuitries. In: Kao CC, Bunge RP, Reier PJ, eds, Spinal Cord Reconstruction, New York, Raven Press, 1983; pp. 397–413
  • Das GD. Neural transplantation in the spinal cord of adult rats. J Neurol Sci 1983; 62: 191–210
  • Reier PJ. Neural tissue grafts and repair of the injured spinal cord. Neuropathol Appl Neurobiol 1985; 11: 81–104
  • Rochkind S. Spinal cord and brain transplantation benefitted by low-power laser irradiation. Lasers Med Sci (in press, 1991)
  • De La Torre JC. Spinal cord injury. Review of basic and applied research. Spine 1981; 6: 315–335
  • Steveni U, Bjorklund A, Svendgaard NA. Transplantation of central and peripheral monoamine neurons to the adult rat brain: techniques and conditions for survival. Brain Res 1976; 114: 1–20
  • Raisman G, Lawrence JM, Zhou CF, Lindsay RM. In: Bjorklund A, Steveni U, eds. Neural Grafting in the Mammalian CNS. New York, Elsevier, 1985; pp. 125–150
  • Jaeger CB, Lund RD. Some neuronal glial and vascular interactions which occur when developing hippocampal primordia are incorporated into adult host hippocampi. Exp Brain Res 1980; 40: 265–272
  • Rief AE. Transplantation of nerve tissue into brain. Appl Neurophysiol 1984; 47: 23–32
  • Le Gross Clark WE. Neuronal differentiation in implanted foetal cortical tissue. Neurol Psychiatr 1940; 3: 203–272
  • Rochkind S, Rousso M, Nissan M, Villareal M, Barr-Nea L, Rees DG. Systemic effects of low-energy laser irradiation on the nervous system and on cutaneous wounds and burns. Lasers Surg Med 1989; 9: 174–182
  • Rochkind S, Alon M, Ouaknine GE, Weiss S, Avram Razon N, Doron A, Lubart R, Friedmann H. Intraoperative clinical use of LLLT following surgical treatment of the tethered spinal cord. Laser Ther 1991; 3: 113–117
  • Rochkind S, Alon M, Harel S, Ouaknine GE. Tethered spinal cord: surgical treatment improved by intraoperative low power laser therapy, (submitted for publication, 1992)
  • Yamada S, Zinke DE, Sanders D. Pathophysiology of ‘tethered cord syndrome’ J Neurosurg 1981; 54: 499–503
  • Passarella S, Casamassima E, Quagliariella E, Caretto G, Jirillo E. Quantitative analysis of lymphocyte-salmonella-interaction and effect of lymphocyte irradiation by Helium-Neon laser. Biochem Biophys Res Commun 1985; 130: 546–552
  • Bolognani L, Volpi N. Low-power laser in enzymology: reactivation of myosin ATPase by GaAs and HeNe pulsed lasers. In: Basic and Applied Research in Photobiology and Photomedicine, In press, 1991

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.