Merriam-Webster (2014). Allopathy. Available at: http://www.merriam-webster.com/medical/allopathy Accessed March20, 2014.
2.
BissetN.G. (1991). One man's poison another man's medicine?. J. Ethnopharmacol., 32, 71–81.
3.
StadlerI., LanzafameR.J., EvansR., NarayanV., DaileyB., BuehnerN., and NaimJ.O. (2001). 830-nm irradiation increases the wound tensile strength in a diabetic murine model. Lasers Surg, Med, 28, 220–226.
4.
LanzafameR.J., StadlerI., KurtzA.F., ConnellyR., PeterT.A., BrondonP., and OlsonD. (2007). Reciprocity of exposure time and irradiance on energy density during photoradiation on wound healing in a murine pressure ulcer model. Lasers Surg. Med., 39, 534–542.
5.
ChowR., ArwatiP., LaaksoL., BjordalJ., and BaxterG. (2011). Inhibition and relevance to analgesic effects: a systematic review. Photomed. Laser Surg., 29, 365–381.
6.
BancosS., BernardM.P., TophamD.J., and PhippsR.P. (2009). Ibuprofen and other widely used non-steroidal anti-inflammatory drugs inhibit antibody production in human cells. Cell Immunol., 258, 18–28.
7.
EnwemekaC.S. (2013). Antimicrobial blue light: an emerging alternative to antibiotics. Photomed. Laser Surg., 31, 509–511.
8.
LanzafameR.J., StadlerI., CunninghamR., MuhlbauerA., GriggsJ., SoltzR., and SoltzB.A. (2013). Preliminary assessment of photoactivated antimicrobial collagen on bioburden in a murine pressure ulcer model. Photomed. Laser Surg., 31, 539–546.
9.
Santana–BlankL., Rodríguez–SantanaE., and Santana RodríguezK.E. (2012) Concurrence of emerging developments in photobiomodulation and cancer. Photomed. Laser Surg., 30, 615–616.
10.
Myakishev–RempelM., StadlerI., BrondonP., AxeD.R., FriedmanM., NardiaF.B., and LanzafameR.J. (2012). A preliminary study of the safety of red light phototherapy of tissues harboring cancer. Photomed. Laser Surg., 30, 551–558.
11.
ChowR.T., JohnsonM.I., Lopes–MartinsR.A.B., and BjordalJ.M. (2009). Efficacy of low-level laser therapy in the management of neck pain: a systematic review and meta-analysis of randomised placebo or active-treatment controlled trials. Lancet, 374, 1897–1908.
12.
TunerJ., and HodeL. (2011). The new laser therapy handbook. Grängesberg: Prima Books.
13.
YuW., NaimJ.O., McGowanM., IppolitoK., and LanzafameR.J. (1997). Photomodulation of oxidative metabolism and electron chain enzymes in rat liver mitochondria. Photochem. Photobiol., 66, 866–871.
14.
StadlerI., EvansR., KolbB., NaimJ.O., NarayanV., BuehnerN., and LanzafameR.J. (2000). In vitro effects of low-level laser irradiation at 660 nm on peripheral blood lymphocytes. Lasers Surg. Med., 27, 255–261.
15.
HamblinM.R., and DemidovaT.N. (2006). Mechanisms of low level light therapy. SPIE Proc., 6140, 1–12.
16.
KushibikiT., HirasawaT., OkawaS., and IshiharaM. (2013). Blue laser irradiation generates intracellular reactive oxygen species in various types of cells. Photomed. Laser Surg., 31, 95–104.
17.
KashiwagiS., YuanJ., ForbesB., HibertM.L., LeeE.L.Q., et al. (2013). Near-Infrared laser adjuvant for influenza vaccine. PLoS ONE, 8, e82899.
18.
PinfildiC.E., Rampazo da SilvaÉ.P., FolhaR.A.C., TurchettoP.C.G., MonteiroP.P.K.P., BernardoA.A., and HochmanS. (2014). Mast cell curve-response in partial Achilles tendon rupture after 830 nm phototherapy. Photomed. Laser Surg., 32, 88–92.
19.
MartinR.K., SaleemS.J., FolgosaL., ZellnerH.B., DamleS.R., NguyenG.K.T., RyanJ.J., BearH.D., IraniA.M., and ConradD.H. (2014). Mast cell histamine promotes the immunoregulatory activity of myeloid-derived suppressor cells. J. Leukoc. Biol. [Epub ahead of print.]
20.
KaruT. (2013). Is it time to consider photobiomodulation as a drug equivalent?. Photomed. Laser Surg, 31, 188–191.