Holographic Optical Elements Which Diffract Efficiently In The Near-Infrared For Operation With Laser Diodes For Spacecraft Communications

Author(s):  
C. Gilbreath ◽  
A. E. Clement ◽  
J. W. Wagner
1992 ◽  
Author(s):  
Roger A. Lessard ◽  
Nadia Cappolla ◽  
Rupak Changkakoti ◽  
Gurusamy Manivannan

2012 ◽  
Vol 1 (4) ◽  
Author(s):  
Nelson Marquina ◽  
Roger Dumoulin-White ◽  
Arkady Mandel ◽  
Lothar Lilge

AbstractA randomized placebo-controlled clinical trial to evaluate an adjunctive treatment modality for pain associated with knee disorders was conducted utilizing a therapeutic laser system (low energy, non-surgical).The therapeutic laser system utilized a dual wavelength, multiple diode laser cluster probe with five super-pulsed 905 nm near-infrared (NIR) laser diodes, each emitting at 40 mW average power and four continuous wave 660 nm visible (VIS) red laser diodes, each emitting at 25 mW. It was used as an adjunctive modality providing 12 treatments, three times a week to a homogeneous patient population (n=126), in combination with standardized chiropractic techniques, to evaluate effectiveness on subjects presenting with osteoarthritis and knee pain. The primary endpoint was measured by the visual analog scale (VAS) to assess pain levels on a scale of 0–10. The success criteria for an individual patient in this study were identified as an improvement of 30% or more in the VAS from baseline to 12th treatment and/or an improvement of 20% or more in the VAS from baseline to 30-day follow-up evaluation.The data obtained in the study demonstrated that the present therapeutic laser system provided significant pain relief and osteoarthritic improvements in all primary evaluation criteria, with a statistical and clinical significance of


1998 ◽  
Author(s):  
Gang Gu ◽  
Yunfei Shi ◽  
Mingwu Kang ◽  
Jun Zhang ◽  
Hui Cao

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