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Theralase Technologies Inc. V.TLT

Alternate Symbol(s):  TLTFF

Theralase Technologies Inc. is a Canada-based clinical-stage pharmaceutical company. The Company is engaged in the research and development of light activated compounds and their associated drug formulations. The Company operates through two divisions: Anti-Cancer Therapy (ACT) and Cool Laser Therapy (CLT). The Anti-Cancer Therapy division develops patented, and patent pending drugs, called Photo Dynamic Compounds (PDCs) and activates them with patent pending laser technology to destroy specifically targeted cancers, bacteria and viruses. The CLT division is responsible for the Company’s medical laser business. The Cool Laser Therapy division designs, develops, manufactures and markets super-pulsed laser technology indicated for the healing of chronic knee pain. The technology has been used off-label for healing numerous nerve, muscle and joint conditions. The Company develops products both internally and using the assistance of specialist external resources.


TSXV:TLT - Post by User

Bullboard Posts
Comment by bionicjoeon Sep 05, 2018 4:52pm
88 Views
Post# 28568218

RE:RE:RE:RE:New Lothar Lilge / Vaughn Betz / Abdul-Amir Yassine Article

RE:RE:RE:RE:New Lothar Lilge / Vaughn Betz / Abdul-Amir Yassine Article
bencro wrote: Speaking of "heterogeneous turbid media" and "cylindrical diffusers", for those that have no clue of what this is all about ...


2012:

Determination of optical properties in heterogeneous turbid media using a cylindrical diffusing fiber

Abstract

For interstitial photodynamic therapy (PDT), cylindrical diffusing fibers (CDFs) are often used to deliver light. This study examines the feasibility and accuracy of using CDFs to characterize the absorption (μa) and reduced scattering (μ's) coefficients of heterogeneous turbid media. Measurements were performed in tissue-simulating phantoms with μa between 0.1 and 1 cm−1 and μ's between 3 and 10 cm−1 with CDFs 2 to 4 cm in length. Optical properties were determined by fitting the measured light fluence rate profiles at a fixed distance from the CDF axis using a heterogeneous kernel model in which the cylindrical diffusing fiber is treated as a series of point sources. The resulting optical properties were compared with independent measurement using a point source method. In a homogenous medium, we are able to determine the absorption coefficient μa using a value of μ's determined a priori (uniform fit) or μ's obtained by fitting (variable fit) with standard (maximum) deviations of 6% (18%) and 18% (44%), respectively. However, the CDF method is found to be insensitive to variations in μ's, thus requiring a complementary method such as using a point source for determination of μ's. The error for determining μa decreases in very heterogeneous turbid media because of the local absorption extremes. The data acquisition time for obtaining the one-dimensional optical properties distribution is less than 8 s. This method can result in dramatically improved accuracy of light fluence rate calculation for CDFs for prostate PDT in vivo when the same model and geometry is used for forward calculations using the extrapolated tissue optical properties.
 





Where would we be without bencro's simplified explanations?

If the topic of heterogeneous turbid media" and "cylindrical diffusers" ever comes up while you're shooting pool with the guys you'll be right there to set them straight.

You guys still have no clue how to promote this company.

Bullboard Posts