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Effect of adipose tissue thickness and tissue optical properties on the differential pathlength factor estimation for
Ileana Pirovano1, Simone Porcelli2,3, Rebecca Re1,4
1Dipartimento di Fisica, Politecnico di Milano, Milan, Italy.
Abstract:
We propose a quantitative and systematic investigation of the differential pathlength factor (DPF) behavior for skeletal muscles and its dependence on different factors, such as the subcutaneous adipose tissue thickness (ATT), the variations of the tissue absorption (µ ) and reduced scattering (µ' ) coefficients, and the source-detector distance. A time domain (TD) NIRS simulation study is performed in a two-layer geometry mimicking a human skeletal muscle with an overlying adipose tissue layer. The DPF decreases when µ increases, while it increases when µ' increases. Moreover, a positive correlation between DPF and ATT is found. These results are supported by an in-vivo TD NIRS study on vastus lateralis and biceps brachii muscles of eleven subjects at rest, showing a high inter-subject and inter-muscle variability.
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