The human abdominal region is very heterogeneous and stratified with subcutaneous adipose tissue (SAT) being one of the primary layers. Monitoring this tissue is crucial for diagnostic purposes and to estimate the effects of interventions like caloric restriction or bariatric surgery. However, the layered nature of the abdomen poses a major problem in monitoring the SAT in a non-invasive way by diffuse optics. In this work, we examine the possibility of using multi-distance broadband time domain diffuse optical spectroscopy to assess the human abdomen non-invasively. Broadband absorption and reduced scattering spectra from 600 to 1100 nm were acquired at 1, 2 and 3 cm source-detector distances on ten healthy adult male volunteers, and then ...
SignificanceGrowing levels of obesity and metabolic syndrome have driven demand for more advanced fo...
We report on the design, development, and performance assessment of a portable time-resolved system ...
We investigate the effect of depth heterogeneity in the abdomen by multidistance time-domain diffuse...
The human abdominal region is very heterogeneous and stratified with subcutaneous adipose tissue (SA...
A periodic monitoring of the adipose tissue functions due to interventions, such as calorie restrict...
The ability to non-invasively monitor in-vivo the human muscle and adipose tissue is of great practi...
We investigated depth heterogeneity in the abdomen using time-domain diffuse optical spectroscopy at...
BackgroundChanges in subcutaneous adipose tissue (AT) structure and metabolism have been shown to co...
Changes in subcutaneous adipose tissue (AT) structure and metabolism have been shown to correlate wi...
SignificanceGrowing levels of obesity and metabolic syndrome have driven demand for more advanced fo...
We report on the design, development, and performance assessment of a portable time-resolved system ...
We investigate the effect of depth heterogeneity in the abdomen by multidistance time-domain diffuse...
The human abdominal region is very heterogeneous and stratified with subcutaneous adipose tissue (SA...
A periodic monitoring of the adipose tissue functions due to interventions, such as calorie restrict...
The ability to non-invasively monitor in-vivo the human muscle and adipose tissue is of great practi...
We investigated depth heterogeneity in the abdomen using time-domain diffuse optical spectroscopy at...
BackgroundChanges in subcutaneous adipose tissue (AT) structure and metabolism have been shown to co...
Changes in subcutaneous adipose tissue (AT) structure and metabolism have been shown to correlate wi...
SignificanceGrowing levels of obesity and metabolic syndrome have driven demand for more advanced fo...
We report on the design, development, and performance assessment of a portable time-resolved system ...
We investigate the effect of depth heterogeneity in the abdomen by multidistance time-domain diffuse...