Subcutaneous adipose tissue thickness determination using ultrasound signals processing: A phantom study

被引:0
|
作者
Hajiasgari, Mona [1 ]
Setarehdan, Seyed Kamaledin [2 ]
Rangraz, Parisa [1 ]
机构
[1] Islamic Azad Univ, Dept Biomed Engn, Sci & Res Branch, Tehran, Iran
[2] Univ Tehran, Coll Engn, Control & Intelligent Proc Ctr Excellence, Sch Elect & Comp Engn, Tehran, Iran
关键词
Ultrasound echo analysis; RF data acquisition; Subcutaneous adipose tissue characterization; Wavelet transform; Median filter; Convert convex probe coordinates to linear; FAT;
D O I
10.1016/j.bspc.2022.103744
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
According to the top priority of health and fitness, the ultrasound (US) technique for measuring subcutaneous adipose tissue (SAT), as an indicator for body composition analysis, has received the most attention. So, tissue segmentation was performed to determine the boundaries between skin, SAT, and muscle in phantoms with different layers, and thicknesses that were fabricated to simulate tissue layers. The pre-processing of the signal was carried out using wavelet transform (WT) and Hilbert transform for denoising and detection. After the processing step, using WT for signal decomposition, a neural network was trained based on the scan line signals to detect the SAT layer. The coordinates of the convex probe were converted to linear to reduce the time and increase the accuracy for creating the target matrix. The algorithm was designed for automatic measurements of deep (normal), superficial (random), and noisy SAT thickness. Statistical evaluation was done to assess the system's skill in tissue classification and measurement of SAT thickness. Results revealed that most of the features related to coarse levels of detail coefficients extracted from wavelet decomposition levels can be used to build a classifier that can be applied successfully to differentiate between SAT and non-SAT tissue regions with a mean classification accuracy of 94.3% for 20 mm and 92.4% for 4 mm SAT in random mode with the error of estimate 0.05% and 0.07% respectively. Also, using 3 median filters and increasing their lengths from 3 to 7 improved the accuracy results to find SAT entry and exit boundaries.
引用
收藏
页数:12
相关论文
共 50 条
  • [21] Subcutaneous adipose tissue thickness alters cooling time during cryotherapy
    Otte, JW
    Merrick, MA
    Ingersoll, CD
    Cordova, ML
    ARCHIVES OF PHYSICAL MEDICINE AND REHABILITATION, 2002, 83 (11): : 1501 - 1505
  • [22] Evaluation of Skin and Subcutaneous Adipose Tissue Thickness for Optimal Insulin Injection
    Akkus, Oktay
    Oguz, Aytekin
    Uzunlulu, Mehmet
    Kizilgul, Muhammed
    JOURNAL OF DIABETES & METABOLISM, 2012, 3 (08)
  • [23] Relationship between lumbar subcutaneous adipose tissue thickness and spinopelvic parameters
    Okan, Sevil
    Beyhan, Murat
    CUKUROVA MEDICAL JOURNAL, 2020, 45 (03): : 1238 - 1245
  • [24] EVALUATION OF THE DECREASE OF SUBCUTANEOUS ADIPOSE TISSUE THICKNESS WITH COMBINATION OF PULSED FOCUSED ULTRASOUND AND RADIOFREQUENCY NON-INVASIVE TREATMENT
    Santos, Xavier
    Planas, Montserrat
    Soto, Claudine
    LASERS IN SURGERY AND MEDICINE, 2014, 46 : 20 - 20
  • [25] Reliability of Ultrasound Measurements for Subcutaneous Adipose Tissue in Elite Canoe Athletes
    Kopinski, Stephan
    Engel, Tilman
    Cassel, Michael
    Carlsohn, Anja
    Mayer, Frank
    MEDICINE AND SCIENCE IN SPORTS AND EXERCISE, 2014, 46 (05): : 539 - 539
  • [26] Early Prediction of Gestational Diabetes Mellitus Using Placental Strain Elastography and Subcutaneous Adipose Tissue Thickness
    Sengul, Mustafa
    Selim, Halime Sen
    ZEITSCHRIFT FUR GEBURTSHILFE UND NEONATOLOGIE, 2023, 227 (04): : 269 - 276
  • [27] Changes in the relative thickness of individual subcutaneous adipose tissue layers in growing pigs
    McEvoy, Fintan J.
    Strathe, Anders B.
    Madsen, Mads T.
    Svalastoga, Eiliv
    ACTA VETERINARIA SCANDINAVICA, 2007, 49 (1)
  • [28] Quantification of subcutaneous and visceral adipose tissue using CT
    Romero, Daniel
    Ramirez, Juan Carlos
    Marmol, Alejandro
    2006 IEEE INTERNATIONAL WORKSHOP ON MEDICAL MEASUREMENT AND APPLICATIONS, 2006, : 128 - 133
  • [29] DNA Vaccination of Subcutaneous Adipose Tissue Using Electroporation
    Fisher, Paul
    Brambila, Carlos
    Broderick, Kate
    MOLECULAR THERAPY, 2017, 25 (05) : 217 - 218
  • [30] Blood flow in subcutaneous adipose tissue is dependent on skin-fold thickness
    Adams, F
    Jordan, J
    Luft, FC
    Boschmann, M
    INTERNATIONAL JOURNAL OF OBESITY, 2004, 28 : S76 - S76