J Med Syst - Computer-based identification of type 2 diabetic subjects with and without neuropathy using dynamic planter pressure and principal component analysis.

Tópicos

{ patient(2315) diseas(1263) diabet(1191) }
{ blood(1257) pressur(1144) flow(957) }
{ ehr(2073) health(1662) electron(1139) }
{ can(981) present(881) function(850) }
{ system(1976) rule(880) can(841) }
{ method(984) reconstruct(947) comput(926) }
{ studi(1410) differ(1259) use(1210) }
{ featur(3375) classif(2383) classifi(1994) }
{ signal(2180) analysi(812) frequenc(800) }
{ cancer(2502) breast(956) screen(824) }
{ featur(1941) imag(1645) propos(1176) }
{ analysi(2126) use(1163) compon(1037) }
{ imag(2675) segment(2577) method(1081) }
{ studi(2440) review(1878) systemat(933) }
{ learn(2355) train(1041) set(1003) }
{ model(2220) cell(1177) simul(1124) }
{ spatial(1525) area(1432) region(1030) }
{ age(1611) year(1155) adult(843) }
{ detect(2391) sensit(1101) algorithm(908) }
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{ can(774) often(719) complex(702) }
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{ take(945) account(800) differ(722) }
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{ method(2212) result(1239) propos(1039) }

Resumo

Diabetes is a chronic disease that is characterized by an increased blood glucose level due to insulin resistance. Type 2 diabetes is common in middle aged and old people. In this work, we present a technique to analyze dynamic foot pressures images and classify them into normal, diabetes type 2 with and without neuropathy classes. Plantar pressure images were obtained using the F-Scan (Tekscan, USA) in-shoe measurement system. We used Principal Component Analysis (PCA) and extracted the eigenvalues from different regions of the foot image. The features extracted from region 1 of the foot pressure image, which were found to be clinically significant, were fed into the Fuzzy classifier (Sugeno model) for automatic classification. Our results show that the proposed method is able to identify the unknown class with an accuracy of 93.7%, sensitivity of 100%, and specificity of 83.3%. Moreover, in this work, we have proposed an integrated index using the eigenvalues to differentiate the normal subjects from diabetes with and without neuropathy subjects using just one number. This index will help the clinicians in easy and objective daily screening, and it can also be used as an adjunct tool to cross check their diagnosis.

Resumo Limpo

diabet chronic diseas character increas blood glucos level due insulin resist type diabet common middl age old peopl work present techniqu analyz dynam foot pressur imag classifi normal diabet type without neuropathi class plantar pressur imag obtain use fscan tekscan usa insho measur system use princip compon analysi pca extract eigenvalu differ region foot imag featur extract region foot pressur imag found clinic signific fed fuzzi classifi sugeno model automat classif result show propos method abl identifi unknown class accuraci sensit specif moreov work propos integr index use eigenvalu differenti normal subject diabet without neuropathi subject use just one number index will help clinician easi object daili screen can also use adjunct tool cross check diagnosi

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