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A portable optical pulsatile flowmetry demonstrates strong clinical relevance for diabetic foot perfusion assessment.
Bi, Renzhe; Zhang, Ruochong; Meng, Lingyan; Du, Yao; Low, Julie; Qi, Yi; Rajarahm, Poongkulali; Lai, Alexis Yuen Fun; Tan, Victoria Shi Ying; Ho, Pei; Olivo, Malini.
Afiliação
  • Bi R; A*STAR Skin Research Labs (A*SRL), Agency for Science, Technology and Research (A*STAR), 31 Biopolis Way, Nanos, Singapore 138669, Republic of Singapore.
  • Zhang R; A*STAR Skin Research Labs (A*SRL), Agency for Science, Technology and Research (A*STAR), 31 Biopolis Way, Nanos, Singapore 138669, Republic of Singapore.
  • Meng L; National University Health System (NUHS), 1E Kent Ridge Rd., Singapore 119228, Republic of Singapore.
  • Du Y; A*STAR Skin Research Labs (A*SRL), Agency for Science, Technology and Research (A*STAR), 31 Biopolis Way, Nanos, Singapore 138669, Republic of Singapore.
  • Low J; National University Health System (NUHS), 1E Kent Ridge Rd., Singapore 119228, Republic of Singapore.
  • Qi Y; A*STAR Skin Research Labs (A*SRL), Agency for Science, Technology and Research (A*STAR), 31 Biopolis Way, Nanos, Singapore 138669, Republic of Singapore.
  • Rajarahm P; A*STAR Skin Research Labs (A*SRL), Agency for Science, Technology and Research (A*STAR), 31 Biopolis Way, Nanos, Singapore 138669, Republic of Singapore.
  • Lai AYF; National University Health System (NUHS), 1E Kent Ridge Rd., Singapore 119228, Republic of Singapore.
  • Tan VSY; National University Health System (NUHS), 1E Kent Ridge Rd., Singapore 119228, Republic of Singapore.
  • Olivo M; A*STAR Skin Research Labs (A*SRL), Agency for Science, Technology and Research (A*STAR), 31 Biopolis Way, Nanos, Singapore 138669, Republic of Singapore.
APL Bioeng ; 8(1): 016109, 2024 Mar.
Article em En | MEDLINE | ID: mdl-38390315
ABSTRACT
We present a robust, cost-effective (<2000 USD), and portable optical diffuse speckle pulsatile flowmetry (DSPF) device with a flexible handheld probe for deep tissue blood flow measurement in the human foot as well as a first-in-man observational clinical study using the proposed optical device for tissue ischemia assessment and peripheral artery disease (PAD) diagnosis. Blood flow in tissue is inherently pulsatile in nature. However, most conventional methods cannot measure deep tissue-level pulsatile blood flow noninvasively. The proposed optical device can measure tissue-level pulsatile blood flow ∼6 mm underneath the skin surface. A new quantitative tissue perfusion index (TPIDSPF) based on frequency domain analysis of the pulsatile blood flow waveform is defined to assess tissue ischemia status. Through a clinical study involving 66 subjects, including healthy individuals and diabetes patients with and without PAD, TPIDSPF demonstrated strong correlations of 0.720 with transcutaneous tissue partial oxygen pressure (TcPO2) and 0.652 with toe-brachial index (TBI). Moreover, among the three methods, TPIDSPF demonstrated the highest area under the curve for PAD diagnosis among diabetes patients, with a notable value of 0.941. The promising clinical results suggest that the proposed optical method has the potential to be an effective clinical tool for identifying PAD among the diabetic cohort.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article