Quantifying dermal microcirculatory changes of neuropathic and neuroischemic diabetic foot ulcers using spatial frequency domain imaging: a shade of things to come?

Introduction The use of non-invasive vascular and perfusion diagnostics are an important part of assessing lower extremity ulceration and amputation risk in patients with diabetes mellitus. Methods for detecting impaired microvascular vasodilatory function in patients with diabetes may have the pote...

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Main Authors: David G Armstrong, Grant A Murphy, Rajinder P Singh-Moon, Amaan Mazhar, David J Cuccia, Vincent L Rowe
Format: Article
Language:English
Published: BMJ Publishing Group 2020-12-01
Series:BMJ Open Diabetes Research & Care
Online Access:https://drc.bmj.com/content/8/2/e001815.full
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spelling doaj-8efa2a7e7cdd4c0da636b790fe5daaf42021-01-22T02:30:29ZengBMJ Publishing GroupBMJ Open Diabetes Research & Care2052-48972020-12-018210.1136/bmjdrc-2020-001815Quantifying dermal microcirculatory changes of neuropathic and neuroischemic diabetic foot ulcers using spatial frequency domain imaging: a shade of things to come?David G Armstrong0Grant A Murphy1Rajinder P Singh-Moon2Amaan Mazhar3David J Cuccia4Vincent L Rowe5Surgery, University of Southern California, Los Angeles, California, USADepartment of Surgery, University of Southern California Keck School of Medicine, Los Angeles, California, USADepartment of Research and Development, Modulim, Irvine, California, USADepartment of Research and Development, Modulim, Irvine, California, USADepartment of Research and Development, Modulim, Irvine, California, USADepartment of Surgery, University of Southern California Keck School of Medicine, Los Angeles, California, USAIntroduction The use of non-invasive vascular and perfusion diagnostics are an important part of assessing lower extremity ulceration and amputation risk in patients with diabetes mellitus. Methods for detecting impaired microvascular vasodilatory function in patients with diabetes may have the potential to identify sites at risk of ulceration prior to clinically identifiable signs. Spatial frequency domain imaging (SFDI) uses patterned near-infrared and visible light spectroscopy to determine tissue oxygen saturation and hemoglobin distribution within the superficial and deep dermis, showing distinct microcirculatory and oxygenation changes that occur prior to neuropathic and neuroischemic ulceration.Research designs and methods 35 patients with diabetes mellitus and a history of diabetic foot ulceration were recruited for monthly imaging with SFDI. Two patients who ulcerated during the year-long longitudinal study were selected for presentation of their clinical course alongside the dermal microcirculation biomarkers from SFDI.Results Patient 1 developed a neuropathic ulcer portended by a focal increase in tissue oxygen saturation and decrease in superficial papillary hemoglobin concentration 3 months prior. Patient 2 developed bilateral neuroischemic ulcers showing decreased tissue oxygen saturation and increased superficial papillary and deep dermal reticular hemoglobin concentrations.Conclusions Wounds of different etiology show unique dermal microcirculatory changes prior to gross ulceration. Before predictive models can be developed from SFDI, biomarker data must be correlated with the clinical course of patients who ulcerate while being followed longitudinally.Trial registration number NCT03341559.https://drc.bmj.com/content/8/2/e001815.full
collection DOAJ
language English
format Article
sources DOAJ
author David G Armstrong
Grant A Murphy
Rajinder P Singh-Moon
Amaan Mazhar
David J Cuccia
Vincent L Rowe
spellingShingle David G Armstrong
Grant A Murphy
Rajinder P Singh-Moon
Amaan Mazhar
David J Cuccia
Vincent L Rowe
Quantifying dermal microcirculatory changes of neuropathic and neuroischemic diabetic foot ulcers using spatial frequency domain imaging: a shade of things to come?
BMJ Open Diabetes Research & Care
author_facet David G Armstrong
Grant A Murphy
Rajinder P Singh-Moon
Amaan Mazhar
David J Cuccia
Vincent L Rowe
author_sort David G Armstrong
title Quantifying dermal microcirculatory changes of neuropathic and neuroischemic diabetic foot ulcers using spatial frequency domain imaging: a shade of things to come?
title_short Quantifying dermal microcirculatory changes of neuropathic and neuroischemic diabetic foot ulcers using spatial frequency domain imaging: a shade of things to come?
title_full Quantifying dermal microcirculatory changes of neuropathic and neuroischemic diabetic foot ulcers using spatial frequency domain imaging: a shade of things to come?
title_fullStr Quantifying dermal microcirculatory changes of neuropathic and neuroischemic diabetic foot ulcers using spatial frequency domain imaging: a shade of things to come?
title_full_unstemmed Quantifying dermal microcirculatory changes of neuropathic and neuroischemic diabetic foot ulcers using spatial frequency domain imaging: a shade of things to come?
title_sort quantifying dermal microcirculatory changes of neuropathic and neuroischemic diabetic foot ulcers using spatial frequency domain imaging: a shade of things to come?
publisher BMJ Publishing Group
series BMJ Open Diabetes Research & Care
issn 2052-4897
publishDate 2020-12-01
description Introduction The use of non-invasive vascular and perfusion diagnostics are an important part of assessing lower extremity ulceration and amputation risk in patients with diabetes mellitus. Methods for detecting impaired microvascular vasodilatory function in patients with diabetes may have the potential to identify sites at risk of ulceration prior to clinically identifiable signs. Spatial frequency domain imaging (SFDI) uses patterned near-infrared and visible light spectroscopy to determine tissue oxygen saturation and hemoglobin distribution within the superficial and deep dermis, showing distinct microcirculatory and oxygenation changes that occur prior to neuropathic and neuroischemic ulceration.Research designs and methods 35 patients with diabetes mellitus and a history of diabetic foot ulceration were recruited for monthly imaging with SFDI. Two patients who ulcerated during the year-long longitudinal study were selected for presentation of their clinical course alongside the dermal microcirculation biomarkers from SFDI.Results Patient 1 developed a neuropathic ulcer portended by a focal increase in tissue oxygen saturation and decrease in superficial papillary hemoglobin concentration 3 months prior. Patient 2 developed bilateral neuroischemic ulcers showing decreased tissue oxygen saturation and increased superficial papillary and deep dermal reticular hemoglobin concentrations.Conclusions Wounds of different etiology show unique dermal microcirculatory changes prior to gross ulceration. Before predictive models can be developed from SFDI, biomarker data must be correlated with the clinical course of patients who ulcerate while being followed longitudinally.Trial registration number NCT03341559.
url https://drc.bmj.com/content/8/2/e001815.full
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