Published January 2011 | Version Published
Journal Article Open

In vivo photoacoustic microscopy of human cutaneous microvasculature and a nevus

Abstract

In several human volunteers, photoacoustic microscopy (PAM) has been utilized for noninvasive cutaneous imaging of the skin microvasculature and a melanocytic nevus. Microvascular networks in both acral and nonacral skin were imaged, and multiple features within the skin have been identified, including the stratum corneum, epidermal-dermal junction, and subpapillary vascular plexus. Several vascular and structural differences between acral and nonacral skin were also observed in the photoacoustic images. In addition, a nevus was photoacoustically imaged, excised, and histologically analyzed. The photoacoustic images allowed for in vivo measurement of tumor thickness, depth, and microvasculature-values confirmed by histologic examination. The presented images demonstrate the potential of PAM to aid in the study and evaluation of cutaneous microcirculation and analysis of pigmented lesions. Through its ability to three-dimensionally image the structure and function of the microvasculature and pigmented lesions, PAM can have a clinical impact in diagnosis and assessment of systemic diseases that affect the microvasculature such as diabetes and cardiovascular disease, cutaneous malignancies such as melanoma, and potentially other skin disorders.

Additional Information

© 2011 SPIE. Paper 10385RR received Jul. 8, 2010; revised manuscript received Nov. 21, 2010; accepted for publication Nov. 30, 2010; published online Jan. 28, 2011. This research was sponsored by National Institutes of Health Grant Nos. 5 T32 AR07284, R01 EB000712, R01 EB008085, R01 CA134539, and U54 CA136398. L.W. acknowledges financial interest in Endra, Inc., which, however, did not support this work.

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Additional details

Identifiers

PMCID
PMC3055592
Eprint ID
69719
Resolver ID
CaltechAUTHORS:20160817-135251277

Funding

NIH
5 T32 AR07284
NIH
R01 EB000712
NIH
R01 EB008085
NIH
R01 CA134539
NIH
U54 CA136398

Dates

Created
2016-08-17
Created from EPrint's datestamp field
Updated
2021-11-11
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