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Updated: May 8, 2026

Multispectral Optoacoustic Tomography for Functional Imaging in Vascular Research
Published on: June 8, 2022
Longitudinal three-dimensional photoacoustic imaging reveals hyperoxic perilesional microvasculature associated with
Aiko Makino1, Susumu Saito1, Ayako Takaya1
1Department of Plastic and Reconstructive Surgery, Graduate School of Medicine, Kyoto University, 54 Shogoin-Kawaharacho Sakyo-ku, Kyoto 6068507, Japan.
Abstract:
Keloids undergo repeated cycles of regression and recurrence; however, vascular dynamics associated with recurrence remain poorly understood. In this prospective time-series study, we investigated microvascular changes in keloids using longitudinal three-dimensional photoacoustic imaging combined with ultrasonography. Adult patients with trunk or extremity keloids receiving intralesional triamcinolone treatment underwent imaging at four time points over a 6-month period. Vascular morphology and oxygenation were evaluated in superficial and subdermal layers using dual-wavelength near-infrared illumination and relative S-factor values referenced to peri-keloid regions. Six keloids in five patients were analyzed. Regressive lesions demonstrated hypoxic superficial microvessels disconnected from hyperoxic subdermal vessels, whereas recurrent lesions showed emergence of hyperoxic superficial microvessels continuous with hyperoxic subdermal venous networks. Persistent subdermal venous hyperoxia was observed irrespective of clinical status. Combined three-dimensional and longitudinal photoacoustic imaging enabled spatiotemporal identification of activity-dependent microvascular alterations associated with keloid recurrence, supporting a potential arteriovenous shunting mechanism.

