Skin Color Bias in Neonatal Transcutaneous Bilirubin Measurement: A Diffuse Reflectance Spectroscopy Approach With Melanin Correction

ABSTRACT Commercial jaundice meters rely on reflectance data from specific wavelengths for Transcutaneous bilirubin (TcB) measurements. However, skin color bias is introduced due to melanin contribution. In this study, we evaluated melanin concentration as an objective indicator of neonatal skin pigmentation and assessed the performance of melanin corrected TcB measurements (TcB corr ). A total of 333 neonates were categorized into four groups using the Neomar skin color scale. Melanin concentration estimated from neonatal reflectance spectra strongly correlated with Neomar classification (Spearman's r = 0.90), with group differences confirmed by Kruskal–Wallis and Dunn's tests. TcB corr values showed good agreement with total serum bilirubin (TSB) across all color groups with minimal bias (−0.06 to 0.11 mg/dL). Compared with commercial TcB meter readings, skin color bias is reduced, particularly in the darker groups (colors 3 and 4). Chromophore‐decoupled diffuse reflectance spectroscopy offers a skin color unbiased, clinically reliable approach for TcB measurements across diverse populations.

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Publication Details

Journal
Journal of Biophotonics
Published
2026-09-29
DOI
https://doi.org/10.1002/jbio.70368
Primary Topic
Neonatal Health and Biochemistry
Type
article
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article

Skin Color Bias in Neonatal Transcutaneous Bilirubin Measurement: A Diffuse Reflectance Spectroscopy Approach With Melanin Correction

Shanthi Prince, Adithya Saba, Chitra Ranganathan, Ashok Chandrasekaran
Journal of Biophotonics
Neonatal Health and Biochemistry
article

Skin Color Bias in Neonatal Transcutaneous Bilirubin Measurement: A Diffuse Reflectance Spectroscopy Approach With Melanin Correction

Shanthi Prince, Adithya Saba, Chitra Ranganathan, Ashok Chandrasekaran
article en

Abstract

ABSTRACT Commercial jaundice meters rely on reflectance data from specific wavelengths for Transcutaneous bilirubin (TcB) measurements. However, skin color bias is introduced due to melanin contribution. In this study, we evaluated melanin concentration as an objective indicator of neonatal skin pigmentation and assessed the performance of melanin corrected TcB measurements (TcB corr ). A total of 333 neonates were categorized into four groups using the Neomar skin color scale. Melanin concentration estimated from neonatal reflectance spectra strongly correlated with Neomar classification (Spearman's r = 0.90), with group differences confirmed by Kruskal–Wallis and Dunn's tests. TcB corr values showed good agreement with total serum bilirubin (TSB) across all color groups with minimal bias (−0.06 to 0.11 mg/dL). Compared with commercial TcB meter readings, skin color bias is reduced, particularly in the darker groups (colors 3 and 4). Chromophore‐decoupled diffuse reflectance spectroscopy offers a skin color unbiased, clinically reliable approach for TcB measurements across diverse populations.

Journal of BiophotonicsVol. 19(10)
SRM Institute of Science and Technology (IN)
Quality Education
Openalex Percentile: Top 7%
Neonatal Health and Biochemistry
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