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Updated: Jun 6, 2025

Diffuse Reflectance Spectroscopy: Getting the Capillary Refill Test Under One's Thumb
Published on: December 2, 2017
Relationships Among Capillary Refill Time, Peripheral Blood Flow Rate, and Fingertip Temperature: Advances in
Sorataro Shibata1,2, Yoshihiro Ujihara1,2, Masanori Nakamura3,2
1Department of Electrical and Mechanical Engineering, Graduate School of Engineering, Nagoya Institute of Technology, Gokiso-cho, Showa-ku, Nagoya 466-8555, Japan.
Insights
Capillary refill time (CRT) measurements can be improved by considering arterial contractility. This study reveals a link between CRT, blood flow, and fingertip temperature, enhancing vascular health assessments.
Area of Science:
- Physiology
- Cardiovascular Science
- Medical Diagnostics
Background:
- Capillary refill time (CRT) is a noninvasive cardiovascular health indicator.
- Current CRT methods have limitations in sensitivity due to distal blood vessel dynamics.
- Understanding the relationship between CRT and distal blood flow is crucial.
Purpose of the Study:
- To investigate the correlation between capillary refill time (CRT) and distal blood flow.
- To explore how factors like blood vessel contraction influence CRT.
- To assess the potential for improved diagnostic utility of CRT.
Main Methods:
- Ten healthy volunteers' hands were cooled to induce vasoconstriction.
- Measurements included CRT, fingertip temperature, and blood flowrate using specialized devices.
- Data were collected before and after cooling to analyze changes.
Main Results:
- Hand cooling significantly reduced blood flowrate and increased CRT.
- A strong inverse correlation was found between blood flowrate and CRT.
- CRT negatively correlated with fingertip temperature, with varying slopes indicating arterial contractility.
Conclusions:
- The slope of the CRT-temperature relationship reflects individual arterial contractility.
- This finding can enhance the diagnostic value of CRT for vascular conditions.
- Potential applications include assessing arterial age and Raynaud's phenomenon.
Abstract:
Capillary refill time (CRT) is a widely used noninvasive measure of cardiovascular health. Despite its widespread diagnostic utility, it has several limitations, particularly its low sensitivity for certain conditions, because factors such as the contraction and relaxation of distal blood vessels can influence CRT readings. This study was performed to explore the relationships between CRT and distal blood flow. The right hand of each of ten healthy adult volunteers was cooled to induce blood vessel contraction. CRT, fingertip temperature, and blood flowrate were measured using a custom device, a thermometer, and a laser Doppler blood flowmeter, respectively, before and after cooling. Hand cooling significantly decreased blood flowrate and increased CRT. A robust inverse correlation was observed between blood flowrate and CRT, supporting a model where CRT is the time required for blood to flow through a cylindrical pipe. Furthermore, CRT showed a significant negative correlation with fingertip temperature. Most participants had high correlation coefficients, although two showed lower values. However, all data points exhibited a linear relationship, with the slopes of the regression lines between CRT and temperature varying among participants. These results suggested that the slope between CRT and fingertip temperature indicates individual differences in arterial contractility. These findings could improve the diagnostic utility of CRT in assessing vascular health, including arterial age and Raynaud's phenomenon, based on the contractility of peripheral arteries.
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