Javascript must be enabled to continue!
Using thermochromic ink for medical simulations
View through CrossRef
Background:
In medical simulation and training, blood is used to exhibit its different behaviors in context. In some cases, blood color differential is an imperative visual effect to ensure high-fidelity training and practical understanding. High simulation realism is usually achieved by using animal or artificial blood (which mimics some biological features of blood), which has high cost, requires disposable equipment such as oxygenators, and entails contamination or infection risks.
Methods:
A novel method for blood simulation is introduced. Using the thermal properties of thermochromic ink, its color can be altered by adjustment of temperature.
1
The unique red color of blood can be mimicked to a high fidelity using a custom hue of thermochromic ink. Then, by adjusting its temperature, realistic dark and bright red can be employed to simulate the low and high oxygen concentrations of blood, respectively. Although thermochromic ink currently does not imitate other blood properties such as viscosity and clotting, it has superior merits when color change simulation is a paramount priority. The major advantages of the proposed solution are reusability and cost. Thermochromic ink can be used for multiple simulations without any noticeable change in quality. It also costs significantly less than using actual or artificial blood.
Results:
Testing results of the proposed solution in extracorporeal membrane oxygenation (ECMO) simulation has proven its efficacy as a practical solution for medical simulations (see Figure 1). To prevent membrane occlusion because of the thermochromic ink, the latter needs to be pierced. In addition to ECMO simulation, other medical applications are being considered.
Conclusions:
The use of thermochromic ink in medical training provides reproducible color change simulation features of blood while maintaining significantly lower equipment costs and contamination risks as all circuit components can be reused.
Hamad bin Khalifa University Press (HBKU Press)
Title: Using thermochromic ink for medical simulations
Description:
Background:
In medical simulation and training, blood is used to exhibit its different behaviors in context.
In some cases, blood color differential is an imperative visual effect to ensure high-fidelity training and practical understanding.
High simulation realism is usually achieved by using animal or artificial blood (which mimics some biological features of blood), which has high cost, requires disposable equipment such as oxygenators, and entails contamination or infection risks.
Methods:
A novel method for blood simulation is introduced.
Using the thermal properties of thermochromic ink, its color can be altered by adjustment of temperature.
1
The unique red color of blood can be mimicked to a high fidelity using a custom hue of thermochromic ink.
Then, by adjusting its temperature, realistic dark and bright red can be employed to simulate the low and high oxygen concentrations of blood, respectively.
Although thermochromic ink currently does not imitate other blood properties such as viscosity and clotting, it has superior merits when color change simulation is a paramount priority.
The major advantages of the proposed solution are reusability and cost.
Thermochromic ink can be used for multiple simulations without any noticeable change in quality.
It also costs significantly less than using actual or artificial blood.
Results:
Testing results of the proposed solution in extracorporeal membrane oxygenation (ECMO) simulation has proven its efficacy as a practical solution for medical simulations (see Figure 1).
To prevent membrane occlusion because of the thermochromic ink, the latter needs to be pierced.
In addition to ECMO simulation, other medical applications are being considered.
Conclusions:
The use of thermochromic ink in medical training provides reproducible color change simulation features of blood while maintaining significantly lower equipment costs and contamination risks as all circuit components can be reused.
Related Results
Properties and Characterization of Temperature-Responsive Asphalt by Using Thermochromic Powder
Properties and Characterization of Temperature-Responsive Asphalt by Using Thermochromic Powder
Abstract
Asphalt pavement absorbs solar energy efficiently during the summer and loses heat rapidly during the winter because of its black color, which leads to rutt...
Evaluating the Chemical Resistance and Performance of Thermochromic Polymers for Food Packaging
Evaluating the Chemical Resistance and Performance of Thermochromic Polymers for Food Packaging
The use of thermochromic pigments in food packaging offers several advantages, including improved food safety, waste reduction, and temperature change monitoring. However, little i...
Evaluating the Chemical Resistance and Performance of Thermochromic Polymers for Food Packaging
Evaluating the Chemical Resistance and Performance of Thermochromic Polymers for Food Packaging
The use of thermochromic pigments in food packaging offers several advantages, including improved food safety, waste reduction, and temperature change monitoring. However, little i...
Thermochromic wool fabric was prepared via grafting thiol-modified thermochromic microcapsule
Thermochromic wool fabric was prepared via grafting thiol-modified thermochromic microcapsule
Abstract
Thermochromic microcapsules have excellent reversible discoloration and encapsulation properties and have been widely used in the development of color-changing sma...
Solvents interactions with thermochromic print
Solvents interactions with thermochromic print
In this study, the interactions between different solvents (benzene, acetone, cyclohexanone, various alcohols and water) and thermochromic printing ink were investigated. Thermochr...
Modeling, Simulation and Testing of Atomization Temperature Change Point of Thermochromic Glass for Building Energy Saving
Modeling, Simulation and Testing of Atomization Temperature Change Point of Thermochromic Glass for Building Energy Saving
Thermochromic glass possesses great potential for reducing the energy demand and providing indoor comfort in buildings. Suitable atomization temperature change points have a great ...
Synthesis and Deposition of Thermochromic VO2 Thin Films from Peroxide-based Chemical Solutions
Synthesis and Deposition of Thermochromic VO2 Thin Films from Peroxide-based Chemical Solutions
In this paper, a novel synthesis for a chemical precursor for nanocrystalline VO2 coatings is elaborated. The compatibility of the precursor towards the substrate is optimized for ...
Synthesis and Deposition of Thermochromic VO2 Thin Films from Peroxide-based Chemical Solutions
Synthesis and Deposition of Thermochromic VO2 Thin Films from Peroxide-based Chemical Solutions
In this paper, a novel synthesis for a chemical precursor for nanocrystalline VO2 coatings is elaborated. The compatibility of the precursor towards the substrate is optimized for ...

