▼ Fujitsu, University Of Tokyo Hospital To Research AI In Fight Against Heart Disease
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Fujitsu Ltd has started joint clinical research with the University of Tokyo Hospital to verify the effectiveness of artificial intelligence technology to estimate abnormal heart movements based on electrocardiogram data. The research commenced at the University of Tokyo Hospital on Oct 25.
Since December 2019, Fujitsu has been making progress with research and development of proprietary AI technology in collaboration with the University of Tokyo Hospital.
This research draws on data from patients that have visited the University of Tokyo Hospital to date and includes approximately 630,000 pieces of electrocardiographic data and data from approximately 140,000 cardiac ultrasounds (echocardiography).
This initiative has now succeeded in detecting patients with abnormal heart movements with high accuracy.
The AI will be used in clinical field research to estimate the presence or absence of abnormal heart movements based on the data of patients undergoing electrocardiographic procedures at the University of Tokyo Hospital.
Patients identified by the AI as having abnormal heart movements will undergo echocardiography, and the effectiveness will be verified by comparing the results of doctors’ diagnosis with the results predicted by the AI. Fujitsu will leverage this AI to detect heart disease at an early stage to prevent progression to serious illness in patients and strengthen its vision of "Healthy Living", promoting well-being for people throughout society.
Background
Heart disease is the second leading cause of death in Japan, and electrocardiography, which detects abnormalities in the heart muscle and irregular pulses based on the waveform of electrical pulses in the heart, is widely used as a diagnostic tool to detect heart disease at an early stage. It remains difficult, however, to detect abnormalities in the shape and movement of the heart using only electrocardiograms.
In medical practice, in addition to electrocardiography, doctors use a stethoscope to detect abnormal heart sounds (murmurs, arrythmia, etc.) based on the patient's description of their symptoms, followed by echocardiography to detect abnormalities in heart shape and movement.
However, because echocardiographic diagnostics can only be performed in a limited number of facilities with specialized doctors and laboratory technicians, it is difficult to offer this for all patients.
This makes early detection difficult, and when problems are detected, the progression of the disease may already be advanced. In the treatment of heart disease, early detection and appropriate treatment are a vital issue in medical practice.
Since December 2019, in collaboration with a research group headed by Dr Katsuhito Fujiu, Project Associate Professor, and Dr Issei Komuro, Professor in the Department of Cardiovascular Medicine at the University of Tokyo Hospital, Fujitsu has been engaged in research and development utilizing AI to detect heart disease from electrocardiogram data, leveraging Fujitsu's proprietary waveform analysis technology, TDA (topological data analysis).
Going forward, Fujitsu will work to verify the effectiveness of AI in actual medical practice to estimate the presence or absence of abnormalities in cardiac function from electrocardiogram data, and will start clinical research at the University of Tokyo Hospital.
Fujitsu will install a server equipped with AI to detect abnormalities in heart movement of patients and connect it to a server that stores electrocardiogram data, analyze the patient's electrocardiogram, and estimate the presence or absence of abnormal heart movements.
Echocardiography is performed on patients the AI predicts to have abnormal heart movements, and doctors determine whether heart disease is present.
Based on the electrocardiogram data of patients examined at the hospital, Fujitsu and the university will verify the effectiveness of detection of abnormal heart movement by AI.
- October 31, 2021
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In modern production environments, efficiency and product functionality must work together. <a href="https://firstmold.com/two-shot-injection-molding/">two shot injection molding process</a> has become a widely adopted solution for producing plastic components that require layered design features within a single manufacturing cycle. Instead of assembling separate parts later, this method forms them simultaneously, saving time and improving structural strength.
Ideal for Advanced Product Structures
Many modern products require more than one material to function properly. The two shot injection molding method allows manufacturers to use dual resins in one cycle within the same mold. This makes it possible to produce items with contrasting textures and strengths without additional assembly steps.
The result is a finished component that is structurally bonded, visually refined, and production-ready. This capability is especially useful for industries such as electronics, automotive, and medical devices where both performance and appearance matter.
Fewer Production Steps
Traditional manufacturing often requires separate molding and assembly processes for multi-material parts. With two shot molding, both stages happen in one automated cycle. This reduces handling, lowers labor costs, and minimizes alignment errors that may occur when joining separate pieces.
Because fewer steps are involved, manufacturers can improve throughput while maintaining consistent quality. This streamlined approach also simplifies supply chains since fewer components need to be stored or transported before final assembly.
Stronger Bonding Between Materials
One of the main advantages of this method is the strong bond formed between materials. Since the second material is molded directly onto the first while it is still in optimal condition, the connection becomes highly durable. This eliminates the need for adhesives or mechanical fasteners.
Such bonding strength is essential for products that must endure repeated use, temperature changes, or mechanical stress. The finished parts maintain their shape and performance over time, which improves reliability and reduces product failure rates.
Aesthetic Flexibility Built In
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Adopting two shot injection molding allows manufacturers to produce advanced plastic parts using a single integrated process. With its ability to combine materials, streamline workflows, and maintain precision, this technique continues to be a valuable manufacturing solution for companies seeking efficiency and product differentiation in competitive markets.
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