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Home NEWS Science News Health

Artificial Intelligence searches an early sign of osteoarthritis from an x-ray image – might save from unnecessary treatments and examination

Bioengineer by Bioengineer
December 15, 2022
in Health
Reading Time: 5 mins read
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Spiking on the tibial tubercles in the knee joint
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Researchers from the University of Jyväskylä and the Central Finland Health Care District have developed an AI based neural network to detect an early knee osteoarthritis from x-ray images. AI was able to match a doctors’ diagnosis in 87% of cases. The result is important because x-rays are the primary diagnostic method for early knee osteoarthritis. An early diagnosis can save the patient from unnecessary examinations, treatments and even knee joint replacement surgery.

Osteoarthritis is the most common joint-related ailment globally. In Finland alone, it causes as many as 600 000 medical visits every year. It has been estimated to cost the national economy up to €1 billion every year.

The new AI based method was trained to detect a radiological feature predictive of osteoarthritis from x-rays. The finding is not at the moment included in the diagnostic criteria, but orthopaedic specialists consider it as an early sign of osteoarthritis. The method was developed in Digital Health Intelligence Lab at the University of Jyväskylä as a part of the AI Hub Central Finland project. It utilises neural network technologies that are widely used globally.

“The aim of the project was to train the AI to recognise an early feature of osteoarthritis from an x-ray. Something that experienced doctors can visually distinguish from the image, but cannot be done automatically”, explains Anri Patron, the researcher responsible for the development of the method.

In practice, the AI tries to detect whether there is spiking on the tibial tubercles in the knee joint or not. Tibial spiking can be a sign of osteoarthritis.

The reliability of the method was evaluated together with specialists from the Central Finland Healthcare District.

“Around 700 x-ray images were used in developing the AI model, after which the model was validated with around 200 x-ray images. The model managed to make an estimate of the spiking that was congruent with a doctors’ estimate in 87% of the cases, which is a promising result”, Patron describes.

AI can support early diagnosis of osteoarthritis in primary health care

Spiking on the tibial tubercles in the knee joint

Credit: University of Jyväskylä.

Researchers from the University of Jyväskylä and the Central Finland Health Care District have developed an AI based neural network to detect an early knee osteoarthritis from x-ray images. AI was able to match a doctors’ diagnosis in 87% of cases. The result is important because x-rays are the primary diagnostic method for early knee osteoarthritis. An early diagnosis can save the patient from unnecessary examinations, treatments and even knee joint replacement surgery.

Osteoarthritis is the most common joint-related ailment globally. In Finland alone, it causes as many as 600 000 medical visits every year. It has been estimated to cost the national economy up to €1 billion every year.

The new AI based method was trained to detect a radiological feature predictive of osteoarthritis from x-rays. The finding is not at the moment included in the diagnostic criteria, but orthopaedic specialists consider it as an early sign of osteoarthritis. The method was developed in Digital Health Intelligence Lab at the University of Jyväskylä as a part of the AI Hub Central Finland project. It utilises neural network technologies that are widely used globally.

“The aim of the project was to train the AI to recognise an early feature of osteoarthritis from an x-ray. Something that experienced doctors can visually distinguish from the image, but cannot be done automatically”, explains Anri Patron, the researcher responsible for the development of the method.

In practice, the AI tries to detect whether there is spiking on the tibial tubercles in the knee joint or not. Tibial spiking can be a sign of osteoarthritis.

The reliability of the method was evaluated together with specialists from the Central Finland Healthcare District.

“Around 700 x-ray images were used in developing the AI model, after which the model was validated with around 200 x-ray images. The model managed to make an estimate of the spiking that was congruent with a doctors’ estimate in 87% of the cases, which is a promising result”, Patron describes.

AI can support early diagnosis of osteoarthritis in primary health care

Docent Sami Äyrämö, Head of the Digital Health Intelligence Laboratory at the University of Jyväskylä, explains that the development of AI models diagnosing early osteoarthritis is active globally.

“Several AI models have previously been developed to detect knee osteoarthritis. These models can detect severe cases that would be easily detected by any specialists. However the previously developed methods are not accurate enough to detect the early-stage manifestations. The method now being developed aims for, in particular, early detection from x-rays, for which there is a great need.”

The goal is that in the future, an AI would be able to detect early signs of knee osteoarthritis from x-rays, making it possible for the initial diagnosis to be made more often by general practitioners.

The project was carried out in collaboration with the Central Finland Health Care District. H CEO for Central Finland Health Care disctrict and professor of surgery Juha Paloneva says that early stage osteoarthritis can be effectively treated.

“If we can make the diagnosis in the early stages, we can avoid uncertainty and expensive examinations such as MRI scanning. In addition, the patient can be motivated to take the measures to slow down or even stop the progression of the symptomatic osteoarthritis. In the best possible scenario, the patient might even avoid joint replacement surgery”, Paloneva sums up.

More information

Researcher Anri Patron
[email protected]

Docent Sami Äyrämö
Head of Digital Health Intelligence Laboratory
[email protected]
+358 50 325 5685

Professor of General Surgery Juha Paloneva
Chief Medical Director of Central Finland Healthcare District
+358 50 336 3695

Digital Health Intelligence Laboratory operates in the Faculty of Information Technology at University of Jyväskylä. The aim of the laboratory is to develop intelligent knowledge-based solutions to real-world problems that are central to promoting human health and wellbeing. The AI Hub Central Finland project has received funding from the European Regional Development Fund (ERDF).

Research article Patron, A., Annala, L., Lainiala, O., Paloneva, J., & Äyrämö, S. (2022). An Automatic Method for Assessing Spiking of Tibial Tubercles Associated with Knee Osteoarthritis. Diagnostics, 12(11), Article 2603. https://doi.org/10.3390/diagnostics12112603



Journal

Diagnostics

DOI

10.3390/diagnostics12112603

Method of Research

Observational study

Subject of Research

People

Article Title

An Automatic Method for Assessing Spiking of Tibial Tubercles Associated with Knee Osteoarthritis

Article Publication Date

27-Oct-2022

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