Deutsch

Nanchang University has made progress in intelligent photoacoustic tomography imaging

816
2024-08-13 15:14:55
Übersetzung anzeigen

Photoacoustic tomography (PAT) is a novel hybrid medical imaging technique that enables precise imaging of biological tissue structures at different spatial scales. It has been widely used in various fields, including brain imaging, cancer detection, and cardiovascular disease diagnosis. However, due to limitations in data acquisition conditions, photoacoustic tomography systems typically can only collect photoacoustic signals from a limited detection angle, which inevitably leads to a decrease in the image quality of photoacoustic tomography. How to achieve high-quality reconstruction under limited perspective sampling has always been an urgent problem that PAT needs to solve.

Recently, a research team from the Imaging and Visual Representation Laboratory at Nanchang University proposed a high-quality photoacoustic tomography imaging method based on a fractional diffusion model under limited viewing angles. The achievement was published in Photoacoustics, a top journal in the field of optoacoustics, under the title "Score based generative model assisted information compensation for high-quality limited view reconstruction in photoacoustic tomography".

Main research content
The research team proposed a photoacoustic tomography reconstruction method based on the fractional diffusion model. During the training phase, the model learns the data distribution of the samples by gradually adding noise to the existing samples. In the reconstruction stage, this method uses the prior information about image reconstruction learned by the diffusion model as the regularization term in the iterative reconstruction algorithm, and through cyclic iteration, high-quality photoacoustic tomography imaging under limited viewing angles can be achieved.

Figure 1. Process diagram of PAT reconstruction based on diffusion model method from a limited perspective.

As a validation, the research team evaluated the performance of the proposed method using experimental data from circular phantoms and live mice. In the circular phantom reconstruction experiment, this method was compared with traditional delay summation method (DAS), gradient descent method without regularization term (GD), gradient descent method with Tikhonov regularization term, U-Net method, and GAN method. The results are shown in Figure 2. The proposed method shows higher quality and clearer contours in the reconstruction results under different limited viewing angles. At a limited viewing angle of 70 °, the proposed method achieved peak signal-to-noise ratio (PSNR) and structural similarity (SSIM) of 31.57dB and 0.95, respectively, which were improved by 203% and 48% compared to the delay summation method.

Figure 2. Reconstruction results of circular phantom.
From the experimental results of the simulated small balls and live mice (experimental data), it can be seen that this method still has good performance (Figure 3). Specifically, in extremely limited detection angles (such as a 90 ° limited angle), this method outperforms the U-Net method significantly. In live mouse experiments, this method achieved an SSIM/PSNR of 0.80/29.18 dB in reconstructed images with a limited viewing angle of 90 °. Compared to the U-Net method, the PSNR increased by 64% and the SSIM increased by 48%.

Figure 3. Reconstruction results of live data from different detection perspectives.

Conclusion and Prospect
This study proposes a new high-quality photoacoustic tomography imaging strategy based on the fractional diffusion model under limited viewing angles. This method combines the physical model of PAT with the diffusion model, and introduces high-dimensional prior information learned by the diffusion model deep network in the model-based iteration process. This method significantly improves the imaging quality and effectively solves the problem of image quality degradation caused by limited viewing angle sampling in PAT, with the potential to accelerate PAT imaging speed and expand its application range.

Guo Kangjun, master's student Zheng Zhiyuan, master's student Zhong Wenhua, and master's student Li Zilong from Nanchang University are co first authors of the article. Professor Liu Qiegen and Associate Professor Song Xianlin are co corresponding authors. This study was supported by the National Natural Science Foundation of China and the Key Research and Development Project of Jiangxi Province.

Source: Opticsky

Ähnliche Empfehlungen
  • Laser based ultra precision gas measurement technology

    Laser gas analysis can achieve high sensitivity and selectivity in gas detection. The multi-component capability and wide dynamic range of this detection method help analyze gas mixtures with a wide concentration range. Due to the fact that this method does not require sample preparation or pre concentration, it is easy to adopt in the laboratory or industry.Gas analysis is crucial for determining...

    2024-01-03
    Übersetzung anzeigen
  • 2D photoelectric neuron array can achieve broadband and low loss optical nonlinearity accessible to ambient light

    Light can calculate functions during propagation and interaction with structured materials, with fast speed and low energy consumption. The use of all optical neural networks for general computing requires an optical activation layer with nonlinear dependence on the input. However, existing optical nonlinear materials either have slow speeds or very weak nonlinearity at the level of natural light ...

    2024-03-20
    Übersetzung anzeigen
  • The output power of high power femtosecond laser breaking through the key bottleneck of average power can reach the order of 100 watts

    High energy, high average power femtosecond laser due to the attosecond high order harmonic generation, precision processing and manufacturing, biomedical and national defense and other fields of extensive application needs, is the forefront of ultrafast super laser technology research in the past decade.Especially fiber laser due to stable and reliable operation characteristics, compact structure...

    2023-09-04
    Übersetzung anzeigen
  • Coherent launches 12 kW sheet metal laser cutting processing head

    Recently, Coherent, an industrial laser technology giant, announced the launch of a new 2D laser cutting head - CUT12, which combines excellent performance, high versatility, and profound value for the global flat cutting market. Image source: CoherentThe CUT12 sheet metal laser cutting processing head is perfectly compatible with fiber lasers in the power range of 4 kW-12 kW (continuous wave),...

    2024-10-29
    Übersetzung anzeigen
  • Stratasys Ltd. receives a $120 million investment from Fortissimo Capital

    It is reported that Stratasys Ltd. (NASDAQ: SSYS) announced on February 2nd that it has received a $120 million investment from Fortissimo Capital, an Israeli private equity firm. This transaction directly purchases 11.65 million newly issued shares at a price of $10.30 per share, representing a premium of 10.6% compared to the company's closing price on January 31, 2025. As of press time, it has ...

    02-05
    Übersetzung anzeigen