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1.
Chinese Journal of Medical Instrumentation ; (6): 95-100, 2020.
Article Dans Chinois | WPRIM | ID: wpr-942707

Résumé

Fluorescent Diffuse Optical Tomography (FDOT) is an emerging imaging method with great prospects in fields of biology and medicine. However, the current solutions to the forward problem in FDOT are time consuming, which greatly limit the application. We proposed a method for FDOT based on Lattice Boltzmann forward model on GPU to greatly improve the computational efficiency. The Lattice Boltzmann Method (LBM) was used to construct the optical transmission model. This method separated the LBM into collision, streaming and boundary processing processes on GPUs to perform the LBM efficiently, which were local computational and inefficient on CPU. The feasibility of the proposed method was verified by the numerical phantom and the physical phantom experiments. The experimental results showed that the proposed method achieved the best performance of a 118-fold speed up under the precondition of simulation accuracy, comparing to the diffusion equation implemented by Finite Element Method (FEM) on CPU. Thus, the LBM on the GPU may efficiently solve the forward problem in FDOT.


Sujets)
Ordinateurs , Fluorescence , Fantômes en imagerie , Tomographie optique/méthodes
2.
Chinese Journal of Medical Instrumentation ; (6): 1-6, 2020.
Article Dans Chinois | WPRIM | ID: wpr-942686

Résumé

Fluorescence Diffuse Optical Tomography (FDOT) is significant for biomedical applications, such as medical diagnostics, drug research. The fluorescence probe distribution in biological tissues can be quantitatively and non-invasively obtained via FDOT, achieving targets positioning and detection. In order to reduce the cost of FDOT, this study designs a FDOT system based on Lattice Boltzmann forward model. The system is used to realize two functions of light propagation simulation and FDOT reconstruction, and is composed of a parameter module, an algorithm module, a result display module and a data interaction module. In order to verify the effectiveness of the platform, this study carries out the light propagation simulation experiment and the FDOT reconstruction experiment, respectively comparing the Monte Carlo (MC) light propagation simulation results and the real position of the light source to be reconstructed. Experiments show that the proposed FDOT system has good reliability and has a high promotion value.


Sujets)
Algorithmes , Simulation numérique , Méthode de Monte Carlo , Dispositifs optiques , Reproductibilité des résultats , Tomographie optique
3.
Chinese Journal of Medical Instrumentation ; (6): 1-6, 2018.
Article Dans Chinois | WPRIM | ID: wpr-774483

Résumé

Getting volume change of hippocampus by segmenting on brain MRI is an important step in the diagnose of Alzheimer's disease and other brain disease. Three dimensional segmentation can make use of the correlation of image in gray and spatial position, so it has high accuracy. This paper proposes a novel three-dimensional lattice Boltzmann model combined with the surface evolution of deformable model and taking the prior information as an external force term to constrain the evolution of three dimensional surfaces. In order to solve the problem of high computational cost caused by 3D segmentation, the parallelization of the method is programmed on single GPU platform and dual GPU platform. Comparison experiments were set to test the accuracy of segmentation and computational efficiency between the novel LB method and another method by using 20 real AD patient's MRI from ADNI. In ensuring the accuracy of the segmentation, the time can be reduced to 12.76 s on single GPU platform, and 17.32 s on dual GPU platform, contrasting 132.43 s on CPU platform. It fully validates the characteristics of lattice Boltzmann method which can be highly parallelized.


Sujets)
Humains , Algorithmes , Hippocampe , Imagerie diagnostique , Imagerie tridimensionnelle , Imagerie par résonance magnétique
4.
Chinese Journal of Medical Instrumentation ; (6): 400-404, 2018.
Article Dans Chinois | WPRIM | ID: wpr-775545

Résumé

In aging society the development of non-invasive continuously blood pressure monitors which are suitable for homes, communities and nursing homes has a wide range of applications. This paper proposes a non-invasive continuously blood pressure monitoring based on wearable device which uses MSP430F5529 as the central processor. The design is divided into signal acquisition module, central control module, display module, power supply module and host computer module. The experimental results showed that DBP (375/390, 96.15%) and SBP estimation values (377/390, 96.67%) are in 95% confidence interval, which means our design passes Bland-Altman test with high accuracy and stability.


Sujets)
Pression sanguine , Mesure de la pression artérielle , Moniteurs de pression artérielle , Alimentations électriques , Dispositifs électroniques portables
5.
Chinese Journal of Medical Instrumentation ; (6): 413-416, 2018.
Article Dans Chinois | WPRIM | ID: wpr-775542

Résumé

Numerical simulation is a powerful technology for photoacoustic imaging (PAI) in both theory studies and practical applications. In this paper, a simulation platform for PAI was designed and implemented based on Matlab. The simulation platform utilized finite element method (FEM) and -space pseudospectral method to calculate the forward and inverse problem of PAI. And a graphical user interface (GUI) was realized. Structural design, work process and other operating details of the platform was also provided. By compared with theoretical temporal waveform of photoacoustic signal and reconstruction results of COMSOL, the validity and reliability was verified. And a reliable simulation tool was proposed for PAI.


Sujets)
Algorithmes , Simulation numérique , Analyse des éléments finis , Techniques photoacoustiques , Reproductibilité des résultats
6.
Chinese Journal of Medical Instrumentation ; (6): 235-239, 2018.
Article Dans Chinois | WPRIM | ID: wpr-689823

Résumé

With the advent of social aging, the development of intelligent multifunctional nursing beds that are suitable for hospitals, nursing homes, homes and the like has a wide range of applications, this paper presents an intelligent nursing bed design based on Internet of Things technology. The design uses STM32F103 as the central processor. The design is divided into nursing bed module based on tri-fold structure, central control module based on data processing, weight scale module based on weight detection, power supply module based on system power supply and host computer module based on user operation. The design uses a closed control mode, greatly improving the bed control accuracy. Experimental tests showed that under the action of the intelligent control bed control system, the error rate of bed position information driven bedboard can be less than 2%, which has high accuracy and stability.


Sujets)
Lits , Conception d'appareillage , Hôpitaux , Internet , Monitorage physiologique , Maisons de repos , Technologie
7.
Chinese Journal of Medical Instrumentation ; (6): 47-51, 2016.
Article Dans Chinois | WPRIM | ID: wpr-265574

Résumé

With the advent of the aging society, there will be a wide range of applications if novel intelligent multifunctional nursing beds can be developed for hospitals, bead houses and families at the same time. By listing and analyzing existing products, this paper summarized four function categories for multifunctional nursing beds, including security assurance, treatment aid, comfortability optimization, and human-machine interaction and communication. Finally, by comparing existing functions and potential user requirements, this paper proposed four function development trends, including physiological parameter monitoring, sleep aid, intelligent temperature control, and video communication.


Sujets)
Lits , Conception d'appareillage , Monitorage physiologique , Soins infirmiers
8.
Chinese Journal of Medical Instrumentation ; (6): 157-161, 2015.
Article Dans Chinois | WPRIM | ID: wpr-310248

Résumé

To meet the need of cost-effective multi-biosignal monitoring devices nowadays, we designed a system based on super low power MCU. It can collect, record and transfer several signals including ECG, Oxygen saturation, thoracic and abdominal wall expansion, oronasal airflow signal. The data files can be stored on a flash chip and transferred to a computer by a USB module. In addition, the sensing data can be sent wirelessly in real time. Considering that long term work of wireless module consumes much energy, we present a low-power optimization method based on delay constraint. Lower energy consumption comes at the cost of little delay. Experimental results show that it can effectively decrease the energy consumption without changing wireless module and transfer protocol. Besides, our system is powered by two dry batteries and can work at least 8 hours throughout a whole night.


Sujets)
Humains , Ordinateurs , Alimentations électriques , Monitorage physiologique , Polysomnographie , Technologie sans fil
9.
Chinese Journal of Medical Instrumentation ; (6): 1-5, 2014.
Article Dans Chinois | WPRIM | ID: wpr-259950

Résumé

Endoscopes have been widely used in ENT (Ear-Nose-Throat) disease diagnosis. This paper mainly designs a high-definition (HD) endoscopic video image system, as a subsystem of digital HD ENT head and neck surgery comprehensive diagnostic workstation, permit to display, record, store and transport of HD video or image, which are needed in clinical examination, diagnosis, treatment and teaching. The system is mainly composed of camera control module, video processing module, video display and storage module, human interactive module and picture & text workstation interactive interface module, etc.


Sujets)
Humains , Endoscopie , Conception d'appareillage , Traitement d'image par ordinateur , Enregistrement sur magnétoscope
10.
Chinese Journal of Medical Instrumentation ; (6): 437-441, 2011.
Article Dans Chinois | WPRIM | ID: wpr-325959

Résumé

With the electronic medical records information system as the core of hospital information platform design, this paper introduces the design of the system which is structured for electronic medical records, and the advantage and effectiveness is also introduced. From the aspects of the concept, system framework, data integration, right frame and safety control, identity index and a clinical pathway, etc, the paper introduces the basic idea and process of the hospital information platform design, with the hospital recording electronic medical records as the core.


Sujets)
Dossiers médicaux électroniques , Systèmes d'information hospitaliers , Systèmes informatisés de dossiers médicaux
11.
Chinese Journal of Medical Instrumentation ; (6): 169-173, 2011.
Article Dans Chinois | WPRIM | ID: wpr-330489

Résumé

This paper presents a method of noninvasive and continuous measurement of blood pressure by pulse wave. The method is realized by extracting the characteristic parameters of human brachial artery pulse wave and developing the stepwise regression equation. The experiment results showed that blood pressure measured by this method was well correlated with which measured by mercury sphygmomanometer. The mean difference of blood pressure was smaller than 3 mmHg, and the standard deviation was smaller than 5 mmHg.


Sujets)
Humains , Pression sanguine , Physiologie , Mesure de la pression artérielle , Méthodes , Moniteurs de pression artérielle , Pouls
12.
Chinese Journal of Medical Instrumentation ; (6): 424-441, 2010.
Article Dans Chinois | WPRIM | ID: wpr-330545

Résumé

Applying FPGA technology in the emulator design becomes more and more popular. This paper describes the hardware and firmware design for SHIC HR6P series emulator based on FPGA structure and technical characteristics, which provides an emulator design method with high integration, high reliability, low cost and easy portability.


Sujets)
Conception d'appareillage , Traitement du signal assisté par ordinateur , Conception de logiciel
13.
Space Medicine & Medical Engineering ; (6)2006.
Article Dans Chinois | WPRIM | ID: wpr-577053

Résumé

1.8?104 s)while the Mumford-Shah model based Level Set algorithm was much faster(5.42 s).Conclusion The Mumford-Shah model based Level Set algorithm can achieve urine sediment examinations accurately with both fast speed and strong robustness to the noise.

14.
Journal of Biomedical Engineering ; (6): 80-83, 2002.
Article Dans Chinois | WPRIM | ID: wpr-334320

Résumé

Computed Tomography(CT) is one of the successful methods, in which mathematical theories are combined with engineering technology. Volume CT will replace the cross-sectional CT that has been widely used. In this paper two new cone vertex orbits, which are circle-and-arc and regular triangular pyramid lines, have been proposed and their complete conditions for exact reconstruction have been obtained. After having studied circle-and-n-line cone vertex orbit which is one of the important orbits in volume CT, we have given a better proof about the complete condition in circle-and-line and circle-and-2-line cone vertex orbit and have obtained some proper conclusions. Finally, we extend the above results to circle-and-n-line vertex orbit. These results will be useful for the design of direct volume imaging.


Sujets)
Algorithmes , Artéfacts , Simulation numérique , Tomodensitométrie , Méthodes
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