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Development of Optical Multiparameter Blood Coagulation Analysing System

机译:光学多参数血液凝结分析系统的开发

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Blood coagulation analysis helps the doctors diagnose the disease about the patients' blood. Nowadays, many ways can be used to accomplish the job, such as: optical method, current method, dry reagent method and ultrasonic method. In this paper, a new system for analysing the blood coagulation based on Labview and optical method is introduced. In order to realize the multiparameter measurement, four LEDs whose light beams are collimated by the lens are used as the light sources to illuminate the blood sample in the tube, two of those are blue LEDs with the wavelength of 405nm, the other two are red LEDs with the wavelength of 660nm: the light of LEDs is modulated to avoid the influence of stray light. The light emitted from the fifth LED produces the reference light for compensating the voltage fluctuation. The transmitted light are accepted by silicon photocells on the other side of the tube. During the measurement process, the blood sample is kept 37 degrees constantly using temperature control system. With the coagulant being added into the sample, the plasma begins to congeal, the output signal of the silicon photocells changes. The interface and data process software is programmed based on Labview. The digital data after AD conversion is processed using a 2nd ordered low pass Butterworth to get rid of the additional noise. The new developed system based on four LEDs and Labview can have many items about blood coagulation measured than the conventional system.
机译:凝血分析可帮助医生诊断有关患者血液的疾病。如今,可以使用许多方法来完成这项工作,例如:光学方法,电流方法,干试剂方法和超声方法。本文介绍了一种基于Labview和光学方法的血液凝固分析新系统。为了实现多参数测量,将四个光束通过透镜准直的LED用作照明管中血液样本的光源,其中两个是波长为405nm的蓝色LED,另外两个是红色的波长为660nm的LED:调制LED的光以避免杂散光的影响。从第五LED发射的光产生用于补偿电压波动的参考光。透射光被灯管另一侧的硅光电电池接收。在测量过程中,使用温度控制系统将血液样本恒定保持在37度。将凝结剂添加到样品中后,等离子体开始凝结,硅光电池的输出信号发生变化。接口和数据处理软件是基于Labview进行编程的。使用第二阶低通巴特沃斯处理AD转换后的数字数据,以消除额外的噪声。与传统系统相比,基于四个LED和Labview的新开发系统可以测量许多有关凝血的项目。

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