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腹部出血的近紅外光場分布模型仿真

Model simulation of near-infrared light field distribution for abdominal bleeding

作者: 王紅珂  王宏  張言  江瑩旭  劉玉冰  李韙韜 
單位:南京航空航天大學(xué)自動(dòng)化學(xué)院生物醫(yī)學(xué)工程系(南京211100)
關(guān)鍵詞: Monte  Carlo仿真;近紅外光譜;腹部檢測;檢測深度;陣列式分布 
分類號:R318.04
出版年·卷·期(頁碼):2016·35·5(448-454)
摘要:

目的 針對腹部閉合性損傷和腹部出血診斷的困難,近紅外光譜技術(shù)是一種無創(chuàng)傷、無污染的腹部出血檢測的新方法。 方法 采用Monte Carlo方法仿真近紅外光場分布模型。首先,建立了腹部多層組織的生物學(xué)模型。然后,為探究腹腔體液和血液對光子的吸收情況,對正常腹部和腹部出血時(shí)的光強(qiáng)信號進(jìn)行了仿真模擬。通過探究光源和探測器間距不同時(shí)的光強(qiáng)分布來確定腹部出血位置。同時(shí),為確定出血量對檢測信號的影響和近紅外光在腹部的檢測深度,還對出血體積和檢測深度的規(guī)律進(jìn)行探究。結(jié)果 在模擬腹腔體液和血液對光子吸收時(shí),二者對光子的吸收有較大區(qū)別。出血位置的仿真結(jié)果表明,當(dāng)出血位置在光源和探測器連線的中心位置靠光源側(cè)時(shí)檢測深度最深。近紅外光在腹部的檢測深度為48mm。在一定范圍內(nèi),光強(qiáng)信號與出血體積成反比。結(jié)論 近紅外光譜技術(shù)可以實(shí)現(xiàn)對淺層腹部出血進(jìn)行檢測,并且具有較好的靈敏度。

Objective In view of the difficulty in diagnosis of the closed injury of abdomen and the abdominal bleeding, near-infrared spectroscopy is a non invasive,non-polluting new method for abdominal bleeding detection. Methods Monte Carlo method was adopted to simulate the near-infrared light field distribution model. First of all, we established the abdominal multi-layered biology model. Then, in order to explore the photon absorption between the hydrops abdominis and the blood, a simulation of the light intensity signal between the normal abdomen and the abdominal hemorrhage was made. To determine the location of abdominal bleeding, the article studied the light intensity distribution when the distance between the source and the detector was different. Meanwhile, the article also studied the law of the bleeding volume and the detecting depth to determine the influence of the bleeding on the detection signal and the detecting depth of near-infrared light in the belly. Results In the simulation of seroperitoneum and blood on the absorption of a photon, there was a great difference on the absorption of photons. The simulation results of the bleeding site showed that the detecting depth at the central position of the source and detector line and on the side of the source is the deepest. The detecting depth of abdominal bleeding is 48mm. With a given range, light intensity was in inverse proportion to bleeding volume. Conclusions Near infrared spectrum technology can detect the shallow abdominal bleeding with good sensitivity.

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