蜂巢结构的应用与研究应用.docx
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1、J I A N G S U U N I V E R S I T Y蜂巢构造仿生研究与应用 学院名称: 京江学院 专业班级: J高分子1101 学生姓名: 胡文文 学 号: 41211260 16 指引教师: 吴平 12月Estimation of human-hemoglobin using honeycomb structure:An application of photonic crystalabstract This paper proposes a method to estimate the hemoglobin concentration in human blood using
2、 2D honeycomb photonic crystal structure. Though a few works deal with similar kind of investigation,presentresearch delivers an accurate estimation of hemoglobin as compared to previous works. The principleof investigation is based on linear variation of both photonic band gap and absorbances with
3、respect to different concentration of hemoglobin in human blood. Aside these variations,energy transmittedthrough honeycomb photonic crystal structure is also varied linearly with respect to same concentration.In this work,photonic band gap of honeycomb structure is found using plane wave expansion
4、method,whereas absorbance of same structure is computed by employing Maxwell Curl equation. Finally,simulation result revealed that transmitted energy through two dimensional honeycomb photonic crystalstructure containing blood is nicely fitted with linear trend line (R2 = 1) which lead to an accura
5、te investigation of hemoglobin in human blood. At last,this paper proposes an experimental set up to measurethe said concentrations with the help of an Arduino developmentboard(Uno)containingAtmega320microcontroller.Keywords:Honeycomb photonic crystal structurePhotonic band gapTransmitted energ1. In
6、troductionPhotonics crystals are made,artificially created materials inwhich refractive index is periodically modulated in a scale comparable to the scale of the wavelength. Though the concept ofphotonic crystal has originated in the year 1857 by Lord Rayleigh,the research work in the field of photo
7、nic crystals is realized afteralmost 100 years,when Yablonovitch and John published twomilestone papers on photonic crystals in 1987 13,since then,photonics have been progressing hastily and showing a remarkableresearch in the field of science and technology. As far as,application of photonic-device
8、s are concerned,photonic crystal play animportant role to envisage various application in modern technology 46. Though photonic crystal is used for different application,sensing application is one of the major relevance in photonics. As faras literature surveys on sensing application using photonic
9、crystalstructure is concerned,recently few papers deal with similar typeof research 713. Considering a brief remark on above references,it is seen that reference 7 presents a novel method to find out theconcentration of sugar,salt,and alcohol in their aqueous solution.In this case,the author used 2D
10、 photonic crystal structure with11 11 air holes.Also using same technique,concentration of PAMhydrogel and strength of Cygel is investigated in Refs. 8,9,respectively. Also in Refs. 10,11,the concentration of potassium chloridein their aqueous and intrallipid in human blood is estimated usingphotoni
11、c crystal fiber. Apart from these,measurement of glycerolin BHG solution and concentration of hemoglobin in humanblood is investigated using 3D photonic crystal structure in Refs.12,13,respectively. Though Ref. 13 measures the concentrationof hemoglobin in human blood using 3D photonic crystal struc
12、ture,it is hard to fabricate 3D owing to photonic crystal structure. We inthis paper investigate the concentration of hemoglobin in humanblood using 2D honeycomb photonic crystal structure. The reasonfor choosing such structure is that it can be easily fabricated;secondly,these structures predict ac
13、curate result as compared to 3Dphotonic crystal structure,which is carried out in Ref. 13.Hemoglobin is a main component of the blood,which isimportant for transportation of oxygen in blood,which leadsto circulation of blood in vein. This circulation of human bloodsystem has default functions,such a
14、s supply of oxygen to tissues,supply of nutrients such as glucose,amino acids,and fattyacids,removal of waste such as carbon dioxide,urea,lactic acid,immunological functions,including circulation of white cells,anddetection of foreign materials by antibodies,coagulation,messenger functions,regulatio
15、n of body PH,regulation oh core bodytemperature hydraulic function etc. for normal human body. Adeficiency of hemoglobin in human blood creates serious problemsuch as downstream tissue dysfunction,Leukemia,iron deficiency,anemia,multiple myeloma,etc. 1417. Keeping the importanceof hemoglobin in huma
16、n blood,this paper estimates the concentration of hemoglobin in both oxygenated and deoxygenatedblood.This paper is organized as follows:Section 2 presents the structure of the honeycomb photonic crystal structure including theprinciple of measurement. Simulation result and interpretation ismade in
17、Section 3. Section 4 proposes an experimental set up andfinally conclusions are drawn in Section 5.2. Honeycomb structure and principle of measurementAs far as measurement of hemoglobin in human blood is concerned,we use 2D honeycomb photonic crystal structure for thesame,which is shown in Fig. 1.Fi
18、g. 1 represents honeycomb photonic crystal structure having gallium Arsenide as background material containing air holes,where bloods with different percentage (g/L) of hemoglobin areinfiltrated. The proposed structure consists of 9 numbers of air holessuch that diameter of air holes is 420 nm and l
19、attice spacing of thestructure is 1 m. The principle of measurement is based on linear variation of reflected energy and absorbance with respect toconcentration of hemoglobin in human blood. When light havingwavelength of 589 nm incident on honeycomb structure containingblood with different percenta
20、ge of hemoglobin then,some amountof light will get reflect and some amount of light will be absorbed bythe structure. The rest amount of light will be transmitted throughthe structure. Since the principle is based on linear variation ofboth reflected and absorbance,intensity transmitted through hone
21、ycomb structure also varies linearly with respect to hemoglobinconcentration in the blood which is a key factor (linear variation)to realize accurate investigation of hemoglobin in human blood.We use simple mathematical equation to find out the reflectedenergy,absorbance and transmitted energy for i
22、nvestigation ofhemoglobin. As far as,energy reflected from honeycomb structure is concerned,it is obtained from dispersion diagram,whichis carried out by employing plane wave expansion method 18In this case,we computed normalized frequency (a/) fromdispersion diagram,then the values of reflected ene
23、rgy (ER) is calculated using following simple equation:ER=hc/R,where R is reflected wavelength,which is found from dispersion diagram.Since,wavelength 589 nm is used to investigate hemoglobinconcentration;the energy of incident light (EI) corresponding tothis wavelength is found using following expr
24、ession.EI (2)where is the incident wavelength (589 nm)Using (1) and (2),the energy transmitted through the structureis written asET = E0 ER (3)Eq. (3) represents as transmitted energy without considerationof absorption loss. However,from literature it is found that GaAsstructure and blood with diffe
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