| infotek |
2020-12-09 09:18 |
Arizona眼睛模型
简介 |0w~P
s s>J3\PC 人眼光学模型可用来设计眼科用设备,光学系统注定了要与人眼一起使用。本文演示了这样一个模型:Arizona眼睛模型,在Jim Schwiegerling教授的书中有详细描述:《Field Guide to Visual and Ophthalmic Optics》。AZ眼睛模型达到了基于平均临床数据所决定的轴上和轴外像差等级。FRED文件包含了此眼睛模型及几个用来分析它的光源,并包括一个基于想要的屈光度来调整模型的内嵌脚本。 WB;J1TpM7 6aSM*S) 模型 }9}w8R~E lm &^tjx 模型的定义如表1种所示,由半径、圆锥常数、折射率、阿贝数、到下一面的距离等一系列表面组成。一些参数由屈光度(A)来决定。 1}DerX 6 /$*; >4=>f
Table 1. AZ眼睛模型的定义 Jk~UEqr+ 在FRED中使用0屈光度来创建的,光瞳加在了透镜的前面。材料是创建一个新的材料并选择类型“Model Material”,输入的参数是nd和vd. g^n;IE$B lxOqs:b 光源 /C7s vH
vK'9{q|g 多个光源定义来分析该模型的不同特性。图1显示了所以的光源和提示信息告诉您他们可以用来做什么。 |0DP}
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图1. 光源和提示信息使用 }!knU3J 除了“Letter F”之外的所有光源的光线位置设定在了孔径光阑位置处,并增加了pre-propagation distance= -8。尽管光线在光瞳处创建,规定的传输方向相对于光线位置在pre-propagation distance之后。这意味着光束沿着Z轴在眼睛的前面以平行光入射,而不是在光瞳处入射。 y3AL) <[FS%2,0mb 在往下看是内置的脚本用来修改屈光度,使其为4(250mm),光源“Letter F”在视网膜处生成一个字母为F的图像。绿色的光线聚焦的非常好而红色和蓝色光线有一点的模糊。使用Positions Spot Diagram分析工具来观察最为合适。 o@@_J@}# kI]=&Rw
图2. 字母F光源的设定方法光 Yoe les- j Q^Yj"6
图3. 字母F在视网膜上位置点列图 (V^QQ !: 视网膜的散射 m^Rd Iy) gpsrw>nw 在散射文件中,有一个名为“Retina surface”的72%的反射型朗伯散射,它为视网膜的散射提供了一个粗略的近似。为了模拟来自视网膜的散射,改变自定义元件“Eye ball” 下的视网膜的表面从“halt all” 到”Allow All”。并使几何中“plane”可追迹。 &
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图4. 视网膜朗伯散射设定 jUZ[`f; 注意在视网膜的表面有散射重点采样规格定义,在“Scatter”标签的底部可获取该信息。“toward pupil”指定散射光朝向光瞳,半角度10度。 {;;eOxOP| s|KfC># h
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图5. 视网膜重点采样规格设定 ?^ eJ: 脚本 L&rO6 zH'!fhcy 内置脚本使用对话框显示屈光度和光瞳直径的数值设置。使用FRED Basic脚本创建和使用对话框非常容易。图6显示了如何获取用户自定义对话框,如下图所示: QZ:v UT% #K %
图6. 用户对话框的创建与编辑 yh4jRe?f
图7. 用户对话框编辑器 =cknE= 如果“OK”按钮按下,将会核对对话框下面的代码行,如果点击取消则脚本终止。然后输入的参数赋予变量,如果此处是保留为空白,则使用默认值。因此,如果没有值输入并点击“OK”按钮,则脚本是以屈光度为0,光瞳直径为4mm来运行的。 XZ;*>( 余下的脚本计算与屈光度有关的所有参数。
]&/0 tvK rc 分析 7kOE/>P? ?F!W# 屈光度为4,光瞳直径为4mm,字母F点在视网膜上所成的像。 y K=S!7p\ c-v*4b/d
图7. 字母F在视网膜上颜色分析 \}n !yYh( 脚本代码 pEJ#ad 7d%A1}Bq$ Option Explicit 'Remove this to enable non-dimensioned variables to be used. PlF89- ;cnnqT6 Dim entity As T_ENTITY +q$xw}+PK Dim op As T_OPERATION HarYV : Dim mat As T_MODELMATERIAL B?!9W@ Dim A As Double <tGI]@Nwk Dim pupilDiam As Double p`pg5R Dim eID As Long J,.j_ii`! Dim parID As Long N,h1$)\B# Dim count As Integer Dg1kbO=2 Dim taq As Double, Rant As Double, CCant As Double, Rpost As Double, CCpost As Double i#Ne'q;T Dim tlens As Double, nlens As Double 5F% h>tqh Dim curv As Double, conic As Double z0=Rp0_W Dim ok As Long J~M H_N U#OWUZ Sub Main X!7cz t ab8oMi`z
'用户输入对话框 XPGL3[w\V Begin Dialog UserDialog 320,126,"Input parameters" ' %GRID:10,7,1,1 F]/L! TextBox 220,21,40,21,.TextBox1 'default: 0 -ryDsq Text 20,21,190,21,"Accommodation (in Diopters):",.Text1,1 5@GD} oAn6 OKButton 40,91,90,21 &Bj,.dD/a CancelButton 190,91,90,21 ppPG+[ cz Text 20,49,190,14,"Pupil diameter (4 mm default):",.Text2,1 pE$|2v TextBox 220,49,40,21,.TextBox2 'default: 4 VyB\]EBu End Dialog -[i40
1 Dim dlg As UserDialog ey'pm\Z tn(?nQN3 ok = Dialog (dlg) Tb5$ 8<E!rn- If ok=0 Then 'cancel button was pressed -lJx%9> Print "Execution cancelled." $]Q*E4(kV9 End @&!=m]D* End If e|2vb
GQ 2GHXn:V 'Assign accommodation and pupil diameter & use defaults if field left empty o|zrD~&$ If dlg.TextBox1 = "" Then $.suu^>^w A = 0 'Default accommodation ]
P:NnKgK Else 8MYLXW6 A = CDbl(dlg.TextBox1) ^&f{beU9 End If h(+m<J
c4!c_a2pS If dlg.TextBox2 = "" Then Q#yu( pupilDiam = 4 'Default pupil diameter &hSnB~hi Else {ar5c&< pupilDiam = CDbl(dlg.TextBox2) CF4Oh-f
End If tEpIyC GFASF,+ Print " " =8$(i[;6w Print "Accommodation = " & A & " Diopters" |o; j0 Print "Pupil Diameter = " & pupilDiam & " mm"
L@g Q L c<JM1 ' Calculate new parameters with accommodation e]dPF[?7 taq = 0.55 + 2.97 - 0.04*A 'Aqueous thickness P;HVL flu 5WtQwN~ Rant = 12.0 - 0.4*A 'Radius of anterior lens i/C
-{+}U CCant = -7.518749 + 1.285720*A 'Conic constant of anterior lens PMz{8
F @1J51< x Rpost = -5.224557 + 0.2*A 'Radius of posterior lens ZTgAZ5_cz CCpost = -1.353971 - 0.431762*A 'Conic constant of posterior lens $DABR O]$*EiO\ tlens = 3.767 + 0.04*A 'Lens thickness 0x3 h8fs P!)7\.7 nlens = 1.42 + 0.00256*A - 0.00022*A^2 'Lens index of refraction ,Do$`yO+ $ly#zQR 'Adjust parameters to account for accommodation `[C v- 34+)-\ xt: '************************************************************************* m-Z'K_oQ 'Aqueous thickness (Position of Lens) +7lRP)1R '************************************************************************* .Y^d9. eID = FindFullName( "Geometry.Arizona Eye.Lens" ) qJbhPY8Ak GetCustomElement eID, entity @Le ^- v4 vJ'yz#tl9 parID = FindFullName( "Geometry.Arizona Eye" ) -Z/6;2Q Y7b,td1 ' Delete any shift(s) in z [#,X$O> count = 0 Gct&}]3pm While GetOperationCount(eID)>count X,iuz/Q GetOperation eID, count, op j"D0nG, If op.Type="ShiftZ" Then R.T?ZF DeleteOperation eID,count )LMBxyS count=count-1 n8;G,[GM80 End If )=,9`+Zta count=count+1 Gg3?2h"d Wend &Gy'AUz- l b1sV 'Set new shift in x jP" 'yU op.Type = "ShiftZ" ,,C~j`F op.val1 = taq 0%&fUz36E6 op.parent = parID SCI-jf3WN AddOperation eID, op S7#^u`'Q_^ Print "Set aqueous humor thickness = " & taq-0.55 x=)30y3*; I")"s '************************************************************************* dZ]\1""#H 'Radius and conic constant of anterior lens kw-Kx4 ) '************************************************************************* v#<+n{B eID = FindFullName( "Geometry.Arizona Eye.Lens.Anterior" ) W O \lny! GetConic eID, entity, curv, conic v%l|S{>(
5Ky9P z SetConic eID, entity, 1/Rant, CCant L2/<+Zw Print "Set anterior lens radius = " & Rant & " and conic constant = " & CCant pn_gq~5ng NkjQyMF '************************************************************************* |V~(mS747: 'Radius and conic constant of posterior lens zOdasEd8! '************************************************************************* )*$ eID = FindFullName( "Geometry.Arizona Eye.Lens.Posterior" ) (J,Oh GetConic eID, entity, curv, conic Z+"E* ^B"_b?b SetConic eID, entity, 1/Rpost, CCpost ]a%\Q2[c Print "Set posterior lens radius = " & Rpost & " and conic constant = " & CCpost N:gstp ~_ l:b '************************************************************************* JY050FL 'Lens thickness (Position of posterior lens surface) $nD k
mKl '************************************************************************* )>#<S0>'j <x%my4M parID = FindFullName( "Geometry.Arizona Eye.Lens" ) enD C# zk^7gx3x ' Delete any z-shift(s) ][$$
= count = 0 `v/tf|v6 While GetOperationCount(eID)>count EBn:[2 GetOperation eID, count, op E/ed0'|m If op.Type="ShiftZ" Then *!7SM7 DeleteOperation eID,count uwS'*5tU count=count-1 j"$b%| End If |#khwH count=count+1 2Nt]Nj` Wend @}rfY9o' zKAyfn.A 'Set new z-shift $lG--s op.Type = "ShiftZ" *.;}OX^X op.val1 = tlens "F.J>QBd op.parent = parID J`D< AddOperation eID, op TXk"[>,:H Print "Set lens thickness = " & tlens fS$Yl~-m? xyJgHbml '************************************************************************* 8'_
]gfF 'Lens index of refraction /7HIL?r '************************************************************************* r@V(w` eID = FindMaterial( "Lens" ) [?r\b GetModelMaterial eID, mat 8#JyK+NU Pc:'>,3!V3 mat.Nd = nlens -3XnK5 SetModelMaterial eID, mat WaO;hy~us Print "Set lens index of refraction = " & nlens %^@0tT E=U^T/ '************************************************************************* H(ftOd.y 'Pupil diameter 58gt*yVu '************************************************************************* ~sja^ eID = FindFullName( "Geometry.Arizona Eye.Pupil.Iris" ) [(^''*7r+T }j<_JI 'Adjust pupil diameter (trimming volume inner hole) W;x LuKIG ,4I6Rw B. SetTrimVolHole eID, pupilDiam/2, pupilDiam/2, 0, 0, "Cylinder" Hn2Q1lF-ip R8Ei:f} ' Adjust pupil location to just in front of the lens I3=Sc^zz&V parID = FindFullName( "Geometry.Arizona Eye" ) gRd1(S eID = FindFullName( "Geometry.Arizona Eye.Pupil" ) XXdMp poR count = 0 hdDI%3vk3 While GetOperationCount(eID)>count I)4|?tb? GetOperation eID, count, op "%iR-s_> If op.Type="ShiftZ" Then \Hx#p`B% DeleteOperation eID,count ,T>2zSk count=count-1 ~CTRPH End If 5UD;ZV% count=count+1 "Q!{8 9Y Wend ^Q+5M"/8 op.Type = "ShiftZ" Y7I op.val1 = taq-0.01 Yy;1N{dbT op.parent = parID C2%3+ AddOperation eID, op 6B P%&RL <5L` d} Print "Set pupil diameter = " & pupilDiam 7`n8
OR4 9jFDBy+ 'Update AZ Eye subassembly Description IZ ha* 7 eID = FindFullName( "Geometry.Arizona Eye" ) wA+4:CF@ GetEntity eID, entity k5< | |