NZ700751A

Lenses, devices, methods and systems for refractive error

Abstract

The present disclosure is directed to lenses, devices, methods and/or systems for addressing refractive error. In one embodiment, the lens has an optical axis, a focal distance and is characterized by an aberration profile about the optical axis. The aberration profile includes higher order aberrations having at least one of a primary spherical aberration component C(4,0) and a secondary spherical aberration component C(6,0). The aberration profile provides, for a model eye with no aberrations and an on-axis length equal to the focal distance: a peak Visual Strehl Ratio (first Visual Strehl Ratio) within a through focus range, and a Visual Ratio that remains at or above a second Visual Strehl Ratio over that through focus range that includes said focal distance. The first Visual Strehl Ratio is at least 0.35, the second Visual Strehl Ratio is at least 0.1 and the through focus range is at least 1.8 Dioptres. A retina image quality (RIQ) is Visual Strehl Ratio measured substantially along the optical axis for at least one pupil diameter in the range 3mm to 6mm, over a spatial frequency range of 0 to 30 cycles/degree inclusive and a wavelength selected from within the range 540 nm to 590nm inclusive.

NZ700751A, drawing sheet 1
Sheet 1 of 108

Term

6.5 yearsto projected expiry

Projected expiry 5 April 2033, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

108 claims: 104 independent, 4 dependent

  1. 1
    Claims 1. A lens for an eye, the lens having an optical axis, a focal distance and being characterised by:an aberration profile about the optical axis;the aberration profile including higher order aberrations having at least one of a primary spherical aberration component C(4,0) and a secondary spherical aberration component C(6,0), wherein the aberration profile provides, for a model eye with no aberrations and an on-axis length equal to the focal distance: a peak Visual Strehl Ratio (first Visual Strehl Ratio) within a through focus range;a Visual Strehl Ratio that remains at or above a second Visual Strehl Ratio over the through focus range that includes said focal distance, wherein the first Visual Strehl Ratio is at least 0.35, the second Visual Strehl Ratio is at least 0.1 and the through focus range is at least 1.8 Dioptres;and wherein a retinal image quality (RIQ) is Visual Strehl Ratio measured substantially along the optical axis for at least one pupil diameter in the range 3 mm to 6 mm, over a spatial frequency range of 0 to 30 cycles/degree inclusive and at a wavelength selected from within the range 540 nm to 590 nm inclusive.
  2. 4
    The lens of any one of claims 1 to 3, wherein the through focus range is selected from a group comprising:at least 1.9, at least 2, at least 2.1, at least 2.2, at least 2.3, at least 2.4 and at least 2.5 Dioptres.
  3. 5
    The lens of any one of claims 1 to 4, wherein the lens has a prescription focal distance located 206635NZ_claims_20160630_PLH 177 within 0.25 Dioptres of an end of the through focus range.
  4. 8
    The lens of any one of claims 1 to 7, wherein the Visual Strehl Ratio remains at or above the second Visual Strehl Ratio over a range of pupil diameters of at least 1.5 mm.
  5. 9
    The lens of any one of claims 1 to 8, wherein the combination of higher order aberrations includes at least one of primary spherical aberration and secondary spherical aberration.
  6. 10
    The lens of any one of claims 1 to 8, wherein the higher order aberrations include at least two spherical aberration terms selected from the group C(4,0) to C(20,0).
  7. 11
    The lens of any one of claims 1 to 8, wherein the higher order aberrations include at least three spherical aberration terms selected from the group C(4,0) to C(20,0).
  8. 12
    The lens of any one of claims 1 to 8, wherein the RIQ for every field angle over a horizontal field of at least -20° to +20° is at least 0.3, 0.35 or 0.4. 206635NZ_claims_20160630_PLH WO 2013/149303 PCT/AU2013/000354 1/108 Figure 1C 128 Figure 1/108 WO 2013/149303 PCT/AU2013/000354 2/108 203 204 206 .200 I o r\i Figure 2/108 o CM < ΓΝ k_ ZJ op ’ll LA ca (N ω u. ZJ .00 PCT/AU2013/000354 WO 2013/149303 3/108 WO 2013/149303 PCT/AU2013/000354 4/108 402 PCT/AU2013/000354 WO 2013/149303 5/108 Ο IT) WO 2013/149303 PCT/AU2013/000354 6/108 ο rd Ο Φ ο ο LD 602 WO 2013/149303 PCT/AU2013/000354 7/108 702 Ο WO 2013/149303 PCT/AU2013/000354 8/108 802 E *E V) fO ε .SP 4-» ΙΛ TO ro U <u re 4-* c o N L· o X cr re ε o Φ Z3 o o oo WO 2013/149303 PCT/AU2013/000354 9/108 >. Φ Ό C Ο Ε .52 *<*□ Φ Ε up ιζ> φ φ Π} ΓΟ Ό C ο υ <υ ΙΛ ο ο σ> WO 2013/149303 PCT/AU2013/000354 10/108 WO 2013/149303 PCT/AU2013/000354 11/108 WO 2013/149303 PCT/AU2013/000354 12/108 1200-^ 1206 WO 2013/149303 PCT/AU2013/000354
  9. 13
    13/108 WO 2013/149303 PCT/AU2013/000354
  10. 14
    14/108 1400 Figure 14/108 WO 2013/149303 PCT/AU2013/000354
  11. 15
    15/108 Wavefront aberration of a myopic eye at one or more retinal eccentricities O s X O o <u o <D fi o fi & fi σ <u fi ε l-H fi fi •H ¢4 o· WO 2013/149303 PCT/AU2013/000354
  12. 16
    16/108 Wavefront aberration of a hyperopic eye at one or more retinal eccentricities Figure 16/108 WO 2013/149303 PCT/AU2013/000354
  13. 17
    17/108 II II Sample design Ml for Myopia control (N •;• ί •i •l· It E E W OC LU O ift d ·' If rsi co (a) aiidoad aaMOdivixv I •h Φ s < o Q OC o z u Φ □ •I WO 2013/149303 PCT/AU2013/000354
  14. 18
    18/108' Sample design M2 for Myopia control (a) BIHOHd d3MOd 1VIXV < Q QC o X u Figure 18/108 WO 2013/149303 PCT/AU2013/000354
  15. 19
    19/108 Sample design M3 for Myopia control Csl ·· II II / Μ*** •II • • II II II 11 II I II II II II ·· —ΗΙΛ d S ft . J»** ·· • II II •h • U ,.··· ·· • II ,·* II II II *•11 •II k II l·— UJ < S Ω fiC O X u O rd ω rd QJ (a) aildOHd M3MOd 1VIXV WO 2013/149303 PCT/AU2013/000354
  16. 20
    20/108 Sample design M4 for Myopia control (Q) 31HOUd H3MOd1VIXV LU S <c Q QC o z u Figure 20/108 WO 2013/149303 PCT/AU2013/000354
  17. 21
    21/108 U III· Sample design M5 for Myopia control III III ill Ί 1 II φ .···6 'I' II iii ··. ό -----W ih <5 CM cn ή • ί II ή II II ll τ···.ο... if··· 1 II il II ll· H (a)31HO8d H3M0d1VIXV E E, oc LU fc s < Q Q OC O z u o WO 2013/149303 PCT/AU2013/000354
  18. 22
    22/108 Sample design M6 for Myopia control *0 Φ © (a) aiidoad a3/v\odivixv Figure 22/108 WO 2013/149303 PCT/AU2013/000354
  19. 23
    23/108 Sample design M7 for Myopia control rsi (N II II II , II • II II II ···· II •P Τ’ II I* >·. in V • ·Ί| M.. y ·, ψ·· .·· if ρ II ί «► (a) aiidoud H3M0divixv E £ QC LU t < Q Q QC O X (J o Ή CO Ol ω □ WO 2013/149303 PCT/AU2013/000354
  20. 24
    24/108 (a) 31H0Hd H3M0d1VIXV WO 2013/149303 PCT/AU2013/000354
  21. 25
    25/108 II I Ml II }*· Ul Sample design M9 for Myopia control .·· II 1 J (> (N • · ··« II II ...'-•'«I II tr·. ,..?··· * II -..........II.....................-........ φ in ft..·* II fl·.. >·' (N • · ·· y.· II • · · · •••..II ••*11 ε j= fi£ LU t < Q a:O z u o ΙΛ (N ω II II ;n 1*1. II II II (a) 31HOad H3M0d1VIXV WO 2013/149303 PCT/AU2013/000354
  22. 26
    26/108 Sample design Hl for Hyperopia treatment II h I (I j' II I ·· ΙΛ II I |i ii I I i II II u.· Ii 1ft Φ • r\i IN E E cc Ul H ui ί 5 < 5 o oc O X u VO <\l Φ v. (a)aiHOHd 83MOd 1VIXV WO 2013/149303 PCT/AU2013/000354
  23. 27
    27/108 Figure 27/108 WO 2013/149303 PCT/AU2013/000354
  24. 28
    28/108 c £ (Λ V > LU c v £ Ho c o 3IJWIAI ,0, Figure 28/108 WO 2013/149303 PCT/AU2013/000354
  25. 29
    29/108 < c o *3 n u mCM· £ E. a:IXI Ιία Σ < o Ofi O z u Figure 29/108 (a) 31ldO«d H3/V\0d1VIXV WO 2013/149303 PCT/AU2013/000354
  26. 30
    30/108 Figure 30/108 WO 2013/149303 PCT/AU2013/000354
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    31/108 LU < Ω ex O X u Figure 31/108 (a) aiHOHd H3MOd1VIXV WO 2013/149303 PCT/AU2013/000354
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    32/108 Λ* c *ΰ X ω αι ί «Λ υ Ο U. ι X Ο X Η ^5 ο u 0 ί Έ C ο 2 Ψδ Figure 32/108 3Ι-Ί3ΙΛΙ ,0, WO 2013/149303 PCT/AU2013/000354
  29. 33
    33/108 Ac ΙΛ ΙΛ χ:Μ ο ts (U νδ Figure 33/108 WO 2013/149303 PCT/AU2013/000354
  30. 34
    34/108 υ c ο *5 ra u QJ m ΓΜ <N m t t < o QC o Figure 34/108 (a) 3HJ0Hd H3MOd I VIXV WO 2013/149303 PCT/AU2013/000354
  31. 35
    35/108 CM c o ‘13 (0 k V Figure 35/108 (a) aiuoad aa/v\Odivixv WO 2013/149303 PCT/AU2013/000354
  32. 36
    36/108 u o JZ u O Figure 36/108 WO 2013/149303 PCT/AU2013/000354
  33. 37
    37/108 Center-Distance Aspheric Multifocal o (a) aildOHd H3MOd 1VIXV WO 2013/149303 PCT/AU2013/000354
  34. 38
    38/108 Center-Near Aspheric Multifocal (a) aildOUd H3MOd 1VIXV WO 2013/149303 PCT/AU2013/000354
  35. 39
    39/108 Iteration Bl E E. s fc < Ω Ω QC O u o (0) 31HOHd H3M0d 1VIXV WO 2013/149303 PCT/AU2013/000354
  36. 40
    40/108 «Ν ca c o re λα) Figure 40/108 (a) 31 Id Odd H3MOd IV!XV WO 2013/149303 PCT/AU2013/000354
  37. 41
    41/108 ·· •, • · ·. ........ «I ...rt···· .···' ···.. • · ..... r • f*. . .··’· ···. • · · · Iteration B3 li ri fj • · · ·. If····»*·»· L > ».·· νί ... • · ·...·..·.. ...... fc Q O oc O u o ω , · · · · ···.·, .··· (a) 3HdOHd H3M0d 1VIXV WO 2013/149303 PCT/AU2013/000354
  38. 42
    42/108 Centre-Distance Concentric Bifocal ε E. oc LU H < δ o DC (a) 3HdOUd H3MOd 1VIXV WO 2013/149303 PCT/AU2013/000354
  39. 43
    43/108 t· ········#···· Oft·· ♦ ·»..... • · CM· ········ Centre-Near Concentric Bifocal Ift ry • · * •i ···.«···· ····«····< .11.. .-T—1Ift ift e Ift ···»··· Ε E. ce 1X1 t < Ω Ω ce O u o co Φ a········· ..«γ.. 9...9..9..9..9..9..9..9..9-4..9--9.-9.-9-9-^-9--9--9 .9 99999999 9 9999 ..ΟΠ(a) 3HJOdd H3M0d 1VIXV WO 2013/149303 PCT/AU2013/000354
  40. 44
    44/108 On-Axis Through-focus image quality (Iteration Bl) o ομίθΙΛΙ ,0 o WO 2013/149303 PCT/AU2013/000354
  41. 45
    45/108 On-Axis Through-focus image quality (Iteration B2) 3Μ19ΙΛΙ ,0, o WO 2013/149303 PCT/AU2013/000354
  42. 46
    46/108 in O<3 χ<3 On-Axis Through-focus image quality (Iteration B3) Ox < 0 o •x 0 o X < X o «X GO X <r in o IZI w O o ω ω W> E E co O in io X O O' 3 3ΜΪ3ΙΛΙ ,0, WO 2013/149303 PCT/AU2013/000354
  43. 47
    47/108 •3 £ ζ C <-« c <u u c o u V u c Ift Q >L c a (0 CT V (0 E μ I JC O H ift X < C O Ift o Ift o Ift in O Figure 47/108 WO 2013/149303 PCT/AU2013/000354
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    48/108 ομίΒίΛΐ ,0, Figure 48/108 WO 2013/149303 PCT/AU2013/000354
  45. 49
    49/108 □μιθίΛΐ ,0, Figure 49/108 WO 2013/149303 PCT/AU2013/000354
  46. 50
    50/108 ο ΙΛ ΙΛ ο ΙΛ ό I ΙΛ Figure 50/108 WO 2013/149303 PCT/AU2013/000354
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    51/108 Figure 51/108 WO 2013/149303 PCT/AU2013/000354
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    52/108 Figure 52/108 WO 2013/149303 PCT/AU2013/000354
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    53/108 Figure 53/108 WO 2013/149303 PCT/AU2013/000354
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    54/108 Figure 54/108 WO 2013/149303 PCT/AU2013/000354
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    55/108 3Μ1θΙΛΙ ,0, Figure 55/108 WO 2013/149303 PCT/AU2013/000354
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    56/108 f*» < o ♦3 <0 OJ Figure 56/108 (Q) 31IJ0Hd H3MOd 3VIXV WO 2013/149303 PCT/AU2013/000354
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    57/108 St < Figure 57/108 (a) aildOMd H3MOd 1VIXV I WO 2013/149303 PCT/AU2013/000354
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    58/108 in < c ο ‘S re QJ E E. oc UJ fc < o oc o u Figure 58/108 (a) 3HdOHd HBMOdIVIXV WO 2013/149303 PCT/AU2013/000354
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    59/108 ο *·Ρ η V Figure 59/108 (α) aiidoud uaMOd ινιχν WO 2013/149303 PCT/AU2013/000354
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    60/108 ΓΜ LU c o ♦3 (Q Figure 60/108 (a) 3HdOHd U3MOd 1VIXV WO 2013/149303 PCT/AU2013/000354
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    61/108 ΙΛ η. Ο. Ε ε ε LM «Η Ο ο II S ο. 4-> C s V X .ε > Τδ σ « ΒϋΟ (Ο ΙΛ υ Ο Μ Ο k. Η «Λ X < C Ο ci Oi ’3 ί (0; ι» ·:ο»;:ΓΜ :UJ c ο 0) a σ> ο oo o <1 «3............© in d < <3 < < ο.......kol< o d d d o o o □μίθΙΛΙ ,O. in O in ΙΛ u O O kJC I— Figure 61/108 WO 2013/149303 PCT/AU2013/000354
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    62/108 in E a o I II a. «-> c v ro ST V M re in u £ I X M O i_ ί in '5 I C O Q. E E in <a -b -Ht θ d d« o « ό o re xv ;f\l UJ C o ‘3 re k_ :« :±i o oo o <o <........o..... in o in o in rsiom^miMr-io o o o o o o o 3μιθι/\ι ,0, u O u. . I X oo O Figure 62/108 WO 2013/149303 PCT/AU2013/000354
  59. 63
    63/108 ο m • ο + II < (Λ Q. S! Φ X C co or φ w R> ε «η υ Ο «Λ X < ι C Ο ΙΛ ΙΛ Ο ΙΛ Ο ΙΛ Μ Ο k<Ξ Figure 63/108 WO 2013/149303 PCT/AU2013/000354
  60. 64
    64/108 Figure 64/108 3μϊθΙΛ!,0, WO 2013/149303 PCT/AU2013/000354
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    65/108 Figure 65/108 WO 2013/149303 PCT/AU2013/000354
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    66/108 H ομίθίΛΙ ,0. c o c S S Elfi «1 LJ ° °a ff 5 1 ΙΛ 3 g φ — c > — ε δ ό η — Ξ < «5Γ ο » < ο 6 Figure 66/108 WO 2013/149303 PCT/AU2013/000354
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    67/108 ο ο ο fi ε © §3 gfi ο υ Ο τ-Η ε Α δ ο «ι ri go WO 2013/149303 PCT/AU2013/000354
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    68/108 E E. QC < Ω Ω QC O X (J Figure 68/108 (a) aiidOdd ua/wod ινιχν WO 2013/149303 PCT/AU2013/000354
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    69/108 Figure 69/108 WO 2013/149303 PCT/AU2013/000354
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    70/108 Figure 70/108 WO 2013/149303 PCT/AU2013/000354
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    71/108 Figure 71/108 WO 2013/149303 PCT/AU2013/000354
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    72/108 Figure 72/108 WO 2013/149303 PCT/AU2013/000354
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    73/108 Figure 73/108 WO 2013/149303 PCT/AU2013/000354
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    75/108 ΙΛ (tun) 3|ijOJd ssau>joiqi |eix\/ Figure 75/108 WO 2013/149303 PCT/AU2013/000354
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    78/108 ε Ε s ε C V σ ν .2 S re ο. «Λ ω χ:c ο ξ ω ιΛ χ: c ο ♦5 <υ C ο *s ω χ: c .2 U3 Φ Ο τΗ Χί C .2 ‘S φ ο m σ> χ: χ c ο +3 Φ c ο V IX φ β ορ (\Ι χ c ο ? φ Μ χ c ο ? ω rx χ c ο ’S 4! 3|jjojd j9M0<j Pies /ο iujO)sueji jaunoj isej 6)0 uinjpads 3pn)i|diuv)09in|0sqv pasi|eiujON WO 2013/149303 PCT/AU2013/000354
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    98/108 Figure 98/108 WO 2013/149303 PCT/AU2013/000354
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    99/108 • · ω QJ ι_ 3 <Z) ro QJ ra ΙΛ > a QJ X> O tt «Λ c ω «Λ c Φ (A c Φ z c Φ a ω c Φ t/> C Φ O (Λ c Φ u ω C Φ CO ΙΛ e φ < «Λ c Φ Figure 99/108 MVIAI 3o| X WO 2013/149303 PCT/AU2013/000354
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    105/108 φ υ c _ re tt § 5 ° ϋ in P re ‘3 S < φ •a 2 Φ “O £= C Z ε ε V g • · (/) ti QJ Φ u. Φ to re re 2= QJ w QJ If •S 2 u c QJ — Z* O Figure 105/108 dVIAl So| PCT/AU2013/000354 WO 2013/149303
  102. 106
    106/108 TO V O c re «λ IM o > +-» U < Ό Φ JQ E o u • · to qj (« 4-> u QJ O re Φ Z ε u O in +» re I*. re Φ Z TD c re ε u O IX +re φ +-« re t5 Φ ε φ +<· c s (0 X (/) c Φ (/) z (/) c Φ o (/) c Φ (/) c Φ (/) c Φ o (/) c Φ u (/) c Φ co (/) c Φ < (/) c Φ y VIA! So] Figure 106/108 WO 2013/149303 PCT/AU2013/000354
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    107/108 Figure 107/108 PCT/AU2013/000354 WO 2013/149303
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    108/108 (Λ in ω t;ω ° ζ Μ (λ C Oo *P Φ re u *- c re re _ Ί-* •C (ft Figure 108/108 S ? k. (C Φ 4= CL +- 1 O IO o «ί © (M Z > Suijsoqp qijm x<j jo %
Independent claims104