SlideShare ist ein Scribd-Unternehmen logo
1 von 45
Calculation of Magnification
in Low Vision
Mohammad Arman Bin Aziz
Instructor Optometrist
Institute of Community Ophthalmology
Can visual acuity be equated with
functional vision?
Visual Acuity = Functional Vision
Magnification
• Ratio of image size to object size (for a lens
system)
• M = I/O = h’/h = l’/l = ’/ 
• Many different types each with different
meaning
Different Terms
 Angular magnification
 Apparent magnification
 Spectacle magnification
 Relative distant magnification
 Nominal magnification
 Perceived magnification
 Actual magnification
 True magnification
 Iso-accommodative magnification
 Manufacture rating
 Magnifying power
Low vision Magnification
• Relative size
• Relative distant
• Angular
• Apparent
• Relative
• Iso-accommodative
• Equivalent Viewing Power (EVP)
– Newer concept in Low vision
Low Vision Devices
1. Telescopic lenses
2. Magnifying lenses
3. Electronic magnifiers
4. Field enhancers
Relative Size Magnification
'

= = tan '
tan 
h2
h1
=
l
h1 
h2
l
'
Relative Size Magnification
Large Print Cards Large Print Calculator
Relative Size Magnification
Zoomtext for enlargement
Relative Distance Magnification
h
l1
E
h
l2
E

'
'

= = tan '
tan 
l1
l2
=
Relative Distance Magnification
• Achieved by decreasing the distance between
the object & eye
• Need either accommodation/ Plus lenses to
maintain clear focus
– due to the large accommodative demand created
by short viewing distance
Relative Distance Magnification
Angular Magnification
'

=
h
l
E
l
F
h
E
xf
'
Angular Magnification
Telescope
Magnifiers
Name Method Examples
Relative Size
Magnification
Increasing the
actual size of the
object being
viewed
Larger print
material
Relative Distance
Magnification
Reducing the
distance between
the object and the
eye
Move object closer
to the eye
Angular
Magnification
Increasing angular
subtense of the
image being
viewed
Telescope,
magnifier
Three Types of Magnification in low vision
Projection Magnification
Closed-circuit Television (CCTV)
Projection Magnification
CCTV connected to a computer
Projection Magnification
Reading with Traveller
Projection Magnification
MaxPort Magnifier with eyeglasses as display unit
FlipperPort Magnifier
for distant viewing
Adaptive Technology – hardware and software
 Screen enlargers and screen magnifiers
 Screen reviewers and screen readers
 On-screen keyboards
 Keyboard enhancement
 Voice input aids or speech recognition
 Alternative input devices
Apparent Magnification (Bailey & Bennett)
 Perceived Magnification
 Ratio between the angle subtended by the image at
entrance pupil of eye to the angle subtended by the
object without magnifier
 System
 Object at anterior focal plane of lens
 Object not at focal plane of lens
 For accurate apparent magnification
 Viewing distance / Equivalent power of magnifier
should specified
Apparent Magnification (Bailey & Bennett)
•
Relative Magnification
 Effective or conventional magnification
 Retinal image size produced by the magnifier to
the retinal image size produced by the object,
 when viewed at a standard distance
 (LDDV = 25 cm)with out magnifier
 RM = angle subtended at eye by image produced by lens
angle subtended at unaided eye by object at LDDV
= ' / 25
Relative Magnification
Mrel = - F(-d)
= F/D
– If d = LLDV = 25 cm
= F/ 4 = Trade or
manufacture
rating
Magnification
Equivalent power of
magnifier (F)= M x4
Relative Magnification
 For : Relative = Actual magnification
 Will be true for following conditions
 Patient should be emmetropic or corrected for any ametropia
 For Myopia = Actual Magnification increase
 For Hyperopia = Smaller magnification than specified
 Object at anterior focal plane of the magnifier, so that image formed
at infinity
 If located at less distance = Actual magnification increase
 If located further away = Actual magnification decrease
 Reference object distance
 For ref. Distance 25 cm, M = F/4
 But in real life situation
 Reading distance , 33 cm . M = F/3
 Reading distance, 40 cm = F/2.5
Iso-accommodative Magnification
(manufacture rating magnification)
 The ratio of the angle subtended at the
entrance pupil of the eye by the magnified
image to the angle subtended by object
 When viewed from same distance
 Type of Relative magnification
 Object is located outside the anterior focal plane of
magnifying lense
Iso-accommodative Magnification
(manufacture rating magnification
• Miso-acc = 1 + F/ D
Iso-accommodative Magnification
(manufacture rating magnification
 For Ref. Distance 25 cm
 Miso-acc = 1 + F/4
 Three assumption inherent in above formula
 Magnifier to eye distance is negligible
 The reference viewing distance is 25 cm
 The image produced by the magnifier is also at 25 cm
 Thus accommodative state / add for near = 4Ds
 For object & Image
Terms of Magnification in Low vision
Term Viewing distance
Apparent
Magnification
No specific viewing
distance
Relative
Magnification
A standard distance chosen
for comparison (usually 25
cm)
Iso-
accommodative
Magnification
Same distance of the object
and image from the eye
Equivalent Viewing Power(EVP)
 Discard ill-defined magnifications:
 according to Bailey. Better to specify every optical LVD in term of EVP
 Magnifying effect of eye represented by EVP
 EVP = Equivalent focal length of the lens system
 EVP = X D of a lens system
 Provides the same resolution as if the naked eye were
viewing the object at ‘x’ m away with out magnifer
 Where, X = 1/x
Equivalent Viewing Power(EVP)
Equivalent Viewing Power(EVP)
 EVP represents
 intrinsic property of an optical system that corresponds to
the resolution afforded by the system
 If EVP of a system that gives certain resolution to the patient
is know,
 the resolution capability by any other system can be known by
simple proportion
 Eg:
 If NVA with + 2.50 D is 6/18 at 40 cm, an EVP of + 7.50 Ds
magnifier will increase VA to 6/6 at 13 cm.
Equivalent Viewing Power(EVP)
 By knowing EVP of a optical system is known
 A logical & efficient conversion of one magnifying
optical system to another
 Eg: If a +10.00 D add is required to read 2M print at
10 cm
 For a CCTV, with 5 x magnification viewed at 50 cm
& +2.00D add will enable patient to read 2M print
Prediction of Magnification for Low Vision
 Accurate corrected near visual acuity
assessment
 Always in Metric system (1M = N8)
 For unknown sized reading material
 Conversion to metric system =
letter size in mm/1.45 mm
Rule of 1000
 Average number of letters + space counted in
1 inch
 Divide that number to 1000 for metric system
 Resultant is reduced snellen denominator
 Eg: 40 spaces & letters in 1 inch of text patient
wants to read
 1000/40 = 25 : Reduced acuity size of the print= 20/25
Methods to determine Magnification
1. Lebenson’s Method of reciprocal vision
2. Kestenbaum’s Method
3. Ratio between Best near VA to target VA
4. Reading power needed to read 1 M print
5. Lovie’s Method
6. Ian Bailey method:
Equivalent Viewing distance (EVP)
Lebenson’s Method of reciprocal vision
 Find Best corrected distance acuity & a near target
acuity
 M = ratio of denominator of distance Snellen
fraction to denominator of near snellen fraction of
target acuity
 Eg:
 BDA = 20/400 , TNA = 20/50 (1M)
 M = 400/50 = 8 x, Power (D) = M x 4 = + 32 Ds
Kestenbaum’s Method
 Required Dioptric power of add =
 Reciprocal of best corrected distance acuity
 Eg:
 If BCDA = 20/400, Power of add = 400/20 = +
20Ds
 Both above method can give wrong M
value:
 Distance acuity is poor predictor of near
acuity
Ratio between Best near VA to target VA
 Patient BNA at testing distance (TD) is recorded in M
notation
 Target near acuity (TNA) is determine, let “X” be new
reading distance
 Then, BNA/ TNA = TD/ X, X = TNA/BNA x TD
 Now, power of Add = 1/X in m
Ratio between Best near VA to
target VA: Example
 If, BNA = 4M at 0.4 m, TNA = 1M , X = ?
 X = TNA/ BNA x TD
= ¼ x 40 = 10 cm
Add required (D) = 100/X = 100/10 = +10 Ds
 Patient need to hold the reading material at
10 cm with + 10 Ds magnifier
Reading power needed to read 1 M print
 Measure BNA at 40 cm (16 inches)
 Theoretical add power to read 1M print
= Multiply BNA, M value by 2,50 Ds
 Eg:
 If 4 M read at 40 cm
 Add power = 2.50 x 4 = + 10.00 Ds
Lovie’s Method
 To find the patient goal and expected reading
rate
 Reading rate (words per minute) for normal
 To spot: 80 wpm – Enables identification of single
word
 To be fluent : 160 wpm – Enables reading accurately
 Maximum: 320 wpm – Enables reading accurately at
a high speed
Lovie’s Method
 Needs threshold than desired print size
 Spot: one Line smaller
 Fluent: Three lines smaller
 Maximum: Five line
 Eg: BNA is 1.6 M , required TNVA is 1 M
 To be fluent threshold = 3 lines minimum = 0.5 M
 Keep in mind:
 “Magnification is more important than the field
for best reading vision with visual impairment”
Ian Bailey
Equivalent Viewing distance (EVP)
 Defn:
 It is the distance at which the object itself would
subtend an angle that is equal to the angle that
is being subtended by the image.
 We need to adopt EVD forgetting every
magnification
References
• Essentials in Low vision practice by Richard S.
Brilliant
• Principles of low vision by Christine Dickinson
• Low Vision Manual by Jothathon Jackson

Weitere ähnliche Inhalte

Was ist angesagt?

Ophthalmic dispensing
Ophthalmic dispensingOphthalmic dispensing
Ophthalmic dispensingKewal Hirwani
 
Spherical soft contact lens fitting
Spherical soft contact lens fittingSpherical soft contact lens fitting
Spherical soft contact lens fittingMeghna Verma
 
Various Soft Contact Lens- designs and their indications
Various Soft Contact Lens- designs and their indications Various Soft Contact Lens- designs and their indications
Various Soft Contact Lens- designs and their indications Urusha Maharjan
 
Accommodation/Accommodative facility
Accommodation/Accommodative facilityAccommodation/Accommodative facility
Accommodation/Accommodative facilitykausar Ali
 
Dynamic retinoscopy
Dynamic retinoscopy Dynamic retinoscopy
Dynamic retinoscopy Rajeshwori
 
ARC: abnormal retinal correspondence, eccentric fixation
ARC: abnormal retinal correspondence, eccentric fixationARC: abnormal retinal correspondence, eccentric fixation
ARC: abnormal retinal correspondence, eccentric fixationaditi Jain
 
Binocular refraction techniques, binocular balancing & binocular
Binocular refraction techniques, binocular balancing & binocularBinocular refraction techniques, binocular balancing & binocular
Binocular refraction techniques, binocular balancing & binocularsabina paudel
 
Special lens designing
Special lens designingSpecial lens designing
Special lens designingNishita Afrin
 
FDA classification of soft contact lens
FDA classification of soft contact lensFDA classification of soft contact lens
FDA classification of soft contact lenssushmitha hebri
 
Soft toric Contact Lens
Soft toric Contact LensSoft toric Contact Lens
Soft toric Contact LensManish Dahal
 
Prescribing low vision devices by SURAJ CHHETRI
Prescribing low vision devices by SURAJ CHHETRIPrescribing low vision devices by SURAJ CHHETRI
Prescribing low vision devices by SURAJ CHHETRISuraj Chhetri
 

Was ist angesagt? (20)

Ophthalmic dispensing
Ophthalmic dispensingOphthalmic dispensing
Ophthalmic dispensing
 
Vertex distance
Vertex distanceVertex distance
Vertex distance
 
Testing for npa
Testing for npaTesting for npa
Testing for npa
 
Spherical soft contact lens fitting
Spherical soft contact lens fittingSpherical soft contact lens fitting
Spherical soft contact lens fitting
 
Tinted lenses
Tinted lensesTinted lenses
Tinted lenses
 
Pediatric contact lens
Pediatric contact lensPediatric contact lens
Pediatric contact lens
 
Various Soft Contact Lens- designs and their indications
Various Soft Contact Lens- designs and their indications Various Soft Contact Lens- designs and their indications
Various Soft Contact Lens- designs and their indications
 
subjective refraction
  subjective refraction  subjective refraction
subjective refraction
 
Orthokeratology
OrthokeratologyOrthokeratology
Orthokeratology
 
Accommodation/Accommodative facility
Accommodation/Accommodative facilityAccommodation/Accommodative facility
Accommodation/Accommodative facility
 
Binocular balancing
Binocular balancing Binocular balancing
Binocular balancing
 
Dynamic retinoscopy
Dynamic retinoscopy Dynamic retinoscopy
Dynamic retinoscopy
 
ARC: abnormal retinal correspondence, eccentric fixation
ARC: abnormal retinal correspondence, eccentric fixationARC: abnormal retinal correspondence, eccentric fixation
ARC: abnormal retinal correspondence, eccentric fixation
 
fitting RGP lenses
fitting RGP lensesfitting RGP lenses
fitting RGP lenses
 
Binocular refraction techniques, binocular balancing & binocular
Binocular refraction techniques, binocular balancing & binocularBinocular refraction techniques, binocular balancing & binocular
Binocular refraction techniques, binocular balancing & binocular
 
Special lens designing
Special lens designingSpecial lens designing
Special lens designing
 
FDA classification of soft contact lens
FDA classification of soft contact lensFDA classification of soft contact lens
FDA classification of soft contact lens
 
Frame selection
Frame selectionFrame selection
Frame selection
 
Soft toric Contact Lens
Soft toric Contact LensSoft toric Contact Lens
Soft toric Contact Lens
 
Prescribing low vision devices by SURAJ CHHETRI
Prescribing low vision devices by SURAJ CHHETRIPrescribing low vision devices by SURAJ CHHETRI
Prescribing low vision devices by SURAJ CHHETRI
 

Ähnlich wie Calculation of magnification in low vision

Calculation of magnification in low vision
Calculation of magnification in low visionCalculation of magnification in low vision
Calculation of magnification in low visionRabindraAdhikary
 
Princibles of low vision aids .pptx
Princibles of low vision aids .pptxPrincibles of low vision aids .pptx
Princibles of low vision aids .pptxAbdelmonem Hamed
 
optical assistive devices for vision impairement in near
optical assistive devices for vision impairement in nearoptical assistive devices for vision impairement in near
optical assistive devices for vision impairement in nearSrijana Lamichhane
 
Calculation of EVD and EVP
Calculation of EVD and EVPCalculation of EVD and EVP
Calculation of EVD and EVPRabindraAdhikary
 
Princibles of low vision aids 2020
Princibles of low vision aids 2020Princibles of low vision aids 2020
Princibles of low vision aids 2020Abdelmonem Hamed
 
Magnification and it's clinical uses
Magnification and it's clinical usesMagnification and it's clinical uses
Magnification and it's clinical usesRaju Kaiti
 
Machine learning session7(nb classifier k-nn)
Machine learning   session7(nb classifier k-nn)Machine learning   session7(nb classifier k-nn)
Machine learning session7(nb classifier k-nn)Abhimanyu Dwivedi
 
An analysisofperformanceforcommonlyusedinterpolationmethod
An analysisofperformanceforcommonlyusedinterpolationmethodAn analysisofperformanceforcommonlyusedinterpolationmethod
An analysisofperformanceforcommonlyusedinterpolationmethodnookaraji
 
Visual function in LV patients.pptx
Visual function in LV patients.pptxVisual function in LV patients.pptx
Visual function in LV patients.pptxMMC, IOM
 
Low visual aids
Low visual aidsLow visual aids
Low visual aidsDoc Aaryan
 
Definitions related to measurements
Definitions related to measurementsDefinitions related to measurements
Definitions related to measurementsArun Umrao
 
Remote Sensing: Normalized Difference Vegetation Index (NDVI)
Remote Sensing: Normalized Difference Vegetation Index (NDVI)Remote Sensing: Normalized Difference Vegetation Index (NDVI)
Remote Sensing: Normalized Difference Vegetation Index (NDVI)Kamlesh Kumar
 
Process of seeing | Visual Capability| Workstation Design | Workplace Design ...
Process of seeing | Visual Capability| Workstation Design | Workplace Design ...Process of seeing | Visual Capability| Workstation Design | Workplace Design ...
Process of seeing | Visual Capability| Workstation Design | Workplace Design ...Gaurav Singh Rajput
 
Room light levels and projection
Room light levels and projectionRoom light levels and projection
Room light levels and projectionSchoolVision Inc.
 

Ähnlich wie Calculation of magnification in low vision (20)

Calculation of magnification in low vision
Calculation of magnification in low visionCalculation of magnification in low vision
Calculation of magnification in low vision
 
Evd,Evp
Evd,EvpEvd,Evp
Evd,Evp
 
Magnification
MagnificationMagnification
Magnification
 
Princibles of low vision aids .pptx
Princibles of low vision aids .pptxPrincibles of low vision aids .pptx
Princibles of low vision aids .pptx
 
optical assistive devices for vision impairement in near
optical assistive devices for vision impairement in nearoptical assistive devices for vision impairement in near
optical assistive devices for vision impairement in near
 
magnification.pptx
magnification.pptxmagnification.pptx
magnification.pptx
 
Retinal images
Retinal imagesRetinal images
Retinal images
 
Calculation of EVD and EVP
Calculation of EVD and EVPCalculation of EVD and EVP
Calculation of EVD and EVP
 
Princibles of low vision aids 2020
Princibles of low vision aids 2020Princibles of low vision aids 2020
Princibles of low vision aids 2020
 
Magnification and it's clinical uses
Magnification and it's clinical usesMagnification and it's clinical uses
Magnification and it's clinical uses
 
Machine learning session7(nb classifier k-nn)
Machine learning   session7(nb classifier k-nn)Machine learning   session7(nb classifier k-nn)
Machine learning session7(nb classifier k-nn)
 
An analysisofperformanceforcommonlyusedinterpolationmethod
An analysisofperformanceforcommonlyusedinterpolationmethodAn analysisofperformanceforcommonlyusedinterpolationmethod
An analysisofperformanceforcommonlyusedinterpolationmethod
 
09 David Wiles - (Media Cybernetics) Introduction to Image Analysis
09 David Wiles - (Media Cybernetics) Introduction to Image Analysis09 David Wiles - (Media Cybernetics) Introduction to Image Analysis
09 David Wiles - (Media Cybernetics) Introduction to Image Analysis
 
Visual function in LV patients.pptx
Visual function in LV patients.pptxVisual function in LV patients.pptx
Visual function in LV patients.pptx
 
Low visual aids
Low visual aidsLow visual aids
Low visual aids
 
Definitions related to measurements
Definitions related to measurementsDefinitions related to measurements
Definitions related to measurements
 
Remote Sensing: Normalized Difference Vegetation Index (NDVI)
Remote Sensing: Normalized Difference Vegetation Index (NDVI)Remote Sensing: Normalized Difference Vegetation Index (NDVI)
Remote Sensing: Normalized Difference Vegetation Index (NDVI)
 
Process of seeing | Visual Capability| Workstation Design | Workplace Design ...
Process of seeing | Visual Capability| Workstation Design | Workplace Design ...Process of seeing | Visual Capability| Workstation Design | Workplace Design ...
Process of seeing | Visual Capability| Workstation Design | Workplace Design ...
 
Presbyopia
PresbyopiaPresbyopia
Presbyopia
 
Room light levels and projection
Room light levels and projectionRoom light levels and projection
Room light levels and projection
 

Mehr von Mohammad Arman Bin Aziz

Anomalies of accommodation, convergence & its management
Anomalies of accommodation, convergence & its managementAnomalies of accommodation, convergence & its management
Anomalies of accommodation, convergence & its managementMohammad Arman Bin Aziz
 
Action of extraocular muscles and various laws involved
Action of extraocular muscles and various laws involvedAction of extraocular muscles and various laws involved
Action of extraocular muscles and various laws involvedMohammad Arman Bin Aziz
 
Accommodation: accommodative apparatus and its mechanism
Accommodation: accommodative apparatus and its mechanismAccommodation: accommodative apparatus and its mechanism
Accommodation: accommodative apparatus and its mechanismMohammad Arman Bin Aziz
 
Absorptive lens, transmission and sunglass standards (explained)
Absorptive lens, transmission and sunglass standards (explained)Absorptive lens, transmission and sunglass standards (explained)
Absorptive lens, transmission and sunglass standards (explained)Mohammad Arman Bin Aziz
 
Psychophysics of measurements, weber’s law, visual threshold & sensitivity
Psychophysics of measurements, weber’s law, visual threshold & sensitivityPsychophysics of measurements, weber’s law, visual threshold & sensitivity
Psychophysics of measurements, weber’s law, visual threshold & sensitivityMohammad Arman Bin Aziz
 
Introduction to binocular vision and ocular motility
Introduction to binocular vision and ocular motilityIntroduction to binocular vision and ocular motility
Introduction to binocular vision and ocular motilityMohammad Arman Bin Aziz
 
Reflection and refraction at home & curved surfaces
Reflection and refraction at home & curved surfacesReflection and refraction at home & curved surfaces
Reflection and refraction at home & curved surfacesMohammad Arman Bin Aziz
 
Introduction to binocular vision and ocular motility
Introduction to binocular vision and ocular motilityIntroduction to binocular vision and ocular motility
Introduction to binocular vision and ocular motilityMohammad Arman Bin Aziz
 
Contrast sensitivity, Clinical assessment of intra-ocular light scatter,...
Contrast  sensitivity, Clinical  assessment  of  intra-ocular  light scatter,...Contrast  sensitivity, Clinical  assessment  of  intra-ocular  light scatter,...
Contrast sensitivity, Clinical assessment of intra-ocular light scatter,...Mohammad Arman Bin Aziz
 
Binocular refraction techniques, binocular balancing
Binocular refraction techniques, binocular balancing Binocular refraction techniques, binocular balancing
Binocular refraction techniques, binocular balancing Mohammad Arman Bin Aziz
 

Mehr von Mohammad Arman Bin Aziz (19)

Anomalies of accommodation, convergence & its management
Anomalies of accommodation, convergence & its managementAnomalies of accommodation, convergence & its management
Anomalies of accommodation, convergence & its management
 
Action of extraocular muscles and various laws involved
Action of extraocular muscles and various laws involvedAction of extraocular muscles and various laws involved
Action of extraocular muscles and various laws involved
 
Accommodative anomalies (Full)
Accommodative anomalies (Full)Accommodative anomalies (Full)
Accommodative anomalies (Full)
 
Accommodation: accommodative apparatus and its mechanism
Accommodation: accommodative apparatus and its mechanismAccommodation: accommodative apparatus and its mechanism
Accommodation: accommodative apparatus and its mechanism
 
Absorptive lens, transmission standards
Absorptive lens, transmission standardsAbsorptive lens, transmission standards
Absorptive lens, transmission standards
 
Absorptive lens, transmission and sunglass standards (explained)
Absorptive lens, transmission and sunglass standards (explained)Absorptive lens, transmission and sunglass standards (explained)
Absorptive lens, transmission and sunglass standards (explained)
 
Aberrations in optical aids
Aberrations in optical aids Aberrations in optical aids
Aberrations in optical aids
 
Psychophysics of measurements, weber’s law, visual threshold & sensitivity
Psychophysics of measurements, weber’s law, visual threshold & sensitivityPsychophysics of measurements, weber’s law, visual threshold & sensitivity
Psychophysics of measurements, weber’s law, visual threshold & sensitivity
 
Light and Dark Adaptation
Light and Dark AdaptationLight and Dark Adaptation
Light and Dark Adaptation
 
Introduction to binocular vision and ocular motility
Introduction to binocular vision and ocular motilityIntroduction to binocular vision and ocular motility
Introduction to binocular vision and ocular motility
 
Ophthalmic prism
Ophthalmic prismOphthalmic prism
Ophthalmic prism
 
Reflection and refraction at home & curved surfaces
Reflection and refraction at home & curved surfacesReflection and refraction at home & curved surfaces
Reflection and refraction at home & curved surfaces
 
Introduction to binocular vision and ocular motility
Introduction to binocular vision and ocular motilityIntroduction to binocular vision and ocular motility
Introduction to binocular vision and ocular motility
 
Cycloplegic agents & cyclorefraction
Cycloplegic agents & cyclorefractionCycloplegic agents & cyclorefraction
Cycloplegic agents & cyclorefraction
 
Contrast sensitivity, Clinical assessment of intra-ocular light scatter,...
Contrast  sensitivity, Clinical  assessment  of  intra-ocular  light scatter,...Contrast  sensitivity, Clinical  assessment  of  intra-ocular  light scatter,...
Contrast sensitivity, Clinical assessment of intra-ocular light scatter,...
 
Binocular refraction techniques, binocular balancing
Binocular refraction techniques, binocular balancing Binocular refraction techniques, binocular balancing
Binocular refraction techniques, binocular balancing
 
Binocular balance (review)
Binocular balance (review)Binocular balance (review)
Binocular balance (review)
 
Accommodation and its anomalies
Accommodation and its anomaliesAccommodation and its anomalies
Accommodation and its anomalies
 
Schematic eye and cardinal points
Schematic eye and cardinal pointsSchematic eye and cardinal points
Schematic eye and cardinal points
 

Kürzlich hochgeladen

Hybridoma Technology ( Production , Purification , and Application )
Hybridoma Technology  ( Production , Purification , and Application  ) Hybridoma Technology  ( Production , Purification , and Application  )
Hybridoma Technology ( Production , Purification , and Application ) Sakshi Ghasle
 
Arihant handbook biology for class 11 .pdf
Arihant handbook biology for class 11 .pdfArihant handbook biology for class 11 .pdf
Arihant handbook biology for class 11 .pdfchloefrazer622
 
Accessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactAccessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactdawncurless
 
URLs and Routing in the Odoo 17 Website App
URLs and Routing in the Odoo 17 Website AppURLs and Routing in the Odoo 17 Website App
URLs and Routing in the Odoo 17 Website AppCeline George
 
Web & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdfWeb & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdfJayanti Pande
 
Z Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphZ Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphThiyagu K
 
Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991
Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991
Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991RKavithamani
 
Introduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher EducationIntroduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher Educationpboyjonauth
 
The basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptxThe basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptxheathfieldcps1
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introductionMaksud Ahmed
 
How to Make a Pirate ship Primary Education.pptx
How to Make a Pirate ship Primary Education.pptxHow to Make a Pirate ship Primary Education.pptx
How to Make a Pirate ship Primary Education.pptxmanuelaromero2013
 
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...Marc Dusseiller Dusjagr
 
Employee wellbeing at the workplace.pptx
Employee wellbeing at the workplace.pptxEmployee wellbeing at the workplace.pptx
Employee wellbeing at the workplace.pptxNirmalaLoungPoorunde1
 
Organic Name Reactions for the students and aspirants of Chemistry12th.pptx
Organic Name Reactions  for the students and aspirants of Chemistry12th.pptxOrganic Name Reactions  for the students and aspirants of Chemistry12th.pptx
Organic Name Reactions for the students and aspirants of Chemistry12th.pptxVS Mahajan Coaching Centre
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdfQucHHunhnh
 
Mastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionMastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionSafetyChain Software
 
Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104misteraugie
 
CARE OF CHILD IN INCUBATOR..........pptx
CARE OF CHILD IN INCUBATOR..........pptxCARE OF CHILD IN INCUBATOR..........pptx
CARE OF CHILD IN INCUBATOR..........pptxGaneshChakor2
 

Kürzlich hochgeladen (20)

Hybridoma Technology ( Production , Purification , and Application )
Hybridoma Technology  ( Production , Purification , and Application  ) Hybridoma Technology  ( Production , Purification , and Application  )
Hybridoma Technology ( Production , Purification , and Application )
 
Arihant handbook biology for class 11 .pdf
Arihant handbook biology for class 11 .pdfArihant handbook biology for class 11 .pdf
Arihant handbook biology for class 11 .pdf
 
Accessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impactAccessible design: Minimum effort, maximum impact
Accessible design: Minimum effort, maximum impact
 
URLs and Routing in the Odoo 17 Website App
URLs and Routing in the Odoo 17 Website AppURLs and Routing in the Odoo 17 Website App
URLs and Routing in the Odoo 17 Website App
 
Web & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdfWeb & Social Media Analytics Previous Year Question Paper.pdf
Web & Social Media Analytics Previous Year Question Paper.pdf
 
Z Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot GraphZ Score,T Score, Percential Rank and Box Plot Graph
Z Score,T Score, Percential Rank and Box Plot Graph
 
Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
Mattingly "AI & Prompt Design: Structured Data, Assistants, & RAG"
 
Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991
Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991
Industrial Policy - 1948, 1956, 1973, 1977, 1980, 1991
 
Introduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher EducationIntroduction to ArtificiaI Intelligence in Higher Education
Introduction to ArtificiaI Intelligence in Higher Education
 
The basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptxThe basics of sentences session 2pptx copy.pptx
The basics of sentences session 2pptx copy.pptx
 
microwave assisted reaction. General introduction
microwave assisted reaction. General introductionmicrowave assisted reaction. General introduction
microwave assisted reaction. General introduction
 
How to Make a Pirate ship Primary Education.pptx
How to Make a Pirate ship Primary Education.pptxHow to Make a Pirate ship Primary Education.pptx
How to Make a Pirate ship Primary Education.pptx
 
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
“Oh GOSH! Reflecting on Hackteria's Collaborative Practices in a Global Do-It...
 
Employee wellbeing at the workplace.pptx
Employee wellbeing at the workplace.pptxEmployee wellbeing at the workplace.pptx
Employee wellbeing at the workplace.pptx
 
Organic Name Reactions for the students and aspirants of Chemistry12th.pptx
Organic Name Reactions  for the students and aspirants of Chemistry12th.pptxOrganic Name Reactions  for the students and aspirants of Chemistry12th.pptx
Organic Name Reactions for the students and aspirants of Chemistry12th.pptx
 
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptxINDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
INDIA QUIZ 2024 RLAC DELHI UNIVERSITY.pptx
 
1029 - Danh muc Sach Giao Khoa 10 . pdf
1029 -  Danh muc Sach Giao Khoa 10 . pdf1029 -  Danh muc Sach Giao Khoa 10 . pdf
1029 - Danh muc Sach Giao Khoa 10 . pdf
 
Mastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory InspectionMastering the Unannounced Regulatory Inspection
Mastering the Unannounced Regulatory Inspection
 
Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104Nutritional Needs Presentation - HLTH 104
Nutritional Needs Presentation - HLTH 104
 
CARE OF CHILD IN INCUBATOR..........pptx
CARE OF CHILD IN INCUBATOR..........pptxCARE OF CHILD IN INCUBATOR..........pptx
CARE OF CHILD IN INCUBATOR..........pptx
 

Calculation of magnification in low vision

  • 1. Calculation of Magnification in Low Vision Mohammad Arman Bin Aziz Instructor Optometrist Institute of Community Ophthalmology
  • 2. Can visual acuity be equated with functional vision? Visual Acuity = Functional Vision
  • 3. Magnification • Ratio of image size to object size (for a lens system) • M = I/O = h’/h = l’/l = ’/  • Many different types each with different meaning
  • 4. Different Terms  Angular magnification  Apparent magnification  Spectacle magnification  Relative distant magnification  Nominal magnification  Perceived magnification  Actual magnification  True magnification  Iso-accommodative magnification  Manufacture rating  Magnifying power
  • 5. Low vision Magnification • Relative size • Relative distant • Angular • Apparent • Relative • Iso-accommodative • Equivalent Viewing Power (EVP) – Newer concept in Low vision
  • 6. Low Vision Devices 1. Telescopic lenses 2. Magnifying lenses 3. Electronic magnifiers 4. Field enhancers
  • 7. Relative Size Magnification '  = = tan ' tan  h2 h1 = l h1  h2 l '
  • 8. Relative Size Magnification Large Print Cards Large Print Calculator
  • 11. Relative Distance Magnification • Achieved by decreasing the distance between the object & eye • Need either accommodation/ Plus lenses to maintain clear focus – due to the large accommodative demand created by short viewing distance
  • 15. Name Method Examples Relative Size Magnification Increasing the actual size of the object being viewed Larger print material Relative Distance Magnification Reducing the distance between the object and the eye Move object closer to the eye Angular Magnification Increasing angular subtense of the image being viewed Telescope, magnifier Three Types of Magnification in low vision
  • 19. Projection Magnification MaxPort Magnifier with eyeglasses as display unit FlipperPort Magnifier for distant viewing
  • 20. Adaptive Technology – hardware and software  Screen enlargers and screen magnifiers  Screen reviewers and screen readers  On-screen keyboards  Keyboard enhancement  Voice input aids or speech recognition  Alternative input devices
  • 21. Apparent Magnification (Bailey & Bennett)  Perceived Magnification  Ratio between the angle subtended by the image at entrance pupil of eye to the angle subtended by the object without magnifier  System  Object at anterior focal plane of lens  Object not at focal plane of lens  For accurate apparent magnification  Viewing distance / Equivalent power of magnifier should specified
  • 23. Relative Magnification  Effective or conventional magnification  Retinal image size produced by the magnifier to the retinal image size produced by the object,  when viewed at a standard distance  (LDDV = 25 cm)with out magnifier  RM = angle subtended at eye by image produced by lens angle subtended at unaided eye by object at LDDV = ' / 25
  • 24. Relative Magnification Mrel = - F(-d) = F/D – If d = LLDV = 25 cm = F/ 4 = Trade or manufacture rating Magnification Equivalent power of magnifier (F)= M x4
  • 25. Relative Magnification  For : Relative = Actual magnification  Will be true for following conditions  Patient should be emmetropic or corrected for any ametropia  For Myopia = Actual Magnification increase  For Hyperopia = Smaller magnification than specified  Object at anterior focal plane of the magnifier, so that image formed at infinity  If located at less distance = Actual magnification increase  If located further away = Actual magnification decrease  Reference object distance  For ref. Distance 25 cm, M = F/4  But in real life situation  Reading distance , 33 cm . M = F/3  Reading distance, 40 cm = F/2.5
  • 26. Iso-accommodative Magnification (manufacture rating magnification)  The ratio of the angle subtended at the entrance pupil of the eye by the magnified image to the angle subtended by object  When viewed from same distance  Type of Relative magnification  Object is located outside the anterior focal plane of magnifying lense
  • 27. Iso-accommodative Magnification (manufacture rating magnification • Miso-acc = 1 + F/ D
  • 28. Iso-accommodative Magnification (manufacture rating magnification  For Ref. Distance 25 cm  Miso-acc = 1 + F/4  Three assumption inherent in above formula  Magnifier to eye distance is negligible  The reference viewing distance is 25 cm  The image produced by the magnifier is also at 25 cm  Thus accommodative state / add for near = 4Ds  For object & Image
  • 29. Terms of Magnification in Low vision Term Viewing distance Apparent Magnification No specific viewing distance Relative Magnification A standard distance chosen for comparison (usually 25 cm) Iso- accommodative Magnification Same distance of the object and image from the eye
  • 30. Equivalent Viewing Power(EVP)  Discard ill-defined magnifications:  according to Bailey. Better to specify every optical LVD in term of EVP  Magnifying effect of eye represented by EVP  EVP = Equivalent focal length of the lens system  EVP = X D of a lens system  Provides the same resolution as if the naked eye were viewing the object at ‘x’ m away with out magnifer  Where, X = 1/x
  • 32. Equivalent Viewing Power(EVP)  EVP represents  intrinsic property of an optical system that corresponds to the resolution afforded by the system  If EVP of a system that gives certain resolution to the patient is know,  the resolution capability by any other system can be known by simple proportion  Eg:  If NVA with + 2.50 D is 6/18 at 40 cm, an EVP of + 7.50 Ds magnifier will increase VA to 6/6 at 13 cm.
  • 33. Equivalent Viewing Power(EVP)  By knowing EVP of a optical system is known  A logical & efficient conversion of one magnifying optical system to another  Eg: If a +10.00 D add is required to read 2M print at 10 cm  For a CCTV, with 5 x magnification viewed at 50 cm & +2.00D add will enable patient to read 2M print
  • 34. Prediction of Magnification for Low Vision  Accurate corrected near visual acuity assessment  Always in Metric system (1M = N8)  For unknown sized reading material  Conversion to metric system = letter size in mm/1.45 mm
  • 35. Rule of 1000  Average number of letters + space counted in 1 inch  Divide that number to 1000 for metric system  Resultant is reduced snellen denominator  Eg: 40 spaces & letters in 1 inch of text patient wants to read  1000/40 = 25 : Reduced acuity size of the print= 20/25
  • 36. Methods to determine Magnification 1. Lebenson’s Method of reciprocal vision 2. Kestenbaum’s Method 3. Ratio between Best near VA to target VA 4. Reading power needed to read 1 M print 5. Lovie’s Method 6. Ian Bailey method: Equivalent Viewing distance (EVP)
  • 37. Lebenson’s Method of reciprocal vision  Find Best corrected distance acuity & a near target acuity  M = ratio of denominator of distance Snellen fraction to denominator of near snellen fraction of target acuity  Eg:  BDA = 20/400 , TNA = 20/50 (1M)  M = 400/50 = 8 x, Power (D) = M x 4 = + 32 Ds
  • 38. Kestenbaum’s Method  Required Dioptric power of add =  Reciprocal of best corrected distance acuity  Eg:  If BCDA = 20/400, Power of add = 400/20 = + 20Ds  Both above method can give wrong M value:  Distance acuity is poor predictor of near acuity
  • 39. Ratio between Best near VA to target VA  Patient BNA at testing distance (TD) is recorded in M notation  Target near acuity (TNA) is determine, let “X” be new reading distance  Then, BNA/ TNA = TD/ X, X = TNA/BNA x TD  Now, power of Add = 1/X in m
  • 40. Ratio between Best near VA to target VA: Example  If, BNA = 4M at 0.4 m, TNA = 1M , X = ?  X = TNA/ BNA x TD = ¼ x 40 = 10 cm Add required (D) = 100/X = 100/10 = +10 Ds  Patient need to hold the reading material at 10 cm with + 10 Ds magnifier
  • 41. Reading power needed to read 1 M print  Measure BNA at 40 cm (16 inches)  Theoretical add power to read 1M print = Multiply BNA, M value by 2,50 Ds  Eg:  If 4 M read at 40 cm  Add power = 2.50 x 4 = + 10.00 Ds
  • 42. Lovie’s Method  To find the patient goal and expected reading rate  Reading rate (words per minute) for normal  To spot: 80 wpm – Enables identification of single word  To be fluent : 160 wpm – Enables reading accurately  Maximum: 320 wpm – Enables reading accurately at a high speed
  • 43. Lovie’s Method  Needs threshold than desired print size  Spot: one Line smaller  Fluent: Three lines smaller  Maximum: Five line  Eg: BNA is 1.6 M , required TNVA is 1 M  To be fluent threshold = 3 lines minimum = 0.5 M  Keep in mind:  “Magnification is more important than the field for best reading vision with visual impairment”
  • 44. Ian Bailey Equivalent Viewing distance (EVP)  Defn:  It is the distance at which the object itself would subtend an angle that is equal to the angle that is being subtended by the image.  We need to adopt EVD forgetting every magnification
  • 45. References • Essentials in Low vision practice by Richard S. Brilliant • Principles of low vision by Christine Dickinson • Low Vision Manual by Jothathon Jackson