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CenterVue fundus-tracked perimeter compass cmp
Fundus Tracked Perimeter Compass Cmp, supplied by CenterVue, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/fundus+perimeter+compass/compass+fundus+perimeter/pm40129102-93-23-28
Average 90 stars, based on 1 article reviews
fundus-tracked perimeter compass cmp - by Bioz Stars, 2026-09
90/100 stars

Images

Related Articles

Diagnostic Assay:

Article Title: A Comparison between the Compass Fundus Perimeter and the Humphrey Field Analyzer.
Article Snippet: .. Giovanni Montesano, MD,1,2,3 Susan R. Bryan, PhD,2 David P. Crabb, PhD,2 Paolo Fogagnolo, MD,1 Francesco Oddone, MD, PhD,4 Allison M. McKendrick, PhD,5 Andrew Turpin, PhD,6 Paolo Lanzetta, MD,7 Andrea Perdicchi, MD,8 Chris A. Johnson, PhD,9 David F. Garway-Heath, MD, FRCOphth,3 Paolo Brusini, MD,10 Luca M. Rossetti, MD, FRCOphth1 Purpose: To evaluate relative diagnostic precision and testeretest variability of 2 devices, the Compass (CMP, CenterVue, Padova, Italy) fundus perimeter and the Humphrey Field Analyzer (HFA, Zeiss, Dublin, CA), in detecting glaucomatous optic neuropathy (GON). ..

Article Title: Effect of fundus tracking on structure-function relationship in glaucoma.
Article Snippet: © Author(s) (or their employer(s)) 2020.. No commercial reuse.. See rights and permissions.

other:

Article Title: An fMRI-based Approach for Measuring Contrast Sensitivity Across the Visual Field in Visual Cortex
Article Snippet: For comparison, a behavioral visual field perimetry map was obtained with the Compass fundus perimeter (CenterVue, Padova, Italy) for each eye, using a 24-2 testing grid with a Goldmann size III target (54 locations: 52 from the 24-2 grid, 1 at fixation, and 1 at the physiological blind spot).

Imaging:

Article Title: Effect of fundus tracking on structure-function relationship in glaucoma.
Article Snippet: © Author(s) (or their employer(s)) 2020.. No commercial reuse.. See rights and permissions.

Functional Assay:

Article Title: Effect of fundus tracking on structure-function relationship in glaucoma.
Article Snippet: © Author(s) (or their employer(s)) 2020.. No commercial reuse.. See rights and permissions.



Similar Products

90
CenterVue fundus-tracked perimeter compass cmp
Fundus Tracked Perimeter Compass Cmp, supplied by CenterVue, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/fundus+perimeter+compass/compass+fundus+perimeter/pm40129102-93-23-28
Average 90 stars, based on 1 article reviews
fundus-tracked perimeter compass cmp - by Bioz Stars, 2026-09
90/100 stars
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CenterVue fundus perimeter compass
Fundus Perimeter Compass, supplied by CenterVue, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/fundus+perimeter+compass/compass+fundus+perimeter/bio_rxiv__2024__10__29__619403-187-12-15
Average 90 stars, based on 1 article reviews
fundus perimeter compass - by Bioz Stars, 2026-09
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CenterVue microperimetry compass fundus perimeter cmp
A 58-year-old female patient presented with a 12-month history of subretinal fluid (SRF) in the left eye. ( a ) By 1 h after irradiation, 20 test spots (yellow boxes) were barely visible on color fundus photography (CFP). Test spots made with three micropulses at 160 W of pulse energy were less barely visible than those produced with 10 micropulses at 160 W. ( b ) All barely visible test spots showed leakages on fundus fluorescein angiography (FFA). Test spots produced with three micropulses at 160 W of pulse energy (white arrowhead) showed less leakage than those made with 10 micropulses at 160 W (yellow arrowhead). ( c ) Thirty-five selective retina therapy (SRT) spots, at one-spot spacing, were produced by 3 micropulses (160 W) in the leakage area (yellow circle) on FFA. ( d ) SRF was observed on optical coherence tomography (OCT) at baseline. ( e ) SRF was resolved completely at 6 months post-SRT. No SRT spots were visible on CFP at baseline ( f ) and at 6 months post-SRT ( g ). ( h ) The mean deviation (MD) of <t>microperimetry</t> improved from −1.42 dB at baseline to +0.15 dB ( i ) at 6 months. ( j ) Hypoautofluorescent changes at 1 h post-SRT were observed at the test spots produced by 180 W micropulses (white box), but no change was seen at spots produced by 160 W micropulses (red box). ( k ) Autofluorescence of test spots had increased by 1 month post-SRT, but was decreased at 3 months ( l ) and 6 months ( m ) post-SRT. No scotomatous change was observed in the SRT-treated area on microperimetry.
Microperimetry Compass Fundus Perimeter Cmp, supplied by CenterVue, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/fundus+perimeter+compass/fundus+automated+perimeter+compass/pmc11396731-89-5-10
Average 90 stars, based on 1 article reviews
microperimetry compass fundus perimeter cmp - by Bioz Stars, 2026-09
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Icare Inc fundus tracking perimeter compass cmp
A 58-year-old female patient presented with a 12-month history of subretinal fluid (SRF) in the left eye. ( a ) By 1 h after irradiation, 20 test spots (yellow boxes) were barely visible on color fundus photography (CFP). Test spots made with three micropulses at 160 W of pulse energy were less barely visible than those produced with 10 micropulses at 160 W. ( b ) All barely visible test spots showed leakages on fundus fluorescein angiography (FFA). Test spots produced with three micropulses at 160 W of pulse energy (white arrowhead) showed less leakage than those made with 10 micropulses at 160 W (yellow arrowhead). ( c ) Thirty-five selective retina therapy (SRT) spots, at one-spot spacing, were produced by 3 micropulses (160 W) in the leakage area (yellow circle) on FFA. ( d ) SRF was observed on optical coherence tomography (OCT) at baseline. ( e ) SRF was resolved completely at 6 months post-SRT. No SRT spots were visible on CFP at baseline ( f ) and at 6 months post-SRT ( g ). ( h ) The mean deviation (MD) of <t>microperimetry</t> improved from −1.42 dB at baseline to +0.15 dB ( i ) at 6 months. ( j ) Hypoautofluorescent changes at 1 h post-SRT were observed at the test spots produced by 180 W micropulses (white box), but no change was seen at spots produced by 160 W micropulses (red box). ( k ) Autofluorescence of test spots had increased by 1 month post-SRT, but was decreased at 3 months ( l ) and 6 months ( m ) post-SRT. No scotomatous change was observed in the SRT-treated area on microperimetry.
Fundus Tracking Perimeter Compass Cmp, supplied by Icare Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/fundus+perimeter+compass/fundus+tracking+perimeter+compass+cmp/pmc11205229-34-2-4
Average 90 stars, based on 1 article reviews
fundus tracking perimeter compass cmp - by Bioz Stars, 2026-09
90/100 stars
  Buy from Supplier

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CenterVue compass automated fundus perimeter
A 58-year-old female patient presented with a 12-month history of subretinal fluid (SRF) in the left eye. ( a ) By 1 h after irradiation, 20 test spots (yellow boxes) were barely visible on color fundus photography (CFP). Test spots made with three micropulses at 160 W of pulse energy were less barely visible than those produced with 10 micropulses at 160 W. ( b ) All barely visible test spots showed leakages on fundus fluorescein angiography (FFA). Test spots produced with three micropulses at 160 W of pulse energy (white arrowhead) showed less leakage than those made with 10 micropulses at 160 W (yellow arrowhead). ( c ) Thirty-five selective retina therapy (SRT) spots, at one-spot spacing, were produced by 3 micropulses (160 W) in the leakage area (yellow circle) on FFA. ( d ) SRF was observed on optical coherence tomography (OCT) at baseline. ( e ) SRF was resolved completely at 6 months post-SRT. No SRT spots were visible on CFP at baseline ( f ) and at 6 months post-SRT ( g ). ( h ) The mean deviation (MD) of <t>microperimetry</t> improved from −1.42 dB at baseline to +0.15 dB ( i ) at 6 months. ( j ) Hypoautofluorescent changes at 1 h post-SRT were observed at the test spots produced by 180 W micropulses (white box), but no change was seen at spots produced by 160 W micropulses (red box). ( k ) Autofluorescence of test spots had increased by 1 month post-SRT, but was decreased at 3 months ( l ) and 6 months ( m ) post-SRT. No scotomatous change was observed in the SRT-treated area on microperimetry.
Compass Automated Fundus Perimeter, supplied by CenterVue, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/fundus+perimeter+compass/fundus+automated+perimeter+compass/pm38787547-36-48-55
Average 90 stars, based on 1 article reviews
compass automated fundus perimeter - by Bioz Stars, 2026-09
90/100 stars
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CenterVue compass (cmp) fundus perimeter
A 58-year-old female patient presented with a 12-month history of subretinal fluid (SRF) in the left eye. ( a ) By 1 h after irradiation, 20 test spots (yellow boxes) were barely visible on color fundus photography (CFP). Test spots made with three micropulses at 160 W of pulse energy were less barely visible than those produced with 10 micropulses at 160 W. ( b ) All barely visible test spots showed leakages on fundus fluorescein angiography (FFA). Test spots produced with three micropulses at 160 W of pulse energy (white arrowhead) showed less leakage than those made with 10 micropulses at 160 W (yellow arrowhead). ( c ) Thirty-five selective retina therapy (SRT) spots, at one-spot spacing, were produced by 3 micropulses (160 W) in the leakage area (yellow circle) on FFA. ( d ) SRF was observed on optical coherence tomography (OCT) at baseline. ( e ) SRF was resolved completely at 6 months post-SRT. No SRT spots were visible on CFP at baseline ( f ) and at 6 months post-SRT ( g ). ( h ) The mean deviation (MD) of <t>microperimetry</t> improved from −1.42 dB at baseline to +0.15 dB ( i ) at 6 months. ( j ) Hypoautofluorescent changes at 1 h post-SRT were observed at the test spots produced by 180 W micropulses (white box), but no change was seen at spots produced by 160 W micropulses (red box). ( k ) Autofluorescence of test spots had increased by 1 month post-SRT, but was decreased at 3 months ( l ) and 6 months ( m ) post-SRT. No scotomatous change was observed in the SRT-treated area on microperimetry.
Compass (Cmp) Fundus Perimeter, supplied by CenterVue, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/fundus+perimeter+compass/compass+fundus+perimeter/pmc10901223-8-8-5
Average 90 stars, based on 1 article reviews
compass (cmp) fundus perimeter - by Bioz Stars, 2026-09
90/100 stars
  Buy from Supplier

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CenterVue fundus automated perimeter compass
A 58-year-old female patient presented with a 12-month history of subretinal fluid (SRF) in the left eye. ( a ) By 1 h after irradiation, 20 test spots (yellow boxes) were barely visible on color fundus photography (CFP). Test spots made with three micropulses at 160 W of pulse energy were less barely visible than those produced with 10 micropulses at 160 W. ( b ) All barely visible test spots showed leakages on fundus fluorescein angiography (FFA). Test spots produced with three micropulses at 160 W of pulse energy (white arrowhead) showed less leakage than those made with 10 micropulses at 160 W (yellow arrowhead). ( c ) Thirty-five selective retina therapy (SRT) spots, at one-spot spacing, were produced by 3 micropulses (160 W) in the leakage area (yellow circle) on FFA. ( d ) SRF was observed on optical coherence tomography (OCT) at baseline. ( e ) SRF was resolved completely at 6 months post-SRT. No SRT spots were visible on CFP at baseline ( f ) and at 6 months post-SRT ( g ). ( h ) The mean deviation (MD) of <t>microperimetry</t> improved from −1.42 dB at baseline to +0.15 dB ( i ) at 6 months. ( j ) Hypoautofluorescent changes at 1 h post-SRT were observed at the test spots produced by 180 W micropulses (white box), but no change was seen at spots produced by 160 W micropulses (red box). ( k ) Autofluorescence of test spots had increased by 1 month post-SRT, but was decreased at 3 months ( l ) and 6 months ( m ) post-SRT. No scotomatous change was observed in the SRT-treated area on microperimetry.
Fundus Automated Perimeter Compass, supplied by CenterVue, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/fundus+perimeter+compass/fundus+automated+perimeter+compass/10__1097_slash_ijg__0000000000002358-35-6-1
Average 90 stars, based on 1 article reviews
fundus automated perimeter compass - by Bioz Stars, 2026-09
90/100 stars
  Buy from Supplier

90
CenterVue compass fundus perimeter
A 58-year-old female patient presented with a 12-month history of subretinal fluid (SRF) in the left eye. ( a ) By 1 h after irradiation, 20 test spots (yellow boxes) were barely visible on color fundus photography (CFP). Test spots made with three micropulses at 160 W of pulse energy were less barely visible than those produced with 10 micropulses at 160 W. ( b ) All barely visible test spots showed leakages on fundus fluorescein angiography (FFA). Test spots produced with three micropulses at 160 W of pulse energy (white arrowhead) showed less leakage than those made with 10 micropulses at 160 W (yellow arrowhead). ( c ) Thirty-five selective retina therapy (SRT) spots, at one-spot spacing, were produced by 3 micropulses (160 W) in the leakage area (yellow circle) on FFA. ( d ) SRF was observed on optical coherence tomography (OCT) at baseline. ( e ) SRF was resolved completely at 6 months post-SRT. No SRT spots were visible on CFP at baseline ( f ) and at 6 months post-SRT ( g ). ( h ) The mean deviation (MD) of <t>microperimetry</t> improved from −1.42 dB at baseline to +0.15 dB ( i ) at 6 months. ( j ) Hypoautofluorescent changes at 1 h post-SRT were observed at the test spots produced by 180 W micropulses (white box), but no change was seen at spots produced by 160 W micropulses (red box). ( k ) Autofluorescence of test spots had increased by 1 month post-SRT, but was decreased at 3 months ( l ) and 6 months ( m ) post-SRT. No scotomatous change was observed in the SRT-treated area on microperimetry.
Compass Fundus Perimeter, supplied by CenterVue, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/fundus+perimeter+compass/compass+fundus+perimeter/10__1097_slash_ijg__0000000000002358-6-21-18
Average 90 stars, based on 1 article reviews
compass fundus perimeter - by Bioz Stars, 2026-09
90/100 stars
  Buy from Supplier

90
CenterVue compass fundus automated perimeter
A 58-year-old female patient presented with a 12-month history of subretinal fluid (SRF) in the left eye. ( a ) By 1 h after irradiation, 20 test spots (yellow boxes) were barely visible on color fundus photography (CFP). Test spots made with three micropulses at 160 W of pulse energy were less barely visible than those produced with 10 micropulses at 160 W. ( b ) All barely visible test spots showed leakages on fundus fluorescein angiography (FFA). Test spots produced with three micropulses at 160 W of pulse energy (white arrowhead) showed less leakage than those made with 10 micropulses at 160 W (yellow arrowhead). ( c ) Thirty-five selective retina therapy (SRT) spots, at one-spot spacing, were produced by 3 micropulses (160 W) in the leakage area (yellow circle) on FFA. ( d ) SRF was observed on optical coherence tomography (OCT) at baseline. ( e ) SRF was resolved completely at 6 months post-SRT. No SRT spots were visible on CFP at baseline ( f ) and at 6 months post-SRT ( g ). ( h ) The mean deviation (MD) of <t>microperimetry</t> improved from −1.42 dB at baseline to +0.15 dB ( i ) at 6 months. ( j ) Hypoautofluorescent changes at 1 h post-SRT were observed at the test spots produced by 180 W micropulses (white box), but no change was seen at spots produced by 160 W micropulses (red box). ( k ) Autofluorescence of test spots had increased by 1 month post-SRT, but was decreased at 3 months ( l ) and 6 months ( m ) post-SRT. No scotomatous change was observed in the SRT-treated area on microperimetry.
Compass Fundus Automated Perimeter, supplied by CenterVue, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/fundus+perimeter+compass/fundus+automated+perimeter+compass/pmc11289009-24-4-8
Average 90 stars, based on 1 article reviews
compass fundus automated perimeter - by Bioz Stars, 2026-09
90/100 stars
  Buy from Supplier

90
CenterVue microperimeter compass fundus automated perimeter
A 58-year-old female patient presented with a 12-month history of subretinal fluid (SRF) in the left eye. ( a ) By 1 h after irradiation, 20 test spots (yellow boxes) were barely visible on color fundus photography (CFP). Test spots made with three micropulses at 160 W of pulse energy were less barely visible than those produced with 10 micropulses at 160 W. ( b ) All barely visible test spots showed leakages on fundus fluorescein angiography (FFA). Test spots produced with three micropulses at 160 W of pulse energy (white arrowhead) showed less leakage than those made with 10 micropulses at 160 W (yellow arrowhead). ( c ) Thirty-five selective retina therapy (SRT) spots, at one-spot spacing, were produced by 3 micropulses (160 W) in the leakage area (yellow circle) on FFA. ( d ) SRF was observed on optical coherence tomography (OCT) at baseline. ( e ) SRF was resolved completely at 6 months post-SRT. No SRT spots were visible on CFP at baseline ( f ) and at 6 months post-SRT ( g ). ( h ) The mean deviation (MD) of <t>microperimetry</t> improved from −1.42 dB at baseline to +0.15 dB ( i ) at 6 months. ( j ) Hypoautofluorescent changes at 1 h post-SRT were observed at the test spots produced by 180 W micropulses (white box), but no change was seen at spots produced by 160 W micropulses (red box). ( k ) Autofluorescence of test spots had increased by 1 month post-SRT, but was decreased at 3 months ( l ) and 6 months ( m ) post-SRT. No scotomatous change was observed in the SRT-treated area on microperimetry.
Microperimeter Compass Fundus Automated Perimeter, supplied by CenterVue, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/fundus+perimeter+compass/fundus+automated+perimeter+compass/pm37697208-34-1-8
Average 90 stars, based on 1 article reviews
microperimeter compass fundus automated perimeter - by Bioz Stars, 2026-09
90/100 stars
  Buy from Supplier

Image Search Results


A 58-year-old female patient presented with a 12-month history of subretinal fluid (SRF) in the left eye. ( a ) By 1 h after irradiation, 20 test spots (yellow boxes) were barely visible on color fundus photography (CFP). Test spots made with three micropulses at 160 W of pulse energy were less barely visible than those produced with 10 micropulses at 160 W. ( b ) All barely visible test spots showed leakages on fundus fluorescein angiography (FFA). Test spots produced with three micropulses at 160 W of pulse energy (white arrowhead) showed less leakage than those made with 10 micropulses at 160 W (yellow arrowhead). ( c ) Thirty-five selective retina therapy (SRT) spots, at one-spot spacing, were produced by 3 micropulses (160 W) in the leakage area (yellow circle) on FFA. ( d ) SRF was observed on optical coherence tomography (OCT) at baseline. ( e ) SRF was resolved completely at 6 months post-SRT. No SRT spots were visible on CFP at baseline ( f ) and at 6 months post-SRT ( g ). ( h ) The mean deviation (MD) of microperimetry improved from −1.42 dB at baseline to +0.15 dB ( i ) at 6 months. ( j ) Hypoautofluorescent changes at 1 h post-SRT were observed at the test spots produced by 180 W micropulses (white box), but no change was seen at spots produced by 160 W micropulses (red box). ( k ) Autofluorescence of test spots had increased by 1 month post-SRT, but was decreased at 3 months ( l ) and 6 months ( m ) post-SRT. No scotomatous change was observed in the SRT-treated area on microperimetry.

Journal: Journal of Clinical Medicine

Article Title: Use of a Fundus Image-Based Titration Strategy for Selective Retina Therapy for Central Serous Chorioretinopathy

doi: 10.3390/jcm13175230

Figure Lengend Snippet: A 58-year-old female patient presented with a 12-month history of subretinal fluid (SRF) in the left eye. ( a ) By 1 h after irradiation, 20 test spots (yellow boxes) were barely visible on color fundus photography (CFP). Test spots made with three micropulses at 160 W of pulse energy were less barely visible than those produced with 10 micropulses at 160 W. ( b ) All barely visible test spots showed leakages on fundus fluorescein angiography (FFA). Test spots produced with three micropulses at 160 W of pulse energy (white arrowhead) showed less leakage than those made with 10 micropulses at 160 W (yellow arrowhead). ( c ) Thirty-five selective retina therapy (SRT) spots, at one-spot spacing, were produced by 3 micropulses (160 W) in the leakage area (yellow circle) on FFA. ( d ) SRF was observed on optical coherence tomography (OCT) at baseline. ( e ) SRF was resolved completely at 6 months post-SRT. No SRT spots were visible on CFP at baseline ( f ) and at 6 months post-SRT ( g ). ( h ) The mean deviation (MD) of microperimetry improved from −1.42 dB at baseline to +0.15 dB ( i ) at 6 months. ( j ) Hypoautofluorescent changes at 1 h post-SRT were observed at the test spots produced by 180 W micropulses (white box), but no change was seen at spots produced by 160 W micropulses (red box). ( k ) Autofluorescence of test spots had increased by 1 month post-SRT, but was decreased at 3 months ( l ) and 6 months ( m ) post-SRT. No scotomatous change was observed in the SRT-treated area on microperimetry.

Article Snippet: Retinal sensitivity was measured using microperimetry (compass fundus perimeter, CMP; Centervue, Padova, Italy), which consisted of a scanning ophthalmoscope, an infrared, red-free image of the posterior pole, and an automated perimeter with active retinal tracking.

Techniques: Irradiation, Produced, Tomography

Baseline demographics and characteristics of 29 eyes in 29 patients with central serous chorioretinopathy.

Journal: Journal of Clinical Medicine

Article Title: Use of a Fundus Image-Based Titration Strategy for Selective Retina Therapy for Central Serous Chorioretinopathy

doi: 10.3390/jcm13175230

Figure Lengend Snippet: Baseline demographics and characteristics of 29 eyes in 29 patients with central serous chorioretinopathy.

Article Snippet: Retinal sensitivity was measured using microperimetry (compass fundus perimeter, CMP; Centervue, Padova, Italy), which consisted of a scanning ophthalmoscope, an infrared, red-free image of the posterior pole, and an automated perimeter with active retinal tracking.

Techniques: Injection

A 52-year-old male patient presented with a 9-month history of subretinal fluid (SRF) in the left eye. ( a ) Twenty test spots (yellow boxes) were observed at 1 h after irradiation on color fundus photography (CFP). While test spots (160 and 180 W) delivered with 10 micropulses were ”barely visible”, other test spots produced with 3 micropulses were invisible on CFP. All test spots showed leakages on fundus fluorescein angiography (FFA). ( b ) Thirty-nine SRT spots (160 W) with one-spot spacing, produced with three micropulses, were applied at diffuse leakages (yellow circle) on FFA. ( c ) SRF was seen on optical coherence tomography (OCT) at baseline ( d ). SRF was resolved completely on OCT at 6 months post-SRT. ( e ) No SRT spots were visible on CFP at 6 months post-SRT. ( f ) The mean deviation (MD) of microperimetry improved from −0.45 dB at baseline to −0.10 dB ( g ) at 6 months after SRT. No scotomatous change was observed in the SRT-treated area on microperimetry.

Journal: Journal of Clinical Medicine

Article Title: Use of a Fundus Image-Based Titration Strategy for Selective Retina Therapy for Central Serous Chorioretinopathy

doi: 10.3390/jcm13175230

Figure Lengend Snippet: A 52-year-old male patient presented with a 9-month history of subretinal fluid (SRF) in the left eye. ( a ) Twenty test spots (yellow boxes) were observed at 1 h after irradiation on color fundus photography (CFP). While test spots (160 and 180 W) delivered with 10 micropulses were ”barely visible”, other test spots produced with 3 micropulses were invisible on CFP. All test spots showed leakages on fundus fluorescein angiography (FFA). ( b ) Thirty-nine SRT spots (160 W) with one-spot spacing, produced with three micropulses, were applied at diffuse leakages (yellow circle) on FFA. ( c ) SRF was seen on optical coherence tomography (OCT) at baseline ( d ). SRF was resolved completely on OCT at 6 months post-SRT. ( e ) No SRT spots were visible on CFP at 6 months post-SRT. ( f ) The mean deviation (MD) of microperimetry improved from −0.45 dB at baseline to −0.10 dB ( g ) at 6 months after SRT. No scotomatous change was observed in the SRT-treated area on microperimetry.

Article Snippet: Retinal sensitivity was measured using microperimetry (compass fundus perimeter, CMP; Centervue, Padova, Italy), which consisted of a scanning ophthalmoscope, an infrared, red-free image of the posterior pole, and an automated perimeter with active retinal tracking.

Techniques: Irradiation, Produced, Tomography