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CORDIS - Risultati della ricerca dell’UE
CORDIS

IMaging-based CUSTOMised EYE diagnostics

CORDIS fornisce collegamenti ai risultati finali pubblici e alle pubblicazioni dei progetti ORIZZONTE.

I link ai risultati e alle pubblicazioni dei progetti del 7° PQ, così come i link ad alcuni tipi di risultati specifici come dataset e software, sono recuperati dinamicamente da .OpenAIRE .

Risultati finali

Report on diagnostic value of imaging tool for keratoconus and IOP-related glaucoma (si apre in una nuova finestra)

Report on diagnostic value of imaging tool for keratoconus and IOPrelated glaucoma including clinical study on keratoconus keratoconus suspects crosslinked keratoconus and glaucoma patients retrieved viscoelastic parameters and IOP

Report of viscoelastic parameters in first sets of eyes (si apre in una nuova finestra)

Report of viscoelastic parameters in first sets of eyes including enucleated eyes normal eyes in vivo and 2D keratoconus and CXL eyes

Internet outreach and social media (si apre in una nuova finestra)

The domain httpwwwimcustomeyeeu has been acquired for the IMCUSTOMEYE project and will be updated by the coordinating team with public information from research reports and activities related with the project Announcements will be distributed through a linked blog and a dedicated twitter account Flyers presenting research to the public will be printed and distributed information for the clinician and patient will be generated and disseminated through the web and social media

Report demonstrating the technique on enucleated eyes (si apre in una nuova finestra)

Corneal deformation imaging in porcine corneas ex vivo normal after IOPreducing drops and crosslinking and human donor eyes ex vivo

Report of effect of the impact treatment parameters on simulated outcomes (si apre in una nuova finestra)

Report of effect of the impact treatment parameters on simulated outcomes for intracorneal implant treatments cataracts and corneal refractive surgery

Report demonstrating the techniques in human eyes in vivo (si apre in una nuova finestra)

Corneal deformation imaging in normal eyes in vivo

Dissemination Plan (si apre in una nuova finestra)

A Dissemination Plan will be prepared during the first 4 months of the project identifying the most appropriate communication channels and tools for dissemination of key research findings related to all workpackages to a wide range of audiences

Innovation management report (si apre in una nuova finestra)

Innovation management report This activity will be in coordination with WP8

Documentation of dynamic OCT prototype (si apre in una nuova finestra)

Report with documents specifications validation on subjects and protocols for operation

Video clips (si apre in una nuova finestra)

Short 2 min video clips will be made showcasing the results for the research and clinical work packages after IP protection has been secured The videos will be aimed at the general public and will serve as explanatory material to potential investors in a commercialisation phaseMonths 12 24 and 36

Patient and general public engagement (si apre in una nuova finestra)

Each team member will hold an open door day to present the research to general public high school students or patient groups UCL will capitalise on the Patient Engagement Initiatives at Moorfields Eye Hospital and IOFV An IMCUSTOMEYE project joint event happening simultaneously at all sites is planned for the European Researchers Night in September 2018

Press releases and media coverage (si apre in una nuova finestra)

Publications in high impact journals and relevant achievements will be presented in press releases both institutional and newsletters from academic and professional societies where project members have influence Media coverage television radio press podcasts is expected following press releases Special attention will be made to seek broadcasting by European media such as EuronewsMonths 18 30 and 42

Project intranet in operation (si apre in una nuova finestra)

The established SharePoint site will be launched with areas for each work package internal management document tracking and internal communication

Pubblicazioni

Nanosensitive optical coherence tomography to assess wound healing within the cornea (si apre in una nuova finestra)

Autori: Cerine Lal, Sergey Alexandrov, Sweta Rani, Yi Zhou, Thomas Ritter, Martin Leahy
Pubblicato in: Biomedical Optics Express, Numero 11/7, 2020, Pagina/e 3407, ISSN 2156-7085
Editore: The Optical Society
DOI: 10.1364/BOE.389342

Corneal Properties of Keratoconus Based on Scheimpflug Light Intensity Distribution (si apre in una nuova finestra)

Autori: Alejandra Consejo, Karolina Glawdecka, Karol Karnowski, Jedrzej Solarski, Jos J. Rozema, Maciej Wojtkowski, D. Robert Iskander
Pubblicato in: Investigative Opthalmology & Visual Science, Numero 60/8, 2019, Pagina/e 3197, ISSN 1552-5783
Editore: ARVO
DOI: 10.1167/IOVS.19-26963

Noninvasive detection of nanoscale structural changes in cornea associated with cross‐linking treatment (si apre in una nuova finestra)

Autori: Yi Zhou, Sergey Alexandrov, Andrew Nolan, Nandan Das, Rajib Dey, Martin Leahy
Pubblicato in: Journal of Biophotonics, Numero 13/6, 2020, ISSN 1864-063X
Editore: Wiley - VCH Verlag GmbH & CO. KGaA
DOI: 10.1002/jbio.201960234

Corneal tissue properties following scleral lens wear using Scheimpflug imaging (si apre in una nuova finestra)

Autori: Alejandra Consejo, David Alonso‐Caneiro, Maciej Wojtkowski, Stephen J Vincent
Pubblicato in: Ophthalmic and Physiological Optics, 2020, ISSN 0275-5408
Editore: Blackwell Publishing Inc.
DOI: 10.1111/opo.12710

Nanoscale structure detection and monitoring of tumour growth with optical coherence tomography (si apre in una nuova finestra)

Autori: Nandan Das, Alexandrov Sergey, Yi Zhou, Katie E. Gilligan, Róisín M. Dwyer, Martin Leahy
Pubblicato in: Nanoscale Advances, Numero 2/7, 2020, Pagina/e 2853-2858, ISSN 2516-0230
Editore: Royal Society of Chemistry
DOI: 10.1039/D0NA00371A

The Role of Corneal Biomechanics for the Evaluation of Ectasia Patients (si apre in una nuova finestra)

Autori: Marcella Q. Salomão, Ana Luisa Hofling-Lima, Louise Pellegrino Gomes Esporcatte, Bernardo Lopes, Riccardo Vinciguerra, Paolo Vinciguerra, Jens Bühren, Nelson Sena, Guilherme Simões Luz Hilgert, Renato Ambrósio
Pubblicato in: International Journal of Environmental Research and Public Health, Numero 17/6, 2020, Pagina/e 2113, ISSN 1660-4601
Editore: MDPI
DOI: 10.3390/ijerph17062113

Keratoconus Detection Based on a Single Scheimpflug Image (si apre in una nuova finestra)

Autori: Alejandra Consejo, Jedrzej Solarski, Karol Karnowski, Jos J Rozema, Maciej Wojtkowski, D. Robert Iskander
Pubblicato in: Translational Vision Science & Technology, Numero 9/7, 2020, Pagina/e 36, ISSN 2164-2591
Editore: ARVO
DOI: 10.1167/tvst.9.7.36

Corneal Collagen Ordering After In Vivo Rose Bengal and Riboflavin Cross-Linking (si apre in una nuova finestra)

Autori: James A. Germann, Eduardo Martínez-Enríquez, M. Carmen Martínez-García, Irene E. Kochevar, Susana Marcos
Pubblicato in: Investigative Opthalmology & Visual Science, Numero 61/3, 2020, Pagina/e 28, ISSN 1552-5783
Editore: ARVO
DOI: 10.1167/iovs.61.3.28

Spatial frequency domain correlation mapping optical coherence tomography for nanoscale structural characterization (si apre in una nuova finestra)

Autori: Sergey Alexandrov, Paul M. McNamara, Nandan Das, Yi Zhou, Gillian Lynch, Josh Hogan, Martin Leahy
Pubblicato in: Applied Physics Letters, Numero 115/12, 2019, Pagina/e 121105, ISSN 0003-6951
Editore: American Institute of Physics
DOI: 10.1063/1.5110459

Assessment of the influence of viscoelasticity of cornea in animal ex vivo model using air-puff optical coherence tomography and corneal hysteresis (si apre in una nuova finestra)

Autori: Ewa Maczynska, Karol Karnowski, Krzysztof Szulzycki, Monika Malinowska, Hubert Dolezyczek, Artur Cichanski, Maciej Wojtkowski, Bartlomiej Kaluzny, Ireneusz Grulkowski
Pubblicato in: Journal of Biophotonics, Numero 12/2, 2019, Pagina/e e201800154, ISSN 1864-063X
Editore: Wiley - VCH Verlag GmbH & CO. KGaA
DOI: 10.1002/jbio.201800154

Characterization of cone size and centre in keratoconic corneas (si apre in una nuova finestra)

Autori: Ashkan Eliasy, Ahmed Abass, Bernardo T. Lopes, Riccardo Vinciguerra, Haixia Zhang, Paolo Vinciguerra, Renato Ambrósio, Cynthia J. Roberts, Ahmed Elsheikh
Pubblicato in: Journal of The Royal Society Interface, Numero 17/169, 2020, Pagina/e 20200271, ISSN 1742-5689
Editore: The Royal Society
DOI: 10.1098/rsif.2020.0271

Can the Corvis ST Estimate Corneal Viscoelasticity? (si apre in una nuova finestra)

Autori: Ahmed Abass, Cynthia J. Roberts, Bernardo Lopes, Ashkan Eliasy, Riccardo Vinciguerra, Renato Ambrósio, Paolo Vinciguerra, Ahmed Elsheikh, Mathew Francis, Himanshu Matalia, Rudy M.M.A. Nuijts, Bart Haex, Rohit Shetty, Abhijit Sinha Roy
Pubblicato in: Journal of Refractive Surgery, Numero 36/5, 2020, Pagina/e 346-347, ISSN 1081-597X
Editore: Slack, Inc.
DOI: 10.3928/1081597x-20200212-04

Determination of Corneal Biomechanical Behavior in-vivo for Healthy Eyes Using CorVis ST Tonometry: Stress-Strain Index (si apre in una nuova finestra)

Autori: Ashkan Eliasy, Kai-Jung Chen, Riccardo Vinciguerra, Bernardo T. Lopes, Ahmed Abass, Paolo Vinciguerra, Renato Ambrósio Jr., Cynthia J. Roberts, Ahmed Elsheikh
Pubblicato in: Frontiers in Bioengineering and Biotechnology, Numero 7, 2019, ISSN 2296-4185
Editore: Frontiers
DOI: 10.3389/fbioe.2019.00105

Investigation of the corneal frequency response to modulated sound excitation.

Autori: J. S. Birkenfeld; A. Curatolo; A. Nolan; R. McAuley; A. Abass; A. Eliasy; M. Leahy; A. Elsheikh; S. Marcos
Pubblicato in: Investigative Ophthalmology & Visual Science, 2020
Editore: ARVO

Assessing collagen microstructural changes in an ex vivo keratoconic eye model with Stokes polarization-sensitive optical coherence tomography

Autori: N. Uribe-Patarroyo; J. Sophie Birkenfeld; A. Curatolo; T. M. Cannon; J. Germann; M. Villiger; S. Marcos; B. E. Bouma
Pubblicato in: Investigative Ophthalmology & Visual Science, 2020
Editore: ARVO

Scleral cross-linking using Rose Bengal-Green Light

Autori: L. I. Villegas Lopez; D. Bronte; J. Germann; S. Marcos
Pubblicato in: Investigative Ophthalmology & Visual Science, 2020
Editore: ARVO

Customised optical coherence tomography system for corneal deformation imaging on multiple meridians

Autori: A. Curatolo, J. Birkenfeld, J. A. Germann, A. de Castro, G. Muralidharan, M. Velasco, E. Martínez, and S. Marcos
Pubblicato in: 2018
Editore: XII Reunión Nacional de Óptica

Assessment of ocular mechanical resonances using phase-sensitive OCT and frequency-domain air puff stimulation

Autori: J. Birkenfeld, A. Ramier, B. Tavakol, S. Marcos and S. Yun
Pubblicato in: 2018
Editore: ARVO Annual Meeting 2018

Obtaining biomechanical properties of corneal tissue in-vivo using a non-contact method

Autori: Elsheikh, A., Eliasy, A., Chen, K. J., & Vinciguerra, R.
Pubblicato in: 2018
Editore: 8th World Congress of Biomechanics

Fluid Structure Interaction (FSI) Simulation Of the human eye under the air puff tonometry using Computational Fluid Dynamics (CFD)

Autori: Maklad, O., Theofilis, V., & Elsheikh, A.
Pubblicato in: 2018
Editore: ICCFD10 - Tenth International Conference on CFD

Intraocular Pressure Measurement Pre- and Post Refractive Surgery Using GAT and CorVis ST bIOP Algorithm

Autori: Eliasy, A., Elsheikh, A., & Chen, K. -J.
Pubblicato in: 2018
Editore: 6th European Conference on Computational Mechanics (ECCM 6) 7th European Conference on Computational Fluid Dynamics (ECFD 7)

Novel Intraocular Pressure Measurement Algorithm for Patients with Keratoconus

Autori: Eliasy, A., Chen, K. J., Vinciguerra, R., & Elsheikh, A.
Pubblicato in: 2018
Editore: 8th World Congress of Biomechanics

Microscopic organization of corneal collagen: Comparison between keratoconic and normal human corneas

Autori: J. Germann, E. Martinez-Enriquez, S. Bueno, A. Mohamed, S. Nandyala, S. Chaurasia, S. Marcos
Pubblicato in: Investigative Ophthalmology & Visual Science, 2020
Editore: ARVO

Probing temporal structural changes within cornea using 200 kHz swept source nano sensitive optical coherence tomography (nsOCT) (si apre in una nuova finestra)

Autori: Cerine Lal, Sergey Alexandrov, Sweta Rani, Thomas Ritter, Martin Leahy
Pubblicato in: Dynamics and Fluctuations in Biomedical Photonics XVII, 2020, Pagina/e 7, ISBN 9781510632424
Editore: SPIE
DOI: 10.1117/12.2553024

Customized swept-source optical coherence tomography system for air-puff induced corneal deformation imaging on multiple meridians (Conference Presentation) (si apre in una nuova finestra)

Autori: Andrea Curatolo, Judith Birkenfeld, Eduardo Martínez, James A. Germann, Jesús Palací, Daniel Pascual, Geethika Muralidharan, Jedrzej Solarski, Karol Karnowski, Maciej Wojtkowski, Susana Marcos
Pubblicato in: Ophthalmic Technologies XXX, 2020, Pagina/e 30, ISBN 9781510632004
Editore: SPIE
DOI: 10.1117/12.2546050

Detecting deformation asymmetries on multiple meridians in an ex vivo keratoconic eye model

Autori: Andrea Curatolo; Judith Sophie Birkenfeld; Eduardo Martinez-Enriquez; James Germann; Jesus Palaci; Daniel Pascual; Geethika Muralidharan; Ashkan Eliasy; Ahmed Abass; Jedrzej Solarski; Karol Karnowski; Maciej Wojtkowski; Ahmed Elsheikh; Susana Marcos
Pubblicato in: Investigative Ophthalmology & Visual Science, 2020
Editore: ARVO

Künstliche Intelligenz zur Entwicklung von Screening-Parametern im Bereich der kornealen Biomechanik (si apre in una nuova finestra)

Autori: Sven Reisdorf
Pubblicato in: Klinische Monatsblätter für Augenheilkunde, Numero 236/12, 2019, Pagina/e 1423-1427, ISSN 0023-2165
Editore: Georg Thieme Verlag
DOI: 10.1055/a-1032-8559

Biomechanics of the Eye _ Chapter 6. Material properties of the human cornea: anisotropy

Autori: Eliasy, A., Zhou, D., Studer, H., Boote, C., & Elsheikh, A.
Pubblicato in: Material properties of the human cornea: anisotropy, 2018
Editore: Kugler Publications

Diritti di proprietà intellettuale

METHOD AND SYSTEM FOR SCREENING OCULAR TISSUE ABNORMALITY THROUGH DEFORMATION OF THE OCULAR TISSUE

Numero candidatura/pubblicazione: 20 382178
Data: 2020-03-11
Candidato/i: AGENCIA ESTATAL CONSEJO SUPERIOR DE INVESTIGACIONES CIENTIFICAS

SYSTEM AND METHOD FOR OBTAINING BIOMECHANICAL PARAMETERS OF OCULAR TISSUE THROUGH DEFORMATION OF THE OCULAR TISSUE

Numero candidatura/pubblicazione: 20 382067
Data: 2020-02-02
Candidato/i: THE UNIVERSITY OF LIVERPOOL

SYSTEM AND METHOD FOR OBTAINING BIOMECHANICAL PARAMETERS OF OCULAR TISSUE THROUGH DEFORMATION OF THE OCULAR TISSUE

Numero candidatura/pubblicazione: 20 382067
Data: 2020-02-02
Candidato/i: INSTYTUT CHEMII FIZYCZNEJ POLSKIEJ AKADEMII NAUK

SYSTEM AND METHOD FOR OBTAINING BIOMECHANICAL PARAMETERS OF OCULAR TISSUE THROUGH DEFORMATION OF THE OCULAR TISSUE

Numero candidatura/pubblicazione: 20 382067
Data: 2020-02-02
Candidato/i: AGENCIA ESTATAL CONSEJO SUPERIOR DE INVESTIGACIONES CIENTIFICAS

SYSTEM AND METHOD FOR OBTAINING OCULAR TISSUE BIOMECHANICAL PARAMETERS

Numero candidatura/pubblicazione: 20 382178
Data: 2018-04-30
Candidato/i: THE UNIVERSITY OF LIVERPOOL

SYSTEM AND METHOD FOR OBTAINING OCULAR TISSUE BIOMECHANICAL PARAMETERS

Numero candidatura/pubblicazione: 20 382178
Data: 2018-04-30
Candidato/i: THE UNIVERSITY OF LIVERPOOL

SYSTEM AND METHOD FOR OBTAINING OCULAR TISSUE BIOMECHANICAL PARAMETERS

Numero candidatura/pubblicazione: 20 382178
Data: 2018-04-30
Candidato/i: AGENCIA ESTATAL CONSEJO SUPERIOR DE INVESTIGACIONES CIENTIFICAS

METHOD AND SYSTEM FOR SCREENING OCULAR TISSUE ABNORMALITY THROUGH DEFORMATION OF THE OCULAR TISSUE

Numero candidatura/pubblicazione: 20 382178
Data: 2020-03-11
Candidato/i: THE UNIVERSITY OF LIVERPOOL

SYSTEM AND METHOD FOR OBTAINING BIOMECHANICAL PARAMETERS OF OCULAR TISSUE THROUGH DEFORMATION OF THE OCULAR TISSUE

Numero candidatura/pubblicazione: 20 382067
Data: 2020-02-02
Candidato/i: INSTYTUT CHEMII FIZYCZNEJ POLSKIEJ AKADEMII NAUK

SYSTEM AND METHOD FOR OBTAINING BIOMECHANICAL PARAMETERS OF OCULAR TISSUE THROUGH DEFORMATION OF THE OCULAR TISSUE

Numero candidatura/pubblicazione: 20 382067
Data: 2020-02-02
Candidato/i: THE UNIVERSITY OF LIVERPOOL

METHOD AND SYSTEM FOR SCREENING OCULAR TISSUE ABNORMALITY THROUGH DEFORMATION OF THE OCULAR TISSUE

Numero candidatura/pubblicazione: 20 382178
Data: 2020-03-11
Candidato/i: UNIVERSITY OF GALWAY

METHOD AND SYSTEM FOR SCREENING OCULAR TISSUE ABNORMALITY THROUGH DEFORMATION OF THE OCULAR TISSUE

Numero candidatura/pubblicazione: 20 382178
Data: 2020-03-11
Candidato/i: THE UNIVERSITY OF LIVERPOOL

SYSTEM AND METHOD FOR OBTAINING OCULAR TISSUE BIOMECHANICAL PARAMETERS

Numero candidatura/pubblicazione: 20 382178
Data: 2018-04-30
Candidato/i: AGENCIA ESTATAL CONSEJO SUPERIOR DE INVESTIGACIONES CIENTIFICAS

METHOD AND SYSTEM FOR SCREENING OCULAR TISSUE ABNORMALITY THROUGH DEFORMATION OF THE OCULAR TISSUE

Numero candidatura/pubblicazione: 20 382178
Data: 2020-03-11
Candidato/i: AGENCIA ESTATAL CONSEJO SUPERIOR DE INVESTIGACIONES CIENTIFICAS

METHOD AND SYSTEM FOR SCREENING OCULAR TISSUE ABNORMALITY THROUGH DEFORMATION OF THE OCULAR TISSUE

Numero candidatura/pubblicazione: 20 382178
Data: 2020-03-11
Candidato/i: UNIVERSITY OF GALWAY

SYSTEM AND METHOD FOR OBTAINING BIOMECHANICAL PARAMETERS OF OCULAR TISSUE THROUGH DEFORMATION OF THE OCULAR TISSUE

Numero candidatura/pubblicazione: 20 382067
Data: 2020-02-02
Candidato/i: AGENCIA ESTATAL CONSEJO SUPERIOR DE INVESTIGACIONES CIENTIFICAS

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