Andrea Curatolo, dr
Doktor, The University of Western Australia.
Lider Grupy IDoc
obrazowanie biomedyczne
Opis
Lider Zespołu IDoc jest ekspertem w dziedzinie obrazowania biomedycznego, zwłaszcza w tomografii optycznej OCT i technikach pochodnych, których celem jest zwiększenie dokładności diagnostycznej i ukierunkowanie zabiegów operacyjnych. Takie podejście ma na celu poprawę wyników zdrowotnych, głównie w okulistyce i onkologii. Dr Curatolo uzyskał tytuł doktora w dziedzinie biofotoniki na Uniwersytecie Zachodniej Australii.
Jest autorem ponad 30 publikacji w recenzowanych czasopismach międzynarodowych znajdujących się w pierwszym kwartylu (Q1), w tym trzech rozdziałów w książkach specjalistycznych. Dr Curatolo jest również zaangażowany w badania nad wdrożeniami klinicznymi i komercjalizacjętechnologii biofotonicznych. Jest autorem kilku wniosków patentowych i współpracuje z firmami z branży medycznej (MedTech).
Lista publikacji
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Biomedical Optics Express
Single-shot, depth-encoded multiplexed OCT for multi-spot tracking of induced transient corneal dynamics
10.1364/BOE.5963422026
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Proceedings of the National Academy of Sciences
Photopic flicker optoretinography captures the light-driven length modulation of photoreceptors during phototransduction
10.1073/pnas.24217221222025
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STAR Protocols
In vivo volumetric analysis of retinal vascular hemodynamics in mice with spatio-temporal optical coherence tomography
10.1117/1.NPh.11.4.0450032024
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Optics Letters
Chirped flicker optoretinography for in vivo characterization of human photoreceptors’ frequency response to light
10.1364/OL.5146372024
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Biomedical Optics Express
Long-range frequency-domain optical delay line based on a spinning tilted mirror for low-cost ocular biometry
10.1364/BOE.5018892023
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Biomedical Optics Express
Optical beam scanner with reconfigurable non-mechanical control of beam position, angle, and focus for low-cost whole-eye OCT imaging
10.1364/BOE.4939172023
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Technical Digest Series
Flicker optoretinography (f-ORG) with chirped frequency stimulus for retinal tissue characterisation
10.1364/BODA.2023.JTu4B.52023
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Spatio-temporal optical coherence tomography (STOC-T) for high-resolution imaging of the human and mouse retina in vivo
10.1364/BODA.2023.DTh2A.22023
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Technical Digest Series
A low-cost, non-mechanical optical beam scanner: experimental proof-of-concept for whole-eye OCT imaging
10.1364/BODA.2023.DTh2A.42023
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Technical Digest Series
Clinical prototype of multi-spot air-puff OCT for assessment of corneal biomechanical asymmetry
10.1364/BODA.2023.DTh2A.12023
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Improved tool tracking algorithm for eye surgery based on combined color space masks
10.1117/12.26546022023
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SPIE Proceedings
Spatio-temporal optical coherence tomography (STOC-T) focal plane adjustment in the mouse retina aided by a fundus camera
10.1117/12.26529562023
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SPIE BiOS
Long-range frequency-domain optical delay line based on a spinning tilted mirror for low-cost ocular biometry
10.1117/12.26529522023
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SPIE Proceedings
Frequency characterization of human photoreceptors’ response to light with the use of chirped flicker stimulus optoretinography
10.1117/12.26496322023
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SPIE Proceedings
High-speed, in vivo, volumetric imaging of mouse retinal tissue with spatio-temporal optical coherence tomography (STOC-T)
10.1117/12.26488932023
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SPIE Proceedings
Intraoperative ophthalmic OCT system tracking surgical tools at 200 Hz
10.1117/12.26497612023
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SPIE Proceedings
Low-resource and cost-effective camera-based optical palpation for breast cancer detection and burn scar assessment
10.1117/12.26508832023
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Biomedical Optics Express
Estimation of the full shape of the crystalline lens in-vivo from OCT images using eigenlenses
10.1364/BOE.4775572023
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Scientific Reports
Co-axial acoustic-based optical coherence vibrometry probe for the quantification of resonance frequency modes in ocular tissue
10.1038/s41598-022-21978-82022
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Technical Digest Series
Functional and Structural Imaging of Retinal Tissue with Spatio-Temporal Optical Coherence Tomography (STOC-T)
10.1364/FIO.2022.FW7D.22022
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Technical Digest Series
Design of a low-cost, versatile, whole-eye scanner for optical coherence tomography
10.1364/OCT.2022.CS2E.52022
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Technical Digest Series
Hysteresis in vibrational resonance modes of model corneas measured with Optical Coherence Tomography Vibrography utilizing a co-axial acoustic stimulation technique and pre-compensation
10.1364/OCT.2022.CTu4E.42022
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Technical Digest Series
In vivo frequency characterization of human photoreceptors response to a flicker stimulus with optoretinography
10.1364/OCT.2022.CS3E.12022
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Technical Digest Series
Simultaneous multi-spot OCT measurements of air induced corneal deformations
10.1364/OCT.2022.CW3E.32022
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Biomedical Optics Express
Light-adapted flicker optoretinograms captured with a spatio-temporal optical coherence-tomography (STOC-T) system
10.1364/BOE.4445672022
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SPIE BiOS
A novel co-axial and acoustic pre-compensation approach for tissue excitation in optical coherence tomography vibrography
https://www.spiedigitallibrary.org/conference-proceedings-of-spie/PC11962/0000/A-novel-co-axial-and-acoustic-pre-compensation-approach-for/10.1117/12.2610707.full2022
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SPIE Proceedings
Corneal biomechanical parameters of keratoconus patients from cross-meridian air-puff deformation optical coherence tomography and finite element modeling
https://journals.spiedigitallibrary.org/conference-proceedings-of-spie/0/PC119620/Corneal-biomechanical-parameters-of-keratoconus-patients-from-cross-meridian-air/10.1117/12.2609816.short2022
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SPIE Proceedings
Towards spatially mapped frequency response of human photoreceptor length variation with flicker optoretinography
10.1117/12.26095132022
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Biomedical Optics Express
Estimation of scleral mechanical properties from air-puff optical coherence tomography
10.1364/BOE.4379812021
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Biomedical Optics Express
Smartphone-based optical palpation: towards elastography of skin for telehealth applications
10.1364/BOE.4245672021
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Investigative Ophthalmology & Visual Science
Improved detection of corneal deformation asymmetries in keratoconus patients using multi-meridian deformation imaging
https://iovs.arvojournals.org/article.aspx?articleid=27737262021
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XIII Spanish National Meeting on Optics, Sedoptica
Applications of the ImTOPScanner for the investigation of ocular biomechanical parameters
https://livrepository.liverpool.ac.uk/31419612020
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SPIE Proceedings
Optical Coherence Elastography Imaging Probes
10.1063/9780735423664_0102020
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Industrialization Potential of Optics in Biomedicine i-POB
High-frame rate multi-meridian corneal imaging of air-puff induced deformation for improved detection of keratoconus
https://livrepository.liverpool.ac.uk/31035342020
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Biomedical Optics Express
Multi-meridian corneal imaging of air-puff induced deformation for improved detection of biomechanical abnormalities
10.1364/BOE.4024022020
Projekty badawcze
Grupy badawcze
Laboratorium Obrazowania i Technologii Okulistycznych
Laboratorium Obrazowania i Technologii Okulistycznych (IDoc) dąży do badania nowych technik i rozwoju oprzyrządowania w celu odpowiedzi na niezadane dotychczas pytania w naukach o widzeniu i niezaspokojone potrzeby w okulistyce i optometrii.