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Structured Review

ZEMAX Development Corporation software version 22.2
Finite sensor dimensions. Unit pressure wave P 0 is incident on a 2 mm wide FP sensor ( 32 μ m parylene C film and 500 μ m glass substrate) after passing through a 2 mm deep tissue (water) domain adjacent to air (0.1 mm). (a) Model geometry is shown. Acoustics wave <t>propagation</t> and sensor deformation are shown at various time points, including (b) 1.39, (c) 1.5, (d) 1.6, (e) 1.9, and (f) 3.3 μ s . Left color bar: the vertical displacement inside of the parylene film and glass substrate per unit incident pressure ( × 10 − 9 μ m / Pa ). Right color bar: the pressure inside of the tissue (water).
Software Version 22.2, supplied by ZEMAX Development Corporation, 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/result/software version 22.2/product/ZEMAX Development Corporation
Average 90 stars, based on 1 article reviews
software version 22.2 - by Bioz Stars, 2026-05
90/100 stars

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1) Product Images from "Scaling down the dimensions of a Fabry–Perot polymer film acoustic sensor for photoacoustic endoscopy"

Article Title: Scaling down the dimensions of a Fabry–Perot polymer film acoustic sensor for photoacoustic endoscopy

Journal: Journal of Biomedical Optics

doi: 10.1117/1.JBO.29.S1.S11514

Finite sensor dimensions. Unit pressure wave P 0 is incident on a 2 mm wide FP sensor ( 32 μ m parylene C film and 500 μ m glass substrate) after passing through a 2 mm deep tissue (water) domain adjacent to air (0.1 mm). (a) Model geometry is shown. Acoustics wave propagation and sensor deformation are shown at various time points, including (b) 1.39, (c) 1.5, (d) 1.6, (e) 1.9, and (f) 3.3 μ s . Left color bar: the vertical displacement inside of the parylene film and glass substrate per unit incident pressure ( × 10 − 9 μ m / Pa ). Right color bar: the pressure inside of the tissue (water).
Figure Legend Snippet: Finite sensor dimensions. Unit pressure wave P 0 is incident on a 2 mm wide FP sensor ( 32 μ m parylene C film and 500 μ m glass substrate) after passing through a 2 mm deep tissue (water) domain adjacent to air (0.1 mm). (a) Model geometry is shown. Acoustics wave propagation and sensor deformation are shown at various time points, including (b) 1.39, (c) 1.5, (d) 1.6, (e) 1.9, and (f) 3.3 μ s . Left color bar: the vertical displacement inside of the parylene film and glass substrate per unit incident pressure ( × 10 − 9 μ m / Pa ). Right color bar: the pressure inside of the tissue (water).

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Finite sensor dimensions. Unit pressure wave P 0 is incident on a 2 mm wide FP sensor ( 32 μ m parylene C film and 500 μ m glass substrate) after passing through a 2 mm deep tissue (water) domain adjacent to air (0.1 mm). (a) Model geometry is shown. Acoustics wave <t>propagation</t> and sensor deformation are shown at various time points, including (b) 1.39, (c) 1.5, (d) 1.6, (e) 1.9, and (f) 3.3 μ s . Left color bar: the vertical displacement inside of the parylene film and glass substrate per unit incident pressure ( × 10 − 9 μ m / Pa ). Right color bar: the pressure inside of the tissue (water).
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Finite sensor dimensions. Unit pressure wave P 0 is incident on a 2 mm wide FP sensor ( 32 μ m parylene C film and 500 μ m glass substrate) after passing through a 2 mm deep tissue (water) domain adjacent to air (0.1 mm). (a) Model geometry is shown. Acoustics wave propagation and sensor deformation are shown at various time points, including (b) 1.39, (c) 1.5, (d) 1.6, (e) 1.9, and (f) 3.3 μ s . Left color bar: the vertical displacement inside of the parylene film and glass substrate per unit incident pressure ( × 10 − 9 μ m / Pa ). Right color bar: the pressure inside of the tissue (water).

Journal: Journal of Biomedical Optics

Article Title: Scaling down the dimensions of a Fabry–Perot polymer film acoustic sensor for photoacoustic endoscopy

doi: 10.1117/1.JBO.29.S1.S11514

Figure Lengend Snippet: Finite sensor dimensions. Unit pressure wave P 0 is incident on a 2 mm wide FP sensor ( 32 μ m parylene C film and 500 μ m glass substrate) after passing through a 2 mm deep tissue (water) domain adjacent to air (0.1 mm). (a) Model geometry is shown. Acoustics wave propagation and sensor deformation are shown at various time points, including (b) 1.39, (c) 1.5, (d) 1.6, (e) 1.9, and (f) 3.3 μ s . Left color bar: the vertical displacement inside of the parylene film and glass substrate per unit incident pressure ( × 10 − 9 μ m / Pa ). Right color bar: the pressure inside of the tissue (water).

Article Snippet: To accurately model the propagation of light in an MMF, nonsequential simulation using Zemax software (version 22.2) was performed.

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