A biophotonic platform for quantitative analysis in the spatial, spectral, polarimetric, and goniometric domains

Author:

Månefjord Hampus1ORCID,Li Meng1,Brackmann Christian1,Reistad Nina12ORCID,Runemark Anna3,Rota Jadranka4,Anderson Benjamin5ORCID,Zoueu Jeremie T.6ORCID,Merdasa Aboma17,Brydegaard Mikkel1389

Affiliation:

1. Department of Physics, Lund University, Sölvegatan 14, SE-223 62 Lund, Sweden

2. Centre for Environmental and Climate Science, Lund University, Sölvegatan 37, SE-223 62 Lund, Sweden

3. Department of Biology, Lund University, Sölvegatan 35, SE-223 63 Lund, Sweden

4. Biological Museum, Department of Biology, Lund University, Sölvegatan 37, SE-223 62 Lund, Sweden

5. Department of Physics, University of Cape Coast, Cape Coast, Ghana

6. Laboratoire d’Instrumentation, Image et Spectroscopie, INP-HB, BP 1093 Yamoussoukro, Côte d’Ivoire

7. Department of Clinical Sciences, Lund University, Skåne University Hospital, Lund, Sweden

8. Norsk Elektro Optikk A/S, Østensjøveien 34, 0667 Oslo, Norway

9. FaunaPhotonics A/S, Støberigade 14, 2450 Copenhagen, Denmark

Abstract

Advanced instrumentation and versatile setups are needed for understanding light interaction with biological targets. Such instruments include (1) microscopes and 3D scanners for detailed spatial analysis, (2) spectral instruments for deducing molecular composition, (3) polarimeters for assessing structural properties, and (4) goniometers probing the scattering phase function of, e.g., tissue slabs. While a large selection of commercial biophotonic instruments and laboratory equipment are available, they are often bulky and expensive. Therefore, they remain inaccessible for secondary education, hobbyists, and research groups in low-income countries. This lack of equipment impedes hands-on proficiency with basic biophotonic principles and the ability to solve local problems with applied physics. We have designed, prototyped, and evaluated the low-cost Biophotonics, Imaging, Optical, Spectral, Polarimetric, Angular, and Compact Equipment (BIOSPACE) for high-quality quantitative analysis. BIOSPACE uses multiplexed light-emitting diodes with emission wavelengths from ultraviolet to near-infrared, captured by a synchronized camera. The angles of the light source, the target, and the polarization filters are automated by low-cost mechanics and a microcomputer. This enables multi-dimensional scatter analysis of centimeter-sized biological targets. We present the construction, calibration, and evaluation of BIOSPACE. The diverse functions of BIOSPACE include small animal spectral imaging, measuring the nanometer thickness of a bark-beetle wing, acquiring the scattering phase function of a blood smear and estimating the anisotropic scattering and the extinction coefficients, and contrasting muscle fibers using polarization. We provide blueprints, component list, and software for replication by enthusiasts and educators to simplify the hands-on investigation of fundamental optical properties in biological samples.

Funder

Swedish Research Council

Publisher

AIP Publishing

Subject

Instrumentation

Reference99 articles.

1. Handbook of Biophotonics

2. Tutorial on diffuse light transport

3. V. V. Tuchin, Optical Biomedical Diagnostics (Izdatelstvo Fizikomatematicheskoy Literaturi, Moscow, 2007), Vol. 1, p. 560.

4. Remote sensing for biodiversity science and conservation

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