Literature DB >> 27997019

Deep imaging in scattering media with selective plane illumination microscopy.

Adithya Kumar Pediredla1, Shizheng Zhang1, Ben Avants1, Fan Ye1, Shin Nagayama2, Ziying Chen1, Caleb Kemere3, Jacob T Robinson4, Ashok Veeraraghavan5.   

Abstract

In most biological tissues, light scattering due to small differences in refractive index limits the depth of optical imaging systems. Two-photon microscopy (2PM), which significantly reduces the scattering of the excitation light, has emerged as the most common method to image deep within scattering biological tissue. This technique, however, requires high-power pulsed lasers that are both expensive and difficult to integrate into compact portable systems. Using a combination of theoretical and experimental techniques, we show that if the excitation path length can be minimized, selective plane illumination microscopy (SPIM) can image nearly as deep as 2PM without the need for a high-powered pulsed laser. Compared to other single-photon imaging techniques like epifluorescence and confocal microscopy, SPIM can image more than twice as deep in scattering media ( ? 10 times the mean scattering length). These results suggest that SPIM has the potential to provide deep imaging in scattering media in situations in which 2PM systems would be too large or costly.

Mesh:

Year:  2016        PMID: 27997019     DOI: 10.1117/1.JBO.21.12.126009

Source DB:  PubMed          Journal:  J Biomed Opt        ISSN: 1083-3668            Impact factor:   3.170


  3 in total

1.  A 512-Pixel, 51-kHz-Frame-Rate, Dual-Shank, Lens-less, Filter-less Single Photon Avalanche Diode CMOS Neural Imaging Probe.

Authors:  Jaebin Choi; Adriaan J Taal; Eric H Pollmann; Changhyuk Lee; Kukjoo Kim; Laurent C Moreaux; Michael L Roukes; Kenneth L Shepard
Journal:  IEEE J Solid-State Circuits       Date:  2019-10-23       Impact factor: 5.013

2.  High Resolution, Deep Imaging Using Confocal Time-of-Flight Diffuse Optical Tomography.

Authors:  Yongyi Zhao; Ankit Raghuram; Hyun K Kim; Andreas H Hielscher; Jacob T Robinson; Ashok Veeraraghavan
Journal:  IEEE Trans Pattern Anal Mach Intell       Date:  2021-06-09       Impact factor: 9.322

3.  Developing Next-generation Brain Sensing Technologies - A Review.

Authors:  Jacob T Robinson; Eric Pohlmeyer; Malte C Gather; Caleb Kemere; John E Kitching; George G Malliaras; Adam Marblestone; Kenneth L Shepard; Thomas Stieglitz; Chong Xie
Journal:  IEEE Sens J       Date:  2019       Impact factor: 3.301

  3 in total

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