Computational conjugate adaptive optics microscopy for longitudinal through-skull imaging of cortical myelin

  • Kwon, Yongwoo
  • Hong, Jin Hee
  • Kang, Sungsam
  • Lee, Hojun
  • Jo, Yonghyeon
  • ... Choi, Wonshik
  • 외 2명
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초록

Myelination processes are closely related to higher brain functions such as learning and memory. While their longitudinal observation has been crucial to understanding myelin-related physiology and various brain disorders, skull opening or thinning has been required to secure clear optical access. Here we present a high-speed reflection matrix microscope using a light source with a wavelength of 1.3 mu m to reduce tissue scattering and aberration. Furthermore, we develop a computational conjugate adaptive optics algorithm designed for the recorded reflection matrix to optimally compensate for the skull aberrations. These developments allow us to realize label-free longitudinal imaging of cortical myelin through an intact mouse skull. The myelination processes of the same mice were observed from 3 to 10 postnatal weeks to the depth of cortical layer 4 with a spatial resolution of 0.79 mu m. Our system will expedite the investigations on the role of myelination in learning, memory, and brain disorders.

키워드

AXONS
제목
Computational conjugate adaptive optics microscopy for longitudinal through-skull imaging of cortical myelin
저자
Kwon, YongwooHong, Jin HeeKang, SungsamLee, HojunJo, YonghyeonKim, Ki HeanYoon, SeokchanChoi, Wonshik
DOI
10.1038/s41467-022-35738-9
발행일
2023-12-01
유형
Article
저널명
Nature Communications
14
1