Deep tissue multi-photon imaging using adaptive optics with direct focus sensing and shaping.

Nature biotechnology 2022 Vol.40(11) p. 1663-1671

Qin Z, She Z, Chen C, Wu W, Lau JKY, Ip NY, Qu JY

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Abstract

High-resolution optical imaging deep in tissues is challenging because of optical aberrations and scattering of light caused by the complex structure of living matter. Here we present an adaptive optics three-photon microscope based on analog lock-in phase detection for focus sensing and shaping (ALPHA-FSS). ALPHA-FSS accurately measures and effectively compensates for both aberrations and scattering induced by specimens and recovers subcellular resolution at depth. A conjugate adaptive optics configuration with remote focusing enables in vivo imaging of fine neuronal structures in the mouse cortex through the intact skull up to a depth of 750 µm below the pia, enabling near-non-invasive high-resolution microscopy in cortex. Functional calcium imaging with high sensitivity and high-precision laser-mediated microsurgery through the intact skull were also demonstrated. Moreover, we achieved in vivo high-resolution imaging of the deep cortex and subcortical hippocampus up to 1.1 mm below the pia within the intact brain.

추출된 의학 개체 (NER)

유형영어 표현한국어 / 풀이UMLS CUI출처등장
시술 microsurgery 미세수술 dict 1
해부 tissues scispacy 1
해부 neuronal scispacy 1
해부 pia scispacy 1
해부 skull scispacy 1
해부 brain scispacy 1
합병증 skull scispacy 1
약물 calcium C0006675
calcium
scispacy 1
질환 specimens scispacy 1
질환 cortex scispacy 1
질환 subcortical scispacy 1
기타 mouse cortex scispacy 1

MeSH Terms

Animals; Mice; Optics and Photonics; Microscopy; Optical Imaging; Neurons; Cerebral Cortex

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