The Cousa objective: a long-working distance air objective for multiphoton imaging in vivo

Объектив Cousa: воздушный объектив с большим рабочим расстоянием для прижизненной многофотонной визуализации
Che‐Hang Yu, Yiyi Yu, Liam M. Adsit, Jeremy T. Chang, Jad Barchini, Andrew H. Moberly, Hadas Benisty, Jin‐Kyung Kim, Brent Young, Kathleen Heng, Deano Farinella, Austin Leikvoll, Rishaab Pavan, Rachel Vistein, Brandon R. Nanfito, David G. C. Hildebrand, Santiago Otero-Coronel, Alipasha Vaziri, Jeffrey L. Goldberg, Anthony J. Ricci, David Fitzpatrick, Jessica A. Cardin, Michael J. Higley, Gordon B. Smith, Prakash Kara, Kristina J. Nielsen, Ikuko T. Smith, Spencer L. Smith
2023-12-21

in vivo two-photon imagingmultiphoton microscopysubmicrometer lateral resolutionthree-photon imagingultra-long working distance objective
Abstract Multiphoton microscopy can resolve fluorescent structures and dynamics deep in scattering tissue and has transformed neural imaging, but applying this technique in vivo can be limited by the mechanical and optical constraints of conventional objectives. Short working distance objectives can collide with compact surgical windows or other instrumentation and preclude imaging. Here we present an ultra-long working distance (20 mm) air objective called the Cousa objective. It is optimized for performance across multiphoton imaging wavelengths, offers a more than 4 mm 2 field of view with submicrometer lateral resolution and is compatible with commonly used multiphoton imaging systems. A novel mechanical design, wider than typical microscope objectives, enabled this combination of specifications. We share the full optical prescription, and report performance including in vivo two-photon and three-photon imaging in an array of species and preparations, including nonhuman primates. The Cousa objective can enable a range of experiments in neuroscience and beyond.
1
A novel, wider-than-typical mechanical design enables the combination of long working distance, large field of view, and high resolution.
2
It is optimized across multiphoton imaging wavelengths and delivers a field of view exceeding 4 mm² with submicrometer lateral resolution.
3
Performance was demonstrated across multiple species and preparations, including nonhuman primates, enabling broader neuroscience experiments.
4
The Cousa objective provides an ultra-long 20 mm working distance for multiphoton imaging in vivo, avoiding interference with compact surgical windows and instrumentation.
5
The objective is compatible with commonly used multiphoton imaging systems and supports both in vivo two-photon and three-photon imaging.

The Cousa ultra-long-working-distance air objective for in vivo multiphoton imaging

Optical performance and in vivo imaging capabilities, including field of view, submicrometer resolution, wavelength coverage, and compatibility with multiphoton systems

Publication Details
Publication Date
2023-12-21
Journal
Publisher
ISSN
Cited by
55
Access Type
Author Information
Authors
Che‐Hang Yu
Yiyi Yu
Liam M. Adsit
Jeremy T. Chang
Jad Barchini
Andrew H. Moberly
Hadas Benisty
Jin‐Kyung Kim
Brent Young
Kathleen Heng
Deano Farinella
Austin Leikvoll
Rishaab Pavan
Rachel Vistein
Brandon R. Nanfito
David G. C. Hildebrand
Santiago Otero-Coronel
Alipasha Vaziri
Jeffrey L. Goldberg
Anthony J. Ricci
David Fitzpatrick
Jessica A. Cardin
Michael J. Higley
Gordon B. Smith
Prakash Kara
Kristina J. Nielsen
Ikuko T. Smith
Spencer L. Smith
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%