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A Hybrid Titanium-Softmaterial, High-Strength, Transparent Cranial Window for Transcranial Injection and Neuroimaging

A transparent and penetrable cranial window is essential for neuroimaging, transcranial injection and comprehensive understanding of cortical functions. For these applications, cranial windows made from glass coverslip, polydimethylsiloxane (PDMS), polymethylmethacrylate, crystal and silicone hydrog...

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Autores principales: Yang, Nana, Liu, Fengyu, Zhang, Xinyue, Chen, Chenni, Xia, Zhiyuan, Fu, Su, Wang, Jiaxin, Xu, Jingjing, Cui, Shuang, Zhang, Yong, Yi, Ming, Wan, You, Li, Qing, Xu, Shengyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8870569/
https://www.ncbi.nlm.nih.gov/pubmed/35200389
http://dx.doi.org/10.3390/bios12020129
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author Yang, Nana
Liu, Fengyu
Zhang, Xinyue
Chen, Chenni
Xia, Zhiyuan
Fu, Su
Wang, Jiaxin
Xu, Jingjing
Cui, Shuang
Zhang, Yong
Yi, Ming
Wan, You
Li, Qing
Xu, Shengyong
author_facet Yang, Nana
Liu, Fengyu
Zhang, Xinyue
Chen, Chenni
Xia, Zhiyuan
Fu, Su
Wang, Jiaxin
Xu, Jingjing
Cui, Shuang
Zhang, Yong
Yi, Ming
Wan, You
Li, Qing
Xu, Shengyong
author_sort Yang, Nana
collection PubMed
description A transparent and penetrable cranial window is essential for neuroimaging, transcranial injection and comprehensive understanding of cortical functions. For these applications, cranial windows made from glass coverslip, polydimethylsiloxane (PDMS), polymethylmethacrylate, crystal and silicone hydrogel have offered remarkable convenience. However, there is a lack of high-strength, high-transparency, penetrable cranial window with clinical application potential. We engineer high-strength hybrid Titanium-PDMS (Ti-PDMS) cranial windows, which allow large transparent area for in vivo two-photon imaging, and provide a soft window for transcranial injection. Laser scanning and 3D printing techniques are used to match the hybrid cranial window to different skull morphology. A multi-cycle degassing pouring process ensures a good combination of PDMS and Ti frame. Ti-PDMS cranial windows have a high fracture strength matching human skull bone, excellent light transmittance up to 94.4%, and refractive index close to biological tissue. Ti-PDMS cranial windows show excellent bio-compatibility during 21-week implantation in mice. Dye injection shows that the PDMS window has a “self-sealing” to keep liquid from leaking out. Two-photon imaging for brain tissues could be achieved up to 450 µm in z-depth. As a novel brain-computer-interface, this Ti-PDMS device offers an alternative choice for in vivo drug delivery, optical experiments, ultrasonic treatment and electrophysiology recording.
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spelling pubmed-88705692022-02-25 A Hybrid Titanium-Softmaterial, High-Strength, Transparent Cranial Window for Transcranial Injection and Neuroimaging Yang, Nana Liu, Fengyu Zhang, Xinyue Chen, Chenni Xia, Zhiyuan Fu, Su Wang, Jiaxin Xu, Jingjing Cui, Shuang Zhang, Yong Yi, Ming Wan, You Li, Qing Xu, Shengyong Biosensors (Basel) Article A transparent and penetrable cranial window is essential for neuroimaging, transcranial injection and comprehensive understanding of cortical functions. For these applications, cranial windows made from glass coverslip, polydimethylsiloxane (PDMS), polymethylmethacrylate, crystal and silicone hydrogel have offered remarkable convenience. However, there is a lack of high-strength, high-transparency, penetrable cranial window with clinical application potential. We engineer high-strength hybrid Titanium-PDMS (Ti-PDMS) cranial windows, which allow large transparent area for in vivo two-photon imaging, and provide a soft window for transcranial injection. Laser scanning and 3D printing techniques are used to match the hybrid cranial window to different skull morphology. A multi-cycle degassing pouring process ensures a good combination of PDMS and Ti frame. Ti-PDMS cranial windows have a high fracture strength matching human skull bone, excellent light transmittance up to 94.4%, and refractive index close to biological tissue. Ti-PDMS cranial windows show excellent bio-compatibility during 21-week implantation in mice. Dye injection shows that the PDMS window has a “self-sealing” to keep liquid from leaking out. Two-photon imaging for brain tissues could be achieved up to 450 µm in z-depth. As a novel brain-computer-interface, this Ti-PDMS device offers an alternative choice for in vivo drug delivery, optical experiments, ultrasonic treatment and electrophysiology recording. MDPI 2022-02-18 /pmc/articles/PMC8870569/ /pubmed/35200389 http://dx.doi.org/10.3390/bios12020129 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Yang, Nana
Liu, Fengyu
Zhang, Xinyue
Chen, Chenni
Xia, Zhiyuan
Fu, Su
Wang, Jiaxin
Xu, Jingjing
Cui, Shuang
Zhang, Yong
Yi, Ming
Wan, You
Li, Qing
Xu, Shengyong
A Hybrid Titanium-Softmaterial, High-Strength, Transparent Cranial Window for Transcranial Injection and Neuroimaging
title A Hybrid Titanium-Softmaterial, High-Strength, Transparent Cranial Window for Transcranial Injection and Neuroimaging
title_full A Hybrid Titanium-Softmaterial, High-Strength, Transparent Cranial Window for Transcranial Injection and Neuroimaging
title_fullStr A Hybrid Titanium-Softmaterial, High-Strength, Transparent Cranial Window for Transcranial Injection and Neuroimaging
title_full_unstemmed A Hybrid Titanium-Softmaterial, High-Strength, Transparent Cranial Window for Transcranial Injection and Neuroimaging
title_short A Hybrid Titanium-Softmaterial, High-Strength, Transparent Cranial Window for Transcranial Injection and Neuroimaging
title_sort hybrid titanium-softmaterial, high-strength, transparent cranial window for transcranial injection and neuroimaging
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8870569/
https://www.ncbi.nlm.nih.gov/pubmed/35200389
http://dx.doi.org/10.3390/bios12020129
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