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1.
Nat Commun ; 11(1): 2954, 2020 06 11.
Artigo em Inglês | MEDLINE | ID: mdl-32528069

RESUMO

Functional ultrasound imaging (fUS) is an emerging technique that detects changes of cerebral blood volume triggered by brain activation. Here, we investigate the extent to which fUS faithfully reports local neuronal activation by combining fUS and two-photon microscopy (2PM) in a co-registered single voxel brain volume. Using a machine-learning approach, we compute and validate transfer functions between dendritic calcium signals of specific neurons and vascular signals measured at both microscopic (2PM) and mesoscopic (fUS) levels. We find that transfer functions are robust across a wide range of stimulation paradigms and animals, and reveal a second vascular component of neurovascular coupling upon very strong stimulation. We propose that transfer functions can be considered as reliable quantitative reporters to follow neurovascular coupling dynamics.


Assuntos
Cálcio/metabolismo , Ebolavirus/patogenicidade , Neurônios/metabolismo , Western Blotting , Proteínas de Transporte/metabolismo , Sobrevivência Celular/fisiologia , Proteínas do Citoesqueleto , Ebolavirus/genética , Células HEK293 , Células HeLa , Interações entre Hospedeiro e Microrganismos/fisiologia , Humanos , Imunoprecipitação , Interferons/metabolismo , Cinética , Ultrassonografia
2.
Proc Natl Acad Sci U S A ; 110(32): 13138-43, 2013 Aug 06.
Artigo em Inglês | MEDLINE | ID: mdl-23798397

RESUMO

The advent of scanning two-photon microscopy (2PM) has created a fertile new avenue for noninvasive investigation of brain activity in depth. One principal weakness of this method, however, lies with the limit of scanning speed, which makes optical interrogation of action potential-like activity in a neuronal network problematic. Encoded multisite two-photon microscopy (eMS2PM), a scanless method that allows simultaneous imaging of multiple targets in depth with high temporal resolution, addresses this drawback. eMS2PM uses a liquid crystal spatial light modulator to split a high-power femto-laser beam into multiple subbeams. To distinguish them, a digital micromirror device encodes each subbeam with a specific binary amplitude modulation sequence. Fluorescence signals from all independently targeted sites are then collected simultaneously onto a single photodetector and site-specifically decoded. We demonstrate that eMS2PM can be used to image spike-like voltage transients in cultured cells and fluorescence transients (calcium signals in neurons and red blood cells in capillaries from the cortex) in depth in vivo. These results establish eMS2PM as a unique method for simultaneous acquisition of neuronal network activity.


Assuntos
Encéfalo/metabolismo , Microscopia de Fluorescência por Excitação Multifotônica/instrumentação , Microscopia de Fluorescência por Excitação Multifotônica/métodos , Neurônios/metabolismo , Algoritmos , Animais , Velocidade do Fluxo Sanguíneo , Encéfalo/irrigação sanguínea , Encéfalo/citologia , Cálcio/metabolismo , Sinalização do Cálcio , Células HEK293 , Humanos , Processamento de Imagem Assistida por Computador/instrumentação , Processamento de Imagem Assistida por Computador/métodos , Cristais Líquidos , Camundongos , Camundongos Endogâmicos C57BL , Microscopia Confocal/instrumentação , Microscopia Confocal/métodos , Modelos Estatísticos , Reprodutibilidade dos Testes , Fatores de Tempo
3.
Nat Med ; 19(2): 241-6, 2013 Feb.
Artigo em Inglês | MEDLINE | ID: mdl-23314058

RESUMO

Two-photon phosphorescence lifetime microscopy (2PLM) has been used recently for depth measurements of oxygen partial pressure (PO(2)) in the rodent brain. In capillaries of olfactory bulb glomeruli, 2PLM has also allowed simultaneous measurements of PO(2) and blood flow and revealed the presence of erythrocyte-associated transients (EATs), which are PO(2) gradients that are associated with individual erythrocytes. We investigated the extent to which EAT properties in capillaries report local neuronal activity. We find that at rest, PO(2) at EAT peaks overestimates the mean PO(2) by 35 mm Hg. PO(2) between two EAT peaks is at equilibrium with, and thus reports, PO(2) in the neuropil. During odor stimulation, there is a small PO(2) decrease before functional hyperemia, showing that the initial dip in PO(2) is present at the level of capillaries. We conclude that imaging oxygen dynamics in capillaries provides a unique and noninvasive approach to map neuronal activity.


Assuntos
Capilares/metabolismo , Neurônios/fisiologia , Oxigênio/sangue , Animais , Eritrócitos/metabolismo , Feminino , Masculino , Camundongos , Camundongos Endogâmicos C57BL , Microscopia de Fluorescência por Excitação Multifotônica , Odorantes , Pressão Parcial , Ratos , Ratos Wistar
4.
Biophys J ; 102(9): 2220-9, 2012 May 02.
Artigo em Inglês | MEDLINE | ID: mdl-22824287

RESUMO

Collagen is a triple-helical protein that forms various macromolecular organizations in tissues and is responsible for the biomechanical and physical properties of most organs. Second-harmonic generation (SHG) microscopy is a valuable imaging technique to probe collagen fibrillar organization. In this article, we use a multiscale nonlinear optical formalism to bring theoretical evidence that anisotropy of polarization-resolved SHG mostly reflects the micrometer-scale disorder in the collagen fibril distribution. Our theoretical expectations are confirmed by experimental results in rat-tail tendon. To that end, we report what to our knowledge is the first experimental implementation of polarization-resolved SHG microscopy combined with mechanical assays, to simultaneously monitor the biomechanical response of rat-tail tendon at macroscopic scale and the rearrangement of collagen fibrils in this tissue at microscopic scale. These experiments bring direct evidence that tendon stretching corresponds to straightening and aligning of collagen fibrils within the fascicle. We observe a decrease in the SHG anisotropy parameter when the tendon is stretched in a physiological range, in agreement with our numerical simulations. Moreover, these experiments provide a unique measurement of the nonlinear optical response of aligned fibrils. Our data show an excellent agreement with recently published theoretical calculations of the collagen triple helix hyperpolarizability.


Assuntos
Mecanotransdução Celular/fisiologia , Microscopia de Polarização/métodos , Refratometria/métodos , Tendões/fisiologia , Tendões/ultraestrutura , Animais , Feminino , Técnicas In Vitro , Ratos , Ratos Sprague-Dawley , Resistência à Tração/fisiologia
5.
Nat Med ; 17(7): 893-8, 2011 Jun 05.
Artigo em Inglês | MEDLINE | ID: mdl-21642977

RESUMO

Uncovering principles that regulate energy metabolism in the brain requires mapping of partial pressure of oxygen (PO(2)) and blood flow with high spatial and temporal resolution. Using two-photon phosphorescence lifetime microscopy (2PLM) and the oxygen probe PtP-C343, we show that PO(2) can be accurately measured in the brain at depths up to 300 µm with micron-scale resolution. In addition, 2PLM allowed simultaneous measurements of blood flow and of PO(2) in capillaries with less than one-second temporal resolution. Using this approach, we detected erythrocyte-associated transients (EATs) in oxygen in the rat olfactory bulb and showed the existence of diffusion-based arterio-venous shunts. Sensory stimulation evoked functional hyperemia, accompanied by an increase in PO(2) in capillaries and by a biphasic PO(2) response in the neuropil, consisting of an 'initial dip' and a rebound. 2PLM of PO(2) opens new avenues for studies of brain metabolism and blood flow regulation.


Assuntos
Circulação Cerebrovascular , Microscopia de Fluorescência por Excitação Multifotônica/métodos , Oxigênio/metabolismo , Animais , Capilares/metabolismo , Artérias Cerebrais/metabolismo , Artérias Cerebrais/fisiologia , Veias Cerebrais/metabolismo , Veias Cerebrais/fisiologia , Circulação Cerebrovascular/fisiologia , Medições Luminescentes/métodos , Bulbo Olfatório/irrigação sanguínea , Bulbo Olfatório/metabolismo , Percepção Olfatória/fisiologia , Pressão Parcial , Ratos , Ratos Wistar
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