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functional magnetic resonance imaging (fmri) data  (Siemens AG)

 
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    Siemens AG functional magnetic resonance imaging (fmri) data
    Functional Magnetic Resonance Imaging (Fmri) Data, supplied by Siemens AG, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/functional+magnetic+resonance+imaging+(fmri)+data/32+channel+head+coil/10__1523_slash_jneurosci__0671___18__2018-88-5-27
    Average 90 stars, based on 1 article reviews
    functional magnetic resonance imaging (fmri) data - by Bioz Stars, 2026-10
    90/100 stars

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    Related Articles

    other:

    Article Title: Identifying individual brain development using multimodality brain network
    Article Snippet: The MRI data from the Release 1.1 were collected on 1.5T Siemens Avanto. fMRI data were acquired using a multi-band gradient echo EPI sequence: TR/TE = 1450/40 ms, resolution = 2.5 ⨯ 2.5 ⨯ 2.5 mm 3 , flip angle = 55°, multi-band acceleration = 3, slice number = 54.

    Article Title: The mesolimbic system and the loss of higher order network features in schizophrenia when learning without reward
    Article Snippet: fMRI data (3T Siemens Verio scanner, 32-channel volume head coil) were acquired using a multiband gradient EPI sequence (TR = 3 s, TE = 2.46 ms, multiband factor = 3, FOV = 192 × 192 mm 2 , matrix = 96 × 96, 64 axial slices, resolution = 2 mm 3 ).

    Article Title: The Adolescent Functional Connectome is Dynamically Controlled by a Sparse Core of Cognitive and Topological Hubs
    Article Snippet: Briefly, each participant’s fMRI data were corrected for motion, coregistered to their T1 structural MRI, normalized to NMI space, denoised to suppress artifacts, and harmonized across scanners (fMRI had been acquired at 21 sites of the ABCD, using 3.0T Siemens, GE and Philips scanners).

    Article Title: An fMRI Dataset on Occluded Image Interpretation for Human Amodal Completion Research.
    Article Snippet: The study utilized bold-oxygenation-level-dependent (BOLD) fMRI data acquired through a Siemens multi-band, gradient-echo accelerated echo-planar imaging (EPI) T2*-weighted sequence.

    Article Title: The mesolimbic system and the loss of higher order network features in schizophrenia when learning without reward
    Article Snippet: fMRI data (Siemens Verio 3T) were acquired in a group of schizophrenia patients and controls (n=78; 46 SCZ, 18 ≤ Age ≤ 50) while participants engaged in associative learning without reward-related contingencies.

    Article Title: A multiplex of connectome trajectories enables several connectivity patterns in parallel
    Article Snippet: Briefly, fMRI data was acquired using a 1.5T Siemens Avanto scanner with a GE-EPI pulse sequence (TR = 3 s; TE = 78 ms; 38 slices; 200 vol; field of view: 192×192; voxel size: 3×3×3 mm 3 ).

    Article Title: The International BNA 2025 Festival of Neuroscience
    Article Snippet: Session 2 acquired 3T BOLD-fMRI data (Siemens Prisma, MB=6, TR/TE=0.8s/0.03s, 2.4mm3).

    Imaging:

    Article Title: Health involvement modulates physician preference in the brain during online health consultation.
    Article Snippet: .. The imaging data was collected on a Siemens PRISMA 3T fMRI scanner at magnetic resonance imaging research center of Peking University. ..

    Magnetic Resonance Imaging:

    Article Title: Health involvement modulates physician preference in the brain during online health consultation.
    Article Snippet: .. The imaging data was collected on a Siemens PRISMA 3T fMRI scanner at magnetic resonance imaging research center of Peking University. ..



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    (A) Computer-aided design schematic of the cranial window and optic fiber installation. (B) Image of a chronic cranial window installed on a mouse. (C) Coronal (left) and sagittal (right) view of a <t>structural</t> <t>magnetic</t> resonance image (MRI) with a cranial window and optic fiber implanted in the right primary motor cortex (M1). (D) Representative histological image of endogenous ChR2-YFP expression in layer V of M1. (E) Power Doppler image depicting the coronal field of view at bregma +0 mm. (F) Experimental timeline for fUSI, <t>fMRI,</t> and electrophysiological recordings in response to optogenetic stimulations. (G) Average fMRI (pre-cranial window; top, purple) and fUSI (bottom, green) time series from the bilateral primary motor cortex (M1) and striatum during right M1 stimulation at 10 Hz. Data are presented as mean (color) ± SEM (shaded region). Increasing darkness of the lines represents increasing stimulation intensities. The blue vertical bars indicate stimulation periods.
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    (A) Computer-aided design schematic of the cranial window and optic fiber installation. (B) Image of a chronic cranial window installed on a mouse. (C) Coronal (left) and sagittal (right) view of a <t>structural</t> <t>magnetic</t> resonance image (MRI) with a cranial window and optic fiber implanted in the right primary motor cortex (M1). (D) Representative histological image of endogenous ChR2-YFP expression in layer V of M1. (E) Power Doppler image depicting the coronal field of view at bregma +0 mm. (F) Experimental timeline for fUSI, <t>fMRI,</t> and electrophysiological recordings in response to optogenetic stimulations. (G) Average fMRI (pre-cranial window; top, purple) and fUSI (bottom, green) time series from the bilateral primary motor cortex (M1) and striatum during right M1 stimulation at 10 Hz. Data are presented as mean (color) ± SEM (shaded region). Increasing darkness of the lines represents increasing stimulation intensities. The blue vertical bars indicate stimulation periods.
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    Siemens AG functional magnetic resonance imaging (fmri) data
    (A) Computer-aided design schematic of the cranial window and optic fiber installation. (B) Image of a chronic cranial window installed on a mouse. (C) Coronal (left) and sagittal (right) view of a <t>structural</t> <t>magnetic</t> resonance image (MRI) with a cranial window and optic fiber implanted in the right primary motor cortex (M1). (D) Representative histological image of endogenous ChR2-YFP expression in layer V of M1. (E) Power Doppler image depicting the coronal field of view at bregma +0 mm. (F) Experimental timeline for fUSI, <t>fMRI,</t> and electrophysiological recordings in response to optogenetic stimulations. (G) Average fMRI (pre-cranial window; top, purple) and fUSI (bottom, green) time series from the bilateral primary motor cortex (M1) and striatum during right M1 stimulation at 10 Hz. Data are presented as mean (color) ± SEM (shaded region). Increasing darkness of the lines represents increasing stimulation intensities. The blue vertical bars indicate stimulation periods.
    Functional Magnetic Resonance Imaging (Fmri) Data, supplied by Siemens AG, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
    https://www.bioz.com/product/functional+magnetic+resonance+imaging+(fmri)+data/32+channel+head+coil/10__1523_slash_jneurosci__0671___18__2018-88-5-27
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    functional magnetic resonance imaging (fmri) data - by Bioz Stars, 2026-10
    90/100 stars
      Buy from Supplier

    Image Search Results


    (A) Computer-aided design schematic of the cranial window and optic fiber installation. (B) Image of a chronic cranial window installed on a mouse. (C) Coronal (left) and sagittal (right) view of a structural magnetic resonance image (MRI) with a cranial window and optic fiber implanted in the right primary motor cortex (M1). (D) Representative histological image of endogenous ChR2-YFP expression in layer V of M1. (E) Power Doppler image depicting the coronal field of view at bregma +0 mm. (F) Experimental timeline for fUSI, fMRI, and electrophysiological recordings in response to optogenetic stimulations. (G) Average fMRI (pre-cranial window; top, purple) and fUSI (bottom, green) time series from the bilateral primary motor cortex (M1) and striatum during right M1 stimulation at 10 Hz. Data are presented as mean (color) ± SEM (shaded region). Increasing darkness of the lines represents increasing stimulation intensities. The blue vertical bars indicate stimulation periods.

    Journal: NeuroImage

    Article Title: High-sensitivity detection of optogenetically-induced neural activity with functional ultrasound imaging

    doi: 10.1016/j.neuroimage.2021.118434

    Figure Lengend Snippet: (A) Computer-aided design schematic of the cranial window and optic fiber installation. (B) Image of a chronic cranial window installed on a mouse. (C) Coronal (left) and sagittal (right) view of a structural magnetic resonance image (MRI) with a cranial window and optic fiber implanted in the right primary motor cortex (M1). (D) Representative histological image of endogenous ChR2-YFP expression in layer V of M1. (E) Power Doppler image depicting the coronal field of view at bregma +0 mm. (F) Experimental timeline for fUSI, fMRI, and electrophysiological recordings in response to optogenetic stimulations. (G) Average fMRI (pre-cranial window; top, purple) and fUSI (bottom, green) time series from the bilateral primary motor cortex (M1) and striatum during right M1 stimulation at 10 Hz. Data are presented as mean (color) ± SEM (shaded region). Increasing darkness of the lines represents increasing stimulation intensities. The blue vertical bars indicate stimulation periods.

    Article Snippet: Functional magnetic resonance imaging (fMRI) data was acquired with a Bruker BioSpec 70/30 USR small animal MR system (Bruker BioSpin MRI, Ettlingen, Germany) operating at 300MHz (7T).

    Techniques: Expressing