Ejemplo n.º 1
0
def test_fetch_spm_auditory(request_mocker, tmp_path):
    import nibabel as nib
    import shutil
    saf = ["fM00223/fM00223_%03i.img" % index for index in range(4, 100)]
    saf_ = ["fM00223/fM00223_%03i.hdr" % index for index in range(4, 100)]

    data_dir = str(tmp_path / 'spm_auditory')
    os.mkdir(data_dir)
    subject_dir = os.path.join(data_dir, 'sub001')
    os.mkdir(subject_dir)
    os.mkdir(os.path.join(subject_dir, 'fM00223'))
    os.mkdir(os.path.join(subject_dir, 'sM00223'))

    path_img = str(tmp_path / 'tmp.img')
    path_hdr = str(tmp_path / 'tmp.hdr')
    nib.save(nib.Nifti1Image(np.zeros((2, 3, 4)), np.eye(4)), path_img)
    shutil.copy(path_img, os.path.join(subject_dir, "sM00223/sM00223_002.img"))
    shutil.copy(path_hdr, os.path.join(subject_dir, "sM00223/sM00223_002.hdr"))
    for file_ in saf:
        shutil.copy(path_img, os.path.join(subject_dir, file_))
    for file_ in saf_:
        shutil.copy(path_hdr, os.path.join(subject_dir, file_))

    dataset = func.fetch_spm_auditory(data_dir=tmp_path)
    assert isinstance(dataset.anat, str)
    assert isinstance(dataset.func[0], str)
    assert len(dataset.func) == 96
Here we fit a First Level GLM with the `minimize_memory`-argument set to `False`.
By doing so, the `FirstLevelModel`-object stores the residuals, which we can then inspect.
Also, the predicted time series can be extracted, which is useful to assess the quality of the model fit.
"""

#########################################################################
# Import modules
# --------------
from nilearn.datasets.func import fetch_spm_auditory
from nilearn import image
from nilearn import masking
import pandas as pd

# load fMRI data
subject_data = fetch_spm_auditory()
fmri_img = image.concat_imgs(subject_data.func)

# Make an average
mean_img = image.mean_img(fmri_img)
mask = masking.compute_epi_mask(mean_img)

# Clean and smooth data
fmri_img = image.clean_img(fmri_img, standardize=False)
fmri_img = image.smooth_img(fmri_img, 5.)

# load events
events = pd.read_table(subject_data['events'])

#########################################################################
# Fit model