quick bug fixes
This commit is contained in:
@@ -1,3 +1,10 @@
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# Version 1.1.6
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- Fixed Process button from appearing when no files are selected
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- Fix for instand child process crash on Windows
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- Added L_FREQ and H_FREQ parameters for more user control over low and high pass filtering
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# Version 1.1.5
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- Fixed Windows saves not being able to be opened by a Mac (hopefully the other way too!)
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54
flares.py
54
flares.py
@@ -50,8 +50,8 @@ from scipy.spatial.distance import cdist
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# Backen visualization needed to be defined for pyinstaller
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import pyvistaqt # type: ignore
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# import vtkmodules.util.data_model
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# import vtkmodules.util.execution_model
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import vtkmodules.util.data_model
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import vtkmodules.util.execution_model
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# External library imports for mne
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from mne import (
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@@ -130,6 +130,9 @@ TDDR: bool
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ENHANCE_NEGATIVE_CORRELATION: bool
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L_FREQ: float
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H_FREQ: float
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SHORT_CHANNEL: bool
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REMOVE_EVENTS: list
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@@ -186,7 +189,9 @@ REQUIRED_KEYS: dict[str, Any] = {
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"SHORT_CHANNEL": bool,
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"REMOVE_EVENTS": list,
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"TIME_WINDOW_START": int,
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"TIME_WINDOW_END": int
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"TIME_WINDOW_END": int,
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"L_FREQ": float,
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"H_FREQ": float,
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# "REJECT_PAIRS": bool,
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# "FORCE_DROP_ANNOTATIONS": list,
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# "FILTER_LOW_PASS": float,
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@@ -1070,8 +1075,16 @@ def filter_the_data(raw_haemo):
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average=True, xscale="log", color="r", show=False, amplitude=False
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)
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if L_FREQ == 0 and H_FREQ != 0:
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raw_haemo = raw_haemo.filter(l_freq=None, h_freq=H_FREQ, h_trans_bandwidth=0.02)
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elif L_FREQ != 0 and H_FREQ == 0:
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raw_haemo = raw_haemo.filter(l_freq=L_FREQ, h_freq=None, l_trans_bandwidth=0.002)
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elif L_FREQ != 0 and H_FREQ == 0:
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raw_haemo = raw_haemo.filter(l_freq=L_FREQ, h_freq=H_FREQ, l_trans_bandwidth=0.002, h_trans_bandwidth=0.02)
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#raw_haemo = raw_haemo.filter(l_freq=None, h_freq=0.4, h_trans_bandwidth=0.2)
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raw_haemo = raw_haemo.filter(0.05, 0.7, h_trans_bandwidth=0.2, l_trans_bandwidth=0.02)
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#raw_haemo = raw_haemo.filter(l_freq=None, h_freq=0.7, h_trans_bandwidth=0.2)
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#raw_haemo = raw_haemo.filter(0.005, 0.7, h_trans_bandwidth=0.02, l_trans_bandwidth=0.002)
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raw_haemo.compute_psd(fmax=2).plot(
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average=True, xscale="log", axes=fig_filter.axes, color="g", amplitude=False, show=False
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@@ -1517,7 +1530,6 @@ def fold_channels(raw: BaseRaw) -> None:
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# Format the output to make it slightly easier to read
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if True:
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num_channels = len(hbo_channel_names)
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rows, cols = 4, 7 # 6 rows and 4 columns of pie charts
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fig, axes = plt.subplots(rows, cols, figsize=(16, 10), constrained_layout=True)
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@@ -2277,21 +2289,25 @@ def brain_landmarks_3d(raw_haemo: BaseRaw, show_optodes: Literal['sensors', 'lab
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if show_brodmann:# Add Brodmann labels
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labels = cast(list[Label], read_labels_from_annot("fsaverage", "PALS_B12_Brodmann", "rh", verbose=False)) # type: ignore
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labels = cast(list[Label], read_labels_from_annot("fsaverage", "PALS_B12_Brodmann", "lh", verbose=False)) # type: ignore
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label_colors = {
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"Brodmann.39-rh": "blue",
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"Brodmann.40-rh": "green",
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"Brodmann.6-rh": "pink",
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"Brodmann.7-rh": "orange",
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"Brodmann.17-rh": "red",
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"Brodmann.1-rh": "yellow",
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"Brodmann.2-rh": "yellow",
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"Brodmann.3-rh": "yellow",
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"Brodmann.18-rh": "red",
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"Brodmann.19-rh": "red",
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"Brodmann.4-rh": "purple",
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"Brodmann.8-rh": "white"
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"Brodmann.1-lh": "red",
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"Brodmann.2-lh": "red",
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"Brodmann.3-lh": "red",
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"Brodmann.4-lh": "orange",
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"Brodmann.5-lh": "green",
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"Brodmann.6-lh": "yellow",
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"Brodmann.7-lh": "green",
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"Brodmann.17-lh": "blue",
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"Brodmann.18-lh": "blue",
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"Brodmann.19-lh": "blue",
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"Brodmann.39-lh": "purple",
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"Brodmann.40-lh": "pink",
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"Brodmann.42-lh": "white",
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"Brodmann.44-lh": "white",
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"Brodmann.48-lh": "white",
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}
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for label in labels:
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@@ -2944,7 +2960,7 @@ def process_participant(file_path, progress_callback=None):
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# Step 11: Get short / long channels
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if SHORT_CHANNEL:
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short_chans = get_short_channels(raw_haemo, max_dist=0.015)
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short_chans = get_short_channels(raw_haemo, max_dist=0.02)
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fig_short_chans = short_chans.plot(duration=raw_haemo.times[-1], n_channels=raw_haemo.info['nchan'], title="Short Channels Only", show=False)
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fig_individual["short"] = fig_short_chans
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else:
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5
main.py
5
main.py
@@ -123,7 +123,10 @@ SECTIONS = [
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{
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"title": "Filtering",
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"params": [
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{"name": "L_FREQ", "default": 0.005, "type": float, "help": "Any frequencies lower than this value will be removed."},
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{"name": "H_FREQ", "default": 0.7, "type": float, "help": "Any frequencies higher than this value will be removed."},
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#{"name": "FILTER", "default": True, "type": bool, "help": "Calculate Peak Spectral Power."},
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]
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},
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{
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@@ -4044,7 +4047,7 @@ class MainApplication(QMainWindow):
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self.button2.setMinimumSize(100, 40)
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self.button3.setMinimumSize(100, 40)
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# self.button1.setVisible(False)
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self.button1.setVisible(False)
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self.button3.setVisible(False)
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self.button1.clicked.connect(self.on_run_task)
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