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njit-etd2003-081 - New Jersey Institute of Technology

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4) Click on file, close to exit the 4dsp.vi program. Click No when the save changes<br />

dialog box appears.<br />

5) Click on open VI <strong>of</strong> the LabVIEW dialog box. Use the down arrow button <strong>of</strong> the<br />

Look in: task bar to select partcoh3.11b library <strong>of</strong> LabVIEW programs. Use the mouse to<br />

move the up/down bar until the partial coherence betwn HR, BP & RESP vi file appears.<br />

Double click on this file to run the LabVIEW program.<br />

6) Enter the SF, ECG, BP and RESP in the text boxes on the front panel with the<br />

information obtained in steps 1 and 3 above. Click the right arrow on the command bar<br />

to run the program.<br />

7) The Choose file to read dialog box appears. Use the down arrow button <strong>of</strong> the Look<br />

in: task bar to select the data file (agu1baseline.txt) to be analyzed.<br />

8) After a few seconds, the heart rate IIBI and the ECG plots <strong>of</strong> the Correct.vi appears.<br />

Move the yellow cursor inside the }IR IIBI plot to the end <strong>of</strong> the HR IIBI signal then<br />

click the MOVE button to see any missed or false R wave detection. Use the blue cursor<br />

inside the ECG correction plot to manually remove or correct the false R wave detection<br />

indicated by the white bar under each ECG R-wave. Click the round green Done button<br />

when done.<br />

9) The Choose HR IIBI file to write dialog box appears. Enter the HR IIBI ASCII file<br />

name (agu1baselineHR.asc) in the file name field then click the save button.<br />

10) The Choose BP IIBI file to write dialog box appears. Enter the BP IIBI ASCII file<br />

name (agu1baselineBP.asc) in the file name field then click the save button.<br />

11) The panel partial coherence HR-BP-RESP.vi appears. Move all the red cursors<br />

(Cur 0) to 0.04 Hz positions and all the blue cursors (cur 1) to position 0.15 Hz <strong>of</strong> the

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