Review




Structured Review

POWERLAB INC spirometer mlt1000l respiratory flow-head
Experiment 1: Deep Breaths followed by apnoea: (a) Filtered radar signal versus <t>spirometer</t> reading; (b) Spirometer reading; (c) Reference respiration belt signal; (d) Calibrated radar signal; and (e) Spirometer reading versus calibrated radar signal.
Spirometer Mlt1000l Respiratory Flow Head, supplied by POWERLAB INC, 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/spirometer+mlt1000l+respiratory+flow-head/spirometer+mlt1000l+respiratory+flow+head/pmc04848092-117-25-32
Average 90 stars, based on 1 article reviews
spirometer mlt1000l respiratory flow-head - by Bioz Stars, 2026-09
90/100 stars

Images

1) Product Images from "Monitoring and Analysis of Respiratory Patterns Using Microwave Doppler Radar"

Article Title: Monitoring and Analysis of Respiratory Patterns Using Microwave Doppler Radar

Journal: IEEE Journal of Translational Engineering in Health and Medicine

doi: 10.1109/JTEHM.2014.2365776

Experiment 1: Deep Breaths followed by apnoea: (a) Filtered radar signal versus spirometer reading; (b) Spirometer reading; (c) Reference respiration belt signal; (d) Calibrated radar signal; and (e) Spirometer reading versus calibrated radar signal.
Figure Legend Snippet: Experiment 1: Deep Breaths followed by apnoea: (a) Filtered radar signal versus spirometer reading; (b) Spirometer reading; (c) Reference respiration belt signal; (d) Calibrated radar signal; and (e) Spirometer reading versus calibrated radar signal.

Techniques Used:

Experiment 2: Normal Breaths followed by Deep Breaths: (a) Filtered radar signal versus spirometer reading; (b) Spirometer reading; (c) Reference respiration belt signal; (d) Calibrated radar signal; and (e) Spirometer reading versus calibrated radar signal.
Figure Legend Snippet: Experiment 2: Normal Breaths followed by Deep Breaths: (a) Filtered radar signal versus spirometer reading; (b) Spirometer reading; (c) Reference respiration belt signal; (d) Calibrated radar signal; and (e) Spirometer reading versus calibrated radar signal.

Techniques Used:

Experiment 3: Deep Breaths followed by Normal Breaths: (a) Filtered radar signal versus spirometer reading; (b) Spirometer reading; (c) Reference respiration belt signal; (d) Calibrated radar signal; and (e) Spirometer reading versus calibrated radar signal.
Figure Legend Snippet: Experiment 3: Deep Breaths followed by Normal Breaths: (a) Filtered radar signal versus spirometer reading; (b) Spirometer reading; (c) Reference respiration belt signal; (d) Calibrated radar signal; and (e) Spirometer reading versus calibrated radar signal.

Techniques Used:

Coefficient comparison on Doppler radar signal with  spirometer.
Figure Legend Snippet: Coefficient comparison on Doppler radar signal with spirometer.

Techniques Used: Comparison

Scatter Plot between Radar signal and Spirometer reading: (from top to bottom: Experiment 1; Experiment 2; Experiment 3).
Figure Legend Snippet: Scatter Plot between Radar signal and Spirometer reading: (from top to bottom: Experiment 1; Experiment 2; Experiment 3).

Techniques Used:

Related Articles

Comparison:

Article Title: Monitoring and Analysis of Respiratory Patterns Using Microwave Doppler Radar
Article Snippet: Another set of experiments were performed to evaluate the air flow in and out during inhalation and exhalation using a Doppler radar system and a spirometer (MLT1000L respiratory flow-head attached to the Powerlab, sampled at 1000 Hz) as a reference.



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POWERLAB INC spirometer mlt1000l respiratory flow-head
Experiment 1: Deep Breaths followed by apnoea: (a) Filtered radar signal versus <t>spirometer</t> reading; (b) Spirometer reading; (c) Reference respiration belt signal; (d) Calibrated radar signal; and (e) Spirometer reading versus calibrated radar signal.
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https://www.bioz.com/product/spirometer+mlt1000l+respiratory+flow-head/spirometer+mlt1000l+respiratory+flow+head/pmc04848092-117-25-32
Average 90 stars, based on 1 article reviews
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  Buy from Supplier

Image Search Results


Experiment 1: Deep Breaths followed by apnoea: (a) Filtered radar signal versus spirometer reading; (b) Spirometer reading; (c) Reference respiration belt signal; (d) Calibrated radar signal; and (e) Spirometer reading versus calibrated radar signal.

Journal: IEEE Journal of Translational Engineering in Health and Medicine

Article Title: Monitoring and Analysis of Respiratory Patterns Using Microwave Doppler Radar

doi: 10.1109/JTEHM.2014.2365776

Figure Lengend Snippet: Experiment 1: Deep Breaths followed by apnoea: (a) Filtered radar signal versus spirometer reading; (b) Spirometer reading; (c) Reference respiration belt signal; (d) Calibrated radar signal; and (e) Spirometer reading versus calibrated radar signal.

Article Snippet: Another set of experiments were performed to evaluate the air flow in and out during inhalation and exhalation using a Doppler radar system and a spirometer (MLT1000L respiratory flow-head attached to the Powerlab, sampled at 1000 Hz) as a reference.

Techniques:

Experiment 2: Normal Breaths followed by Deep Breaths: (a) Filtered radar signal versus spirometer reading; (b) Spirometer reading; (c) Reference respiration belt signal; (d) Calibrated radar signal; and (e) Spirometer reading versus calibrated radar signal.

Journal: IEEE Journal of Translational Engineering in Health and Medicine

Article Title: Monitoring and Analysis of Respiratory Patterns Using Microwave Doppler Radar

doi: 10.1109/JTEHM.2014.2365776

Figure Lengend Snippet: Experiment 2: Normal Breaths followed by Deep Breaths: (a) Filtered radar signal versus spirometer reading; (b) Spirometer reading; (c) Reference respiration belt signal; (d) Calibrated radar signal; and (e) Spirometer reading versus calibrated radar signal.

Article Snippet: Another set of experiments were performed to evaluate the air flow in and out during inhalation and exhalation using a Doppler radar system and a spirometer (MLT1000L respiratory flow-head attached to the Powerlab, sampled at 1000 Hz) as a reference.

Techniques:

Experiment 3: Deep Breaths followed by Normal Breaths: (a) Filtered radar signal versus spirometer reading; (b) Spirometer reading; (c) Reference respiration belt signal; (d) Calibrated radar signal; and (e) Spirometer reading versus calibrated radar signal.

Journal: IEEE Journal of Translational Engineering in Health and Medicine

Article Title: Monitoring and Analysis of Respiratory Patterns Using Microwave Doppler Radar

doi: 10.1109/JTEHM.2014.2365776

Figure Lengend Snippet: Experiment 3: Deep Breaths followed by Normal Breaths: (a) Filtered radar signal versus spirometer reading; (b) Spirometer reading; (c) Reference respiration belt signal; (d) Calibrated radar signal; and (e) Spirometer reading versus calibrated radar signal.

Article Snippet: Another set of experiments were performed to evaluate the air flow in and out during inhalation and exhalation using a Doppler radar system and a spirometer (MLT1000L respiratory flow-head attached to the Powerlab, sampled at 1000 Hz) as a reference.

Techniques:

Coefficient comparison on Doppler radar signal with  spirometer.

Journal: IEEE Journal of Translational Engineering in Health and Medicine

Article Title: Monitoring and Analysis of Respiratory Patterns Using Microwave Doppler Radar

doi: 10.1109/JTEHM.2014.2365776

Figure Lengend Snippet: Coefficient comparison on Doppler radar signal with spirometer.

Article Snippet: Another set of experiments were performed to evaluate the air flow in and out during inhalation and exhalation using a Doppler radar system and a spirometer (MLT1000L respiratory flow-head attached to the Powerlab, sampled at 1000 Hz) as a reference.

Techniques: Comparison

Scatter Plot between Radar signal and Spirometer reading: (from top to bottom: Experiment 1; Experiment 2; Experiment 3).

Journal: IEEE Journal of Translational Engineering in Health and Medicine

Article Title: Monitoring and Analysis of Respiratory Patterns Using Microwave Doppler Radar

doi: 10.1109/JTEHM.2014.2365776

Figure Lengend Snippet: Scatter Plot between Radar signal and Spirometer reading: (from top to bottom: Experiment 1; Experiment 2; Experiment 3).

Article Snippet: Another set of experiments were performed to evaluate the air flow in and out during inhalation and exhalation using a Doppler radar system and a spirometer (MLT1000L respiratory flow-head attached to the Powerlab, sampled at 1000 Hz) as a reference.

Techniques: