whole body plethysmograph Search Results


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emka TECHNOLOGIES S A S barometric, unrestrained whole-body plethysmography emka
Barometric, Unrestrained Whole Body Plethysmography Emka, supplied by emka TECHNOLOGIES S A S, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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emka TECHNOLOGIES S A S whole-body plethysmograph model plt unr ms
Whole Body Plethysmograph Model Plt Unr Ms, supplied by emka TECHNOLOGIES S A S, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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emka TECHNOLOGIES S A S whole-body, customized plethysmograph
Non-invasive recording of sniff behavior. Schematic representation of the sound-attenuating dark chamber containing the whole-body <t>plethysmograph</t> (left) connected to a computer-operated olfactometer (right). The plethysmograph was composed of two independent airtight chambers: the reference chamber and the animal chamber. Air flux regularly crossed the animal chamber at a rate of 2 L/min and its composition was tightly controlled by the olfactometer. The pressure changes that resulted from animal respiration were measured by a differential pressure transducer (Model dpt, EMKA Technologies) with one sensor in the animal chamber and another in the reference chamber. The measured signal was amplified, digitally sampled at 1 kHz and acquired with a PC using an acquisition card (NI USB 6501, National Instrument, USA). In this experimental procedure, the olfactometer could deliver various stimuli: different percentages of 2 different odors (A and B: OdA, OdB) mixed with no odorized air, mixture of OdA and OdB at different ratios, and pure air (blank: Bl), using airflow regulators and solenoid valves. The animal behavior was monitored using two infrared cameras placed at two opposite corners of the sound-attenuating dark chamber
Whole Body, Customized Plethysmograph, supplied by emka TECHNOLOGIES S A S, 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/whole+body+plethysmograph/whole+body+customized+plethysmograph/pmc07323922-127-26-27
Average 90 stars, based on 1 article reviews
whole-body, customized plethysmograph - by Bioz Stars, 2026-10
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Erich Jaeger GmbH constant volume whole-body plethysmograph masterscreen body 4.3
Non-invasive recording of sniff behavior. Schematic representation of the sound-attenuating dark chamber containing the whole-body <t>plethysmograph</t> (left) connected to a computer-operated olfactometer (right). The plethysmograph was composed of two independent airtight chambers: the reference chamber and the animal chamber. Air flux regularly crossed the animal chamber at a rate of 2 L/min and its composition was tightly controlled by the olfactometer. The pressure changes that resulted from animal respiration were measured by a differential pressure transducer (Model dpt, EMKA Technologies) with one sensor in the animal chamber and another in the reference chamber. The measured signal was amplified, digitally sampled at 1 kHz and acquired with a PC using an acquisition card (NI USB 6501, National Instrument, USA). In this experimental procedure, the olfactometer could deliver various stimuli: different percentages of 2 different odors (A and B: OdA, OdB) mixed with no odorized air, mixture of OdA and OdB at different ratios, and pure air (blank: Bl), using airflow regulators and solenoid valves. The animal behavior was monitored using two infrared cameras placed at two opposite corners of the sound-attenuating dark chamber
Constant Volume Whole Body Plethysmograph Masterscreen Body 4.3, supplied by Erich Jaeger GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 90 stars, based on 1 article reviews
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emka TECHNOLOGIES S A S constant flow whole-body plethysmograph chamber
Non-invasive recording of sniff behavior. Schematic representation of the sound-attenuating dark chamber containing the whole-body <t>plethysmograph</t> (left) connected to a computer-operated olfactometer (right). The plethysmograph was composed of two independent airtight chambers: the reference chamber and the animal chamber. Air flux regularly crossed the animal chamber at a rate of 2 L/min and its composition was tightly controlled by the olfactometer. The pressure changes that resulted from animal respiration were measured by a differential pressure transducer (Model dpt, EMKA Technologies) with one sensor in the animal chamber and another in the reference chamber. The measured signal was amplified, digitally sampled at 1 kHz and acquired with a PC using an acquisition card (NI USB 6501, National Instrument, USA). In this experimental procedure, the olfactometer could deliver various stimuli: different percentages of 2 different odors (A and B: OdA, OdB) mixed with no odorized air, mixture of OdA and OdB at different ratios, and pure air (blank: Bl), using airflow regulators and solenoid valves. The animal behavior was monitored using two infrared cameras placed at two opposite corners of the sound-attenuating dark chamber
Constant Flow Whole Body Plethysmograph Chamber, supplied by emka TECHNOLOGIES S A S, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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emka TECHNOLOGIES S A S unrestrained whole body plethysmograph
Non-invasive recording of sniff behavior. Schematic representation of the sound-attenuating dark chamber containing the whole-body <t>plethysmograph</t> (left) connected to a computer-operated olfactometer (right). The plethysmograph was composed of two independent airtight chambers: the reference chamber and the animal chamber. Air flux regularly crossed the animal chamber at a rate of 2 L/min and its composition was tightly controlled by the olfactometer. The pressure changes that resulted from animal respiration were measured by a differential pressure transducer (Model dpt, EMKA Technologies) with one sensor in the animal chamber and another in the reference chamber. The measured signal was amplified, digitally sampled at 1 kHz and acquired with a PC using an acquisition card (NI USB 6501, National Instrument, USA). In this experimental procedure, the olfactometer could deliver various stimuli: different percentages of 2 different odors (A and B: OdA, OdB) mixed with no odorized air, mixture of OdA and OdB at different ratios, and pure air (blank: Bl), using airflow regulators and solenoid valves. The animal behavior was monitored using two infrared cameras placed at two opposite corners of the sound-attenuating dark chamber
Unrestrained Whole Body Plethysmograph, supplied by emka TECHNOLOGIES S A S, 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/whole+body+plethysmograph/unrestrained+whole+body+plethysmograph/pm24375793-66-8-11
Average 90 stars, based on 1 article reviews
unrestrained whole body plethysmograph - by Bioz Stars, 2026-10
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Harvard Bioscience body plethysmograph
Non-invasive recording of sniff behavior. Schematic representation of the sound-attenuating dark chamber containing the whole-body <t>plethysmograph</t> (left) connected to a computer-operated olfactometer (right). The plethysmograph was composed of two independent airtight chambers: the reference chamber and the animal chamber. Air flux regularly crossed the animal chamber at a rate of 2 L/min and its composition was tightly controlled by the olfactometer. The pressure changes that resulted from animal respiration were measured by a differential pressure transducer (Model dpt, EMKA Technologies) with one sensor in the animal chamber and another in the reference chamber. The measured signal was amplified, digitally sampled at 1 kHz and acquired with a PC using an acquisition card (NI USB 6501, National Instrument, USA). In this experimental procedure, the olfactometer could deliver various stimuli: different percentages of 2 different odors (A and B: OdA, OdB) mixed with no odorized air, mixture of OdA and OdB at different ratios, and pure air (blank: Bl), using airflow regulators and solenoid valves. The animal behavior was monitored using two infrared cameras placed at two opposite corners of the sound-attenuating dark chamber
Body Plethysmograph, supplied by Harvard Bioscience, 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/whole+body+plethysmograph/whole+body+plethysmograph/pm20148421-183-16-18
Average 90 stars, based on 1 article reviews
body plethysmograph - by Bioz Stars, 2026-10
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emka TECHNOLOGIES S A S whole-body plethysmograph for mice
Non-invasive recording of sniff behavior. Schematic representation of the sound-attenuating dark chamber containing the whole-body <t>plethysmograph</t> (left) connected to a computer-operated olfactometer (right). The plethysmograph was composed of two independent airtight chambers: the reference chamber and the animal chamber. Air flux regularly crossed the animal chamber at a rate of 2 L/min and its composition was tightly controlled by the olfactometer. The pressure changes that resulted from animal respiration were measured by a differential pressure transducer (Model dpt, EMKA Technologies) with one sensor in the animal chamber and another in the reference chamber. The measured signal was amplified, digitally sampled at 1 kHz and acquired with a PC using an acquisition card (NI USB 6501, National Instrument, USA). In this experimental procedure, the olfactometer could deliver various stimuli: different percentages of 2 different odors (A and B: OdA, OdB) mixed with no odorized air, mixture of OdA and OdB at different ratios, and pure air (blank: Bl), using airflow regulators and solenoid valves. The animal behavior was monitored using two infrared cameras placed at two opposite corners of the sound-attenuating dark chamber
Whole Body Plethysmograph For Mice, supplied by emka TECHNOLOGIES S A S, 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/whole+body+plethysmograph/whole+body+mouse+plethysmograph/pmc08720854-85-4-5
Average 90 stars, based on 1 article reviews
whole-body plethysmograph for mice - by Bioz Stars, 2026-10
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emka TECHNOLOGIES S A S whole-body plethysmograph for ventilation
Non-invasive recording of sniff behavior. Schematic representation of the sound-attenuating dark chamber containing the whole-body <t>plethysmograph</t> (left) connected to a computer-operated olfactometer (right). The plethysmograph was composed of two independent airtight chambers: the reference chamber and the animal chamber. Air flux regularly crossed the animal chamber at a rate of 2 L/min and its composition was tightly controlled by the olfactometer. The pressure changes that resulted from animal respiration were measured by a differential pressure transducer (Model dpt, EMKA Technologies) with one sensor in the animal chamber and another in the reference chamber. The measured signal was amplified, digitally sampled at 1 kHz and acquired with a PC using an acquisition card (NI USB 6501, National Instrument, USA). In this experimental procedure, the olfactometer could deliver various stimuli: different percentages of 2 different odors (A and B: OdA, OdB) mixed with no odorized air, mixture of OdA and OdB at different ratios, and pure air (blank: Bl), using airflow regulators and solenoid valves. The animal behavior was monitored using two infrared cameras placed at two opposite corners of the sound-attenuating dark chamber
Whole Body Plethysmograph For Ventilation, supplied by emka TECHNOLOGIES S A S, 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/whole+body+plethysmograph/whole+body+plethysmograph+for+ventilation/pm29129580-189-12-16
Average 90 stars, based on 1 article reviews
whole-body plethysmograph for ventilation - by Bioz Stars, 2026-10
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Erich Jaeger GmbH constant volume whole body plethysmograph
Non-invasive recording of sniff behavior. Schematic representation of the sound-attenuating dark chamber containing the whole-body <t>plethysmograph</t> (left) connected to a computer-operated olfactometer (right). The plethysmograph was composed of two independent airtight chambers: the reference chamber and the animal chamber. Air flux regularly crossed the animal chamber at a rate of 2 L/min and its composition was tightly controlled by the olfactometer. The pressure changes that resulted from animal respiration were measured by a differential pressure transducer (Model dpt, EMKA Technologies) with one sensor in the animal chamber and another in the reference chamber. The measured signal was amplified, digitally sampled at 1 kHz and acquired with a PC using an acquisition card (NI USB 6501, National Instrument, USA). In this experimental procedure, the olfactometer could deliver various stimuli: different percentages of 2 different odors (A and B: OdA, OdB) mixed with no odorized air, mixture of OdA and OdB at different ratios, and pure air (blank: Bl), using airflow regulators and solenoid valves. The animal behavior was monitored using two infrared cameras placed at two opposite corners of the sound-attenuating dark chamber
Constant Volume Whole Body Plethysmograph, supplied by Erich Jaeger GmbH, 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/whole+body+plethysmograph/constant+volume+whole+body+plethysmograph/pm11716200-34-14-22
Average 90 stars, based on 1 article reviews
constant volume whole body plethysmograph - by Bioz Stars, 2026-10
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Allmedicus Co Ltd non-invasive whole body mouse plethysmograph
Non-invasive recording of sniff behavior. Schematic representation of the sound-attenuating dark chamber containing the whole-body <t>plethysmograph</t> (left) connected to a computer-operated olfactometer (right). The plethysmograph was composed of two independent airtight chambers: the reference chamber and the animal chamber. Air flux regularly crossed the animal chamber at a rate of 2 L/min and its composition was tightly controlled by the olfactometer. The pressure changes that resulted from animal respiration were measured by a differential pressure transducer (Model dpt, EMKA Technologies) with one sensor in the animal chamber and another in the reference chamber. The measured signal was amplified, digitally sampled at 1 kHz and acquired with a PC using an acquisition card (NI USB 6501, National Instrument, USA). In this experimental procedure, the olfactometer could deliver various stimuli: different percentages of 2 different odors (A and B: OdA, OdB) mixed with no odorized air, mixture of OdA and OdB at different ratios, and pure air (blank: Bl), using airflow regulators and solenoid valves. The animal behavior was monitored using two infrared cameras placed at two opposite corners of the sound-attenuating dark chamber
Non Invasive Whole Body Mouse Plethysmograph, supplied by Allmedicus Co Ltd, 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/whole+body+plethysmograph/non+invasive+whole+body+mouse+plethysmograph/pmc02693579-24-8-13
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non-invasive whole body mouse plethysmograph - by Bioz Stars, 2026-10
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Life Measurement Inc whole body plethysmographer bod pod
Non-invasive recording of sniff behavior. Schematic representation of the sound-attenuating dark chamber containing the whole-body <t>plethysmograph</t> (left) connected to a computer-operated olfactometer (right). The plethysmograph was composed of two independent airtight chambers: the reference chamber and the animal chamber. Air flux regularly crossed the animal chamber at a rate of 2 L/min and its composition was tightly controlled by the olfactometer. The pressure changes that resulted from animal respiration were measured by a differential pressure transducer (Model dpt, EMKA Technologies) with one sensor in the animal chamber and another in the reference chamber. The measured signal was amplified, digitally sampled at 1 kHz and acquired with a PC using an acquisition card (NI USB 6501, National Instrument, USA). In this experimental procedure, the olfactometer could deliver various stimuli: different percentages of 2 different odors (A and B: OdA, OdB) mixed with no odorized air, mixture of OdA and OdB at different ratios, and pure air (blank: Bl), using airflow regulators and solenoid valves. The animal behavior was monitored using two infrared cameras placed at two opposite corners of the sound-attenuating dark chamber
Whole Body Plethysmographer Bod Pod, supplied by Life Measurement 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/whole+body+plethysmograph/whole+body+plethysmographer+bod+pod/pmc04562028-98-11-16
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whole body plethysmographer bod pod - by Bioz Stars, 2026-10
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Image Search Results


Non-invasive recording of sniff behavior. Schematic representation of the sound-attenuating dark chamber containing the whole-body plethysmograph (left) connected to a computer-operated olfactometer (right). The plethysmograph was composed of two independent airtight chambers: the reference chamber and the animal chamber. Air flux regularly crossed the animal chamber at a rate of 2 L/min and its composition was tightly controlled by the olfactometer. The pressure changes that resulted from animal respiration were measured by a differential pressure transducer (Model dpt, EMKA Technologies) with one sensor in the animal chamber and another in the reference chamber. The measured signal was amplified, digitally sampled at 1 kHz and acquired with a PC using an acquisition card (NI USB 6501, National Instrument, USA). In this experimental procedure, the olfactometer could deliver various stimuli: different percentages of 2 different odors (A and B: OdA, OdB) mixed with no odorized air, mixture of OdA and OdB at different ratios, and pure air (blank: Bl), using airflow regulators and solenoid valves. The animal behavior was monitored using two infrared cameras placed at two opposite corners of the sound-attenuating dark chamber

Journal: Brain structure & function

Article Title: Modulation of olfactory-driven behavior by metabolic signals: role of the piriform cortex

doi: 10.1007/s00429-018-1776-0

Figure Lengend Snippet: Non-invasive recording of sniff behavior. Schematic representation of the sound-attenuating dark chamber containing the whole-body plethysmograph (left) connected to a computer-operated olfactometer (right). The plethysmograph was composed of two independent airtight chambers: the reference chamber and the animal chamber. Air flux regularly crossed the animal chamber at a rate of 2 L/min and its composition was tightly controlled by the olfactometer. The pressure changes that resulted from animal respiration were measured by a differential pressure transducer (Model dpt, EMKA Technologies) with one sensor in the animal chamber and another in the reference chamber. The measured signal was amplified, digitally sampled at 1 kHz and acquired with a PC using an acquisition card (NI USB 6501, National Instrument, USA). In this experimental procedure, the olfactometer could deliver various stimuli: different percentages of 2 different odors (A and B: OdA, OdB) mixed with no odorized air, mixture of OdA and OdB at different ratios, and pure air (blank: Bl), using airflow regulators and solenoid valves. The animal behavior was monitored using two infrared cameras placed at two opposite corners of the sound-attenuating dark chamber

Article Snippet: LOT lateral olfactory tract; I, II, III layers of the aPCtx; blue DAPI nuclear stain Whole body plethysmograph Behavioral testing was performed inside a whole-body, customized plethysmograph (EMKA technologies, Paris, France) previously described by Hegoburu et al. (2011) .

Techniques: Amplification

Schematic representation of the sniff behavior protocol (a), acclimation phase (b) and olfactory discrimination test (c). a Lights were turned off at 8:00 a.m. and rats had access to food from 11:00 a.m. to 3:00 p.m. Sniffing behavior was recorded continuously throughout the olfactory paradigm using a whole-body plethysmograph. b The rats were first allowed to habituate to the recording chamber for 4 days. Each day rodents received seven presentations of clean air (blank or Bl; Bl1 to Bl7). c Olfactory discrimination was measured using a cross-habituation task. The test began with two consecutive presentations of Bl then four consecutive presentations of an odorant (odor A, OdA1 to OdA4), followed by 1 presentation of a different odorant (odor B: OdB). Odor discrimination test was performed in the fasted state (before 10:00 a.m.) and just after injection (Inj) of 1 μl glucose (Gluc), insulin (Ins), margatoxin (MgTx) or artificial cerebral spinal fluid (ACSF) in the aPCtx. All odorants (Bl, OdA, OdB or mixture OdA/OdB) were presented for 10 s and were separated by 3 min

Journal: Brain structure & function

Article Title: Modulation of olfactory-driven behavior by metabolic signals: role of the piriform cortex

doi: 10.1007/s00429-018-1776-0

Figure Lengend Snippet: Schematic representation of the sniff behavior protocol (a), acclimation phase (b) and olfactory discrimination test (c). a Lights were turned off at 8:00 a.m. and rats had access to food from 11:00 a.m. to 3:00 p.m. Sniffing behavior was recorded continuously throughout the olfactory paradigm using a whole-body plethysmograph. b The rats were first allowed to habituate to the recording chamber for 4 days. Each day rodents received seven presentations of clean air (blank or Bl; Bl1 to Bl7). c Olfactory discrimination was measured using a cross-habituation task. The test began with two consecutive presentations of Bl then four consecutive presentations of an odorant (odor A, OdA1 to OdA4), followed by 1 presentation of a different odorant (odor B: OdB). Odor discrimination test was performed in the fasted state (before 10:00 a.m.) and just after injection (Inj) of 1 μl glucose (Gluc), insulin (Ins), margatoxin (MgTx) or artificial cerebral spinal fluid (ACSF) in the aPCtx. All odorants (Bl, OdA, OdB or mixture OdA/OdB) were presented for 10 s and were separated by 3 min

Article Snippet: LOT lateral olfactory tract; I, II, III layers of the aPCtx; blue DAPI nuclear stain Whole body plethysmograph Behavioral testing was performed inside a whole-body, customized plethysmograph (EMKA technologies, Paris, France) previously described by Hegoburu et al. (2011) .

Techniques: Injection