IP Library › Granted Patent US 12,336,806
Granted Patent B2
US 12,336,806 · App. 17/275,701 · Granted Jun 24, 2025

Breath sampler

Inventors: Marinus Isaäk de Jonge (Nijmegen, NL); Cornelis Hubertus van den Kieboom (Utrecht, NL); Michèl Mathijs Klerks (Vlijmen, NL); Ronald van Doorn (Driel, NL)
Assignee: Stichting Radboud universitair medisch centrum
A61B5/082A61B5/091A61B5/097A61B2010/0087
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Quick Facts
Patent No.
US 12,336,806
App. No.
17/275,701
Granted
Jun 24, 2025
Kind
B2
Abstract

A breath sampler for collecting a breath sample from a patient is disclosed. The breath sampler has a non-rebreather part including a sample inlet, a one-way outlet valve downstream of the sample inlet, and an air inlet. The one-way outlet valve and the sample inlet define a first portion of an internal breath flow pathway therebetween. The air inlet is arranged to be closed by a one-way inlet valve arranged to allow air to enter the non-rebreather part. The breath sampler also has a sample delivery part in fluid communication with the non-rebreather part at an upstream end via the one-way outlet valve. The sample delivery part defines a second portion of the internal breath flow pathway, and has an air diverter, a sample outlet, a return inlet and a sample collection chamber connector. The air diverter is arranged to divide the sample delivery part into an upstream portion upstream of the air diverter and a downstream portion downstream of the air diverter and is configured to divert the breath sample into a sample collection chamber including a liquid capture interface. The sample collection chamber is coupled to the sample collection chamber connector and includes a liquid capture interface.

Claims (37)

1. A breath sampler for collecting a breath sample from a patient, the breath sampler comprising:

a non-rebreather part comprising:

a sample inlet;

a one-way outlet valve arranged to allow air to exit the non-rebreather part, the one-way outlet valve and the sample inlet defining a first portion of an internal breath flow pathway therebetween; and

an air inlet comprising a plurality of slits in a wall of the breath sampler and arranged to be closed by a one-way inlet valve arranged to allow air to enter the non-rebreather part, the air inlet being in fluid communication with the first portion of the internal breath flow pathway; and

a sample delivery part in fluid communication with the non-rebreather part at an upstream end via the one-way outlet valve, the sample delivery part defining a second portion of the internal breath flow pathway, the sample delivery part comprising:

an air diverter, in the sample delivery part, arranged to divide the sample delivery part into an upstream portion and a downstream portion;

a sample outlet in the upstream portion;

a return inlet in the downstream portion and in fluid communication with an exhaust; and

a sample collection chamber connector configured to form a seal with an opening of a sample collection chamber, the connector defining a perimeter, the sample outlet and the return inlet being disposed within the perimeter;

wherein the breath sampler further comprises the sample collection chamber coupled to the sample collection chamber connector, the sample collection chamber comprising a liquid capture interface,

wherein the breath sampler is configured so that, during operation, the breath sample from the patient passes through the non-rebreather part, is delivered via the sample delivery part to the sample outlet into the sample collection chamber, passes through the liquid capture interface in the sample collection chamber, which captures at least one of chemical markers and biological markers from the breath sample, the breath then re-enters the sample delivery part from the sample collection chamber via the return inlet, and escapes the breath sampler via the exhaust.

2. The breath sampler according to claim 1 , further comprising a sample delivery tube coupled to the sample outlet for delivering the breath sample to the liquid capture interface, and wherein the sample delivery tube is removably connected to the sample outlet.

3. The breath sampler according to claim 2 , further comprising a diffuser coupled to the sample delivery tube, the diffuser comprising an inlet and a network of channels to divide the breath sample from the inlet into a plurality of streams.

4. The breath sampler according to claim 1 , wherein the air diverter comprises a wall extending in a plane that is transverse to the longitudinal axis of the sample delivery part.

5. The breath sampler according to claim 1 , further comprising a volumetric breath quantifier configured to measure a volume of breath delivered to the sample outlet.

6. The breath sampler according to claim 5 , wherein the volumetric breath quantifier is configured to separate the breath sample into at least two sub-samples.

7. The breath sampler according to claim 6 , wherein the volumetric breath quantifier further comprises a closure member configured to selectively close the sample outlet to prevent a first sub-sample being delivered to the sample collection chamber.

8. The breath sampler according to claim 7 , wherein the volumetric breath quantifier comprises a Geneva gear configured to open the closure member when a predetermined volume of breath has entered the volumetric breath quantifier.

9. The breath sampler according to claim 8 , wherein the volumetric breath quantifier is positioned downstream of the outlet valve and comprises:

a turnstile rotatably mounted within the breath flow pathway and comprising at least one fin configured to be rotatably displaced by a defined breath volume;

a geared coupling between the turnstile and the Geneva gear;

wherein the turnstile is configured to move the Geneva gear from a first position to a second position, and

wherein movement of the Geneva gear from the first position to the second position is configured to open the closure member to allow a second sub-sample to be delivered to the sample collection chamber.

10. The breath sampler according to claim 1 , further comprising a plurality of selectively connectable modules.

11. The breath sampler according to claim 10 , wherein:

a first module comprises the non-rebreather part, the one-way outlet valve and the one-way air inlet; and

a second module comprises the sample delivery part and the sample collection chamber connector.

12. The breath sampler according to claim 1 , further comprising a delivery port in fluid communication with the non-rebreather part, configured for connection to a nebuliser.

13. The breath sampler according to claim 1 , wherein the sample collection chamber further comprises an integrated testing module.

14. The breath sampler according to claim 13 , wherein the integrated testing module is a lab-on-chip device.

15. The breath sampler according to claim 13 , wherein the integrated testing module comprises a PCR unit.

16. The breath sampler according to claim 1 , wherein at least one of the non-rebreather part and the sample delivery part comprises a sensor configured to measure additional biomarkers including one or more of: nucleic acids, cytokines, chemokines, C-reactive protein, hosts and pathogens.

17. The breath sampler according to claim 1 , wherein the exhaust comprises a filter or mesh.

18. The breath sampler according to claim 1 , further comprising a breath sampler cap configured to removably attach to a distal end of the breath sampler, the distal end of the breath sampler being an end opposite to an end comprising the sample inlet.

19. The breath sampler according to claim 18 , wherein the sampler cap is arranged to cover the exhaust.

20. The breath sampler according to claim 18 , wherein the sampler cap comprises connection means corresponding to the sample collection chamber.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 4, 2021
From: DE JONGE, MARINUS ISAÄK; VAN DEN KIEBOOM, CORNELIS HUBERTUS
To: STICHTING RADBOUD UNIVERSITAIR MEDISCH CENTRUM
Reel/Frame 056124/0295 →
Priority Claims (1)
NL 2021637 · Sep 14, 2018 · national
Continuity (1)
Related Publication 20220031189A1 · Feb 3, 2022
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