Disinfection chamber and associated disinfection process

The disinfection chamber with a UV-C radiation device and transparent support addresses the incomplete disinfection of medical instrument connecting parts by ensuring all parts are exposed to UV-C radiation, achieving comprehensive disinfection.

FR3165183A1Pending Publication Date: 2026-02-06GERMITEC
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
FR2024008460
Authority / Receiving Office
FR · FR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2026-02-06

AI Technical Summary

Technical Problem

Existing disinfection chambers fail to effectively disinfect the connecting parts of medical instruments, such as cables, which remain outside the disinfection volume, leading to potential contamination risks.

Method used

A disinfection chamber with a UV-C radiation generation device and a transparent support that holds the entire medical instrument within the disinfection volume, ensuring all parts, including connecting parts, are exposed to UV-C radiation for complete disinfection.

Benefits of technology

The solution ensures complete disinfection of all parts of the medical instrument, including connecting parts, by maintaining them within the disinfection volume and utilizing a support transparent to UV-C radiation, thereby preventing contamination.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 00000000_0000_ABST
    Figure 00000000_0000_ABST
Patent Text Reader

Abstract

Disinfection chamber and associated disinfection method. The invention relates to a disinfection chamber (10) for a medical instrument comprising: - a disinfection volume (24) delimited by at least one wall (22A-E), - a UV-C radiation generation device (26) configured to generate UV-C radiation in the disinfection volume (24), and - a support (28) configured to hold the entire medical instrument inside the disinfection volume (24), the support (28) being transparent to UV-C radiation. Figure for the abstract: Figure 1
Need to check novelty before this filing date? Find Prior Art

Description

Title of the invention: Disinfection chamber and associated disinfection process

[0001] The present invention relates to a disinfection chamber for a medical instrument and an associated disinfection process.

[0002] In order to avoid any contamination, it is necessary to disinfect a medical instrument between two uses.

[0003] For this purpose, it is known to disinfect medical instruments in disinfection chambers defining a closed disinfection volume. Such chambers include, for example, a UV (Ultraviolet) radiation generation device enabling, in particular, the disinfection of these medical instruments, and more specifically, high-level disinfection.

[0004] Medical instruments, such as medical probes for example, typically include at least one active part and, preferably, also at least one connecting part in the form of a cable.

[0005] It is known to suspend these medical instruments in the disinfection chamber, for example using a suspension arm comprising, for example, a wheel or a ring adapted to hold a portion of the connecting part.

[0006] Generally, in such disinfection enclosures, at least said portion of the connecting part is not disinfected since it is located outside the disinfection volume.

[0007] Such disinfection is therefore not entirely satisfactory, because there is a risk of contamination in this undisinfected area.

[0008] The aim of the invention is therefore to provide a disinfection chamber allowing for improved disinfection of the medical instrument.

[0009] To this end, the invention relates to a disinfection chamber for a medical instrument comprising:

[0010] - a disinfection volume delimited by at least one wall,

[0011] - a UV-C radiation generation device configured to generate UV-C radiation in the disinfection volume, and

[0012] - a support configured to hold the entire medical instrument inside the disinfection volume, the support being transparent to UV-C radiation.

[0013] Thanks to the support, the medical instrument is kept entirely within the disinfection volume, which prevents any part of the instrument from not being disinfected.

[0014] Furthermore, the characteristic that the support is transparent to UV-C radiation ensures that even the portions of the medical instrument that are directly held by the support, especially those in contact with it, are affected by UV-C radiation, and therefore disinfected.

[0015] According to other advantageous aspects of the invention, the disinfection chamber comprises one or more of the following features, taken individually or in any technically possible combination:

[0016] - The support has a UV-C radiation transmittance greater than 30%, and of preference greater than 50%.

[0017] - The support comprises at least one pair of elements comprising a first element and a second element, the medical instrument being intended to be held by the first and second elements.

[0018] - The at least one wall comprises at least a first zone and a second zone different from the first zone, the first element being fixed to the first zone and the second element being fixed to the second zone.

[0019] - The support comprises two pairs of elements.

[0020] - The first and / or second element of the or each pair of elements comprises a plate including a lateral insertion opening so as to allow the insertion of a portion of the medical instrument.

[0021] - At least one wall comprises a bottom, the support comprising a third element fixed to the bottom, the medical instrument being intended to be held by the third element.

[0022] - The support is made of quartz, preferably synthetic quartz.

[0023] The invention also relates to a method for disinfecting a medical instrument comprising the following steps:

[0024] a. supply of an enclosure as described above, and

[0025] b. positioning of the entire medical instrument inside the disinfection volume, the medical instrument being held by the support.

[0026] Advantageously, the medical instrument includes a handle and preferably at least one connector, the handle of the medical instrument being held by one of the first elements, advantageously the connector of the medical instrument being held by one of the second elements.

[0027] The invention will become clearer upon reading the following description, given solely by way of non-limiting example, and made with reference to the drawings in which:

[0028] [Fig-1] [Fig.2] Figures 1 and 2 are schematic perspective views of a example of a disinfection chamber according to the invention;

[0029] [Fig. 3] [Fig. 3] is a schematic perspective view of an example of two elements of the support according to the invention; and

[0030] [Fig.4] [Fig.4] is a schematic view of an example of a clean medical instrument to be disinfected by the disinfection chamber of [Fig. 1].

[0031] Figures 1 and 2 illustrate an example of a disinfection chamber 10 according to the invention. The disinfection chamber 10 is configured to completely disinfect a medical instrument 12.

[0032] By complete disinfection of the medical instrument 12, we mean disinfection of all parts of the medical instrument 12 within the disinfection chamber 10.

[0033] Fig. 4 illustrates an example of a medical instrument 12 suitable for disinfection by the disinfection chamber 10.

[0034] The medical instrument 12 includes, for example, an active part 14. The active part 14 is, for example, a tube intended to be inserted into the patient, for example into a nostril of the patient.

[0035] Preferably, the medical instrument 12 includes a handle 18 connected to the active part 14. The handle 18 is advantageously fixed to one end of the active part 14 and is intended to be grasped by a user in order to facilitate the insertion of the active part 14 into the patient.

[0036] The medical instrument 12 further includes, preferably, a connecting part 16 and even more preferably also a connector 20.

[0037] The connecting part 16 is for example a connecting cable linking the active part 14 to the connector 20.

[0038] Connector 20 is configured for example to be connected to a unit of measurement and / or display, in particular to collect and / or display information captured by the active part 14.

[0039] The medical instrument 12 is, for example, a medical probe, in particular an ultrasound probe, and more specifically a transesophageal echocardiography (TEE) probe or an endoscopic probe, for example, an otolaryngology (ENT) probe. The medical probe is, for example, a pediatric or adult probe.

[0040] The disinfection enclosure 10 comprises a disinfection volume 24 delimited by at least one wall, a UV-C radiation generation device 26 and a support 28.

[0041] Advantageously, at least one wall comprises a bottom 22C.

[0042] Preferably, at least one wall comprises at least a first zone and a second zone different from the first zone.

[0043] In a preferred embodiment, the disinfection chamber 10 comprises a plurality of walls 22A, 22B, 22C, 22D, 22E defining the disinfection volume 24. More particularly, the walls 22A, 22B, 22C, 22D, 22E, 22F define between them a closed disinfection volume 24, for example of parallelepiped shape.

[0044] In the embodiment of the invention illustrated in Figures 1 and 2, the plurality of walls includes, for example, a first side wall 22A and a second side wall 22B opposite each other, a bottom 22C and a hood 22E opposite the bottom 22C and also a base 22D defining a third side wall and a door (not shown) opposite the base 22D.

[0045] For example, the first side wall 22A defines the first zone and the second side wall 22B defines the second zone.

[0046] In particular, the hood 22E and the bottom 22C are for example perpendicular to the two side walls 22A, 22B. Similarly, the base 22D and the door are for example perpendicular to the two side walls 22A, 22B, to the hood 22E and to the bottom 22C.

[0047] In an unillustrated variant, the disinfection enclosure 10 comprises a single wall 22 delimiting the disinfection volume 24, which is for example cylindrical or spherical.

[0048] The UV-C radiation generation device 26 is configured to generate UV-C radiation in the disinfection volume 24.

[0049] For example, the UV-C radiation generation device 26 comprises a plurality of UV-C radiation sources 30 arranged inside the disinfection enclosure 10, and for example on at least one of the walls 22, for example at at least one of the lateral edges of the base 22D as illustrated in [Fig.1].

[0050] Each UV-C radiation source 30 is, for example, a mercury lamp generating UV-C radiation. In particular, each mercury lamp 30 is capable of using mercury to excite a gas and produce UV-C ultraviolet radiation.

[0051] By UV-C radiation, we mean radiation characterized by a wavelength between 200 and 280 nm

[0052] Alternatively, each 30 source of UV-C radiation is an LED lamp (Light-Emitting Diode).

[0053] The support 28 is configured to hold the entire medical instrument 12 inside the disinfection volume 24.

[0054] In other words, when the medical instrument 12 is held by the support 28, all the elements constituting the medical instrument 12 are arranged inside the disinfection volume.

[0055] In particular, the active part 14, the connecting part 16, the handle 18 and the connector 20 are entirely kept inside the disinfection volume 24.

[0056] More particularly, the two ends of the connecting part 16 are located inside the disinfection volume 24, when the medical instrument 12 is held by the support 28.

[0057] The support 28 is transparent to UV-C radiation.

[0058] In particular, the support 28 has a transmittance to UV-C radiation greater than 30%, and preferably greater than 50%, and even more preferably greater than 90%.

[0059] By "transmittance" we mean the ratio of the radiation transmitted by the support 28 to the radiation incident on the support 28.

[0060] In other words, at least 30% of the UV-C radiation incident on the support 28 is transmitted through the support 28.

[0061] The support 28 is preferably made of quartz, preferably synthetic quartz, such as for example an optical quartz glass of category JGS1.

[0062] Alternatively, the support 28 is made of a polymer, preferably a cyclic olefin copolymer (COC), in particular TOPAS®8007X10, or a polymethylpentene, such as TPX™ RT18, or fluorinated ethylene-propylene.

[0063] As illustrated in figures 1 and 2, the support 28 comprises at least one pair of elements 32A, 32B, and preferably two pairs of elements 32A, 32B.

[0064] Each pair of elements 32A, 32B comprises a first element 34A, 34B and a second element 36A, 36B.

[0065] Each first element 34A, 34B and second element 36A, 36B is configured to hold a portion of the medical instrument 12, for example the handle 18 or the connector 20.

[0066] The first element 34A, 34B and the second element 36A, 36B of the same pair 32A, 32B are preferably identical.

[0067] Each first element 34A, 34B is for example fixed to the first side wall 22A.

[0068] Each second element 36A, 36B is for example fixed to the second side wall 22B, preferably at a height relative to the bottom 22C different from the first element 34A, 34B of the same pair.

[0069] As illustrated in [Fig.3], each first element 34A, 34B and / or each second element 36A, 36B includes a plate 38 comprising a lateral insertion opening 40 so as to allow the insertion of a portion of the medical instrument 12.

[0070] In particular, plate 38 is for example a plate made of a material transparent to UV-C radiation, for example quartz.

[0071] In the example illustrated in [Fig.3], the plate 38 is substantially rectangular in shape.

[0072] For example, plate 38 has a thickness between 0.5 cm and 2 cm.

[0073] As can be seen in [Fig. 3], the plate 38 is, for example, fixed to the wall lateral 22A, 22B corresponding by fixing brackets 42 fixed for example by screws.

[0074] The lateral insertion opening 40 is preferably provided on the plate 38 so as to allow the insertion of a portion of the medical instrument 12 and the retention thereof.

[0075] The lateral insertion opening 40 includes, for example, a circular bore 44 and a clearance 46.

[0076] The circular bore 44 preferably has a diameter suitable for holding a portion of the medical instrument 12, such as the handle 18 and / or the connector 20. The circular bore 44 has, for example, a diameter between 20 mm and 50 mm.

[0077] As can be seen in [Fig.3], the clearance 46 is preferably provided so as to connect an edge of the plate 38 to the circular bore 44, in order to allow the insertion of the portion of the medical instrument 12 into the circular bore 44.

[0078] The clearance 46 is advantageously oriented at an angle of approximately 45° with respect to the edges of the plate 38.

[0079] Advantageously, the lateral insertion opening 40 of the first element 34A, 34B and of the second element 36A, 36B of the same pair of elements 32A, 32B are identical.

[0080] Preferably, in the embodiment in which the support 28 comprises two pairs of elements 32A, 32B, the lateral insertion openings 40 of the first elements 34A, 34B, and of the second elements 36A, 36B, respectively, of the two pairs are different, and in particular have different dimensions. Such a difference allows for greater adaptability and, in particular, the retention of medical instruments 12 with varying dimensions and configurations.

[0081] Furthermore, the support 28 preferably includes a third element 47 fixed to the bottom 22C.

[0082] The third element 47 is preferably adapted to keep a portion of the medical instrument 12, and in particular the active part 14 of the medical instrument 12, away from the walls 22 of the disinfection enclosure 10.

[0083] The third element 47 includes, for example, a plate 48 fixed to the bottom 22C by means of fixing feet 50.

[0084] More specifically, the plate 48 is substantially parallel to the bottom 22C and is held at a distance from it by the fixing feet 50.

[0085] Plate 48 is for example a plate made of a material transparent to UV-C radiation, for example quartz.

[0086] Advantageously, the plate 48 includes a circular hole 52 advantageously of a diameter adapted to receive the activated part 14 of the medical instrument 12. The diameter is for example between 30 mm and 50 mm.

[0087] A method for disinfecting the medical instrument 12 in the disinfection chamber 10 will now be described.

[0088] First, a disinfection chamber 10 as described above is provided.

[0089] Next, the medical instrument 12 intended to be disinfected is positioned in the disinfection volume 24 of the disinfection enclosure 10.

[0090] In particular, the medical instrument 12 is positioned entirely inside the disinfection volume 24, the medical instrument 12 being held by the support 28.

[0091] In particular, the operator inserts a portion of the medical instrument 12 into the circular bore 44 of each of at least one of the first elements 34A, 34B and at least one of the second elements 36A, 36B.

[0092] More specifically, in the preferred embodiment illustrated in the figures, the handle 18 of the medical instrument 12 is for example held by one of the first elements 34A, 34B and the connector 20 of the medical instrument 12 is held by one of the second elements 36A, 36B. The connecting part 16 extends between these two elements.

[0093] Depending on the medical instrument 12 to be disinfected, the first element 34A holding the handle 18 and the second element 36A holding the connector 20 belong to the same pair of elements or to different pairs.

[0094] The active part 14 is preferably held in the third element 47 of the support 28. In particular, the active part 34 is inserted into the circular hole 52 provided in the plate 48 of the third element 47.

[0095] The door (not shown) is then closed.

[0096] A disinfection cycle using UV-C radiation generated by the UV-C radiation generation device 26 is then implemented.

[0097] Such a disinfection chamber 10 is particularly advantageous for the disinfection of medical instruments 12, and in particular of medical probes.

[0098] In particular, thanks to the support 28, the medical instrument 12 is kept entirely within the disinfection volume 12, which prevents any portion of the instrument from not being disinfected.

[0099] Furthermore, the characteristic that the support 28 is transparent to UV-C radiation ensures that even the portions of the medical instrument 12 that are directly held by the support 28, in particular those that are in contact with it, are reached by UV-C radiation, and thus disinfected.

[0100] Furthermore, the embodiment using a quartz support 28 is particularly advantageous, as this material guarantees a UV-C transmittance greater than 90%. Moreover, such a material has very good mechanical strength and its UV-C transmission capacity remains unchanged even after hundreds of hours of exposure.

[0101] Furthermore, the support 28 is suitable for holding different types and sizes of medical instruments 12.

[0102] A person skilled in the art will understand that the embodiments and variants described above can be combined with each other provided that they are technically compatible.

Claims

Demands

1. Disinfection chamber (10) for a medical instrument (12) comprising: - a disinfection volume (24) delimited by at least one wall (22A-E), - a UV-C radiation generation device (26) configured to generate UV-C radiation in the disinfection volume (24), and - a support (28) configured to hold the medical instrument (12) entirely inside the disinfection volume (24), the support (28) being transparent to UV-C radiation.

2. Enclosure (10) according to claim 1, wherein the support (28) has a UV-C radiation transmittance greater than 30%, and preferably greater than 50%.

3. Enclosure (10) according to claim 1 or 2, wherein the support (28) comprises at least one pair of elements (32A, 32B) comprising a first element (34A, 34B) and a second element (36A, 36B), the medical instrument (12) being intended to be held by the first (34A, 34B) and the second (36A, 36B) elements.

4. Enclosure (10) according to claim 3, wherein at least one wall (22A-E) comprises at least a first zone (22A) and a second zone (22B) different from the first zone (22A), the first element (34A, 34B) being fixed to the first zone and the second element (36A, 36B) being fixed to the second zone (22B).

5. Enclosure (10) according to claim 3 or 4, wherein the support (28) comprises two pairs of elements (32A, 32B).

6. Enclosure (10) according to any one of claims 3 to 5, wherein the first (34A, 34B) and / or the second (36A, 36B) element of the or each pair of elements (32A, 32B) comprises a plate (38) including a lateral insertion opening (40) so as to permit the insertion of a portion of the medical instrument (12).

7. Enclosure (10) according to any one of the preceding claims, wherein at least one wall (22A-E) comprises a bottom (22C), the support (28) comprising a third element (47) fixed to the bottom (22C), the medical instrument (12) being intended to be held by the third element (47).

8. Enclosure (10) according to any one of the preceding claims, wherein the support (28) is made of quartz, preferably synthetic quartz.

9. Method for disinfecting a medical instrument (12) comprising the following steps: a. providing an enclosure (10) according to any one of the preceding claims, and b. positioning the medical instrument (12) entirely inside the disinfection volume (24), the medical instrument (12) being held by the support (28).

10. A method according to claim 9, wherein the medical instrument (12) comprises a handle (18) and preferably at least one connector (20), the disinfection chamber (10) being according to any one of claims 2 to 8, the handle (18) of the medical instrument (12) being held by one of the first elements (34A, 34B), advantageously the connector (20) of the medical instrument (12) being held by one of the second elements (36A, 36B).

Citation Information

Patent Citations

  • Medical instrument disinfecting chamber via radiation

    EP1937318B1

  • Device for disinfecting at least one object

    US20220096678A1

  • Decontamination system

    US20230078211A1