WO2011154510A1 - Outil de prélèvement d'un échantillon de tissu animal - Google Patents
Outil de prélèvement d'un échantillon de tissu animal Download PDFInfo
- Publication number
- WO2011154510A1 WO2011154510A1 PCT/EP2011/059636 EP2011059636W WO2011154510A1 WO 2011154510 A1 WO2011154510 A1 WO 2011154510A1 EP 2011059636 W EP2011059636 W EP 2011059636W WO 2011154510 A1 WO2011154510 A1 WO 2011154510A1
- Authority
- WO
- WIPO (PCT)
- Prior art keywords
- coupling
- cutting element
- cutting
- sampling
- pusher
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
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Classifications
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B10/00—Instruments for taking body samples for diagnostic purposes; Other methods or instruments for diagnosis, e.g. for vaccination diagnosis, sex determination or ovulation-period determination; Throat striking implements
- A61B10/02—Instruments for taking cell samples or for biopsy
- A61B10/0233—Pointed or sharp biopsy instruments
- A61B10/0266—Pointed or sharp biopsy instruments means for severing sample
-
- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01K—ANIMAL HUSBANDRY; AVICULTURE; APICULTURE; PISCICULTURE; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
- A01K11/00—Marking of animals
- A01K11/001—Ear-tags
- A01K11/003—Ear-tags with means for taking tissue samples, e.g. for DNA analysis
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B10/00—Instruments for taking body samples for diagnostic purposes; Other methods or instruments for diagnosis, e.g. for vaccination diagnosis, sex determination or ovulation-period determination; Throat striking implements
- A61B10/0096—Casings for storing test samples
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61B—DIAGNOSIS; SURGERY; IDENTIFICATION
- A61B10/00—Instruments for taking body samples for diagnostic purposes; Other methods or instruments for diagnosis, e.g. for vaccination diagnosis, sex determination or ovulation-period determination; Throat striking implements
- A61B10/02—Instruments for taking cell samples or for biopsy
- A61B2010/0225—Instruments for taking cell samples or for biopsy for taking multiple samples
Definitions
- the field of the invention is that of control and / or identification of animals.
- the invention relates to the removal of tissue from an animal, in particular to retain cells bearing biological or biochemical characteristics of the animal, for example to subsequently identify the animal or detect diseases of the animal.
- the invention relates to the tool for performing such a sampling.
- the invention makes it possible, in particular, to take tissue from cattle, sheep, pigs, goats, birds, fish or more generally from any animal species, which can be carried out with or without the simultaneous laying of an identification mark. .
- tissue sample of the animal can therefore be stored and / or transmitted to a laboratory for analysis.
- Currently used sampling techniques can take a tissue sample of the animal during the installation of an identification mark, which can be visual or electronic.
- Tissue collection techniques implemented independently of the pose of an identification mark are also known.
- these techniques are based, for example, on the use of a punch forming or comprising a cutting element 10 intended to cut a sample 11 of animal tissue and to collect it in a housing.
- the cutting element 10 has a cutting edge of generally circular shape, continuous contact or sawtooth.
- the punch 10 attached to a first jaw of a sampling tool, a forceps for example, cuts the skin of the animal, and at least partially insert into the micro tube 12, attached to a second jaw of the tool, when operating the tool.
- the punch 10 conventionally has a diameter slightly smaller than that of the microtube 12, so as to serve as a plug to the microtube.
- the housing receiving the sample 1 1 is thus open towards the inside of the microtube, but closed towards the outside of the microtube, so as to avoid contamination of the sample.
- the sample 11 is directly inserted into the microtube 12, thus limiting the risk of contamination of the sample.
- a further disadvantage of this technique is that the punch must be manipulated to extract the tissue sample collected in the housing, the latter operation may be difficult and / or complex, and present a risk of cut-off for the user .
- the invention proposes a new solution that does not have all of these disadvantages of the prior art, in the form of a sampling tool for a sample of animal tissue, intended to cooperate with sampling means comprising minus one cutting element adapted to cut the sample and one movable pusher element relative to the cutting element, able to push the sample into storage means after cutting.
- such a tool comprises:
- Pusher element driving means for moving the pusher element along the translation axis towards the fabric, until at least partial insertion of the pusher element in the storage means
- the invention thus proposes a new tool for the removal of animal tissue, making it possible to simultaneously actuate means for driving the cutting element and means for driving the pusher element in a first step, and then only the driving means of the pusher element in a second time, from a single action on the tool.
- the operations of cutting the fabric, extracting the fabric and closing the tube are performed in a single action, ie a single movement for the user (actuating a lever, triggering a trigger, etc.) .
- the proposed tool can thus be seen as a double axis mechanism (or double needle), a primary axis (or needle) transmitting a translation movement to the cutting element to cut the tissue sample, and an axis ( or needle) secondary transmitting a translational movement to the pusher element in the same direction to extract the cut fabric, these two axes being secured until the cutting of the fabric, and then detached.
- the trajectory of the cutting element and the pusher element through the animal tissues is therefore rectilinear.
- the invention thus allows an optimized sampling, particularly simple and fast for the user, who does not have to perform several actions himself to perforate the animal tissue, push the sample in storage means, close the means of storage, etc., all these operations being performed from a single action on the tool (for example a manual action, electrical, pneumatic or other on the handles of the tool).
- the sampling tool comprises at least one articulated handle forming a lever, movable over a predetermined stroke comprising a first portion and a second portion.
- Such a lever comprises means of action on the coupling means allowing the passage of the coupling position on the first portion to the uncoupling position on the second portion.
- the coupling means implement at least one movable coupling element adapted to cooperate with a housing provided for this purpose in the driving means of the cutting element, the element or elements. coupling being held in the housing in the coupling position and released in the uncoupling position.
- coupling elements can be provided (for example one, two or three).
- This first embodiment eliminates the use of prestressed springs, intended to compress from a certain effort.
- the coupling means disengages the driving means of the cutting element of the driving means of the pusher element as a function of the travel of the lever, and not of the different forces involved: a resistant effort to cross the animal tissues (which differ depending on the area where the sample is taken (due to a variation in the thickness of the tissues in particular), according to the breed or the category of the animal, according to the orientation of the tool relative to the tissues to be sampled, etc.), effort to close the storage means, force exerted on the lever, etc.
- a resistant effort to cross the animal tissues which differ depending on the area where the sample is taken (due to a variation in the thickness of the tissues in particular), according to the breed or the category of the animal, according to the orientation of the tool relative to the tissues to be sampled, etc.
- effort to close the storage means force exerted on the lever, etc.
- the driving means of the pusher element comprise at least one groove, and the housing is opposite the groove in the coupling position.
- the groove also receives the coupling element provided in the corresponding housing.
- the coupling element is a ball, a cylinder, and so on.
- the housing is a through-light and the ball is held in the housing by means of a slider piece, shaped to define holding means holding the ball in the groove in the coupling position, and release means releasing the ball from the groove into the uncoupling position.
- the slider piece has a shape of revolution about the translation axis, defining a sleeve comprising at least two sections of different diameters, the holding means corresponding to the lower diameter section and the release means to the section. of greater diameter.
- the slider piece may be connected to the drive means of the pusher element by a spring, said slider spring, the slider spring tending to move the slider piece of the drive means of the pusher element.
- the slider spring is in a state of rest in the coupling position and in a state of compression in the uncoupling position.
- the coupling means implement a so-called "stripping" system.
- the coupling means implementing a coupling spring positioned between the driving means of the cutting element and the element. pusher, said coupling spring being prestressed so as to require the application of a force greater than the force required to cut the sample to compress.
- the prestressed coupling spring thus ensures the coupling function of the driving means of the pusher element and the driving means of the cutting element as long as the tissue is not cut, and then allows the movement of the pusher element independently of the cutting element when the cutting force of the fabric is exceeded.
- the solution according to this second embodiment is particularly simple to implement, since it only requires the addition of a prestressed spring.
- the coupling means implement a clipping system with at least one at least partially deformable element.
- such an element comprises a plurality of fingers, or leaf spring, extending substantially parallel to the axis of translation, the fingers each having at least one boss adapted to cooperate with a complementary housing provided in the drive means of the cutting element in the coupling position.
- the driving means of the cutting element therefore have a specific shape, allowing reversible coupling with this at least partially deformable element.
- this third embodiment eliminates the use of prestressed springs, designed to compress from a certain effort. In the uncoupling position, it is therefore not necessary to combine the cutting forces and efforts to close the storage means.
- the coupling means disengages the driving means of the cutting element of the driving means of the pusher element as a function of the travel of the lever, and not of the different efforts in question, according to this third embodiment, which allows a better repeatability of the operatio
- the sampling tool comprises means for locking the storage means on a branch of the tool.
- these locking means are of the locking ring type, translating element, etc. They make it possible to keep the storage means, for example a sampling tube, in a safe manner during the sampling. Once sampling is done, the user can simply unlock these means to access the tube containing the sample. In this way, the user does not have to manipulate the sample directly.
- the sampling tool comprises means for ejecting the cutting element.
- the used cutting element is returned to the initial position and ejected from the tool by a deliberate action of the user, such as an action in the opposite direction of the lever for example, without direct contact with the machine. user, in order to dispose of the cutting element in a suitable area (trash can, drain pan, etc.).
- a deliberate action of the user such as an action in the opposite direction of the lever for example, without direct contact with the machine. user, in order to dispose of the cutting element in a suitable area (trash can, drain pan, etc.).
- the sampling tool is designed so that at no time the user is in direct contact with the soiled cutting element and the sample taken.
- the driving means of the cutting element comprise a main piston and the driving means of the pusher element comprise a secondary piston, the secondary piston being displaced by inertia in the uncoupling position.
- a simple support of the user on a button or a trigger makes it possible to trigger the simultaneous movement of the main and secondary pistons at first, then only the secondary piston in a second time, by inertia, after a sudden stop of the movement of the main piston.
- the coupling means comprise a locking finger cooperating with a slot provided in the primary piston, the locking finger being locked in the uncoupling position.
- the sudden stop of the movement of the main piston can be caused by the locking of the locking finger, passing the coupling means from the coupled position to the uncoupled position.
- the sampling tool comprises means for automatically removing the cutting element.
- Such means make it possible to quickly release the ear of the animal, and avoid the risk of cutting the user or the animal with a dirty cutting element, by protecting the cutting edge of the cutting element.
- FIG. 1 illustrates a device for sampling a tissue sample according to the prior art
- FIGS. 2 and 3 respectively show a sectional view of the sampling means and storage means can be implemented by a sampling tool according to one embodiment of the invention
- FIG. 4 illustrates a sampling tool according to an embodiment of the invention, in the initial position
- FIGS. 5A and 5B illustrate more precisely the various elements of the sampling tool according to FIG. 4 during sampling
- Figures 6 and 7 show an example of ejection mechanism of the cutting element of the sampling tool of Figure 4;
- FIGS. 8A and 8B respectively illustrate the sampling tool of FIG. 4 and the storage means after the sampling operation
- Figures 9A and 9B provide a first embodiment of the coupling means according to the invention.
- Figure 10 shows a second embodiment of the coupling means according to the invention.
- FIGS. 11A and 11B illustrate a third embodiment of the coupling means according to the invention.
- FIG. 12A to 12H illustrate another example of implementation of the invention
- Figures 13A to 15 show different techniques for automatic removal of the cutting element after cutting tissues.
- sampling means comprising a cutting element and a pusher element to take a sample of animal tissue, as described for example in the French patent application filed under the number FR-08 58453.
- such a sampling tool makes it possible to simultaneously move the cutting element and the pusher element in a first step, and then to move only the pusher element in a second time.
- the tool according to the invention thus comprises means for driving the cutting element and means for driving the pusher element, making it possible to move the cutting element and the pusher element towards the fabric. removing, and reversible coupling means driving means of the cutting element and drive means of the pusher element.
- sampling tool according to the invention is used to carry out a sampling using the sampling and storage means as described in the French patent application FR-08 58453. .
- these sampling means comprise on the one hand a cutting element 21, and on the other hand a pusher element 23.
- the cutting element 21 can in particular be secured to a support 22.
- This support 22 which can be made of plastic material, is intended to be mounted at the end of a needle secured to one of the branches of a removal tool, removably. It is in the form of a surface of revolution, of the same axis as the cutting element 21 and the pusher element 23. It comprises in particular a flange 221, on which can be fixed the needle to drive the element cutting.
- the cutting element 21 and the support 22 are formed integrally, for example plastic or metal. It is considered that the cutting element 21 and the support 22 form a single piece, which is "monobloc".
- the cutting element 21 has a cylindrical revolution shape.
- the cutting edge 211 then has a circular shape.
- the cylinder forming a cutting element 21 is open at both ends, in order to let the pusher element 23 pass, so that the latter can push the sample out of the cutting element 21 and accompany it in means of storage, according to the direction illustrated by the arrow F.
- the pusher element 23 also has a cylindrical revolution shape.
- the diameter of the pusher element 23 must be smaller than that of the cutting element 21 so that the pusher element 23 can slide inside the cylinder formed by the cutting element 21.
- the pusher element 23 is movable in translation along the axis A-A inside the cutting element 21, in the direction illustrated by the arrow F.
- these storage means comprise on the one hand a sampling tube 31 comprising at least one opening, and on the other hand a tube head 32, secured to the inlet of the sampling tube, by example by clipping or interlocking. It can be made of flexible material, especially rubber, to facilitate insertion into the neck of the tube.
- the tube head 32 is in the form of a cap pierced with a central opening, of sufficient diameter to allow the insertion of at least a portion of the pusher member 23.
- the use of a flexible material for this cap also makes it easier to introduce the pusher element 23 into the tube 31.
- the pusher element 23 then closes the tube 31 in a leaktight or quasi-tight manner.
- the tube head 32 also has a flange, resting on the rim of the sample tube 31, defining an abutment surface (or chopping block) on which the cutting edge of the cutting element 21 can bear during sampling. , in order to cut more easily the tissue sample.
- sampling tool sometimes also referred to as a delivery tool or forceps, can be described below, which can be used to take a tissue sample according to the invention.
- such a tool generally comprises a fixed part also called body 41, defining in particular a first handle, and a hinged portion also called lever 42, defining a second handle.
- the body 41 of the tool also defines two branches between which is positioned the tissue to be taken, for example the ear 43 of the animal.
- the first branch 41 1 is intended to cooperate with sampling means as illustrated in Figure 2 for example
- the second branch 412 is intended to cooperate with storage means as illustrated in Figure 3 for example.
- the second branch 412 includes locking means of the sampling tube, such as a locking ring for example.
- the first branch 411 comprises drive means 44 of the sampling means, for moving the cutting element 21 (and / or its support 22) and the pusher element 23 in translation towards the tissue to be removed. along the axis of translation AA. These drive means are activated when the user of the tool exerts a force on the lever 42.
- the lever 42 manually operable for example, acts on the drive means 44, so as to guide the sampling means in a translational movement, so that they penetrate the flesh of the animal and force the sample taken from the storage means.
- the tool can also be operated by means of electrical, pneumatic, or other energy. The sampling and storage means are therefore configured to cooperate with such a tool.
- the drive means 44 comprise means for driving the cutting element 21 (and / or its support 22), means for driving the pusher element 23, and coupling means reversible of these drive means.
- a first step corresponding to a first portion of the stroke of the lever 42 between an initial position and an intermediate position, the driving means of the cutting element 21 and the driving means of the pusher element 23 are coupled, in a coupling position to link the movements of the cutting elements and pusher.
- a second time corresponding to a second portion of the stroke of the lever 42 between the intermediate position and a final position, the driving means of the cutting element 21 and the driving means of the pusher element 23 are uncoupled, in a position uncoupling device for dissociating the movements of the cutting and pushing elements.
- Figure 4 illustrates the initial state of the laying tool, when the sampling and storage means are mounted on the tool, which is ready to be used.
- FIGS. 5A and 5B illustrate more precisely the various elements of the sampling tool during sampling, and in particular the two coupling and uncoupling positions.
- the cutting element 21 is guided in translation by drive means 441
- the pusher element 23 is guided in translation by drive means 442, pushing the pusher element 23 into position. through the cutting element 21.
- the drive means 441 of the cutting element and the drive means 442 of the pusher element are connected in a coupling position at first, corresponding to the first portion of the stroke of the lever 42.
- This translation allows the cutting element to perforate the lug 43 in a rectilinear trajectory to cut a tissue sample, until it comes into abutment on the collar of the tube head of the sampling tube 31.
- the drive means 441 of the cutting element and the drive means 442 of the pusher element are not more related.
- the continuation of the action on the lever 42 on this second portion generates a translation of the pusher element 23 only.
- the pusher element 23 is then guided in translation through the cutting element 21 (blocked in abutment against the flange of the tube head), and pushes the cut sample 431 into the tube 31.
- the pusher element 23 ends its race by fitting into the head of the tube, and thus hermetically or almost hermetically closes the tube 31.
- the action of the pusher element begins after the element of cut has ensured the cutting of the fabric against an "anvil” (collar of the tube head of the sampling tube 31), thus ensuring a clean and repeatable cut of the first skin, cartilage, and second skin.
- a return spring 45 can then return the lever to its initial position, as well as the drive means 441 of the cutting element and the drive means 442 of the pusher element in their initial position, that is to say in their coupling position.
- the cutting element can thus be returned to the initial position.
- the cutting element remains neither in the storage means nor in the animal, and may have any shape particularly suitable for cutting animal tissue, and in particular an extremely sharp edge.
- the sampling tool provides means for ejecting the cutting element 21 after use.
- the user can apply a reverse rotation (or translation) movement to the lever 42, tending to move it away from the first handle 41 instead of approaching it (arrow B).
- This reverse rotation (or translation) movement causes the drive means 441 of the cutting element and the drive means 442 of the pusher element to move in a direction F opposite the sampling direction F.
- drive means 441 of the cutting element then drive the cutting element 21 in the direction F until the flange 221 of the support 22 of the cutting element abuts on means provided for this purpose on the body of the tool.
- the support 22 and the cutting element 21 are then disengaged from the drive means 441, and ejected from the sampling tool, without the user having to touch the soiled cutting element.
- the user can thus eject the soiled cutting element when he wishes, in a suitable place, without having to touch this element, which avoids the risk of cutting or contamination.
- the user Prior to the ejection, the user can of course position a protective element on the cutting element 21.
- the stop lever in the initial position is elastic. It can be performed by a damping system or by a spring 46, as illustrated in FIG. 7, bringing the lever 42 and the entire mechanism into position initial. The movement of the lever 42 relative to the body 41 in the direction opposite to the direction of sampling is therefore permitted.
- the user can unlock the locking means 81 of the tube 31, for example by turning a locking ring, or by translating a locking element, in order to recover the sample 431 conditioned in the tube 31, as illustrated in FIG. A.
- the sample 431 is then ready to be transmitted to a laboratory, in its sampling tube 31 closed off by the pusher element 23.
- a first embodiment of the coupling means is described below, allowing a coupling position of the drive means 441 of the cutting element and the drive means 442 to be moved to a disengagement position. .
- the coupling means implement at least one movable coupling element, adapted to cooperate with a housing provided for this purpose in the drive means 441 of the cutting element.
- These coupling elements (balls, cylinders, or other) are held in the housing in the coupling position, and released in the uncoupling position.
- Figures 9A and 9B illustrate the drive means 441 and 442 of the cutting element and the pusher element, corresponding to the positions respectively illustrated in Figures 5A and 5B.
- the driving means 441 of the cutting element comprise one or more housings 91 each receiving a ball 92.
- the drive means 442 of the pusher element comprise at least one throat 93, such that each housing 91 is facing the groove 93 in the coupling position.
- the housing 91 In the coupling position illustrated in FIG. 9A, the housing 91 is through (light) and the ball 92 is held in the housing 91 by means of a slider piece 94. In the uncoupling position illustrated in FIG. 9B, the ball 92 is no longer maintained via the slide piece 94.
- such a slider piece 94 has a shape of revolution around the translation axis, defining a sleeve comprising at least two sections of different diameters.
- the smaller diameter section 941 keeps the ball 92 in the groove 93 in the coupling position.
- Section 942 of larger diameter allows to release the ball 92 of the groove 93 in the uncoupling position.
- the slider piece 94 is connected to the drive means 442 of the pusher element by a spring, said slide spring 95, proposed according to this example in a rest state in the coupling position and in a compression state in the position uncoupling.
- the drive means 441 of the cutting element and the drive means 442 of the pusher element are coupled at first, as illustrated in FIG. 9A, which generates the simultaneous translation. of the cutting element and the pusher element.
- the cutting element then pierces the ear of the animal to cut a tissue sample.
- the slide piece 94 is also abutting against a stop element (such as a shoulder) provided for this purpose. on the body of the tool, at its section 942 of greater diameter.
- a stop element such as a shoulder
- the drive means 442 of the pusher element continue to push the pusher element 23, and guide the ball or balls 92, previously held by the smaller diameter section 941 of the slider piece 94 to the larger diameter section 942.
- the balls 92 are then released, and the drive means 441 of the cutting element and the drive means 442 of the pusher element are disengaged, as it glosses in FIG. 9B, and the pusher element can continue its movement independently of the cutting element.
- the cutting element is in abutment on the collar of the tube head of the sampling tube.
- the primary spring 96 provided between the drive means 441 of the cutting element and the drive means 442 of the pusher element makes it possible to keep the cutting element pressed against the collar of the tube head of the sampling tube, especially when the slide spring 95 is compressed.
- a second exemplary embodiment of the coupling means is described below, implementing a "stripper" type system.
- FIG. 10 there is provided a coupling spring 101 positioned between the driving means 441 of the cutting element and the means drive 442 of the pusher element.
- such a coupling spring is prestressed, and provided to compress when applied to a force greater than the force required for the cutting element to cut the sample. In this way it is ensured that the movements of the cutting element 21 and the pusher element 23 are identical (drive means 441 of the cutting element and drive means 442 of the pusher element in a coupling position), as long as the cutting element has not perforated the animal tissue.
- the coupling spring 101 does not compress because the force exerted on the cutting element is sufficient to perforate the animal tissue, but insufficient to compress the coupling spring 101.
- the coupling spring 101 is compressed if the user continues to act on the lever 42, the force exerted on the cutting element then being greater than that necessary to perforate the animal tissue.
- the coupling spring 101 may be prestressed at a force of the order of 80 or 100 N.
- a third embodiment of the coupling means is described below, implementing a clipping system with at least one at least partially deformable element.
- the at least partially deformable element 111 comprises, for example, a base 112 intended to bear on the drive means 442 of the pusher element, taking for example the form of a needle.
- a plurality of fingers for example three fingers 113, extend from this base 112, substantially parallel to the axis of translation of the cutting and pushing elements.
- Each finger 113 comprises a boss or recess 114, adapted to cooperate with a complementary housing provided in the drive means 441 of the cutting element in the coupling position.
- the fingers 113 form spring blades, to maintain the drive means 441 of the cutting element in the coupling position.
- the drive means 441 of the cutting element and the drive means 442 of the pusher element are first coupled by means of the partially deformable element 11, as illustrated in FIG. 11A, which causes the simultaneous translation of the cutting element and the pusher element.
- the drive means 442 of the pusher element continue to push the element push member 23 and the partially deformable element 1 11, the user continuing his action on the lever 42.
- the fingers or spring blades 1 13 then deviate, declidding the bosses 1 14 complementary housing provided in the drive means 441 of the cutting element, which releases the drive means 441 from the cutting element.
- the drive means 441 of the cutting element and the drive means 442 of the pusher element are then in the uncoupling position.
- specific deformation means may be provided on the body of the tool to deform the fingers January 13, when the free end of these fingers abuts against these deformation means.
- the primary spring 115 provided between the drive means 441 of the cutting element and the drive means 442 of the pusher element, makes it possible to keep the cutting element pressed against the collar of the tube head of the sampling tube, especially when the fingers or spring blades 113 are deformed.
- FIGS. 12A to 12H show another embodiment of the invention, referred to as "inertia".
- the driving means of the cutting element take the form of a main "piston” 121, and the driving means of the pusher element in the form of a secondary “piston” 122.
- the main and secondary pistons can slide in the body of the clamp, for example in a first branch, according to a translational movement.
- the secondary piston can slide inside the main piston, also in a translational movement.
- the coupling means comprise in particular a "locking finger"
- Figure 12A illustrates more precisely the position of the main pistons 121 and secondary 122 at rest.
- the sampling and storage means Prior to the sampling operation, the sampling and storage means are mounted on the piston system.
- the user can advance the main piston, and consequently the secondary piston, the movement of which is linked to the main piston thanks to the coupling means in the coupling position, in the direction of arrow A.
- the sampling means comprising the cutting element 21 (possibly secured to a support) and the pusher element 23 can then be mounted on the main piston 121.
- the storage means 31 can be mounted on a second branch of the clip.
- the sampling and storage means can be held together by means of a connecting piece. This assembly can be fixed on one of the branches of the clamp, for example at the storage means, by a clamping assembly, a locking ring, etc. An action of the user on the clamp makes it possible to secure the sampling means on the other branch, by clipping or clamping effect.
- the connecting piece may for example remain on the sampling means, to protect the cutting element prior to sampling.
- the user When the user is ready to perform the sampling, he can remove or eject the connecting piece, and "arm" the clamp by bringing the piston system in a direction opposite the arrow A, as shown in Figure 12C.
- This operation can be performed with a mechanism that multiplies the force, so as to compress a spring 124 connected to the main piston 121 until it reaches a locking position.
- a mechanism takes for example the form of a nut with a suitable pitch, a lever system, a pump, a rack, an electric mechanism type jack, micromotor, etc.. Compression of the spring 124 accumulates energy.
- the coupling means being in the coupling position, the movements of the main and secondary pistons are always linked.
- the arming operation can be performed by connecting the tool to an external power source (compressed air cartridge or network for example).
- the user can then position the ear 43 of the animal between the two branches of the clamp, and actuate an unlocking button, which releases the compression exerted on the spring 124.
- the spring 124 relaxes , causing a displacement of the main piston 121 and the secondary piston 122, still in the coupling position, towards the ear of the animal.
- This action on an unlocking button causes a major acceleration of the main piston, transforming the potential energy of the spring 124 into kinetic energy allowing the cutting element to perforate the ear of the animal.
- the energy required to move the main piston can thus be provided by the compression / decompression of the spring 124, rather than by the user.
- the acceleration could be obtained by the pressure of the compressed air on the main piston, by means of a jack for example.
- the main piston 121 and the secondary piston 122 continue their connected movements until the cutting element 21 pierces the ear 43 of the animal, as illustrated in FIG. 12E.
- the movement of the main piston 121 stops abruptly when the cutting element 21 abuts with the sampling means, in particular the tube head 32, and / or when the locking pin 123 enters the notch 1232 provided for in FIG. this effect.
- the sudden stopping of the movement of the main piston 121 when the cutting element 21 comes into abutment with the sampling means and / or when the locking pin 123 enters the notch 1232 gives the secondary piston 122 energy, according to the rule of conservation of the momentum, causing a displacement in translation of the secondary piston 122 propelling the pusher element towards the ear of the animal.
- the pusher element thus extracts the sample cut from the cutting element, pushes it into the sampling tube, and closes the sampling tube 31.
- the secondary piston is therefore actuated solely by inertia.
- the secondary piston may in particular have a specific shape, such as illustrated in the figures, including a bulge for pushing the locking finger 123 out of the notch 1232 to release the movement of the main piston.
- a specific shape such as illustrated in the figures, including a bulge for pushing the locking finger 123 out of the notch 1232 to release the movement of the main piston.
- the cutting element can automatically resume its initial position, once the sample cut. This automatic removal quickly releases the ear of the animal, and avoids the risk of cutting with a soiled cutting element, protecting the cutting edge of the cutting element.
- this automatic removal can occur when the cutting element abuts on a stop surface, such as the tube head, or when a locking finger enters a notch provided for this purpose according to the embodiment example. previously described.
- the automatic removal of the cutting element can be achieved by using a specific shape for the secondary piston, including a bulge for pushing the finger of lock 123 out of the notch 1232. This allows to release the movement of the main piston and bring it back to the rest position (which protects the cutting edge), and bring the secondary piston to the rest position under the action of low stiffness return springs.
- the automatic removal of the cutting element is implemented thanks to the combined use of a return spring 13 1 linked to the drive means 442 of the element pusher, a transmission axis 133 connected to the drive means 442, and a light 132 in the body 41 of the clamp, in which the transmission axis 133 can move.
- actuation of the lever 42 first generates a simultaneous translation of the cutting element 21 and the pusher element 23, allowing the cutting element to cut a tissue sample, until it abuts on the flange of the tube head of the sampling tube 31.
- the continued action on the lever 42 then generates a translation of the pusher element 23 only, through the cutting element 21, generating a compression of the return spring 131 against the body of the clamp.
- the displacement of the drive means 442 of the pusher element also causes a displacement of the transmission axis 133 along the light 132.
- the light has a slope.
- the transmission axis 133 is held in a notch provided for this purpose in the drive means 442 in a first step, and then as the displacement along the light 132, the transmission axis 133 is released from the drive means 442.
- the transmission axis 133 is held in abutment against the slope of the light 132 by means of a spring 134 secured to the lever 42.
- the return spring 131 expands and recalls the drive means of the pusher element 442, then the drive means of the cutting element 441. (linked by a spring 135) in their initial position.
- the automatic removal of the cutting element is implemented thanks to the combined use of a chain 141 formed of two links, at least one flange 142 and a 143, acting on the drive means 442 of the pusher element.
- a stop 144 integrated in the body of the clamp requires the chain 141 to bend. It can no longer transmit force to the flange 142, which returns to its initial position under the effect of return springs. As a result, the cam 143 also returns to its original position.
- the driving means of the pusher element 442 and the drive means of the cutting element 441 also find their initial position, since no force is no longer applied by the cam 143 on the drive means.
- FIG. 15 illustrates a fourth example of the automatic removal of the cutting element, implementing a mechanism based on hooks.
- the drive means of the pusher element 442 are provided with hooks 151, used to arm the clamp and for the automatic removal of the cutting element once the sampling operation is completed.
- the arming of the clamp is carried out for example by pushing the drive means of the pusher element 442 until the hooks 151 come to hook a corresponding element C of the clamp, resulting in the compression of a spring of recall 152 between the base of the drive means 442 and the hooked element C.
- the displacement of the hooked element C and the drive means 442 of the pusher element by actuation of the clamp for example, firstly generates a simultaneous translation of the cutting element 21 and the pusher element.
- 23 the drive means 441 of the cutting element being connected to the drive means 442 of the pusher element via a spring 153.
- the spring 153 compresses and only the pusher element 23, pushed by the drive means 442, continues its course through the cutting element 21.
- the sampling tool according to the invention provides a translational movement to the cutting elements and push in the same direction, the two movements being linked in a first time and untied in a second time.
- the sampling tool is manually operated. Of course, it could be operated by means of electrical, pneumatic, or other energy.
- the lever is rotatable between the initial, intermediate and final positions. According to a variant not illustrated, the lever can be movable in translation between these different positions.
- the sampling tool can affix an identification mark (visual and / or electronic), simultaneously with the sampling of the sample.
- this identification mark carries an identifier linked to an identifier of the sampling and / or storage means.
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- Life Sciences & Earth Sciences (AREA)
- Health & Medical Sciences (AREA)
- Molecular Biology (AREA)
- Engineering & Computer Science (AREA)
- Biomedical Technology (AREA)
- General Health & Medical Sciences (AREA)
- Environmental Sciences (AREA)
- Medical Informatics (AREA)
- Animal Behavior & Ethology (AREA)
- Veterinary Medicine (AREA)
- Public Health (AREA)
- Surgery (AREA)
- Heart & Thoracic Surgery (AREA)
- Pathology (AREA)
- Genetics & Genomics (AREA)
- Biotechnology (AREA)
- Biodiversity & Conservation Biology (AREA)
- Birds (AREA)
- Animal Husbandry (AREA)
- Zoology (AREA)
- Sampling And Sample Adjustment (AREA)
Abstract
Description
Claims
Priority Applications (11)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| AU2011263687A AU2011263687B2 (en) | 2010-06-09 | 2011-06-09 | Tool for collecting a sample of animal tissue |
| PL11724236T PL2579782T3 (pl) | 2010-06-09 | 2011-06-09 | Narzędzie do pobierania próbki tkanki zwierzęcej |
| US13/702,899 US9955954B2 (en) | 2010-06-09 | 2011-06-09 | Tool for collecting a sample of animal tissue |
| CA2799027A CA2799027C (fr) | 2010-06-09 | 2011-06-09 | Outil de collecte d'un echantillon de tissu animal |
| CN201180028052.4A CN102933157B (zh) | 2010-06-09 | 2011-06-09 | 动物组织样本提取工具 |
| ES11724236T ES2701025T3 (es) | 2010-06-09 | 2011-06-09 | Herramienta de extracción de una muestra de tejido animal |
| BR112012031043-7A BR112012031043B1 (pt) | 2010-06-09 | 2011-06-09 | Ferramenta para coletar amostra de tecido animal |
| EP11724236.2A EP2579782B1 (fr) | 2010-06-09 | 2011-06-09 | Outil de prélèvement d'un échantillon de tissu animal |
| NZ604083A NZ604083A (en) | 2010-06-09 | 2011-06-09 | Tool for collecting a sample of animal tissue |
| DK11724236.2T DK2579782T3 (en) | 2010-06-09 | 2011-06-09 | TOOL FOR SAMPLING ANIMAL TISSUE |
| CY20181101295T CY1121526T1 (el) | 2010-06-09 | 2018-12-05 | Εργαλειο για τη ληψη δειγματος απο ζωικο ιστο |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| FR1054563 | 2010-06-09 | ||
| FR1054563A FR2961087B1 (fr) | 2010-06-09 | 2010-06-09 | Outil de prelevement d'un echantillon de tissu animal. |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2011154510A1 true WO2011154510A1 (fr) | 2011-12-15 |
Family
ID=43384632
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/EP2011/059636 Ceased WO2011154510A1 (fr) | 2010-06-09 | 2011-06-09 | Outil de prélèvement d'un échantillon de tissu animal |
Country Status (14)
| Country | Link |
|---|---|
| US (1) | US9955954B2 (fr) |
| EP (1) | EP2579782B1 (fr) |
| CN (1) | CN102933157B (fr) |
| AU (1) | AU2011263687B2 (fr) |
| BR (1) | BR112012031043B1 (fr) |
| CA (1) | CA2799027C (fr) |
| CY (1) | CY1121526T1 (fr) |
| DK (1) | DK2579782T3 (fr) |
| ES (1) | ES2701025T3 (fr) |
| FR (1) | FR2961087B1 (fr) |
| NZ (1) | NZ604083A (fr) |
| PL (1) | PL2579782T3 (fr) |
| PT (1) | PT2579782T (fr) |
| WO (1) | WO2011154510A1 (fr) |
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| WO2014124863A1 (fr) | 2013-02-12 | 2014-08-21 | Allflex Europe | Système d'identification animale comprenant une partie mâle, une partie femelle et un dispositif amovible de stockage d'un échantillon |
| WO2016016204A1 (fr) * | 2014-07-31 | 2016-02-04 | Allflex Europe | Système d'identification animale comprenant un dispositif d'identification animale et un organe de prélèvement |
| FR3024329A1 (fr) * | 2014-07-31 | 2016-02-05 | Allflex Europ | Partie male d'un dispositif d'identification animale, organe de prelevement et systeme d'identification animale correspondant. |
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| CN106028799A (zh) * | 2013-10-18 | 2016-10-12 | 思恩培绍特信托有限公司 | 活检采样器以及样本收集器 |
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- 2011-06-09 WO PCT/EP2011/059636 patent/WO2011154510A1/fr not_active Ceased
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- 2011-06-09 CN CN201180028052.4A patent/CN102933157B/zh active Active
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- 2011-06-09 PT PT11724236T patent/PT2579782T/pt unknown
- 2011-06-09 BR BR112012031043-7A patent/BR112012031043B1/pt active IP Right Grant
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| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US9955954B2 (en) | 2010-06-09 | 2018-05-01 | Allflex Europe | Tool for collecting a sample of animal tissue |
| US10039263B2 (en) | 2010-07-30 | 2018-08-07 | Allflex Europe | Unit for marking and/or sampling animal tissue and corresponding marking and/or sampling tool |
| US10757913B2 (en) | 2013-02-12 | 2020-09-01 | Allflex Europe | Animal identification system including a male portion, female portion and removable device for storing a sample |
| WO2014124863A1 (fr) | 2013-02-12 | 2014-08-21 | Allflex Europe | Système d'identification animale comprenant une partie mâle, une partie femelle et un dispositif amovible de stockage d'un échantillon |
| US20160116380A1 (en) * | 2013-06-05 | 2016-04-28 | Snpshot Trustee Limited | Tissue sampler |
| US10667797B2 (en) | 2013-06-05 | 2020-06-02 | Snpshot Trustee Limited | Tissue sampling |
| CN106028799B (zh) * | 2013-10-18 | 2020-03-17 | 思恩培绍特信托有限公司 | 活检采样器 |
| US10646207B2 (en) | 2013-10-18 | 2020-05-12 | Snpshot Trustee Limited | Biopsy sample storage container and related sampler |
| US10299768B2 (en) | 2013-10-18 | 2019-05-28 | Snpshot Trustee Limited | Biopsy sampler and sample collector |
| US10842471B2 (en) | 2013-10-18 | 2020-11-24 | Snpshot Trustee Limited | Biopsy collector with identifier |
| CN106028799A (zh) * | 2013-10-18 | 2016-10-12 | 思恩培绍特信托有限公司 | 活检采样器以及样本收集器 |
| FR3024329A1 (fr) * | 2014-07-31 | 2016-02-05 | Allflex Europ | Partie male d'un dispositif d'identification animale, organe de prelevement et systeme d'identification animale correspondant. |
| WO2016016204A1 (fr) * | 2014-07-31 | 2016-02-04 | Allflex Europe | Système d'identification animale comprenant un dispositif d'identification animale et un organe de prélèvement |
| US11206810B2 (en) | 2014-07-31 | 2021-12-28 | Allflex Europe | Animal identification system comprising an animal identification device and a sampling member |
| CN109414256A (zh) * | 2016-03-08 | 2019-03-01 | 思恩培绍特信托有限公司 | 生物取样器、收集器和存储容器 |
| USD892349S1 (en) | 2017-09-08 | 2020-08-04 | Snpshot Trustee Limited | Sampler cartridge |
| USD869677S1 (en) | 2017-09-08 | 2019-12-10 | Snpshot Trustee Limited | Sampler device |
| USD869678S1 (en) | 2017-09-08 | 2019-12-10 | Snpshot Trustee Limited | Sampler device |
| CN113504068A (zh) * | 2021-06-03 | 2021-10-15 | 吉林省农业科学院 | 一种肉质生产检测用锥插取样针管装置及其实施方法 |
| CN113504068B (zh) * | 2021-06-03 | 2023-01-13 | 吉林省农业科学院 | 一种肉质生产检测用锥插取样针管装置及其实施方法 |
Also Published As
| Publication number | Publication date |
|---|---|
| AU2011263687A1 (en) | 2013-01-10 |
| PL2579782T3 (pl) | 2019-04-30 |
| CN102933157B (zh) | 2015-04-15 |
| EP2579782B1 (fr) | 2018-09-05 |
| CA2799027A1 (fr) | 2011-12-15 |
| CN102933157A (zh) | 2013-02-13 |
| CA2799027C (fr) | 2018-11-27 |
| PT2579782T (pt) | 2018-12-11 |
| DK2579782T3 (en) | 2019-01-07 |
| AU2011263687B2 (en) | 2015-02-26 |
| CY1121526T1 (el) | 2020-05-29 |
| EP2579782A1 (fr) | 2013-04-17 |
| ES2701025T3 (es) | 2019-02-20 |
| FR2961087A1 (fr) | 2011-12-16 |
| FR2961087B1 (fr) | 2013-06-28 |
| US20130204159A1 (en) | 2013-08-08 |
| BR112012031043B1 (pt) | 2020-05-26 |
| BR112012031043A2 (pt) | 2016-10-25 |
| US9955954B2 (en) | 2018-05-01 |
| NZ604083A (en) | 2013-09-27 |
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