WO2017124126A1 - Ensemble sonde pour mesurer au moins une grandeur d'état de l'organisme d'un animal de rente et procédé pour sa mise en service - Google Patents

Ensemble sonde pour mesurer au moins une grandeur d'état de l'organisme d'un animal de rente et procédé pour sa mise en service Download PDF

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Publication number
WO2017124126A1
WO2017124126A1 PCT/AT2017/060006 AT2017060006W WO2017124126A1 WO 2017124126 A1 WO2017124126 A1 WO 2017124126A1 AT 2017060006 W AT2017060006 W AT 2017060006W WO 2017124126 A1 WO2017124126 A1 WO 2017124126A1
Authority
WO
WIPO (PCT)
Prior art keywords
probe unit
signal
unit
probe
signals
Prior art date
Application number
PCT/AT2017/060006
Other languages
German (de)
English (en)
Inventor
Matthias WUTTE
Manuel FRECH
Stefan Rosenkranz
Original Assignee
Smaxtec Animal Care Gmbh
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Smaxtec Animal Care Gmbh filed Critical Smaxtec Animal Care Gmbh
Publication of WO2017124126A1 publication Critical patent/WO2017124126A1/fr

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Classifications

    • AHUMAN NECESSITIES
    • A01AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
    • A01KANIMAL HUSBANDRY; CARE OF BIRDS, FISHES, INSECTS; FISHING; REARING OR BREEDING ANIMALS, NOT OTHERWISE PROVIDED FOR; NEW BREEDS OF ANIMALS
    • A01K11/00Marking of animals
    • A01K11/006Automatic identification systems for animals, e.g. electronic devices, transponders for animals
    • A01K11/007Boluses
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/07Endoradiosondes
    • A61B5/073Intestinal transmitters
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61DVETERINARY INSTRUMENTS, IMPLEMENTS, TOOLS, OR METHODS
    • A61D17/00Devices for indicating trouble during labour of animals ; Methods or instruments for detecting pregnancy-related states of animals
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B2503/00Evaluating a particular growth phase or type of persons or animals
    • A61B2503/40Animals
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B2560/00Constructional details of operational features of apparatus; Accessories for medical measuring apparatus
    • A61B2560/02Operational features
    • A61B2560/0266Operational features for monitoring or limiting apparatus function
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/0002Remote monitoring of patients using telemetry, e.g. transmission of vital signals via a communication network
    • A61B5/0015Remote monitoring of patients using telemetry, e.g. transmission of vital signals via a communication network characterised by features of the telemetry system
    • A61B5/0017Remote monitoring of patients using telemetry, e.g. transmission of vital signals via a communication network characterised by features of the telemetry system transmitting optical signals

Definitions

  • Probe unit for measuring at least one state variable of the organism of a farm animal and method for their commissioning
  • the invention relates to a method for starting a probe unit for measuring at least one state variable of the organism of a farm animal and such, can be arranged in the gastrointestinal tract of the livestock probe unit.
  • the parameters which play a role in the well-being and feed requirements of the individual animals include not only external state information such as, for example, temperature, oxygen content or air humidity in the stall but also physiological parameters such as
  • DE 199 01 124 A1 describes a bolus-shaped probe which can measure sensors for measuring various physiological state variables such as pressure, temperature, conductivity, pH value or ammonia content and is introduced into the gastrointestinal tract of a cattle.
  • the Applicant's AT 509 255 B1 describes a similar probe unit in which the measurement data can be transmitted wirelessly, wherein the measurement sensor system for protection against mechanical damage within an acid-resistant housing is at least partially surrounded by a cylindrical protective device.
  • the probe unit can transmit data to base stations distributed in a stall and can be operated or read via the latter via the Internet.
  • the activation is relatively complex: After production and delivery routes, the probe unit reaches the user in an energy-saving state - measuring sensor and transmission unit are disabled. This means, for example, that the correct channel is not yet used for the data transmission or the time settings can deviate from a system time. Furthermore, the measuring sensor is partially not yet calibrated.
  • the probe unit must be activated by the user and by contacting a remote station - usually a PC with the required software and a radio unit, e.g. a USB antenna - to be configured.
  • a remote station usually a PC with the required software and a radio unit, e.g. a USB antenna - to be configured.
  • the user is informed that the probe unit is in operation and a sequence is started which, over several communication steps, initiates the configuration of the sensor unit
  • Probe unit changes, it synchronized with a retrieved from the Internet correct time, changes the channel of the probe unit and the user at the end indicates that this probe unit can now be used.
  • the measuring sensors are calibrated in the course of this initialization, for example by placing them in a calibration solution.
  • the probe units are provided with robust housings without openings and with as few ornaments as possible, a correctly initialized probe unit can not be distinguished from a new or a defective unit. Thus, it can not be said with certainty whether the probe unit can be input to an animal.
  • Probe unit to provide, which can be activated quickly and easily and reduces or makes impossible erroneous operations.
  • Signals are at least one of the following signals: an acoustic signal, an optical signal, a haptic signal, a motion signal, combinations of two or more of the foregoing.
  • Acoustic signals can be single tones or tone sequences.
  • Optical signals can be light signals or light signal patterns of individual
  • a haptic signal is understood to mean tactile signals, such as a temperature change of parts of the complete probe unit or units, a moving, tactile element or a vibration.
  • a motion signal may mean more vibration or twitching of the probe unit. Also combinations, for example light patterns and tone sequences or others are possible. This makes it easy for the user to understand and perceptible with his sense organs signals can be realized with only a small amount of energy. The invention thus allows a commissioning of the probe unit without contacting the environment - the user can clearly identify from the signals whether the commissioning was successful and the probe unit is ready for use or defective.
  • a step d0) by reproducing a sixth signal, the user can insert the probe unit into the calibration environment
  • the calibration environment may be, for example, a room with a specific gas composition or just one Calibration solution act, in the case of a pH sensor to a pH buffer solution with predetermined composition.
  • the probe unit can in each case be introduced into the calibration environment completely or only in the area of the measurement sensor system to be calibrated. Thus, no additional external device or an external interface is necessary for the calibration.
  • the fourth signal is identical to the first signal and / or that the fifth signal is identical to the second signal.
  • the intended for the proper functioning or proper completion signals and the malfunction indicating signals are each made equal.
  • the signals are at least partially executed as light signals.
  • the first, second, third, fourth, fifth and sixth signals are thus realized with light.
  • the light signals can be simple on / off signals, flashing or light patterns and always run with the same or in different colors. This realizes a particularly easy-to-understand signaling.
  • the activation of the probe unit in step a) takes place by bringing at least one region of the probe unit into contact with a magnet element arranged outside it. This malfunction can be reduced or completely excluded, also can due to the non-contact function on from the outside
  • step aO a step aO is carried out in which at least one of the following
  • the probe unit is contacted wirelessly with a transmitting station arranged outside the probe unit, preferably with transmitting and transmitting units carried out by the probe unit
  • Reception steps The transmission of information that is not yet available or the necessary initialization steps, such as logging on to a network, can thus be done quickly and easily.
  • Calibration of the probe unit advantageously the probe unit in a final step z) within a farm animal, preferably placed in the gastrointestinal tract.
  • the object of the invention is also with an aforementioned
  • Probe unit solved, the following, arranged in a housing
  • Components comprising:
  • At least one sensor element for measuring at least one state variable of the organism of a farm animal
  • At least one transmitting device preferably with at least one antenna, for the wireless transmission of information
  • At least one control unit for controlling the probe unit, wherein the probe unit according to the invention at least one signal output unit for reproducing at least one of the following signals: acoustic signal, optical signal, haptic signal, motion signal, combinations of two or more of the aforementioned.
  • the signal output unit is arranged to reproduce at least one of the following signals: acoustic signal, optical signal, haptic signal, motion signal, combinations of two or more of the foregoing.
  • Various sensor elements are possible, for example for measuring temperature, pH, movement, density, pressure, conductivity, sound, optical properties and others.
  • at least a device for powering the probe unit is favorably
  • a battery for example by means of "energy harvesting” - Methods rechargeable battery or a capacitor (eg
  • Double-layer or supercapacitor Double-layer or supercapacitor
  • the invention it is possible to arrange all the devices required for the commissioning of the probe unit within the probe unit, whereby a simple, misoperation-resistant and possible at any place initialization is made possible.
  • the signal output unit is arranged to reproduce at least one of the following signals: acoustic signal, optical signal, haptic signal, motion signal, combinations of two or more of the aforementioned.
  • the signal output unit has at least one light conductor element that has at least one light source inside the light source
  • Probe unit connects to a housing of the probe unit.
  • the probe unit with a cylindrical
  • Implemented housing and the light guide element is connected to a cover and / or bottom portion of the cylindrical housing.
  • At least one memory element connected to the control unit is provided in the probe unit, on which at least one of the following information can be stored:
  • Radio frequency transmission channel, system time.
  • Fig. 1 shows a cow as an exemplary farm animal and the arrangement of a
  • FIG. 2 shows a perspective view of a probe unit according to the invention in the closed state
  • FIG. Fig. 3 is a side view of the probe unit of FIG. 2 with opened
  • Fig. 4 is a sectional view of the probe unit
  • FIG. 5 shows a perspective view of a probe unit according to the invention with the bottom section open;
  • FIG. 1 shows the sectional view of a cow 2, wherein the cow 2 is mentioned here only as a possible example of a farm animal, in the gastrointestinal tract 3, a probe unit 1 according to the embodiment of the invention can be introduced.
  • Other suitable farm animals would be, for example, sheep, goats or else
  • the feed received and chewed by the cow 2 reaches the gastrointestinal tract 3 of the cow 2, for example in the rumen or the reticulum.
  • the ingested food is transported on the one hand into the rumen, on the other hand transported back to the mouth of the cow 2 for ruminating.
  • any effects or conclusions can be determined on the state of health of the animal. If the pH is too low, for example, a dangerous rumen acidosis may occur.
  • Probe unit 1 is therefore located in the gastrointestinal tract 3 of the animal to detect status data.
  • Fig. 2 shows the probe unit 1 in a perspective view with the
  • FIG. 3 shows a first sensor element 51 that protrudes from the housing 4 and is surrounded by liquid in the stomach. Intestinal tract 3 is washed around - 41 corresponding openings are provided in the lid portion.
  • the first sensor element 51 is, for example, a pH sensor.
  • Fig. 4 shows a schematic view of the probe unit:
  • first 51 and a second sensor element 52 are arranged.
  • the first sensor element 51 may be a pH sensor
  • the second sensor element 52 may be a temperature or motion sensor.
  • sensors for the measurement of glucose, volatile fatty acids, acetate, propionate, butyrate and lactate may be provided.
  • other sensor combinations than described are possible, for example, a temperature and a motion sensor.
  • further sensor elements may be provided.
  • the sensor elements 51, 52 are connected to a control unit 6, which serves to control the probe unit 1.
  • the control unit 6 is designed, for example, as a correspondingly programmed microprocessor.
  • the control unit 6 controls and processes the data from the sensor elements 51, 52.
  • a memory element 7 may be provided,
  • the memory element 7 stores both measured values of the sensor elements 51, 52 and
  • Operating parameters of the probe unit 1 such as radio frequency, transmission channel,
  • the transmitting device 8 which has an antenna 9
  • data is transmitted, for example to a base station (not shown), which is arranged in the vicinity of the farm animal.
  • a base station not shown
  • Transmitter 8 designed as a transceiver that can both send and receive data.
  • the power supply of the probe unit 1 is e.g. over a
  • Power supply device 10 which may be embodied for example as a battery, accumulator or capacitor. Recharging through “energy harvesting” methods is also possible.
  • the protective device 1 1 can be made of any, resistant material, such as plastics or metals.
  • the probe unit 1 now has a signal output unit 12, which is arranged within the housing 4.
  • the signal output unit 12 may be adapted to provide an acoustic, visual, haptic,
  • the signal output unit 12 may be embodied as a light source, sound generator, as a vibration element or screen.
  • the signal output unit 12 can thus have an acoustic unit 124 for reproducing the acoustic signal, an optical unit 125 for reproducing the optical signal, a haptic unit 126 for reproducing or generating the
  • Haptiksignals a movement unit 127 for reproducing or generating the motion signal, or combined units that represent two or more of said signal variants have.
  • various signals information is transmitted, for example, the function, the initialization status or the calibration status.
  • the signal output unit 12 has an optical unit 125 in the form of a light source 121 arranged inside the housing, for example a single- or multi-colored LED, and a light conductor element 122 which leads from the light source 121 to the bottom section 42 of the housing 4.
  • the light guide element 122 thus connects the light source 121 to the housing 4 (FIG. 5).
  • a transparent window region or a material dilution 123 may be provided, so that the light is easily recognizable from the outside.
  • the above-mentioned signals can thus be individual light pulses - on / off or signal pattern. Also different colors can be played.
  • Fig. 7 shows a detail of a probe unit 1 according to the invention with a signal output unit 12, which in dashed lines schematically the
  • an acoustic unit 124 represents different variants of the units, namely an acoustic unit 124, an optical unit 125, a Haptikica 126 and a movement unit 127 - it can be provided one, two or more of said units.
  • a method according to the exemplary embodiment of the invention using a described probe unit 1 now provides the following steps according to FIG. 6:
  • a first step 100 the probe unit 1 is activated from an off state to an on state. This can be done, for example, by holding a magnet to a designated activation area 13 (see FIG. 3).
  • a magnet to a designated activation area 13 (see FIG. 3).
  • the mechanism described has the advantage that accidental activation of the probe unit 1 can be practically excluded.
  • Probe unit 1 are uploaded.
  • the information may be, for example, the radio frequency to be used, the transmission channel or the system time. Other information is possible.
  • the system time can also be set only when the probe unit 1 becomes active in a measuring system for the first time - for example, a number of probe units 1 will be in contact with one or more base or transmitting stations during operation, which will read out data, Send and make another contact eg to the Internet.
  • the probe unit 1 then makes contact with this measuring system after successful commissioning and adapts itself to the system time applicable there.
  • a functional test is automatically carried out within the probe unit 1. This functional test consists of a sequence of self-test routines to ensure the proper functioning of the probe unit 1.
  • a first signal 301 is then reproduced in a third step 300 if the bump test has been successfully completed and the probe unit 1 is functioning properly, or if a second signal 302 different from the first signal 301 is displayed if a malfunction has been detected.
  • the signals 301, 302 can consist of different light patterns, tone sequences or vibration sequences.
  • the invention it is therefore not necessary for a user to establish a connection with a PC with suitable software for the initialization of the probe unit 1, but it is sufficient to activate the probe unit 1 - by reproducing the signals, the user can recognize whether the Probe unit 1 is ready for use.
  • the probe unit 1 comprises sensor elements that require a calibration, this can also be carried out without external devices or interfaces:
  • a fourth step 400 the probe unit 1 is positioned in a calibration environment.
  • This fourth step 400 may either follow immediately on the first signal 301 or be triggered by a sixth signal 399.
  • the calibration environment may be, for example, a calibration solution - in the case of a pH sensor unit, a corresponding buffer solution.
  • the probe unit 1 can either be completely submerged or only in the region of the corresponding sensor element which is shown in FIG.
  • Embodiment in the region of the lid portion 41 of the housing 4 is arranged.
  • a third one can take place Signal 401 take place. If the third signal 401 fails, the user knows that calibration is not possible - for example because the positioning has not been done correctly or the calibration environment is not suitable.
  • a fourth signal 601 is passed through the
  • Probe unit 1 and their signal output unit 12 reproduced when the calibration was completed successfully and the probe unit. 1
  • the respective positive signals - the first signal 301 and the fourth signal 601 - and the respective negative signals - the second signal 302 and the fifth signal 602 - may be identical to one another.
  • the signals 301, 302, 399, 401, 601, 602 are output through a signal output unit 12 disposed within the probe unit 1. Accordingly, the signals may be acoustic, optical, haptic, motion or combinations of two or more of the foregoing. In the described embodiment, the signals 301, 302, 399, 401, 601, 602 are designed as light signals.
  • a contact-receiving step 700 may take place with the probe unit 1 contacting wirelessly with a transmitting and receiving station (not shown) arranged outside the probe unit 1, preferably with transmitter and receiver stations carried out by the probe unit. and receiving steps.
  • This contact-receiving step 700 may be advantageous if additional data must be imported into the probe unit 1 during the initialization. In this case, for example, the system time can be recorded.
  • information about the status eg the commissioning or Calibration state, via radio link such as NFC, RFID, etc. are transmitted to a mobile device such as a smartphone, tablet or the like. This transmission can either be initiated by the probe unit 1 or requested by the mobile device.
  • the method according to the invention can be concluded with a last step 999, in which the completely initialized and calibrated probe unit 1 is placed within a livestock, preferably in its gastrointestinal tract 3.
  • Probe unit 1 is a simplified commissioning possible in which no additional equipment is necessary and the possibilities for incorrect operation are drastically limited.

Abstract

L'invention concerne un procédé pour mettre en service un ensemble sonde (1) destiné à mesurer au moins une grandeur d'état de l'organisme d'un animal de rente (2). Le procédé selon l'invention présente les étapes suivantes : a) l'activation de l'ensemble sonde (1) d'un état éteint à un état allumé ; b) la réalisation d'un test de fonctionnement automatique dans l'ensemble sonde (1) ; c) la production d'un premier signal (301) par l'ensemble sonde (1) lorsque le test de fonctionnement a réussi, et la production d'un second signal (302) différent du premier signal (301) par l'ensemble sonde (1) lorsque le test de fonctionnement a échoué. L'invention concerne en outre un ensemble sonde (1) destiné à mesurer au moins une grandeur d'état de l'organisme d'un animal de rente (2), l'ensemble sonde (1) pouvant être placé dans le tube digestif (3) de l'animal de rente et présentant, selon l'invention, au moins une unité d'émission de signal (12) destinée à produire un signal (301, 302, 399, 401, 601, 602).
PCT/AT2017/060006 2016-01-22 2017-01-18 Ensemble sonde pour mesurer au moins une grandeur d'état de l'organisme d'un animal de rente et procédé pour sa mise en service WO2017124126A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
ATA50033/2016A AT517847B1 (de) 2016-01-22 2016-01-22 Sondeneinheit zur Messung zumindest einer Zustandsgröße des Organismus eines Nutztieres und Verfahren zu deren Inbetriebnahme
ATA50033/2016 2016-01-22

Publications (1)

Publication Number Publication Date
WO2017124126A1 true WO2017124126A1 (fr) 2017-07-27

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PCT/AT2017/060006 WO2017124126A1 (fr) 2016-01-22 2017-01-18 Ensemble sonde pour mesurer au moins une grandeur d'état de l'organisme d'un animal de rente et procédé pour sa mise en service

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AT (1) AT517847B1 (fr)
WO (1) WO2017124126A1 (fr)

Cited By (1)

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US11307728B1 (en) 2021-04-26 2022-04-19 Inguran, Llc Computerized systems and methods for livestock management

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WO2023091042A1 (fr) * 2021-11-16 2023-05-25 Общество С Ограниченной Ответственностью Инжиниринговый Центр Миэт Procédé et dispositif de mesure d'indices physiologiques de bovins

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WO2011073987A1 (fr) * 2009-12-17 2011-06-23 Given Imaging Ltd. Dispositif, système et procédé pour l'activation, le calibrage et l'essai d'un dispositif d'imagerie in vivo
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