ADD-ON DEVICE FOR ATTACHMENT ON A MICROPIPETTE
20210339240 · 2021-11-04
Assignee
Inventors
Cpc classification
B01L3/0237
PERFORMING OPERATIONS; TRANSPORTING
B01L2300/0627
PERFORMING OPERATIONS; TRANSPORTING
B01L2300/027
PERFORMING OPERATIONS; TRANSPORTING
B01L2200/14
PERFORMING OPERATIONS; TRANSPORTING
B01L2300/023
PERFORMING OPERATIONS; TRANSPORTING
A61M2205/3317
HUMAN NECESSITIES
B01L2200/143
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
An add-on device for attachment to a micropipette for determining the rotational movement and longitudinal displacement of a micropipette plunger for digitization, communication and quantification of pipetting actions.
Claims
1. An add-on device for attachment to a micropipette, comprising: a sensor comprising a magnetometer for sensing at least one component of a magnetic field of a magnetic source for generating corresponding magnetic field data for determining a rotational movement and longitudinal displacement of a micropipette plunger; a processing unit for processing the magnetic field data; a communication unit, adjusted to provide communication means for communicating the magnetic field data; means for attachment of the add-on device to a micropipette; an add-on magnetic source comprising a permanent magnetic, for providing the magnetic field; wherein the sensed magnetic field by the sensor depends on a radial positioning of the magnetic source; and wherein the add-on magnetic source is shaped such that the magnetic field as sensed by the sensor is not only dependent on the movement of the micropipette plunger, but is also dependent on the radial positioning of the magnetic source.
2.-5. (canceled)
6. The add-on device according to claim 1, wherein earth's magnetic field is used as the magnetic source.
7. The add-on device according to claim 1, wherein the sensor further comprises an accelerometer for sensing at least one component of an acceleration of the micropipette and for generating corresponding accelerometer data.
8. The add-on device according to claim 1, wherein the sensor further comprises a gyroscope, for sensing gyroscope data comprising at least one component of an angular velocity of the micropipette and for generating corresponding gyroscope data.
9. The add-on device according to claim 1, further comprising a shielding material for shielding at least a part of earth's magnetic field.
10. The add-on device according to claim 1, further comprising a display unit for displaying the magnetic field data.
11. The add-on device according to claim 1, wherein the communication unit comprises a chip that facilitates at least one of one or more wireless communication standards, and any wired communication means.
12. A method for determining a volume setting of a micropipette, by using the add-on device according to claim 1, wherein the add-on device is attached to the micropipette.
13. A method for monitoring a movement of a plunger of a micropipette, the method comprising the steps of: determining a rotational movement and longitudinal displacement movement of the micropipette plunger by sensing at least one component of a magnetic field provided by a magnetic source comprising a magnet mounted on the micropipette or by sensing local fluctuations in earth's magnetic field; generating corresponding magnetic field data; processing the magnetic field data to generate processed magnetic field data such that at least one of the rotational movement and the longitudinal displacement movement of the micropipette plunger can be extrapolated; and communicating at least one of the magnetic field data and the processed magnetic field data.
14. The add-on device according to claim 7, further comprising a display unit for displaying at least one of the magnetic field data and the accelerometer data.
15. The add-on device according to claim 8, further comprising a display unit for displaying at least one of the magnetic field data and the gyroscope data.
16. The add-on device according to claim 1, wherein the communication unit is configured to communicate using at least one of a wireless communication standard and a wired communication standard.
17. The add-on device according to claim 16, wherein the wireless communication standard comprises at least one of Bluetooth, Bluetooth Low Energy, Wi-Fi, and wireless serial communication.
18. The add-on device according to claim 16, wherein the wired communication standard comprises at least one of Ethernet, Universal Serial Bus (USB), I2C, and FireWire.
Description
BRIEF DESCRIPTION OF THE ACCOMPANYING DRAWINGS
[0015] The present invention is described with respect to particular exemplary embodiments thereof and reference is accordingly made to the drawings in which:
[0016]
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029]
[0030] The drawings show only those details essential to an understanding of the present invention.
DETAILED DESCRIPTION
[0031] It will be appreciated that for simplicity and clarity of illustration, where considered appropriate, reference numerals may be repeated among the figures to indicate corresponding or analogous elements or steps. In addition, numerous specific details are set forth in order to provide a thorough understanding of the embodiments described herein. However, it will be understood by those of ordinary skill in the art that the embodiments described herein may be practiced without these specific details. Furthermore, this description is not to be considered as limiting the scope of the embodiments described herein in any way, but rather as merely describing the implementation of the various embodiments described herein.
[0032] Reference is made to
[0033] In a preferred embodiment of add-on device 1, sensor 2 contains several sensing components of which at least one has the function of sensing the plunger movement relative to the micropipette body. In the preferred embodiment, other sensing components have the function of sensing movement and acceleration in three dimensional space of the micropipette itself. The skilled person understands that an advantage of this embodiment is that the additional data can be used for extrapolating micropipette tip management and user identification.
[0034] Furthermore, the skilled person understands that the additional data can be used to provide feedback to the user regarding use of the micropipette and whether the use is relevantly similar to the use as, for example, intended by the manufacturer of the micropipette.
[0035] Add-on device 1 comprises means to attach add-on device 1 to a micropipette. These means may include mechanical or chemical attachment 6, which may be permanent or temporary.
[0036]
[0037] The plunger 8 is made from one or more materials that influence the magnetic field. For instance, plunger 8 may be made from iron from which is known to be a paramagnetic material which locally influences the strength of a present magnetic field, such as the earth's magnetic field.
[0038]
[0039] The processed data may be sent to an external processing unit such as a computer, a smartphone, or any other (smart) device, by means of the communication unit 4. Alternatively, the processing unit 3 directly transfers the data to said external processing unit.
[0040] An example of a suitable processing unit 3 is for instance a ATmega328 chip microcontroller. Examples of a suitable communication unit 4 include a chip that facilitates Bluetooth (including Bluetooth Low Energy), Wi-Fi, (wireless) serial communication, or any wired communication means such as ethernet, USB, I2C and FireWire.
[0041] Reference is made to
[0042] Processing unit 3 processes the acquired data such that the data can be used to determine the suction volume. For instance, a predefined change in magnetic field may be correlated to a specific suction volume. This is illustrated in
[0043] Magnetic source 9 may be, for instance, a permanent magnet or an electromagnet. In case of a permanent magnet, the magnet may be, for instance, shaped cylindrical, or may be shaped to correspond to a similar shape as the plunger head 12.
[0044] The magnetic source 9 may also be shaped such that the field as sensed by the magnetometer component of sensor 2 is not only dependent on the movement of the plunger 8, but also dependent on the radial positioning of the magnetic source 9. For instance,
[0045] Add-on device 1 may further comprise a magnetic shielding material 11 that reduces and/or preferably eliminates the contribution of the earth's magnetic field to the measurement by the add-on device 1 of the magnetic field as provided by the magnetic source 9. The magnetic shielding material 11 may be made, for instance, from a nickel-iron soft ferromagnetic alloy (trade name mu-metal®) or any other material with good magnetic field shielding properties.
[0046] An advantage of using a magnetometer as a component of a sensor 2, as opposed to other proposed sensing components that have sensing the movement of plunger 8 as a goal, is the absence of moving parts within the add-on device. Thus, add-on device 1 using a magnetometer is less subject to wear and tear.
[0047]
[0048] Alternatively, instead of using an interferometer as optical component of sensor 2, one could use at least one encoder to measure said distance to part 15 of the plunger head 12, or measure the amount of rotation the plunger head 12 has made. The skilled person understands the possible arrangements of sensor 2 and part 15. The data from the encoder, or the measured amount of rotations can be correlated to the suction volume, in a similar manner as has been described for the exemplary embodiment wherein the sensor 2 comprises a magnetometer component.
[0049] In yet another different embodiment of the present technology, sensor 2 comprises a mechanical sensor component. For example,
[0050] In yet another different embodiment of the present technology, sensor 2 comprises an acoustic sensor component. For instance,
[0051] In yet another embodiment of the present technology, the suction volume of a micropipette 7 is determined by the number of turns of the plunger 8.
[0052] Alternatively, plunger head 12 may be provided with an add-on magnetic source. The magnetic source 9 generates a magnetic field with primary components in the plane orthogonal to the longitudinal direction of plunger 8. In this embodiment, when plunger head 12 is turned, the magnetic field strength will alternate and change direction according to rotational positioning.
[0053] It is noted that the embodiments wherein sensor 2 comprises a magnetometer component is, compared to the other embodiments, less subject to interference with the relevant signal. Furthermore, the skilled person understands that the embodiments wherein sensor 2 comprises a magnetometer component are, compared to the other embodiments, easiest to install and service. Furthermore, the skilled person understands that a magnetometer component may require the least power to enable operation.
[0054] It is noted that an additional use of the presented embodiments, is that data and interpreted data from the add-on device can be presented to the user of the add-on device in a very short time-frame. This enables users of the add-on device to receive immediate feedback about the actions they have executed with the micropipette that the add-on device is added to. Research has indicated that a continuous stream of feedback regarding micropipette usage leads to a higher accuracy and precision in micropipette action quality.
[0055] The present invention has been described with regard to specific embodiments; however, it will be obvious to persons skilled in the art that a number of variants and modifications can be made without departing from the scope of the invention as described herein.
[0056] The clauses that follow define further embodiments forming part of the present disclosure.
[0057] Clauses
[0058] 1. An add-on device for attachment on a micropipette, preferably a mechanical micropipette, comprising: [0059] a sensor, comprising: [0060] means for sensing physical quantities and generating corresponding data; [0061] a processing unit for processing the data; [0062] a communication unit, adjusted to provide communication means for communicating the data.
[0063] 2. The add-on device according to clause 1, wherein the means for sensing physical quantities and generating corresponding data comprises a magnetometer for sensing at least one component of a magnetic field from a magnetic field source and for generating corresponding magnetic field data.
[0064] 3. The add-on device according to clause 2, further comprising an add-on magnetic source, for providing the magnetic field.
[0065] 4. The add-on device according to clause 3, wherein the add-on magnetic source comprises a permanent magnet.
[0066] 5. The add-on device according to clause 4, wherein the sensed magnetic field by the sensor depends on a radial positioning of the magnetic source.
[0067] 6. The add-on device according to clause 2, wherein the earth's magnetic field is used as the magnetic source.
[0068] 7. The add-on device according to any of the preceding clauses, wherein the means for sensing physical quantities and generating corresponding data further comprises an accelerometer for sensing at least one component of an acceleration of the micropipette and for generating corresponding accelerometer data.
[0069] 8. The add-on device according to any of the preceding clauses, wherein the means for sensing physical quantities and generating corresponding data further comprises a gyroscope, for sensing gyroscope data comprising at least one component of an angular velocity of the micropipette and for generating corresponding gyroscope data.
[0070] 9. The add-on device according to any of the preceding clauses, further comprising a shielding material for shielding at least a part of the earth's magnetic field.
[0071] 10. The add-on device according to any of the preceding clauses, further comprising a display unit for displaying the data.
[0072] 11. The add-on device according to any of the preceding clauses, wherein the communication means comprises a chip that facilitates at least one of the following communication standards: Bluetooth (including Bluetooth Low Energy), Wi-Fi, (wireless) serial communication, or any wired communication means such as ethernet, USB, I2C and FireWire.
[0073] 12. Method for determining an amount of suction volume from a micropipette, by using the add-on device according to any of the preceding clauses, wherein the add-on device is attached to the micropipette.
[0074] 13. Method for determining an amount of suction volume from a micropipette, preferably a mechanical micropipette, comprising the steps of: [0075] sensing at least one component of a magnetic field provided by either a magnetic source comprising a magnet mounted on the micropipette or the earth's magnetic field; [0076] generating corresponding magnetic field data; [0077] processing the magnetic field data such that a movement of a part of the micropipette can be extrapolated; [0078] communicating the magnetic field data and/or the processed magnetic field data.
[0079] 14. Kit-of-parts, comprising: [0080] an add-on device according to any of the preceding clauses, wherein the add-on device further comprises a rechargeable battery; [0081] a charging station for charging the rechargeable battery.