AUTOMATED SYRINGE FILLER AND LOADING APPARATUS
An automated cap extractor/installer is disclosed comprising a cap access space, a rack and modified pinion, a solenoid actuator and a position sensor. The modified pinion has a flat surface with two edges and the flat surface can be positioned proximate to the cap access space. The modified pinion is in communication with a rack component communicating with a solenoid actuator causing the pinion to rotate. When a capped syringe is positioned in the cap access space, a signal can be sent by the position sensor to the solenoid actuator. The solenoid actuator moves, causing the pinion to rotate and grip the syringe cap. The solenoid actuator and components can be moved vertically and thereby pulling the cap off the syringe. A rotating cam device can be substituted for the modified pinion. The process can be reversed to install the cap on a syringe.
This application is a divisional application Ser. No. 13/068,745 entitled Automated Syringe Filler and Loading Apparatus filed Mar. 23, 2011 and which is incorporated by reference herein in its entirety.
BACKGROUND OF INVENTION1. Field of Use
The disclosure teaches a method and apparatus for automated filling of syringes. This includes automated filling of syringes with radiopharmaceuticals or other drugs.
2. Prior Art
Semi automated systems for filling syringes have been disclosed in the prior art including machines manufactured by Intellifill iv of FHT Inc., Daytona Beach, Fla. and Radio Syringe Filling by M&O Perry Industries of Corona, Calif.
BRIEF SUMMARY OF DISCLOSUREThe apparatus subject of the disclosure can be used to prepare (fill) syringes containing liquids including pharmaceuticals or radiopharmaceutical without operator participation. The apparatus can also be used to fill vials of solutions or mix solutions within a vial. When the solution is radioactive, the syringe filling operation can be performed in a suitably shielded location for operator safety.
The capping, filling and recapping of the syringe needles is performed automatically away from the operator, therefore eliminating any danger of accidental needle sticks during the filling operation.
The disclosure outlines a series of automated steps performed by the apparatus or components of the apparatus. It will be appreciated that the sequence in which these steps are performed may be varied without departing from the scope of the disclosed invention.
The syringes are filled while in an inverted position with the pharmaceutical, radiopharmaceutical, medication, radioisotopes or other drug or hazardous substance, hereinafter “solution”, positioned above the syringe. This allows for gravity vacuum feed of the solution. In an inverted position, the capped syringe needle is pointed up and the syringe plunger is at the bottom. The empty syringes are loaded onto a rotatable carousel or loaded individually into a single syringe adapter/holder. The carousel rotates a predetermined arc placing a syringe adjacent to a dispenser mechanism. The dispenser mechanism contains an automated syringe plunger tool and a rotatable component containing one or more inverted vials of solution and an automated needle cap extractor.
The syringe plunger tool may first engage the syringe plunger. The syringe plunger tool extends from the dispenser mechanism and engages the plunger of the syringe held in the carousel. This can secure the syringe in a stationary position during removal and replacement of the syringe cap and insertion of the needle into an inverted vial. It will be appreciated that the syringe plunger extends from the bottom of the syringe held in the carousel or single syringe adapter/holder.
The needle cap may next be removed from the syringe. The inverted vial rotates above the now exposed syringe needle. A vial of medication is aligned with the needle and the vial descends upon the needle and is perforated by the needle. The tool pulls the plunger down a predetermined distance. This causes a predetermined quantity of solution to be dispensed from the vial into the syringe.
The inverted vial is re-elevated to its original position, the rotatable plate rotates and the syringe cap descends upon the needle.
The carousel again rotates a predetermined arc and places the now filled syringe in front of an automated syringe extractor/inverter component. The syringe inverter component extends and grips the syringe and pulls it horizontally from the carousel. The gripper rotates the syringe about an horizontal axis such that the syringe needle is now pointed down and placed in a holder. The filled syringe can be manually removed from the syringe inverter component or placed in a further automated device. In another embodiment, the syringe is lifted from the carousel.
SUMMARY OF DRAWINGSThe accompanying drawings, which are incorporated in and constitute a part of the specification, illustrate preferred embodiments of the invention. These drawings, together with the general description of the invention given above and the detailed description of the preferred embodiments given below, serve to explain the principles of the invention.
The subject of this disclosure is an automated apparatus for filling syringes. The syringes can be filled with radiopharmaceuticals or other substances. The filling can be performed without handling by human operators or technicians. Radiopharmaceuticals are radioactive pharmaceuticals and can be used in the field of nuclear medicine as tracers in the treatment and diagnosis of many diseases. Radiopharmaceuticals include, but are not limited to, [N13] ammonia, [F-18] sodium fluoride, or [F-18] Fludeoxyglucose ([F-18] FDG).
The process starts with a rotatable carousel 110 having a plurality of slots or holders 111 containing capped empty syringes 211 being placed on a motorized rotating holder (carousel) removeably mounted on a carousel actuator. In one embodiment, the carousel 110 is placed on the carousel actuator 105 and rotated 45 degrees to attach it to the actuator 105. In another embodiment, the plunger tool or other mechanism actuate the carousel removing pins 193. The pins push the carousel up a few millimeters to break the force of the coupling magnets 192. The carousel may then be easily removed from the carousel actuator. See
Referring to
The syringes are placed in the carousel with the capped ends pointed upward and the syringe plungers pushed into the syringe with the plunger ends extending from the bottom of each syringe. Each syringe is held in an individual holder 111 of the carousel. In one embodiment, the syringes are not grasped or held in the individual holder of the carousel. It is possible to lift or pull the syringe horizontally out of the carousel without the release of any mechanism. Each syringe is held vertically in the carousel.
The carousel rotates in a controlled fashion. The carousel actuator can be mounted on a common base 148 of the filler (dispenser) mechanism 149. See
Referencing
Referencing
The disclosure further includes the top rotating plate 156 having the capability to rotate 360 degrees and to move vertically up and down. The rotating plate 156 first rotates the automated needle cap extractor 157 above the syringe cap 201. See
The syringe needle 202 is now exposed (cap removed). See
Recall that in one embodiment, the syringe plunger tool has engaged the syringe plunger. This can be the initial step of the fill sequence. The syringe plunger tool facilitates holding the vertically oriented syringe in a centered position when the automated needle cap extractor descends upon the cap. When engaged by suitable forward horizontal movement, the syringe plunger tool is then pushed downward (vertically) causing the syringe plunger to be pulled down a predetermined distance. This downward/vertical movement is shown by vector arrow 980 in
The syringe is now filled. The cap needs to be placed back on top of the syringe. See
When the cap is reattached to the syringe 211, the syringe plunger tool 171 can be rotated back horizontally. (See item 171 and vector arrow 978 of
The automated needle cap extractor is then elevated by the motor moving the rotational plate upward in the direction of vector arrow 976. See
The carousel can now rotate to bring an empty inverted syringe to the position beneath the automated needle cap extractor. The process is repeated of (i) engaging the syringe plunger tool with the syringe plunger (ii) cap removal, (iii) repositioning of the inverted vial, (iv) lowering of the vial onto the exposed needle, (v) moving the plunger down to fill the syringe with solution from the vial, (vi), elevating the inverted vial, (vii) repositioning the automated needle cap extractor, (viii) reattachment of the cap to the syringe, and (ix) disengagement of the syringe plunger tool. It will be appreciated the preceding sentence omits steps for brevity. These steps are described above or illustrated in the drawings.
The next step performed by the apparatus is removing the filled syringe from the carousel and re-inverting the syringe so that the syringe cap is facing down. This task is accomplished by syringe inverter/extractor 249 illustrated in
The carousel stops at a predetermined position in conjunction with the automated syringe inverter/extractor component. (This position of the carousel may simultaneously position another syringe, held by the carousel, directly beneath the automated cap extractor/installer. It will be appreciated that this positioning will allow two steps of the apparatus to occur simultaneously, i.e., filling of a syringe and extraction and inversion of a syringe from the carousel.) The syringe inverter/extractor can be attached to the dispenser mechanism or dispenser mechanism base by mount 250. See
In another embodiment, the syringe inverter/extractor can be used to remove a filled syringe from the carousel and place the syringe in a shielded container thereby protecting the operator.
It will also be appreciated that the apparatus may be configured to place the filled syringes into another rotating carousel for storage while the second carousel is filled without operator intervention. It will also be appreciated that the entire filing operation can be conducted in a shielded area. Other configurations with either the syringe cap up or down are within the scope of and included within this disclosure.
In another embodiment, the filled syringes can stay in the carousel and the entire carousel replaced by the operator with a replacement carousel of empty syringes.
In yet another embodiment, the syringes may be partially filled with solution when placed in the carousel and filled with additional solution by the filler mechanism.
The filler mechanism 149 can also be used to add solution to one or more vials from syringes containing solution. This process is basically the reverse of the syringe filling sequence. The syringe plunger tool is engaged with the syringe plunger. The syringe cap is removed by the automated needle cap extractor 157. The vertical motion of the rotating plate 156 at the top of the filler mechanism can also be used to lift the needle cap extractor. The rotating plate 156 can then horizontally rotate an inverted vial above the now exposed syringe needle. The vial can be lowered onto the needle. The syringe plunger tool can be elevated vertically, thereby pushing the syringe plunger upward. The solution within the syringe is discharged into the vial.
The filler mechanism can also be used to mix solutions within a vial. See
In addition, this specification is to be construed as illustrative only and is for the purpose of teaching those skilled in the art the manner of carrying out the invention. It is to be understood that the forms of the invention herein shown and described are to be taken as the presently preferred embodiments. As already stated, various changes may be made in the shape, size and arrangement of components or adjustments made in the steps of the method without departing from the scope of this invention. For example, equivalent elements may be substituted for those illustrated and described herein and certain features of the invention maybe utilized independently of the use of other features, all as would be apparent to one skilled in the art after having the benefit of this description of the invention.
While specific embodiments have been illustrated and described, numerous modifications are possible without departing from the spirit of the invention, and the scope of protection is only limited by the scope of the accompanying claims.
Claims
1. An automated cap extractor/installer comprising
- a) a cap access space;
- b) rack and pinion;
- c) a solenoid actuator. and;
- d) a position sensor.
2. The automated cap extractor/installer of claim 1 comprising a rack and pinion wherein the pinion is modified to have a flat surface with at least one rotating pinion edge.
3. The automated cap extractor/installer of claim 2 wherein the flat surface can be turned to be directed or positioned proximate to the cap access space.
4. The automated cap extractor/installer of claim 3 further comprising the pinion rotated by the solenoid actuator.
5. The automated cap extractor/installer of claim 4 further comprising a syringe cap gripped by the rotating pinion edge.
6. The automated cap extractor/installer of claim 4 further comprising a cap access space to position the syringe cap.
7. The automated cap extractor/installer of claim 4 further comprising a position sensor signal that signals the solenoid actuator.
8. A method of removing a cap from a syringe with an automated cap extractor/installer comprising:
- a) inserting a cap into a cap holding space;
- b) activating a moving component connected to a rack in communication with a pinion proximate to the cap holding space; and
- c) the pinion rotating in response to the moving rack to grip the cap.
9. The method of claim 8 further comprising:
- a) the pinion moving with the moving component; and
- b) the cap moving with the pinion.
10. The method of claim 9 further comprising pulling the cap off a syringe.
11. An automated cap extractor/installer comprising:
- a) a cap holding space dimensioned to receive a syringe and a cap;
- b) a pinion with a flat portion positioned adjacent to the cap holding space;
- c) the pinion in communication with a moving component;
- d) the pinion rotatable by action of the moving component to grip the cap; and
- e) the moving component moveable in a vertical direction in communication with the pinion gripping the cap.
12. The automated cap extractor/installer of claim 11 wherein the moving component is a solenoid actuator.
13. The automated cap extractor/installer of claim 12 wherein the solenoid actuator moves in response to a position sensor signal.
14. The automated cap extractor/installer of claim 12 further comprising a spring to push the rack to rotate the modified pinion whereby the modified edge of the pinion faces the access space.
15. The automated cap extractor/installer of claim 11 wherein the modified pinion can be moved vertically.
16. The automated cap extractor/installer of claim 15 further comprising the gripped syringe cap moving with the modified pinion.
Type: Application
Filed: Sep 10, 2012
Publication Date: Dec 27, 2012
Inventor: Saverio Roberto Strangis (Pearland, TX)
Application Number: 13/607,827
International Classification: B65B 43/26 (20060101); B65B 7/28 (20060101);