Displacement sensing device and peritoneal dialysis system
10751458 ยท 2020-08-25
Assignee
Inventors
- Chun-Hung Wen (New Taipei, TW)
- Wei-Chen Lai (New Taipei, TW)
- Pu-De Ciou (New Taipei, TW)
- Wen-Pin Chang (New Taipei, TW)
- Tsung-Hsun Wu (New Taipei, TW)
- Wen-Shu Lee (New Taipei, TW)
- Ta-Lun Tan (Taipei, TW)
Cpc classification
A61M1/28
HUMAN NECESSITIES
F04B43/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04B17/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A61M60/268
HUMAN NECESSITIES
F04B13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A61M60/113
HUMAN NECESSITIES
F04B2201/0201
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A61M60/36
HUMAN NECESSITIES
F04B43/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
A61M1/28
HUMAN NECESSITIES
F04B17/03
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A61M5/145
HUMAN NECESSITIES
F04B43/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
A61M5/315
HUMAN NECESSITIES
A61M5/168
HUMAN NECESSITIES
F04B13/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A displacement sensing device is configured for a peritoneal dialysis system. The peritoneal dialysis system includes a housing and a syringe. The syringe is disposed on the housing and has a push rod. The displacement sensing device includes a guide rod, a probing module, and a resistance scale. The guide rod is coupled to the push rod, and the probing module is disposed in the housing and is fixed at the guide rod. The resistance scale is disposed at a side of the probing module. The probing module is configured to contact the resistance scale to obtain a resistance value of the resistance scale and determine a displacement magnitude of the push rod. In addition, a peritoneal dialysis system is also mentioned.
Claims
1. A displacement sensing device, configured for a peritoneal dialysis system comprising a housing and a syringe disposed on the housing and having a push rod, the displacement sensing device comprising: a guide rod coupled to the push rod; a probing module disposed in the housing and fixed at the guide rod; a resistance scale disposed at a side of the probing module, wherein the guide rod is configured to drive the probing module and the push rod to move towards the same direction, and the probing module is configured to contact the resistance scale to obtain a resistance value of the resistance scale and determine a displacement magnitude of the push rod; and a sliding rod connected to the housing and penetrating through the probing module, wherein the probing module is configured to slide relatively to the sliding rod.
2. The displacement sensing device according to claim 1, further comprising a driving element coupled to the guide rod and the push rod to drive the guide rod and the push rod to move.
3. The displacement sensing device according to claim 2, wherein the driving element comprises a stepping motor.
4. The displacement sensing device according to claim 1, further comprising an optical sensor disposed at an actuating initial position of the probing module to perform return-to-zero calibration for traveling displacement of the probing module.
5. The displacement sensing device according to claim 4, wherein the probing module comprises an extension part, and the extension part comprises an optical shutter corresponding to the optical sensor.
6. The displacement sensing device according to claim 1, wherein the probing module further comprises a threaded hole and a probe, and the probe is locked by screwed into the threaded hole to contact the resistance scale.
7. A peritoneal dialysis system comprising: a housing; a syringe disposed on the housing, the syringe having a push rod; and a displacement sensing device disposed in the housing, comprising: a guide rod coupled to the push rod; a probing module fixed at the guide rod; a resistance scale disposed at a side of the probing module, wherein the guide rod is configured to drive the probing module and the push rod to move towards the same direction, and the probing module is configured to contact the resistance scale to read a resistance value of the resistance scale and determine a displacement magnitude of the push rod; and a sliding rod connected to the housing and penetrating through the probing module, wherein the probing module is configured to slide relatively to the sliding rod.
8. The peritoneal dialysis system according to claim 7, further comprising a display element disposed at a side of the housing to display a sensing result of the displacement sensing device.
9. The peritoneal dialysis system according to claim 7, further comprising a fixing element disposed between the guide rod and the push rod, the guide rod and the push rod respectively penetrating through the fixing element along the same direction.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
DESCRIPTION OF THE EMBODIMENTS
(5)
(6) As shown in
(7) In the present embodiment, an extension direction of the resistance scale 130 is parallel to a moving direction of the probing module 120, and different positions on the resistance scale 130 may indicate different resistance values. The probing module 120 is configured to contact the resistance scale 130 to measure the resistance value at the position contacted by the probing module 120. In the present embodiment, the probing module 120 determines a displacement distance thereof (namely, the distance from where the probing module 120 is located to its actuating initial position) according to the measured resistance value to thereby obtain a displacement magnitude of the push rod 52 of the syringe 50.
(8) In the present embodiment, the displacement sensing device 100 further includes a driving element 160, and the driving element 160 is, for example, a stepping motor. The driving element 160 is coupled to the guide rod 110 and the push rod 52 of the syringe 50, and the driving element 160 drives the guide rod 110 and the push rod 52 to move together along the same direction. Moreover, the driving element 160 compares the displacement magnitude of the guide rod 110 and the push rod 52 measured by the probing module 120 with a predetermined driving distance of the driving element 160, namely, comparing the predetermined driving distance of the push rod 52 with the actual displacement magnitude of the push rod 52.
(9) In the present embodiment, when the actual displacement magnitude of the push rod 52 is smaller than the driving distance predetermined by the driving element 160, the driving element 160 performs calibration according to a difference between the predetermined displacement distance of the push rod 52 and its actual displacement magnitude. Accordingly, through the feedback of the probing module 120, the driving element 160 can calibrate the driving distance of the push rod 52 more precisely and thereby mitigate the issue of excessive or insufficient injection amount injected by the syringe 50 resulting from the inability to precisely control the displacement of the push rod 52 of the syringe 50.
(10) Referring back to
(11) In the present embodiment, the peritoneal dialysis system 10 further includes a fixing element 14, and the fixing element 14 is disposed between the guide rod 110 and the push rod 52 of the syringe 50. Moreover, the guide rod 110 and the push rod 52 respectively penetrate through and fixed to the fixing element 14 along their movement direction. As shown in
(12)
(13)
(14) As shown in
(15) In summary of the above, in the embodiments of the disclosure, the peritoneal dialysis system includes the displacement sensing device, and the displacement sensing device defines the displacement distance of the push rod of the syringe through the probing module and the resistance scale. Specifically, the probing module obtains the displacement distance of the guide rod and the push rod according to the measured resistance value on the resistance scale. Moreover, the driving element performs calibration according to the measurement result of the displacement of the push rod provided by the probing module. For example, if the displacement distance of the push rod provided by the probing module is smaller than the predetermined driving distance of the driving element, the driving element performs correction and control according to the difference between the displacement distance provided by the probing module and the predetermined displacement distance. Therefore, the displacement sensing device in the embodiments of the disclosure can prevent insufficient displacement of the push rod of the syringe in the driving process, which causes the amount of medicament actually drew or injected by the syringe to be less than the original predetermined injection amount. Accordingly, through the displacement sensing device, the peritoneal dialysis system can more precisely control the injection amount of medicament and a drawing amount of body fluids during the treatment and further reduce the occurrence of misdiagnosis in the treatment.
(16) Although the disclosure is disclosed as the embodiments above, the embodiments are not meant to limit the disclosure. Any person skilled in the art may make slight modifications and variations without departing from the spirit and scope of the disclosure. Therefore, the protection scope of the disclosure shall be defined by the claims attached below.