Capillary Slit Urine Sampling System
We disclose a device and method for collecting a urine sample as a user urinates into a toilet. The device further conducts analytical measurements which may include spectral, colorimetric, and chemical assays. The user need only urinate normally into the toilet. A urine collection trap, which includes a vertical slit, may capture a urine sample which has a volume in the microliter range. Pumps may divert the urine from the vertical slit into a conduit that is connected to spectral analysis devices and other devices for analyzing the urine sample. The disclosed device is both convenient and prevents unsanitary urine spills.
1 . A urine sampling system comprising:
a toilet, the toilet comprising:
a toilet bowl, the toilet bowl comprising a front-to-rear direction axis and a width axis;
a urine collection trap, wherein the urine collection trap is positioned on a wall of the toilet bowl, the urine collection trap comprising:
a vertical slit, wherein the vertical slit comprises a first orifice, and wherein the vertical slit captures urine by capillary action;
a conduit in fluid communication with the vertical slit;
a sample port, wherein the sample port is defined by a second orifice, and wherein the sample port defines a fluid connection between the vertical slit and the conduit;
a pump, wherein the pump is mechanically connected to the conduit, and wherein the pump moves urine through the conduit.
2 . The urine sampling system of claim 1 , wherein the vertical slit is substantially parallel to the front-to-rear direction axis of the toilet bowl.
3 . The urine sampling system of claim 1 , wherein the vertical slit is substantially perpendicular to the front-to-rear direction axis of the toilet bowl.
4 . The urine sampling system of claim 1 , wherein the vertical slit is located within a depression in the wall of the toilet bowl.
5 . The urine sampling system of claim 1 , further comprising a channel, wherein the channel comprises an elongated indentation in the wall of the toilet bowl, and wherein the channel leads to the vertical slit.
6 . The urine sampling system of claim 1 , wherein the urine collection trap further comprises an elongated mound, the elongated mound comprising:
a longitudinal axis, wherein the longitudinal axis is substantially parallel to the width axis of the toilet bowl; and
a transverse axis;
wherein the first orifice of the vertical slit is defined by a space between a first section and a second section of the mound, wherein the vertical slit transects the mound running in a direction that is substantially parallel to the front-to-rear direction axis of the toilet bowl and substantially parallel to the transverse axis of the mound.
7 . The urine sampling system of claim 1 , wherein the pump comprises one of the following: a peristaltic pump and a syringe pump.
8 . The urine sampling system of claim 1 , wherein the sampling port is in fluid connection with a bottom or a side of the vertical slit.
9 . The urine sampling system of claim 1 , wherein the conduit further comprises an output port; and wherein the output port defines a fluid connection between the conduit and the toilet bowl.
10 . The urine sampling system of claim 9 , further comprising an output valve, wherein the output valve is positioned between the conduit and the output port.
11 . The urine sampling system of claim 9 , wherein the output port deposits a urine sample into a device which conducts a chemical or colorimetric analysis assay.
12 . The urine sampling system of claim 1 , further comprising an inlet valve, wherein the inlet valve is positioned between the conduit and the sample port.
13 . The urine sampling system of claim 1 , wherein a urine sample both enters and exits the urine sampling system through the sample port.
14 . The urine sampling system of claim 1 , further comprising a junction, wherein the junction is in fluid communication with the conduit, wherein the junction comprises a first light-transmitting plate and a second light-transmitting plate, wherein the first and second light-transmitting plates are substantially parallel to each other, and wherein a space between the first and second light-transmitting plates defines a urine analysis reservoir.
15 . The urine sampling system of claim 14 , further comprising an entrance port and an exit port, wherein the entrance port transverses the first light-transmitting plate and the exit port transverses the second light-transmitting plates, and wherein the entrance port and exit port are in fluid communication with the conduit.
16 . The urine sampling system of claim 14 , wherein a width of a space between the first and second light-transmitting plate is adjustable.
17 . The urine sampling system of claim 16 , wherein one or more screws adjust the width of the space between the first and second light-transmitting plate.
18 . The urine sampling system of claim 14 , further comprising a compliant seal, wherein the compliant seal is positioned between the first and second light-transmitting plate.
19 . The urine sampling system of claim 14 , further comprising a spectrometer, wherein the spectrometer measures one or more spectral properties of a urine sample between the first and second light-transmitting plates.
20 . The urine sampling system of claim 1 , further comprising at least one user sensor, wherein the at least one user sensor comprises one or more of the following: a proximity sensor and a weight sensor.