Ureteral Catheters, Systems Including the Same, and Methods of Inducing Negative Pressure to Increase Renal Perfusion
A ureteral catheter is provided, including: a drainage lumen including a proximal portion configured to be positioned in at least a portion of a patient's urethra and a distal portion configured to be positioned in a patient's ureter and/or kidney, the distal portion including a coiled retention portion, wherein the retention portion includes at least a first coil having a first diameter and a second coil having a second diameter, the first diameter being less than the second diameter.
1 . (canceled)
2 . A ureteral catheter, comprising:
a drainage lumen comprising a proximal portion, a distal portion and a sidewall extending therebetween, the distal portion comprising a retention portion configured to be positioned in a kidney, renal pelvis and/or in the ureter adjacent to the renal pelvis, wherein the retention portion comprises a plurality of coils, each coil comprising a radially inwardly facing side and a radially outwardly facing side, wherein one or more hole(s) are disposed on the radially inwardly facing side of at least one of the plurality of coils, and wherein at least two coils of the plurality of coils have about the same outer diameter.
3 . The ureteral catheter of claim 2 , wherein the drainage lumen comprises at least one tube.
4 . The ureteral catheter of claim 2 , wherein the proximal portion of the sidewall of the drainage lumen is essentially free of or free of holes.
5 . The ureteral catheter of claim 2 , wherein the proximal portion of the sidewall of the drainage lumen is free of holes.
6 . The ureteral catheter of claim 2 , wherein the proximal portion is configured to be connected to a negative pressure source for application of negative pressure through the ureteral catheter.
7 . The ureteral catheter of claim 6 , wherein the negative pressure source is a pump.
8 . The ureteral catheter of claim 2 , wherein the retention portion comprises one or more helical coils.
9 . The ureteral catheter of claim 2 , wherein the outer diameter of a first coil of the at least two coils is ±2 mm of the outer diameter of a second coil of the at least two coils.
10 . The ureteral catheter of claim 2 , wherein the outer diameter of a first coil of the at least two coils is the same as the outer diameter of a second coil of the at least two coils.
11 . The ureteral catheter of claim 2 , wherein the at least two coils comprise a first coil proximal to a second coil.
12 . The ureteral catheter of claim 2 , wherein the radially inwardly facing side of the at least one of the plurality of coils further comprises at least one additional hole(s).
13 . The ureteral catheter of claim 2 , wherein the radially outwardly facing side is free of holes.
14 . The ureteral catheter of claim 2 , wherein, upon application of negative pressure, mucosal tissue contacts an outer periphery of the retention portion thereby preventing or inhibiting the mucosal tissue from occluding the hole(s) disposed on the radially inwardly facing side of the retention portion.
15 . The ureteral catheter of claim 2 , wherein, when negative pressure is applied through the ureteral catheter, fluid is drawn into the ureteral catheter through the hole(s) while mucosal tissue is inhibited from contacting the hole(s) on the radially inwardly facing portion of the retention portion.
16 . The ureteral catheter of claim 2 , wherein the retention portion comprises at least a first coil having a first diameter; at least a second coil having a second diameter, the first diameter being less than the second diameter.
17 . The ureteral catheter of claim 16 , wherein the first coil is proximate to a proximal end of the retention portion.
18 . The ureteral catheter of claim 16 , wherein the second coil is proximate to the distal end of the retention portion.
19 . The ureteral catheter of claim 2 , wherein the retention portion further comprises an open distal end for permitting fluid flow into the drainage lumen.
20 . A system for increasing urine output from a kidney, the system comprising:
the ureteral catheter according to claim 1 ; and
a negative pressure source in fluid communication with the proximal portion of the drainage lumen portion, the negative pressure source being configured for inducing within the drainage lumen of the ureteral catheter to draw fluid from the kidney through the drainage lumen of the ureteral catheter.
21 . The system of claim 20 , further comprising an external fluid collection container in fluid communication with the drainage lumen for drainage of fluid from the catheter.
22 . The system of claim 21 , further comprising one or more sensors in fluid communication with the drainage lumen for measuring information representative of a physiological condition of the patient.
23 . The system of claim 22 , wherein the one or more sensors are configured to measure one or more of capacitance, analyte concentration, and temperature of urine within the drainage lumen.
24 . The system of claim 22 , wherein the system further comprises:
a processor comprising computer readable memory comprising programming instructions that, when executed, cause the processor to:
receive the information from the one or more sensors, and
adjust an operating parameter of the negative pressure source based, at least in part, on the information received from the one or more sensors to increase or decrease the negative pressure in the drainage lumen to adjust flow of urine therethrough.
25 . The system of claim 20 , wherein the negative pressure is provided within a range of 0.1 mmHg to 50 mmHg.
26 . The system of claim 20 , wherein the negative pressure source provides an accuracy of 10 mmHg or less.
27 . The system of claim 20 , wherein the negative pressure source is configured to provide intermittent negative pressure.
28 . The system of claim 20 , wherein the negative pressure source is configured to provide intermittent positive pressure.
29 . The system of claim 20 , wherein the negative pressure source is configured to alternate between providing negative pressure and providing equalizing pressure to atmosphere.
30 . The system of claim 20 , wherein the negative pressure source is configured to alternate between two or more different pressure levels.
31 . The system of claim 20 , wherein the negative pressure source is configured to adjust the pressure levels at a regular or irregular frequency based, at least in part, on a predetermined algorithm.
32 . The system of claim 31 , wherein the predetermined algorithm is based, in part, on continuously or non-continuously changing patient values, the patient values comprising one or more of urine output rate, peristaltic activity of renal and/or urological system, heart rate, cardiac output, blood pressure, respiration rate, renal blood flow, renal plasma flow, analyte and biomarkers.
33 . A method for increasing urine output from a kidney, the method comprising:
positioning a retention portion of a catheter of claim 1 at a fluid collection position within at least one of the kidney, the renal pelvis and/or the ureter adjacent to the renal pelvis;
inducing a negative pressure within a drainage lumen of the catheter; and
extracting urine by drawing urine through the hole(s) into the drainage lumen.