Claims
- 1. A hollow fiber artificial lung adapted to perform exchange of gases between blood and a gas through a hollow fiber membrane by passing blood over one side of the membrane and oxygen or an oxygen-containing gas over the other side, said hollow fiber membrane consisting essentially of a polyolefin, said hollow fiber membrane having:
- an inside diameter of 10 to 500 micrometers;
- a thickness of 5 to 100 micrometers;
- a porosity of 7 to 50%,
- an oxygen flux, Q(O.sub.2), of at least 1.times.10.sup.-6,
- a barrier layer having an average thickness of not more than 2 micrometers as calculated from oxygen flux Q(O.sub.2) and nitrogen flux Q(N.sub.2), and
- an ethanol flux across the hollow fiber membrane of not more than 30 ml/(min.m.sup.2).
- 2. The hollow fiber artificial lung of claim 1 in which the polyolefin is poly(4-methylpentene-1).
- 3. The hollow fiber artificial lung of claim 1 in which the hollow fiber membrane has an oxygen flux, Q(O.sub.2), at 25.degree. C. of at least 7.times.10.sup.-6 cm.sup.3 (STP)/(cm.sup.2.sec.cmHg).
- 4. The hollow fiber artificial lung of claim 1 wherein the hollow fiber membrane has a porosity of 10 to 35%.
- 5. The hollow fiber artificial lung of claim 1 in which the hollow fiber membrane has an inside diameter of 100 to 300 micrometers and a thickness of 5 to 100 micrometers.
- 6. The hollow fiber artificial lung of claim 1 in which the hollow fiber membrane is an assembly of hollow fibers sparsely aligned lengthwise and tied together across by yarns or tapes disposed perpendicular to said lengthwise hollow fibers.
- 7. A method of exchanging gases between blood and an oxygen-containing gas comprising:
- providing a hollow fiber artificial lung adapted to perform exchange of gases between blood and a gas through a hollow fiber membrane by passing blood over one side of the membrane and oxygen or an oxygen-containing gas over the other side, said hollow fiber membrane consisting essentially of a polyolefin, said hollow fiber membrane having:
- an inside diameter of 10 to 500 micrometers;
- a thickness of 5 to 100 micrometers;
- a porosity of 7 to 50%,
- an oxygen flux, Q(O.sub.2), of at least 1.times.10.sup.-6, and
- a barrier layer having an average thickness of not more than 2 micrometers as calculated from oxygen flux Q(O.sub.2) and nitrogen flux Q(N.sub.2) which is substantially impermeable to ethanol; and
- passing an oxygen-containing gas over an inside surface of the membrane and blood over an outside surface, thereby performing exchange of gases between said blood and said oxygen-containing gas.
- 8. A method of exchanging gases between blood and an oxygen-containing gas comprising:
- providing a hollow fiber artificial lung adapted to perform exchange of gases between blood and a gas through a hollow fiber membrane by passing blood over one side of the membrane and oxygen or an oxygen-containing gas over the other side, said hollow fiber membrane consisting essentially of a polyolefin, said hollow fiber membrane having:
- an inside diameter of 10 to 500 micrometers;
- a thickness of 5 to 100 micrometers;
- a porosity of 7 to 50%,
- an oxygen flux, Q(O.sub.2), of at least 1.times.10.sup.-6, and
- a barrier layer having an average thickness of not more than 2 micrometers as calculated from oxygen flux Q(O.sub.2) and nitrogen flux Q(N.sub.2) which is substantially impermeable to ethanol; and
- passing an oxygen-containing gas over an outside surface of the membrane and blood over an inside surface, thereby performing exchange of gases between said blood and said oxygen-containing gas.
Priority Claims (1)
Number |
Date |
Country |
Kind |
62-172067 |
Jul 1987 |
JPX |
|
Parent Case Info
This application is a continuation of application Ser. No. 07/216,547 filed Jul. 8, 1988, now abandoned.
US Referenced Citations (3)
Number |
Name |
Date |
Kind |
4664681 |
Anazawa et al. |
May 1987 |
|
4708800 |
Ichikawa et al. |
Nov 1987 |
|
4770852 |
Takahara et al. |
Sep 1988 |
|
Continuations (1)
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Number |
Date |
Country |
Parent |
216547 |
Jul 1988 |
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