1461159100-fc55b49c-fbbe-42b1-967b-35efa0f63b3a

1. A filter medium comprising undoped precipitated silica or silicon-based gel materials, wherein said materials exhibit a BET surface area of between about 30 and 350 m2g; a pore volume of greater than 0.25 ccg to 2.0 ccg as measured by nitrogen porosimetry; a mean pore diameter of greater than about 100 to 300 \u212b.
2. The filter medium of claim 1 wherein said materials are silicon-based gel materials.
3. A filter system comprising the filter medium as defined in claim 1.
4. A filter system comprising the filter medium as defined in claim 2.
5. A method of removing ammonia from an enclosed environment comprising the steps of providing a filter system comprising the filter medium as defined in claim 1, and exposing said filter system to an ammonia environment.
6. A method of removing ammonia from an enclosed environment comprising the steps of providing a filter system comprising the filter medium as defined in claim 2, and exposing said filter system to an ammonia environment.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. An e-book under an external light having an intensity, comprising:
a memory module storing data;
an inputoutput interface electrically connected to the memory module, inputting the data to the memory module, and outputting the data from the memory module;
an e-paper module electrically connected to the memory module, and displaying the data;
a power device electrically connected to the e-paper module and the memory module, and providing a power output; and
a photosensor electrically connected to the power device, having a threshold value, and sensing the intensity of the external light, wherein when the sensed intensity is lower than the threshold value, the power device reduces the power output.
2. An e-book as claimed in claim 1, wherein the photosensor is a photocell, and when the photocell is unable to be charged, the power device reduces the power output.
3. A power control method for an e-book having a power device, comprising steps of
providing a photosensor having a threshold value;
electrically connecting the photosensor to the power device;
sensing an intensity of an external light by the photosensor; and
reducing a power output of the power device when the sensed intensity is lower than the threshold value.
4. A power control method as claimed in claim 3, wherein the step of reducing the power output of the power device is performed by one of enabling the e-book to enter an energy-saving mode and turning off the power device.
5. A power control method as claimed in claim 3, wherein the photosensor is a photocell, and when the photocell is unable to be charged, the power device reduces the power output.
6. A power control method for an e-book having a power device, comprising steps of:
providing a gravity sensor to sense a gravity direction;
electrically connecting the gravity sensor to the power device; and
performing one of turning off a power output of the power device and enabling the e-book to enter an energy-saving mode when the gravity direction and a display direction of the e-book are pointed at a same direction.
7. A power controller for controlling a power output of an e-book under an external environment, comprising:
an environmental sensor sensing the external environment, wherein when the external environment is changed, the power controller reduces the power output of the e-book.
8. A power controller as claimed in claim 7, wherein the external environment includes an external light having an intensity, the environmental sensor has a threshold value, the environmental sensor senses the intensity of the external light, and when the intensity of the external light is lower than the threshold value, the power controller reduces the power output of the e-book.
9. A power controller as claimed in claim 7, wherein the external environment includes a gravity direction, the e-book has a display surface and a display direction outward and perpendicular to the display surface, the environmental sensor senses the gravity direction, and when the gravity direction and the display direction of the e-book are pointed at a same direction, the power controller reduces the power output of the e-book.
10. A power controller as claimed in claim 7, further comprising a main controller electrically connected to the environmental sensor, wherein the external environment includes a gravity direction and an external light having an intensity, and the environmental sensor senses the intensity of the external light and the gravity direction simultaneously, wherein the main controller uses one of the external light and the gravity direction as a main environmental parameter.
11. A power controller as claimed in claim 7, wherein the power controller reduces the power output of the e-book by performing one of enabling the e-book to enter an energy-saving mode and turning off the power output of the e-book.

1461159091-7010371b-9606-4e3d-8167-c43824a2ad48

1 A fluid dispenser comprising:
a fluid reservoir (30) defining at least one actuating wall suitable for being displaced;
a dispensing orifice (321); and
spring means (1; 2; 42) suitable for loading the actuating wall into a state in which the volume of the reservoir is at its maximum;
said fluid dispenser being characterized in that the spring means co-operate with cocking means (42) suitable for bringing the spring means to a state loading the actuating wall from an initial state in which the spring means do not load the actuating wall, the spring means comprising a front plate (1) and a back plate (2), the reservoir (30) being situated between and secured to the front and back plates, the cocking means comprising spacer means (42) that can be displaced selectively between an inoperative position in which the two plates extend substantially parallel to each other and corresponding to a state in which the volume of the reservoir is at its minimum, and an operative position in which the plates are spaced apart from each other at least locally, the front plate being movable relative to the back plate so as to compress the reservoir situated between them, actuating means (4) being provided for positioning the spacer means between the two plates so as to space them apart, the actuating means comprising a traction member (43, 44) provided with a fixing end (433) connected to the spacer means (42) and with a traction end (442), the traction end being situated in the vicinity of the dispensing orifice (321).
2 A dispenser according to claim 1, in which the dispensing orifice is closed off by a removable closure member (34) secured to the traction member (44).
3 A dispenser according to claim 1, in which the dispensing orifice is closed off by a removable closure member provided with a pull tab, the traction end being formed by said pull tab.
4 A dispenser according to claim 1, in which the spacer means (42) and the actuating means (4) are implemented integrally in one piece.
5 A dispenser according to claim 4, in which the spacer means comprise a hinged flap (42) mounted to move between the inoperative position and the cocked position, said flap and the traction member (43) being implemented integrally in one piece.
6 A dispenser according to claim 1, in which the traction member (43) extends between the two plates.
7 A dispenser according to claim 1, in which the traction member forms a fork (43) comprising two prongs (432) interconnected via a common web (431), the two prongs defining two connection ends (433) together forming said fixing end.
8 A dispenser according to claim 7, in which the traction member comprises a tab (44) connected to the web (431), said tab defining a free end (442) connected to or forming the traction end.
9 A dispenser according to claim 8, in which the tab is detachable from the fork.
10 A dispenser according to claim 7, in which the reservoir (30) is fixed to a plate (1) between the two prongs of the fork.
11 A dispenser according to claim 1, in which the traction end is detachable from the remainder of the traction member.
12 A dispenser according to claim 11, in which the spring means are formed by at least one of the following elements: the front plate, the back plate, and the spacer means.
13 A dispenser according to claim 2, in which the reservoir (30) almost exclusively contains fluid before the removable dispensing member (34) is removed.
14 A dispenser according to claim 1, in which the dispensing orifice (321) opens out to one side through one of the plates.

The claims below are in addition to those above.
All refrences to claim(s) which appear below refer to the numbering after this setence.

1. A method of obtaining data for the diagnosis of endothelial dysfunction, the method comprising:
blocking blood flow in one limb for a first period of time;
releasing the block of blood flow in said one limb;
measuring a change in the presence of a substance in said one limb as a result of a return of blood flow in said one limb; and
determining from said change data indicative of endothelial dysfunction.
2. The method as claimed in claim 1, further comprising a step of injecting a bolus of a tracer in a vein such that said bolus is conducted to the heart and evenly distributed to said one limb and an opposed limb via arteries substantially simultaneously with said releasing, wherein said substance comprises said tracer.
3. The method as claimed in claim 2, wherein said step of measuring tracer presence comprises measuring tracer presence in both said limbs, said step of determining comprising comparing tracer presence between both said limbs.
4. The method as claimed in claim 3, wherein said tracer comprises a radioactive tracer, said step of measuring comprises measuring radiation emitted from a region of interest in said limbs.
5. The method as claimed in claim 2 wherein said tracer presence is measured and recorded as a function of time at a plurality of points in time.
6. The method as claimed in claim 4, wherein said step of measuring comprises adjusting a position of said limbs with respect to a radiation detector so as to detect radiation with a substantially equal sensitivity for each of said limbs.
7. The method as claimed in claim 6, wherein said limbs comprise arms and said region of interest is a forearm.
8. The method as claimed in claim 7, wherein said forearms are placed palms down on a substantially flat surface in order to detect said region of interest of each one of said forearms.
9. The method as claimed in claim 6, wherein diagnosis of endothelial dysfunction is determined from a steady state measurement of radiation detection.
10. The method as claimed in claim 1, wherein said step of measuring comprises measuring said change in the presence of said substance in both said limbs.
11. The method as claimed in claim 1, wherein said presence is measured and recorded as a function of time at a plurality of points in time.
12. The method as claimed in claim 4, wherein said limb is a forearm, and step of measuring comprises providing a gamma camera with its imaging surface ergonomically positioned with respect to a patient, and placing said forearm on said imaging surface of said gamma camera.
13. The method as claimed in claim 12, wherein two said forearms are substantially extended and placed palms down on said imaging surface in order to detect said region of interest of each one of said forearms.
14. The method as claimed in claim 4, further comprising measuring an activity of said bolus prior to injection to establish a reference activity level.
15. The method as claimed in claim 1, wherein said step of measuring comprises:
detecting a first level of said substance at a time of said releasing;
detecting at least one second level of said substance after said releasing;
wherein said determining uses said first level and said at least one second level.
16. The method as claimed in claim 15, wherein said at least one second level is detected at a plurality of predetermined points in time following said releasing.
17. The method as claimed in claim 15, wherein said determining comprises determining a maximum rate of change in said substance from said at least one second level.
18. The method as claimed in claim 17, wherein said determining further comprises recording a time of said maximum rate of change with respect to said releasing.
19. The method as claimed in claim 15, further comprising detecting a base level of said substance prior to blocking, wherein said determining comprises recording a quasi steady state value of said second level for comparison with said base level.
20. The method as claimed in claim 1, wherein said blocking of blood flow comprises occluding one arm so as to raise systolic blood pressure by a predetermined amount.
21. The method as claimed in claim 20, wherein said blood pressure is raised by about 50 mm Hg for approximately 5 minutes.
22. An apparatus for diagnosis of endothelial dysfunction, the apparatus comprising:
a device for measuring a change in a presence of a substance in one limb as a result of a return of blood flow in said one limb, said device outputting a first signal; and
a processor for generating from said first signal data indicative of endothelial dysfunction.
23. The apparatus as claimed in claim 22, further comprising a device detecting a blocking of blood flow in said one limb and a timer for recording said blocking and a releasing of said blocking, said timer providing a second signal fed to said processor.
24. The apparatus as claimed in claim 22, further comprising a device for measuring blood pressure and outputting a blood pressure signal to said processor.
25. The apparatus as claimed in claim 22, wherein said device measures the presence of a radioactive tracer.
26. The apparatus as claimed in claim 22, wherein said device measures an optical property of said substance transcutaneously.
27. The apparatus as claimed in claim 22, wherein said device measures trace amounts of transdermally diffusible molecules.
28. The apparatus as claimed in claim 27, wherein said device comprises a cell sealable against the skin and an analytical instrument for detecting and quantifying selected metabolic marker gases.
29. The apparatus as claimed in claim 22, wherein said device measures temperature of said limb, said temperature being indicative of blood flow into said limb.
30. The apparatus as claimed in claim 29, wherein said device also measures temperature of a contra-lateral limb.
31. The apparatus as claimed in claim 22, wherein said processor measures and records said presence as a function of time at a plurality of points in time.
32. The apparatus as claimed in claim 22, wherein said processor detects a first level of said substance at a time of releasing blood flow blockage, and detects at least one second level of said substance after said releasing, wherein said processor uses said first level and said at least one second level.
33. The apparatus as claimed in claim 32, wherein said at least one second level is detected and recorded at one or more predetermined points in time following said releasing.
34. The apparatus as claimed in claim 33, wherein said processor determines a maximum rate of change in said substance from said at least one second level.
35. The apparatus as claimed in claim 34, wherein said processor records a time of said maximum rate of change with respect to said releasing.
36. The apparatus as claimed in claim 32, further comprising detecting a base level of said substance prior to blocking, wherein said determining comprises recording a quasi steady state value of said second level for comparison with said base level.