Abstract:
The present invention at first prepares a penta-alkyl DTPA and then processes a regioselective hydrolysis over the penta-alkyl DTPA while using a metal ion as a catalyst to obtain a tetra-alkyl DTPA, where, by the above two steps, a monoreactive DTPA derivative is manufactured.
Abstract:
An immediate language transferring navigating system and the method thereof are provided. The electronic map database includes map information having geographic information, language information and relational information. The language information is expressed in a native language, and the language database includes word databases. The system uses a positioning module to detect the present position and obtains the present map information by an access module, corresponding to the present position. Then a selecting module is used to select a setting word database, which uses a non-native language. Finally, a transferring module is used to transfer the native language of the language information into a selected setting language according to the setting word database, and a display module is used to display the language information in the selected setting language and the corresponding geographic information according to the relational information.
Abstract:
A method for planning a route according to user's habits is disclosed. First, an electronic map is provided by a navigation device. The electronic map includes a plurality of virtual paths, wherein each virtual path has its own corresponding weight. Next, when the navigation device shows that the user is located in one of the plurality of virtual paths, the weight corresponding to this virtual path is added by a weighted value. Then, when planning the next route, the navigation device plans the route according to the newest weight of each virtual path to make the planned route be close to the user's habits.
Abstract:
A combined storage apparatus (10) includes a storage bag (12) and a storage box (14). The base (20) of the storage bag (12) is gusseted and forms an extended flat surface which is attached to a stiff board (32). The board (32) has straps (40A, 40B) with buckles (42) which are adjustable to pull taut against the storage bag (12). After the storage bag (12) has been sealed by fastener tracks (28A, 28B) and evacuated of air through a one-way valve (30), the straps (40A, 40B) are pulled taut against the storage bag (12) and the buckles (42) secured. The adjustable straps (40A, 40B), the buckles (42), and the board (32) serve as a mechanical restraint to assist in retaining the storage bag (12) in a collapsed state. The storage bag (12) and the board (32) are sized to fit within the storage box (14). The board (32) also is folded in a manner to create two sidewalls (32A, 32B) which provides rigidity to permit multiple storage apparatuses (10) to be stacked.
Abstract:
A wearable device using multi-wire transmission is described. The wearable device using multi-wire transmission has a first fastener and a plurality of detachable second fasteners. Further, the first fastener is communicated with the second fasteners to transmit different pulse wave signals or different digital signals via multi-wire transmission when the first fastener is bonded to the second fasteners, such that all of the functional elements of the second fasteners such as a touchpad, a screen, a heating film, etc. combined with the first fastener are integrated.
Abstract:
A combined storage apparatus comprises a storage bag and a storage box. The bottom of the storage bag forms an extended flat surface and is attached with a stiff board. Two sides of the stiff board are provided with locking members. Thereby, after the storage bag contains an article and is vacumed, two lateral sections of the stiff board are folded upward to form two sidewalls. The storage bag is then placed into the storage box. Since the combined storage apparatus is boxy and of tough structure, a plurality of them can be stacked up so as to save storage space.
Abstract:
This invention is to manufacture a kit for preparation of nano-targeted liposome drugs in combined chemotherapy and radionuclide therapy. It is a kit consisting of three components: (1) A 10 ml vial A which contains BMEDA, gluconate acetate, SnCl2. (2) A 10 ml vial B which contains DSPC, cholesterol, DSPE-PEG, and Doxorubicin(DXR) (or Daunorubicin, Vinolbine). (3) A 10 ml vial C which contains 188ReO4− (or 186ReO4−) solution. The procedure of using the kit is as follows: (1) Remove the contents of the 188ReO4− (or 186ReO4−) solution from vial C. (2) Inject the 188ReO4− (or 186ReO4−) solution into the vial A, and the mixtures react in appropriate temperature. (3) Remove the contents of the 188Re-BMEDA (or 186Re-BMEDA) solution from vial A. (4) Inject the 188Re-BMEDA (or 186Re-BMEDA) solution into the vial B, and the mixtures react in appropriate temperature. The reconstituted solution in the vial B is applied to combine bimodality radiochemotherapy for treatment of tumor and ascites.
Abstract:
A combined storage apparatus including a vacuum-sealed compression storage bag and a case; the bag having an open end provided with a sealing line comprised of two strips; an air suction outlet being provided on one side of the bag; a baseboard is being attached to the outer peripheral of the base of the compression bag; the case being integrated with a lid and both being foldable, a handle being provided to all four sides of the case; the object for storage being first placed in the vacuum sealed compression storage bag; and then the compression storage bag being placed into the case to allow multiple cases to stack up in nice and tidy fashion.