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    • 2. 发明申请
    • Synthetic bone graft
    • 合成骨移植
    • US20080208340A1
    • 2008-08-28
    • US12071756
    • 2008-02-26
    • Daniel BoydMark Robert Towler
    • Daniel BoydMark Robert Towler
    • A61F2/28A61Q11/00A61K8/27A61K8/18C03C3/00C03C3/04A61K33/30A61P19/10A61P19/08
    • A61L24/12A61L27/10A61L2430/02C03C3/062C03C4/0007
    • A particulate glass for a synthetic bone (including dental) graft includes ZnO, SrO, and may include NaO. The glass promotes cellular metabolism, and upon implantation in living bone tissue induces bone growth at their surface. The ZnO and SrO respectively degrade to provide Zn2+ and Sr2+ ions respectively. The ions released by the glass provide anti-bacterial effects; improved bone formation in place of diseased tissue; inhibition of bone resorption; and radiopacity. There is excellent synergy between the SrO, ZnO, and NaO. The Sr2+ ions have better bone formation effects than the Zn2+ ions, but an anti-bacterial effect which is not as good. Choice of relative proportions of ZnO and SrO combined with the choice of NaO concentration to set the resorption rate allow optimisation. NaO there is control of the degradation rate of the graft; a feature which is advantageous in tailoring the grafts to specific patients and applications. Additionally the sodium (Na) in the glass imparts water solubility, allowing glasses to degrade to their ionic components.
    • 用于合成骨(包括牙科)移植物的颗粒状玻璃包括ZnO,SrO,并且可以包括NaO。 玻璃促进细胞代谢,并且植入活体骨组织后,在其表面诱导骨生长。 ZnO和SrO分别降解以分别提供Zn 2+和Sr 2+ 2+。 由玻璃释放的离子提供抗菌作用; 改善骨形成代替病变组织; 抑制骨吸收; 和不透射线。 SrO,ZnO和NaO之间具有良好的协同作用。 Sr 2+离子具有比Zn 2+ 2+离子更好的骨形成效果,但是抗菌效果不如那么好。 选择ZnO和SrO的相对比例结合选择NaO浓度来设定吸收速率允许优化。 NaO有控制移植物的降解速率; 这有利于将移植物定制到特定患者和应用中。 此外,玻璃中的钠(Na)赋予水溶解性,允许玻璃降解成其离子组分。
    • 5. 发明申请
    • DEVICE AND METHOD FOR DETECTING MONOSODIUM URATE DEPOSITIONS
    • 用于检测单一酸性沉积物的装置和方法
    • US20160310063A1
    • 2016-10-27
    • US15106224
    • 2014-12-19
    • Declan Joseph CURRANMark Robert TOWLER
    • Declan Joseph CURRANMark Robert TOWLER
    • A61B5/00
    • A61B5/4538A61B5/0059A61B5/0075A61B5/4528A61B5/4869
    • Various embodiments are described herein for a method and a use of a device for detecting gout. The method can include irradiating a portion of the anatomical region through a skin surface using a light source and receiving scattered light from the portion of the anatomical region. The portion of the anatomical region may be subcutaneous. The method further includes determining Raman spectral data from the received scattered light and identifying a plurality of peaks associated with monosodium urate in the Raman spectral data. The method further comprises determining that a monosodium urate deposition is present in the anatomical region when the number of identified peaks associated with monosodium urate is greater than a detection threshold. The method may be performed using a device that includes a light source, an optical detection component and a spectral selection component.
    • 本文中描述了用于检测痛风的装置的方法和用途的各种实施例。 该方法可以包括使用光源照射解剖区域的一部分通过皮肤表面并且接收来自解剖区域的部分的散射光。 解剖区域的部分可以是皮下的。 该方法还包括从所接收的散射光中确定拉曼光谱数据,并在拉曼光谱数据中识别与尿酸单钠相关联的多个峰。 该方法进一步包括当与尿酸单钠相关联的已鉴定峰的数目大于检测阈值时,确定在解剖区域中存在的单酸钠沉积物。 该方法可以使用包括光源,光学检测部件和光谱选择部件的装置来执行。
    • 7. 发明申请
    • A STORAGE, MIXING AND DISPENSING DEVICE
    • US20200164324A1
    • 2020-05-28
    • US16636369
    • 2018-08-02
    • Mark Robert Towler
    • Mark Robert Towler
    • B01F15/02B01F5/06C08K3/40B05C17/005B01F11/00A61L24/06A61L24/12B01F15/00A61B17/88B01F13/00
    • A device for storing first and second ingredient materials, mixing the ingredient materials to form an adhesive material and dispensing the adhesive material. The device comprises: a nozzle for dispensing the third material; a first container adapted to store a first ingredient material and mix the first ingredient material with a second ingredient material; a second container disposed within the first container, and moveable between a storage position in which a second ingredient material is stored in the second container and a mixing position in which the second ingredient material is moved to the first container; a mixer that longitudinally extends into the first and second containers; a handle alternatively coupled to the mixer to mix the first and second ingredient materials or to the second container to move the second container to a dispensing position to dispense the third material. During use, the first container is rotated causing the second container to move relative to the first container and the second material to flow into the first container for mixing. After mixing, the handle is uncoupled from the mixer and coupled to the second container to dispense the third material from the nozzle. Embodiments are also described herein for a method of making the device and a method of using the device.