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    • 2. 发明授权
    • Medical suction system and method
    • 医用抽吸系统及方法
    • US5520668A
    • 1996-05-28
    • US315597
    • 1994-09-30
    • Richard J. GreffEd F. Nicolas
    • Richard J. GreffEd F. Nicolas
    • A61M1/00
    • A61M1/008A61M1/0023
    • A surgical suction system and method includes a source of suction and a conduit having a distal end and a proximal end. At its distal end, the conduit has a diameter not greater than about 5/8 inch to provide limited access to the surgical site and an inside diameter not less than about 1/4 inch to accommodate the bone fragments in the waste slurry. A coupling is provided for connecting the proximal end of the conduit to the suction source in order to provide suction at the distal end of the conduit at a velocity not less than about ninety miles per hour. A fluid containment vessel can be connected between the conduit and the source of suction to provide a liquid trap for the waste slurry passing along the conduit. An associated method includes the step of activating the suction source to provide suction at the distal end of the conduit with a velocity not less than ninety miles per hour.
    • 手术吸引系统和方法包括抽吸源和具有远端和近端的导管。 在其远端处,导管具有不大于约5/8英寸的直径,以提供对手术部位的有限接近以及不小于约1/4英寸的内径以容纳废浆中的骨碎片。 提供了用于将导管的近端连接到抽吸源的联接器,以便以不小于约90英里/小时的速度在管道的远端提供抽吸。 流体容纳容器可以连接在管道和抽吸源之间,以提供用于沿着导管通过的废浆料的液体捕集器。 相关联的方法包括以不小于九十英里/小时的速度激活吸入源以在管道的远端提供吸力的步骤。
    • 3. 发明授权
    • Skin treatment tool applicator tip
    • US11291474B2
    • 2022-04-05
    • US16992823
    • 2020-08-13
    • Ed F. NicolasWilliam Cohen
    • Ed F. NicolasWilliam Cohen
    • A61B17/54A61B17/00A61B17/32
    • The present invention is an applicator tip for a hand piece assembly used in dermal abrasion procedures, the applicator tip having a cap shape with a plurality of apertures that form ports communicating with a fluid supply line in the hand piece assembly and a vacuum source to remove the abrading fluid. The fluid is introduced onto the outer abrading surface of the applicator tip through a first central aperture and spreads out along the outer abrading surface when the applicator tip is placed against the patient's skin. Recesses in the outer abrading surface establish pathways for the abrading fluid to move along as the applicator tip is moved over the patient's skin. The fluid emitting from the central port is moved into one of four quadrants defined by recesses in the outer abrading surface, each quadrant serving as a fluid chamber that receives fluid from the central fluid supply port. Each sector shaped chamber includes within its border a C-shaped barrier with its opening facing a dividing sector wall. As the applicator tip forms a seal with the patient's skin, fluid is introduced through the supply port and through the entrance of the chamber, filling each chamber with working fluid as the working fluid flows to and around the C-shaped barrier. Disposed inside each C-shaped barrier is a respective vacuum port that removes the working fluid from each chamber. Fluid from each chamber is vacuumed through its vacuum port after having flowed around a maze-like path, navigating the C-shaped barrier and sector walls in a vortex flow pattern.
    • 4. 发明申请
    • SKIN TREATMENT TOOL APPLICATOR TIP
    • US20210204982A1
    • 2021-07-08
    • US16992823
    • 2020-08-13
    • Ed F. NicolasWilliam Cohen
    • Ed F. NicolasWilliam Cohen
    • A61B17/54
    • The present invention is an applicator tip for a hand piece assembly used in dermal abrasion procedures, the applicator tip having a cap shape with a plurality of apertures that form ports communicating with a fluid supply line in the hand piece assembly and a vacuum source to remove the abrading fluid. The fluid is introduced onto the outer abrading surface of the applicator tip through a first central aperture and spreads out along the outer abrading surface when the applicator tip is placed against the patient's skin. Recesses in the outer abrading surface establish pathways for the abrading fluid to move along as the applicator tip is moved over the patient's skin. The fluid emitting from the central port is moved into one of four quadrants defined by recesses in the outer abrading surface, each quadrant serving as a fluid chamber that receives fluid from the central fluid supply port. Each sector shaped chamber includes within its border a C-shaped barrier with its opening facing a dividing sector wall. As the applicator tip forms a seal with the patient's skin, fluid is introduced through the supply port and through the entrance of the chamber, filling each chamber with working fluid as the working fluid flows to and around the C-shaped barrier. Disposed inside each C-shaped barrier is a respective vacuum port that removes the working fluid from each chamber. Fluid from each chamber is vacuumed through its vacuum port after having flowed around a maze-like path, navigating the C-shaped barrier and sector walls in a vortex flow pattern.
    • 5. 发明授权
    • Devices, systems and methods for treating the skin using time-release substances
    • 使用时间释放物质治疗皮肤的装置,系统和方法
    • US08814836B2
    • 2014-08-26
    • US12832663
    • 2010-07-08
    • Roger IgnonEd F. Nicolas
    • Roger IgnonEd F. Nicolas
    • A61M35/00
    • A61M35/003A61B17/32A61B17/54A61B2017/00084A61B2017/00438A61B2017/00893A61B2017/306A61B2017/320004A61B2017/320064A61M37/00
    • According to some embodiments, a microdermabrasion device for treating skin comprises a handpiece assembly having a distal end and a proximal end. The handpiece assembly includes at least one delivery conduit and at least one waste conduit. The microdermabrasion device additionally comprises a tip configured to be positioned along the distal end of the handpiece assembly, wherein the tip is adapted to contact skin surface. In several embodiments, the tip comprises a lip, a first opening in fluid communication with the fluid delivery conduit and a second opening in fluid communication with the waste conduit. In one embodiment, the device includes one or more abrasive elements positioned along a distal end of the tip, wherein the abrasive elements are configured to selectively remove skin as the tip is moved relative to a skin surface. In some embodiments, the delivery conduit is configured to selectively deliver at least one time-release material to the skin surface being treated.
    • 根据一些实施例,用于治疗皮肤的微磨皮装置包括具有远端和近端的手持组件。 手柄组件包括至少一个输送管道和至少一个废物管道。 微磨皮装置还包括构造成沿着手持件组件的远端定位的尖端,其中尖端适于接触皮肤表面。 在几个实施例中,尖端包括唇缘,与流体输送管道流体连通的第一开口和与废物管道流体连通的第二开口。 在一个实施例中,该装置包括沿尖端的远端定位的一个或多个研磨元件,其中研磨元件构造成当尖端相对于皮肤表面移动时选择性地去除皮肤。 在一些实施例中,输送导管构造成选择性地将至少一种时间释放材料输送到被处理的皮肤表面。
    • 8. 发明申请
    • SKIN TREATMENT TOOL APPLICATOR TIP
    • US20230000523A1
    • 2023-01-05
    • US17685005
    • 2022-03-02
    • Ed F. NicolasWilliam Cohen
    • Ed F. NicolasWilliam Cohen
    • A61B17/54
    • The present invention is an applicator tip for a hand piece assembly used in dermal abrasion procedures, the applicator tip having a cap shape with a plurality of apertures that form ports communicating with a fluid supply line in the hand piece assembly and a vacuum source to remove the abrading fluid. The fluid is introduced onto the outer abrading surface of the applicator tip through a first central aperture and spreads out along the outer abrading surface when the applicator tip is placed against the patient's skin. Recesses in the outer abrading surface establish pathways for the abrading fluid to move along as the applicator tip is moved over the patient's skin. The fluid emitting from the central port is moved into one of four quadrants defined by recesses in the outer abrading surface, each quadrant serving as a fluid chamber that receives fluid from the central fluid supply port. Each sector shaped chamber includes within its border a C-shaped barrier with its opening facing a dividing sector wall. As the applicator tip forms a seal with the patient's skin, fluid is introduced through the supply port and through the entrance of the chamber, filling each chamber with working fluid as the working fluid flows to and around the C-shaped barrier. Disposed inside each C-shaped barrier is a respective vacuum port that removes the working fluid from each chamber. Fluid from each chamber is vacuumed through its vacuum port after having flowed around a maze-like path, navigating the C-shaped barrier and sector walls in a vortex flow pattern.