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    • 3. 发明授权
    • Integrated cardiotomy and venous blood reservoir
    • 综合心切开和静脉血库
    • US5849186A
    • 1998-12-15
    • US749432
    • 1996-11-15
    • Joseph J. RaneriKenneth E. BucklerCharles L. StanleyAlfred P. Intoccia
    • Joseph J. RaneriKenneth E. BucklerCharles L. StanleyAlfred P. Intoccia
    • A61M1/14A61M1/34A61M1/36B01D19/02B01D36/00
    • B01D19/02A61M1/3627A61M1/3632
    • A blood reservoir for the treatment and collection of blood from two different sources. The blood reservoir has a filter/defoamer core assembly comprised of a support structure disposed within an outer defoamer. A separator with an opening is located in the support structure, dividing the support structure into a first and second portions. A depth filter is located within the first portion of the support structure. The first portion of the support structure with the depth filter forms a cardiotomy blood chamber and the second portion with no depth filter forms a venous blood chamber. This filter/defoamer core assembly is placed within a clear outer shell which forms the reservoir. This outer shell has a cover with a venous blood inlet and plurality of cardiotomy inlets. The cardiotomy inlets are in fluid communication with the cardiotomy blood chamber. The venous blood inlet is in communication with a center tube which extends through the first portion of the support cage, through the opening in the separator and opens into the venous blood chamber. The filter/defoamer core assembly may be assembled and positioned within the reservoir shell without the use of adhesives or bonding agents. This blood reservoir is typically used in a system including components to oxygenate and alter the temperature of the blood.
    • 一种用于治疗和收集来自两个不同来源的血液的血液储存器。 血液储存器具有由布置在外部消泡剂内的支撑结构构成的过滤器/消泡剂芯组件。 具有开口的分离器位于支撑结构中,将支撑结构分成第一和第二部分。 深度过滤器位于支撑结构的第一部分内。 具有深度过滤器的支撑结构的第一部分形成心切开血液腔,而没有深度过滤器的第二部分形成静脉血液腔。 该过滤器/消泡剂芯组件放置在形成储存器的透明外壳内。 该外壳具有带有静脉血液入口和多个心切开口的盖。 心脏切开术入口与心切开血液腔流体连通。 静脉血液入口与中心管连通,中心管延伸穿过支撑笼的第一部分,穿过分离器中的开口并通向静脉血液腔。 过滤器/消泡剂芯组件可以在不使用粘合剂或粘合剂的情况下组装并定位在储存器壳体内。 该血液储存器通常用于包括含氧化和改变血液温度的组分的系统中。
    • 4. 发明授权
    • Inverted dome arterial filter
    • 倒圆顶动脉过滤器
    • US5312479A
    • 1994-05-17
    • US52787
    • 1993-04-23
    • Martin J. WeinsteinAlfred P. Intoccia
    • Martin J. WeinsteinAlfred P. Intoccia
    • A61M1/36B01D19/00
    • A61M1/3627B01D19/0031A61M2206/16
    • An arterial filter includes a filter housing provided with a uniquely shaped housing cover. The housing cover is in the shape of a toroid which forms a coil-like tunnel which is enlarged midway about the circumference of the housing cover. The highest point of the toroidal channel is at the periphery of the housing cover, approximately 180.degree. from the inlet valve. A gas vent is located at this highest point on the top of the toroid-shaped housing cover. At the center of the housing cover is an indentation which is provided to both retain a cylindrical filter element inside the filter housing, as well as allow visibility directly through the central axis of the arterial filter to verify proper operation of the filtration process. As inlet blood circulates through the toroidal tube forming the filter housing cover, gaseous matter is allowed to buoyantly escape out of the gas vent located at the top of the raised section of the toroidal channel. The remaining debubbled fluid seeps down into a reservoir formed between the cylindrical filter housing and the outer perimeter of the filter element contained therein. The filter element draws the fluid toward the center of the filter housing, as it simultaneously filters out undesired particulate and gaseous matter. The filtered product then passes into the hollow central area of the filter element and exits through an outlet vent located at the bottom of the filter housing.
    • 动脉过滤器包括设置有独特形状的壳体盖的过滤器壳体。 外壳的形状为环形线圈,形成线圈状的隧道,该隧道在壳体盖的周围的中间扩大。 环形通道的最高点位于外壳盖的周边,与入口阀大约180°。 气体通风口位于环形壳体盖顶部的最高点。 在壳体盖的中心处设有压痕,该凹口被设置成在过滤器壳体内部保持圆柱形过滤器元件,并且允许直接通过动脉过滤器的中心轴线的可见性来验证过滤过程的正确操作。 当入口血液循环通过形成过滤器壳体盖的环形管时,允许气态物质从位于环形通道的升高部分顶部的气体通道浮出。 剩余的脱泡流体渗透到形成在圆柱形过滤器壳体和其中容纳的过滤元件的外周边之间的储存器中。 过滤元件将流体朝向过滤器壳体的中心抽吸,因为它同时过滤不期望的颗粒和气体物质。 然后,经过滤的产品进入过滤元件的中空中心区域,并通过位于过滤器壳体底部的出口通风口排出。
    • 6. 发明授权
    • Inverted dome arterial filter
    • 倒圆顶动脉过滤器
    • US5484474A
    • 1996-01-16
    • US208614
    • 1994-03-08
    • Martin J. WeinsteinAlfred P. Intoccia
    • Martin J. WeinsteinAlfred P. Intoccia
    • A61M1/36B01D19/00
    • A61M1/3627B01D19/0031A61M2206/16
    • An arterial filter includes a filter housing provided with a uniquely shaped housing cover. The housing cover is in the shape of a toroid which forms a coil-like tunnel which is enlarged midway about the circumference of the housing cover. The highest point of the toroidal channel is at the periphery of the housing cover, approximately 180.degree. from the inlet valve. A gas vent is located at this highest point on the top of the toroid-shaped housing cover. At the center of the housing cover is an indentation which is provided to both retain a cylindrical filter element inside the filter housing, as well as allow visibility directly through the central axis of the arterial filter to verify proper operation of the filtration process. As inlet blood circulates through the toroidal tube forming the filter housing cover, gaseous matter is allowed to buoyantly escape out of the gas vent located at the top of the raised section of the toroidal channel. The remaining debubbled fluid seeps down into a reservoir formed between the cylindrical filter housing and the outer perimeter of the filter element contained therein. The filter element draws the fluid toward the center of the filter housing, as it simultaneously filters out undesired particulate and gaseous matter. The filtered product then passes into the hollow central area of the filter element and exits through an outlet vent located at the bottom of the filter housing.
    • 动脉过滤器包括设置有独特形状的壳体盖的过滤器壳体。 外壳的形状为环形线圈,形成线圈状的隧道,该隧道在壳体盖的周围的中间扩大。 环形通道的最高点位于外壳盖的周边,与入口阀大约180°。 气体通风口位于环形壳体盖顶部的最高点。 在壳体盖的中心处设有压痕,该凹口被设置成在过滤器壳体内部保持圆柱形过滤器元件,并且允许直接通过动脉过滤器的中心轴线的可见性来验证过滤过程的正确操作。 当入口血液循环通过形成过滤器壳体盖的环形管时,允许气态物质从位于环形通道的升高部分顶部的气体通道浮出。 剩余的脱泡流体渗透到形成在圆柱形过滤器壳体和其中容纳的过滤元件的外周边之间的储存器中。 过滤元件将流体朝向过滤器壳体的中心抽吸,因为它同时过滤不期望的颗粒和气体物质。 然后,经过滤的产品进入过滤元件的中空中心区域,并通过位于过滤器壳体底部的出口通风口排出。