WO2016050132A1 - 一种多负压治疗设备的协同方法及负压治疗系统 - Google Patents

一种多负压治疗设备的协同方法及负压治疗系统 Download PDF

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WO2016050132A1
WO2016050132A1 PCT/CN2015/089039 CN2015089039W WO2016050132A1 WO 2016050132 A1 WO2016050132 A1 WO 2016050132A1 CN 2015089039 W CN2015089039 W CN 2015089039W WO 2016050132 A1 WO2016050132 A1 WO 2016050132A1
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negative pressure
control center
devices
pressure treatment
treatment
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PCT/CN2015/089039
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French (fr)
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潘力
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昆山韦睿医疗科技有限公司
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M27/00Drainage appliance for wounds or the like, i.e. wound drains, implanted drains

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  • the invention relates to the field of medical equipment, in particular to a synergistic method and a vacuum treatment system for a multi-negative pressure therapy device.
  • NPWT Negative Pressure Wound Therapy
  • Negative pressure attraction acts on the cell membrane, causing it to expand and distort.
  • the cells are considered to be damage, and the information of conduction damage is given to the nucleus.
  • the cells are caused to secrete pre-growth growth factors, including vascular proliferation factors, thereby stimulating tissue production. New blood vessels.
  • Negative pressure suction absorbs exudation from the wound surface, helps establish wound fluid balance; provides a moist environment; removes necrotic tissue; reduces the number of bacteria on the wound (because the bacteria are not easy to survive under negative pressure); reduces edema (ie extracellular fluid / Intercellular fluid); increase wound blood flow, increase capillary filling; increase growth factor.
  • Negative pressure medical equipment is mainly used to treat wound tissue.
  • a large part of the trauma or surgical wounds are more than one, and a negative pressure treatment device is required for each wound treatment.
  • a common mastectomy usually requires negative pressure treatment on both the front and side incisions, and the pressure varies.
  • a corresponding number of treatment devices are required, each device working alone, and the treatment data for the wounds treated simultaneously can only be stored and used separately.
  • it is necessary to extract and refer to the treatment data of the plurality of wounds from the plurality of negative pressure wound treatment devices which is inconvenient to operate, requires labor, and is liable to cause errors due to manual omission.
  • the technical problem to be solved by the embodiments of the present invention is to provide a treatment data capable of collecting a negative pressure treatment device for simultaneously treating a plurality of wounds, which can automatically collect the treatment data of a plurality of wounds and avoid errors caused by manual operations.
  • the present invention provides a cooperative method for a multi-negative pressure therapy device, including:
  • the control center establishes a communication connection with a plurality of negative pressure therapy devices
  • the control center collects treatment data of the plurality of negative pressure treatment devices.
  • control center is a data server, a negative pressure therapy device or a mobile communication terminal.
  • control center further controls the plurality of negative pressure treatment devices to provide a negative pressure for the plurality of wounds.
  • control center establishes a communication connection with the plurality of negative pressure treatment devices, including:
  • the control center sends communication request information to the plurality of negative pressure therapy devices
  • the control center After receiving the confirmation information returned by the plurality of vacuum therapy devices, the control center performs data communication with the plurality of negative pressure therapy devices by wire or wirelessly.
  • the communication request information carries verification information for security verification.
  • the confirmation information carries the number information of the negative pressure treatment device.
  • control center controls the plurality of vacuum therapy devices to provide a negative pressure for the plurality of wounds including:
  • the control center transmits control information to the corresponding negative pressure treatment device according to the number information to cause the negative pressure treatment device to provide a negative pressure to the wound.
  • the control center establishes a mapping relationship between the number information and the wound position after receiving the number information of the negative pressure treatment device.
  • the method further comprises:
  • the present invention provides a vacuum therapy system including a control center and a plurality of negative pressure therapy devices, the control center establishing a communication connection with the plurality of negative pressure therapy devices; the control center collecting the plurality of negative Treatment data for pressure therapy equipment.
  • the first negative pressure treatment device and the second negative pressure treatment device of the present invention can be detachably connected to a negative pressure treatment system for treating multiple wounds according to treatment needs, and the system can form a whole in structure and treatment control. Use and management.
  • the system can be used in the treatment of a single wound, flexible and convenient.
  • FIG. 1 shows a vacuum therapy system according to a first embodiment of the present invention.
  • Fig. 2 shows a vacuum therapy system according to a second embodiment of the present invention.
  • FIG. 3 shows a vacuum therapy system according to a third embodiment of the present invention.
  • FIG. 4 shows a vacuum therapy system according to a fourth embodiment of the present invention.
  • FIG. 5 is a flowchart of a cooperative method of a negative pressure multi-negative pressure therapy device according to an embodiment of the present invention.
  • FIG. 1 shows a negative pressure treatment system according to a first embodiment of the present invention, which includes a control center 100 and a plurality of negative pressure treatment devices.
  • This embodiment takes two negative pressure treatment devices as an example.
  • the two negative pressure treatment devices are the first negative pressure treatment device 200 and the second negative pressure treatment device 300
  • the control center 100 establishes a communication connection with the plurality of negative pressure treatment devices, in this example, the first negative pressure
  • the treatment device 200 and the second negative pressure treatment device 300 establish a communication connection; after establishing the communication connection, the control center 100 controls the collection of the treatment data of the plurality of negative pressure treatment devices, that is, the first negative pressure treatment device 200 and the second negative pressure are collected. Treatment data for treatment device 300.
  • the control center 100 of the system is a vacuum therapy device.
  • the negative pressure treatment system only needs to connect an additional negative pressure treatment device when treating two wounds, that is, the control center 100 can treat a wound and then connect the first negative pressure treatment.
  • Device 200 or second negative pressure therapy device 300 to treat another wound.
  • FIG. 3 shows a vacuum therapy system according to a third embodiment of the present invention, in which the control center 100 is a data server.
  • the control center 100 is a data server
  • a plurality of vacuum therapy devices can be connected by wire or wirelessly.
  • FIG. 4 shows a vacuum therapy system according to a fourth embodiment of the present invention, in which the control center 100 is a mobile communication terminal.
  • the control center 100 can be connected to the first negative pressure treatment device 200 and the second negative pressure treatment device 300 through a wireless network, specifically through infrared, Bluetooth, wifi, internet or telecommunication network. Wait for data communication.
  • FIG. 5 is a flowchart of a method for synthesizing a negative pressure multi-negative pressure therapy device according to an embodiment of the present invention.
  • the negative pressure treatment system shown in FIG. 1 is taken as an example in the embodiment. Specifically, the method includes:
  • Step S110 the control center sends communication request information to the plurality of negative pressure therapy devices.
  • the control center 100 transmits communication request information to the first negative pressure treatment device 200 and the second negative pressure treatment device 300 for requesting the first negative pressure treatment device 200 and the second.
  • the negative pressure therapy device 300 establishes data communication.
  • the communication request information carries verification information for safety verification, and the verification information may be pre-determined according to a verification mechanism of the negative pressure treatment device, for example, a device containing a negative pressure treatment device Key or code, etc.
  • Step S120 after receiving the confirmation information returned by the plurality of negative pressure treatment devices, the control center performs data communication with the plurality of negative pressure treatment devices by wire or wirelessly.
  • the control center 100 transmits the communication request information to the first negative pressure treatment device 200 and the second negative pressure treatment device 300
  • the first negative pressure treatment device 200 and the second negative pressure treatment device 300 validates the received communication request information, and returns the confirmation information to the control center 100 after the verification is successful.
  • the control center 100 establishes a connection with the negative pressure therapy device that sends the confirmation information for data communication.
  • the control center 100 can perform data communication with the first negative pressure treatment device 200 and the second negative pressure treatment device 300 by wire or wirelessly, preferably, for convenience of use, the control center 100 and the first negative pressure treatment device 200 and The second negative pressure therapy device 300 establishes data communication by means of wireless, and can realize data communication through infrared, Bluetooth, wifi, internet or telecommunication network.
  • the confirmation information returned by the first negative pressure treatment device 200 and the second negative pressure treatment device 300 carries respective number information.
  • Each negative pressure therapy device is provided with unique numbering information for distinguishing it from other negative pressure therapy devices.
  • Step S130 after receiving the number information of the negative pressure treatment device, the control center establishes a mapping relationship between the number information and the wound position.
  • the first negative pressure treatment device 200 and the second negative pressure treatment device 300 may set wound position information before the treatment, and the wound position information may be confirmed by the confirmation information set in step S120.
  • control center 100 After receiving the position information of each negative pressure treatment device, the control center 100 establishes a mapping of the position information of the negative pressure treatment device and the number information of the negative pressure treatment device, so as to collect corresponding treatment data.
  • step S140 the control center sends control information to the corresponding negative pressure treatment device according to the number information to cause the negative pressure treatment device to provide a negative pressure to the wound.
  • the control center 100 transmits the air information to the corresponding negative pressure treatment device according to the number information after receiving the operation command of the operator or the operation command preset by the trigger program. For example, it is desirable to reduce the negative pressure of the first negative pressure treatment device 200 connected to the control center 100, which may be directly operated by the operator on the first negative pressure treatment device 200 or may be operated on the control center 100, ie, at the control center 100.
  • the corresponding first negative pressure treatment device 200 is selected as the operation target, and after receiving the operation instruction to the first negative pressure treatment device 200, the control center 100 transmits control information to the first negative pressure treatment device 200, the control information is The number information of the first negative pressure therapy device 200 transmits and implements control of the first negative pressure therapy device 200.
  • the control center performs unified operation, in addition to convenient operation, the operator does not need to identify each negative pressure treatment device, and will not cause confusion and misoperation, and ensure the safety of treatment.
  • step S150 the control center collects the treatment data of the plurality of negative pressure treatment devices.
  • the first negative pressure treatment device 200 and the second negative pressure treatment device 200 transmit treatment data to the control center 100 upon receiving an acquisition trigger, for example, receiving an acquisition instruction sent by the control center 100. , or arrive at the preset time.
  • the treatment data includes one or more of the following parameters: a negative pressure provided by the negative pressure treatment device at each time period, a volume of the wound exudate sucked by the negative pressure treatment device, and a wound seepage by the negative pressure treatment device The volume versus time curve of the effluent and the color and/or transparency of the volume of the wound exudate aspirated by the negative pressure treatment device.
  • step S160 the control center integrates the treatment data of the collected plurality of negative pressure treatment devices.
  • the control center 100 can set the first negative pressure treatment device 200 and the second negative in order to facilitate the judgment of the medical staff on the treatment situation of the patient.
  • the treatment data of the pressure therapy device 300 is integrated into a form for viewing by a healthcare professional.
  • the first negative pressure treatment device and the second negative pressure treatment device of the present invention can be detachably connected to a negative pressure treatment system for treating multiple wounds according to treatment needs, and the system can form a whole in structure and treatment control. Use and management.
  • the system can be used in the treatment of a single wound, flexible and convenient.

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  • Health & Medical Sciences (AREA)
  • Otolaryngology (AREA)
  • Engineering & Computer Science (AREA)
  • Anesthesiology (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Hematology (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
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Abstract

一种多负压治疗设备的协同方法,包括:控制中心(100)与多个负压治疗设备(200,300)建立通讯连接;该控制中心(100)采集多个负压治疗设备(200,300)的治疗数据。该治疗设备(200,300)可以根据治疗需求可拆卸的连接成治疗多伤口的负压治疗系统。该系统可以在结构和治疗控制上形成一个整体。

Description

一种多负压治疗设备的协同方法及负压治疗系统
本申请要求于2014年9月30日提交中国专利局、申请号为201410516988.7、发明名称为“一种多负压治疗设备的协同方法及负压治疗系统”的中国专利申请的优先权,上述专利的全部内容通过引用结合在本申请中。
技术领域
本发明涉及医疗设备领域,尤其涉及一种多负压治疗设备的协同方法及负压治疗系统。
背景技术
NPWT(Negative Pressure Wound Therapy,负压伤口治疗)是近年来发展起来的先进的创伤治疗方式。区别于传统的伤口护理及负压引流技术,负压伤口治疗主要采用较低的负压(一般-55mmHg到175mmHg)。NPWT能促进创面愈合的是多重机制作用的结果,以下这些只是其中主要的一部分:
负压吸引作用于细胞膜,使之扩张、扭曲,细胞就认为是损伤,传导损伤的信息给细胞核,通过信号转换,引起细胞分泌前愈合生长因子,包括血管增殖因子,从而刺激组织生产更多的新生血管。
负压吸引从创面吸走渗出,帮助建立创面液体平衡;提供一个湿润的环境;清除坏死组织;减少创面的细菌数量(因为细菌在负压下不易存活);减轻水肿(即细胞外液/细胞间液);增加创面血流,通过增加毛细血管充盈;增加生长因子。(由于增加了流到创面的血流);促进白细胞和成纤维细胞进入创面,其中白细胞能抵抗感染,产生生长因子,而成纤维细胞能产生胶原,用来填平和修复伤口;增加静脉充盈,进而加快清除水肿液(由此“废物”随着水肿液被排除创面);增加从创面的淋巴引流,机制是通过改变淋巴管的压力和胶体渗透压,这些改变是另一个加快水肿和废物排除的原因。使组织靠近,从而使组织有机会靠物理的力量自然的粘在一起,这对于加快愈合非常有用。除了吸引作用还可产生压迫作用。产生的原因是当吸引力作用于敷 料,空气被吸走,敷料就塌陷下去(很容易看见),压迫均匀的作用于创面,这种压力对抗吸引引起的创面的过量渗出。这种机制对于大面积烧伤患者尤为重要,因为大量的创面渗出能使患者失掉过多的血浆蛋白,增加发生低血容量性休克的可能。
负压医疗设备主要用于治疗创伤组织,其中很大一部分外伤或者手术伤口不止一个,对每个伤口进行治疗时都需要对应的一个负压治疗设备。例如常见的乳腺切除手术,通常需要对正面和侧面的两个切口进行负压治疗,且压力有差异。现有技术中,对于同时治疗多个创伤时,需要对应数量的治疗设备,每个设备都单独工作,对于同时进行治疗的伤口,其治疗数据只能单独的存储和使用。在对患者的整体情况进行评估时,需要从多个负压伤口治疗设备中提取并参考多个伤口的治疗数据,操作不便,需要耗费人工,并且容易造成因人工疏漏而导致结果出错。
发明内容
本发明实施例所要解决的技术问题在于,提供一种能够收集同时治疗多个伤口的负压治疗设备的治疗数据,既可以自动采集多个伤口的治疗数据使用又可以避免人工操作造成的错误。
为了解决上述技术问题,本发明提供一种多负压治疗设备的协同方法,包括:
控制中心与多个负压治疗设备建立通讯连接;
所述控制中心采集所述多个负压治疗设备的治疗数据。
其中,所述控制中心为数据服务器、负压治疗设备或移动通信终端。
其中,还包括所述控制中心控制所述多个负压治疗设备为多个伤口提供负压。
其中,所述控制中心与多个负压治疗设备建立通讯连接包括:
所述控制中心向所述多个负压治疗设备发送通讯请求信息;
在接收到所述多个负压治疗设备返回的确认信息后,所述控制中心通过有线或无线的方式与所述多个负压治疗设备进行数据通讯。
其中,所述通讯请求信息中携带用于安全性验证的验证信息。
其中,所述确认信息携带负压治疗设备的编号信息。
其中,所述控制中心控制所述多个负压治疗设备为多个伤口提供负压包括:
所述控制中心根据所述编号信息向对应的负压治疗设备发送控制信息以使该负压治疗设备为伤口提供负压。
其中,所述控制中心在接收到所述负压治疗设备的编号信息后,建立该编号信息与伤口位置的映射关系。
其中,所述采集所述多个负压治疗设备的治疗数据后还包括:
整合采集的所述多个负压治疗设备的治疗数据。
相应地,本发明提供种负压治疗系统,包括控制中心及多个负压治疗设备,所述控制中心与所述多个负压治疗设备建立通讯连接;所述控制中心采集所述多个负压治疗设备的治疗数据。
实施本发明实施例,具有如下有益效果:
首先,本发明的第一负压治疗设备和第二负压治疗设备可以根据治疗需求可拆卸的连接成治疗多伤口的负压治疗系统,该系统可以在结构和治疗控制上形成一个整体,便于使用和管理。
其次,无需制造不同治疗接口数量的负压治疗设备,避免造成医疗资源的浪费。该系统可以在治疗单个伤口时拆分使用,灵活方便。
附图说明
为了更清楚地说明本发明实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本发明的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图获得其他的附图。
图1示出了本发明第一实施例提供的一种负压治疗系统。
图2示出了本发明第二实施例提供的一种负压治疗系统。
图3示出了本发明第三实施例提供的一种负压治疗系统。
图4示出了本发明第四实施例提供的一种负压治疗系统。
图5为本发明实施例提供的一种负压多负压治疗设备的协同方法的流程图。
具体实施方式
以下各实施例的说明是参考附图,用以式例本发明可以用以实施的特定实施例。本发明所提到的方向用语,例如「上」、「下」、「前」、「后」、「左」、「右」、「内」、「外」、「侧面」等,仅是参考附加图式的方向。因此,使用的方向用语是用以说明及理解本发明,而非用以限制本发明。
为使本发明的目的、技术方案和优点更加清楚,下面将结合附图对本发明作进一步地详细描述。
参见图1,图1示出了本发明第一实施例提供的一种负压治疗系统,该系统包括控制中心100及多个负压治疗设备,本实施例以两个负压治疗设备为例进行说明,该两个负压治疗设备为第一负压治疗设备200和第二负压治疗设备300,控制中心100与多个负压治疗设备建立通讯连接,本实例中即与第一负压治疗设备200和第二负压治疗设备300建立通讯连接;在建立通讯连接后,控制中心100控制采集多个负压治疗设备的治疗数据,即采集第一负压治疗设备200和第二负压治疗设备300的治疗数据。
参见图2,图2示出了本发明第二实施例提供的一种负压治疗系统,该系统的控制中心100为负压治疗设备。当控制中心100为治疗设备时,该负压治疗系统在治疗两个伤口时,只需要连接一个额外的负压治疗设备即可,即控制中心100可以治疗一个伤口,再连接第一负压治疗设备200或第二负压治疗设备300以治疗另一个伤口。
参见图3,图3示出了本发明第三实施例提供的一种负压治疗系统,该系统中控制中心100为数据服务器。当控制中心100为数据服务器时,可以通过有线或无线的方式连接多个负压治疗设备。为了便于使用,优选地方式是在控制中心100、第一负压治疗设备200和第二负压治疗设备300内置无线通信模块,可通过无线的方式进行数据通讯,具体可通过红外、蓝牙、wifi、互联网或者电信网络等实现数据通讯。
参见图4,图4示出了本发明第四实施例提供的一种负压治疗系统,该系统中控制中心100为移动通信终端。当控制中心100为移动终端时,优选地,控制中心100可以通过无线网络与第一负压治疗设备200和第二负压治疗设备300连接,具体可通过红外、蓝牙、wifi、互联网或者电信网络等实现数据通讯。
参见图5,图5为本发明实施例提供的一种负压多负压治疗设备的协同方法的流程图。为了便于说明,本实施例中以图1所示的负压治疗系统为例进行解释,具体的,该方法包括:
步骤S110,控制中心向多个负压治疗设备发送通讯请求信息。
参见图1所示的负压治疗系统,控制中心100向第一负压治疗设备200和第二负压治疗设备300发送通讯请求信息,用于请求与该第一负压治疗设备200和第二负压治疗设备300建立数据通讯。其中,为了连接以及确保患者治疗数据的安全性,通讯请求信息中携带用于安全性验证的验证信息,该验证信息可以预先根据负压治疗设备的验证机制,例如含有负压治疗设备能够识别的密匙或编码等。
步骤S120,在接收到多个负压治疗设备返回的确认信息后,控制中心通过有线或无线的方式与多个负压治疗设备进行数据通讯。
参见图1所示的负压治疗系统,控制中心100向第一负压治疗设备200和第二负压治疗设备300发送通讯请求信息后,第一负压治疗设备200和第二负压治疗设备300对收到的通讯请求信息进行验证,验证成功后向控制中心100返回确认信息。在接收到确认信息后,控制中心100与发送确认信息的负压治疗设备建立连接进行数据通讯。控制中心100可以通过有线或无线的方式与第一负压治疗设备200和第二负压治疗设备300进行数据通讯,优选地,为了便于使用,控制中心100与第一负压治疗设备200和第二负压治疗设备300通过无线的方式建立数据通讯,具体可通过红外、蓝牙、wifi、互联网或者电信网络等实现数据通讯。
其中,第一负压治疗设备200和第二负压治疗设备300返回的确认信息中携带有各自的编号信息。每个负压治疗设备均设置有唯一的编号信息,用于与其他负压治疗设备进行区分。
步骤S130,控制中心在接收到负压治疗设备的编号信息后,建立该编号信息与伤口位置的映射关系。
参见图1所示的负压治疗系统,第一负压治疗设备200和第二负压治疗设备300在治疗前,可设置伤口位置信息,该伤口位置信息可以通过设置在步骤S120中的确认信息中,并同时发送给控制中心100,或通过单独的位 置信息发送给控制中心100。
控制中心100在接收到各负压治疗设备的位置信息后,建立该负压治疗设备的位置信息与该负压治疗设备的编号信息的映射,以便于收集对应的治疗数据。
步骤S140,控制中心根据编号信息向对应的负压治疗设备发送控制信息以使该负压治疗设备为伤口提供负压。
参见图1所示的负压治疗系统,控制中心100在接收到操作人员的操作指令或触发程序预设的操作指令后,根据编号信息向对应的负压治疗设备发送空中信息。例如,需要降低与控制中心100连接的第一负压治疗设备200的负压,操作人员可在第一负压治疗设备200上直接操作,也可以在控制中心100上操作,即在控制中心100上选择对应的第一负压治疗设备200作为操作目标,在接收到对第一负压治疗设备200的操作指令后,控制中心100向第一负压治疗设备200发送控制信息,该控制信息根据第一负压治疗设备200的编号信息发送并实现对该第一负压治疗设备200的控制。当负压治疗系统中存在多个负压治疗设备时,对每个负压治疗设备进行操作时,除了操作不变之外,还可能由于认为的原因造成混淆,给治疗带来风险。通过控制中心进行统一操作时,除了操作便捷之外,操作人员无需去识别各负压治疗设备,不会造成混淆和误操作,保证治疗安全。
步骤S150,控制中心采集多个负压治疗设备的治疗数据。
参见图1所示的负压治疗系统,第一负压治疗设备200和第二负压治疗设备200在接到采集触发时向控制中心100发送治疗数据,例如接收到控制中心100发送的采集指令,或到达按照预设的时间。其中,治疗数据包括以下参数中的一种或多种:各个时段的负压治疗设备提供的负压、负压治疗设备抽吸的伤口渗出液的体积、负压治疗设备抽吸的伤口渗出液的体积与时间的变化曲线以及负压治疗设备抽吸的伤口渗出液的体积的颜色和/或透明度等。
步骤S160,控制中心整合采集的多个负压治疗设备的治疗数据。
参见图1所示的负压治疗系统,在治疗完成后,为了便于医护人员对患者的治疗情况的判断,控制中心100可以将第一负压治疗设备200和第二负 压治疗设备300的治疗数据整合成一份表单,供医护人员查看。
上述步骤S110-步骤S160中,有些步骤的执行顺序可以根据实际使用的情况进行调整。
实施本发明实施例,具有如下有益效果:
首先,本发明的第一负压治疗设备和第二负压治疗设备可以根据治疗需求可拆卸的连接成治疗多伤口的负压治疗系统,该系统可以在结构和治疗控制上形成一个整体,便于使用和管理。
其次,无需制造不同治疗接口数量的负压治疗设备,避免造成医疗资源的浪费。该系统可以在治疗单个伤口时拆分使用,灵活方便。
以上所揭露的仅为本发明一种较佳实施例而已,当然不能以此来限定本发明之权利范围,因此依本发明权利要求所作的等同变化,仍属本发明所涵盖的范围。

Claims (10)

  1. 一种多负压治疗设备的协同方法,其中,包括:
    控制中心与多个负压治疗设备建立通讯连接;
    所述控制中心采集所述多个负压治疗设备的治疗数据。
  2. 如权利要求1所述的多负压治疗设备的协同方法,其中,所述控制中心为数据服务器、负压治疗设备或移动通信终端。
  3. 如权利要求1所述的多负压治疗设备的协同方法,其中,还包括所述控制中心控制所述多个负压治疗设备为多个伤口提供负压。
  4. 如权利要求3所述的多负压治疗设备的协同方法,其中,所述控制中心与多个负压治疗设备建立通讯连接包括:
    所述控制中心向所述多个负压治疗设备发送通讯请求信息;
    在接收到所述多个负压治疗设备返回的确认信息后,所述控制中心通过有线或无线的方式与所述多个负压治疗设备进行数据通讯。
  5. 如权利要求4所述的多负压治疗设备的协同方法,其中,所述通讯请求信息中携带用于安全性验证的验证信息。
  6. 如权利要求4所述的多负压治疗设备的协同方法,其中,所述确认信息携带负压治疗设备的编号信息。
  7. 如权利要求6所述的多负压治疗设备的协同方法,其中,所述控制中心控制所述多个负压治疗设备为多个伤口提供负压包括:
    所述控制中心根据所述编号信息向对应的负压治疗设备发送控制信息以使该负压治疗设备为伤口提供负压。
  8. 如权利要求7所述的多负压治疗设备的协同方法,其中,所述控制中心在接收到所述负压治疗设备的编号信息后,建立该编号信息与伤口位置的映射关系。
  9. 如权利要求1所述的多负压治疗设备的协同方法,其中,所述采集所述多个负压治疗设备的治疗数据后还包括:
    整合采集的所述多个负压治疗设备的治疗数据。
  10. 一种负压治疗系统,其中,包括控制中心及多个负压治疗设备,所述控制中心与所述多个负压治疗设备建立通讯连接;所述控制中心采集所述多个负压治疗设备的治疗数据。
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