WO2020073225A1 - 一种远程检测及医疗综合系统 - Google Patents

一种远程检测及医疗综合系统 Download PDF

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Publication number
WO2020073225A1
WO2020073225A1 PCT/CN2018/109617 CN2018109617W WO2020073225A1 WO 2020073225 A1 WO2020073225 A1 WO 2020073225A1 CN 2018109617 W CN2018109617 W CN 2018109617W WO 2020073225 A1 WO2020073225 A1 WO 2020073225A1
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remote
detection
communication network
medical
diagnosis
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PCT/CN2018/109617
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English (en)
French (fr)
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林江峰
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广东医动科技有限公司
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Priority to CN201880100122.4A priority Critical patent/CN113557575A/zh
Priority to PCT/CN2018/109617 priority patent/WO2020073225A1/zh
Publication of WO2020073225A1 publication Critical patent/WO2020073225A1/zh

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    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/60ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices
    • G16H40/67ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation

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  • the invention relates to the field of medical detection, and in particular to a remote detection and medical integrated system.
  • domestic medical services have proposed universal primary care for this problem, that is, providing services such as detection, file management, infectious disease control, and regular tracking at the grass-roots level, so that diseases can be detected early and treated at the grass-roots level.
  • the doctors at the primary medical center generally have low professional quality, which prevents the primary patients from receiving the most effective and timely treatment services;
  • the purpose of the present invention is to provide a remote detection and medical integrated system, which aims to solve the technical problems of high equipment investment, difficult detection, low professional quality of grassroots doctors and inconvenient diagnosis and treatment in grassroots medical centers.
  • the invention provides a remote detection and medical integrated system, which includes:
  • a medical server connected to the communication network the medical server is used to save diagnosis and treatment data
  • a plurality of remote detection devices connected to the communication network, the remote detection devices communicating with the communication network are used to detect the corresponding sign data of the patient to form detection data;
  • a carrying terminal the carrying terminal is used to load the remote testing equipment and transport the remote testing equipment to a designated testing location;
  • the basic doctor end makes a diagnosis based on the detection data, the diagnosis and the detection data together form the diagnosis and treatment data.
  • the remote detection terminal includes at least one of a general department detection device, an electrocardiograph, a B-mode ultrasound machine, and a POCT (point-of-care testing) detection box.
  • a general department detection device an electrocardiograph
  • a B-mode ultrasound machine a B-mode ultrasound machine
  • POCT point-of-care testing
  • the remote detection terminal is an intelligent detection box, and a plurality of medical detection probes and sensors are loaded in the intelligent detection box.
  • system further includes: a remote hospital that communicates with the communication network, and the remote hospital communicates with the primary doctor and the remote detection device through the communication network; the remote detection device is located at The primary doctor communicates with the remote hospital under control, so as to obtain remote diagnosis assistance from the remote hospital.
  • the system further includes an application terminal, the application terminal is linked to the communication network, and the customer enters the detection and diagnosis needs of the application terminal and generates an order; the order is sent to the medical server for storage, and It is sent to the corresponding remote testing equipment and the carrying terminal through the communication network; the carrying terminal transports the corresponding remote testing equipment to the testing address specified in the order according to the order.
  • the carrier terminal is at least one of an unmanned vehicle and an unmanned aerial vehicle.
  • the designated location of the remote detection device further includes: at least one of a community, a rural clinic, and a nursing home.
  • the remote detection and medical integrated system disclosed in the present invention realizes the appointment of customized test item equipment for different patients or primary medical institutions through the remote detection equipment that can be reserved. Patients and primary medical institutions no longer need to purchase detection equipment, saving At the same time, the investment of equipment ensures that the diversified testing needs are met; in addition, the remote testing equipment can reach the designated place in time according to the content of the appointment through the transportation of the terminal, which overcomes the remoteness of the primary medical institutions and the uneven distribution leads to inconvenience for patients Problems; through the remote detection equipment and the primary doctor end that can be connected to the remote hospital to achieve the purpose of remote medical and remote detection, to prevent the errors and delays of detection and diagnosis caused by the lack of professional quality of the sitting doctors in the primary medical institution.
  • FIG. 1 is a schematic diagram of modules of the remote detection and medical integrated system of the present invention.
  • FIG. 2 is a schematic diagram of another embodiment of the remote detection and medical integrated system of the present invention.
  • the present invention provides a remote detection and medical integrated system.
  • the system utilizes the current wireless communication and wired Internet to form a communication network 100, and is connected to the communication network 100 by mobile remote detection
  • the equipment 300 realizes medical testing and reduces the equipment investment of the primary medical institutions; in addition, the remote testing equipment 300 can be transported to the corresponding primary medical institutions and other basic centers according to the demand through the carrying terminal 400 to complete the detection without the need for patients to travel to and from the basic level Medical institutions, overcoming the problems of remote and inconvenient diagnosis and treatment in primary medical institutions; furthermore, some more difficult diseases can be connected to a remote hospital 600 with better medical technology through the communication network 100 to obtain remote assistance and help to avoid delays in treatment Or misdiagnosis occurs.
  • the remote detection and medical integrated system includes:
  • the remote detection device 300 is a portable device that has a communication module 31.
  • the remote detection device 300 is a general practice detection device 301, which is used to detect the condition of the patient's head and ENT, and form detection data.
  • the formed detection data is transmitted to the outside through the communication module 31.
  • the remote detection device 300 is a portable device that can be moved to a remote area and a place that is inconvenient for patient detection and diagnosis, thereby overcoming technical problems in the prior art that are not related to detection.
  • the remote detection device 300 has a variety of types. According to different needs of patients, different remote detection devices 300 can be selectively used to complete the detection of patient sign data.
  • the remote detection device 300 can also be: an electrocardiograph 302, B-machine 303, POCT (point-of-care testing) detection box 304.
  • patients or primary medical institutions can use specific portable devices to make detections according to their own needs, and obtain detection data.
  • the remote detection device 300 can also be an intelligent detection box 305, which is loaded with multiple medical detection probes and sensors, and the primary medical institution can obtain intelligence according to the detection needs of the patient
  • the detection probes and sensors in the detection box 305 realize a diverse physical examination experience. For example: detection probe and sensor blood rapid detection analyzer, and aerobic concentration detection sensor.
  • the blood rapid test analyzer is placed in the smart test box 305, and the portable smart test box 305 is carried to the patient or the primary medical institution that needs to be tested to complete the blood test directly.
  • the remote detection device 300 is provided by a service provider, and the service provider can provide a remote detection device 300 with corresponding functions to complete the detection according to the needs of patients or primary medical institutions.
  • the communication network 100 includes the Internet and a wireless communication network 100 that communicates with the Internet.
  • the wireless communication network 100 includes a 3G / 4G / 5G communication network 100.
  • a terminal accesses the communication network 100, it communicates according to the communication network 100 supported by the terminal The protocol selects the corresponding access point.
  • the communication network 100 can ensure the communication between multiple devices and terminals connected to it, and has a wide range of adaptation. Especially when using the 5G communication network 100, it can meet the requirements of medical data. Upload and download.
  • the communication module 31 in the remote detection device 300 communicates with the communication network 100, and the communication module 31 sends the detection data of the remote detection device 300 to the communication network 100, so that the communication network 100 is remote Distance covered.
  • the application terminal 700 refers to a smart device having a functional module, or a smart device installed with a corresponding software program.
  • the corresponding detection service, detection location, and detection time can be selected by human operation; by order information completed by the artificial operation of the application terminal 700, the remote detection device 300 on the communication network 100 is connected, and according to The detection result of the remote detection device 300 outputs the detection data to the application terminal 700, which realizes the purpose of customized detection and fast data feedback tracking processing.
  • the carrying terminal 400 has a shipping capability, and can load the remote testing device 300 corresponding to the testing service content within the corresponding testing time according to the testing service content, testing location and testing time in the order generated by the application terminal 700 Transport to the corresponding service location to complete the inspection.
  • a patient box primary medical institution it is only necessary to generate an order on the application terminal 700, and a corresponding remote testing device 300 can be obtained at a designated time and place to complete the corresponding testing.
  • Patients and primary medical institutions do not need to purchase a variety of testing equipment, that is, they can obtain a variety of testing services.
  • the carrier terminal 400 is an unmanned vehicle such as a drone 42 or an unmanned vehicle 41, which can solve the cost.
  • the carrier terminal 400 is also provided by a service provider.
  • the primary doctor terminal 500 is a software control terminal or a corresponding intelligent terminal operated by a primary doctor of universal medical care. After the primary doctor terminal 500 is connected to the communication network 100, it receives the detection data of the remote detection device 300 and makes a diagnosis based on the detection data. Among them, the diagnosis result and the detection data are sent to the communication network 100 as the diagnosis and treatment data to realize the storage and sharing of cloud data.
  • the application scenario is: when a patient or primary medical institution has difficulty in detecting through the remote detection device 300, under the control of the primary doctor end 500, Establish a communication link between the remote detection equipment 300-the communication network 100-the remote hospital 600 through the communication network 100; a specialist or an inspection technician located in the remote hospital 600 guides the inspection process and the inspection results, and the inspection conclusion .
  • the system can establish a communication between the remote detection device 300-the communication network 100-the remote hospital 600 through the communication network 100 when it is difficult to make a diagnosis and treatment plan at the primary doctor end 500 link. Guided by the diagnosis and treatment plan of the specialist doctor located in the remote hospital 600, the conclusion is reached to achieve the purpose of telemedicine.
  • This system realizes the function of remote diagnosis and treatment, and prevents the occurrence of the situation that the most effective and timely treatment services cannot be obtained for the primary patients due to the low professional quality of the sitting doctors in the primary medical institutions.
  • the medical server 200 is connected to the communication network 100, and the medical server 200 is used to record and save the detection data on the remote detection device 300 and the diagnosis and treatment data formed by diagnosis.
  • the application terminal 700 connected to the communication network 100 also communicates with the medical connection server 200, obtains corresponding diagnosis and treatment data from the medical server 200, and promptly feeds back to the patient.
  • the primary doctor terminal 500 can also obtain all diagnosis data made by itself from the medical server 200 through the communication network 100 to realize electronic and cloud-based cases, which is convenient for management.
  • the patient generates an order for the test appointment service through the application terminal 700 or the primary doctor through the primary doctor terminal 500.
  • the order contains the test items and test time And the corresponding detection address;
  • the application terminal 700 or the primary doctor terminal 500 sends the order to the communication network 100, and the communication network 100 sends the detection items, detection time, and detection address in the order to the remote detection device 300 and the carrying terminal 400 with corresponding functions, respectively
  • the carrying terminal 400 carries the corresponding remote detection device 300 to the corresponding location according to the corresponding time;
  • the primary doctor or patient completes the project inspection according to the detection guide on the remote detection device 300, and forms the test data; when the patient or primary doctor has difficulties in the operation content or the detection conclusion during the detection process, the primary doctor terminal 500 controls
  • the remote testing equipment 300 communicates with the professional testing technicians of the remote hospital 600 through the communication network 100 to obtain testing guidance, obtain corresponding testing conclusions, and form testing data;
  • the detection data is sent to the communication network 100 through the communication module 31 on the remote detection device 300, and the primary doctor terminal 500 obtains the detection data from the communication network 100, makes a corresponding detection conclusion, and gives a diagnosis and treatment plan to the patient;
  • the diagnosis and treatment plan and the detection data are sent to the medical server 200 for storage through the communication network 100; wherein, when the primary doctor of the primary doctor terminal 500 has difficulty in making the diagnosis and treatment, the primary doctor terminal 500 communicates with the remote hospital 600 through the communication network 100 to obtain With the assistance of specialists in the remote hospital 600, the diagnosis and treatment plan can be obtained smoothly.
  • the detection data and the diagnosis and treatment plan are stored in the medical server 200 through the communication network 100 as the diagnosis and treatment data, and the application terminal 700 and the primary doctor terminal 500 obtain the data from the communication network 100 to ensure timely feedback to the customer.
  • the customized appointment of the testing equipment and the designated delivery of the testing time and place are realized through the carrying terminal 400 and the customized order, ensuring the smoothness of the entire testing process and overcoming the remote areas in the prior art Inconvenient detection, less detection equipment, and incomplete detection of technical problems.
  • the telemedicine method that can be connected to the remote hospital 600, it is avoided that the sitting doctors in the primary medical institutions are generally of low professional quality, so that the primary patients cannot receive the most effective and timely treatment services.
  • the remote detection device 300 has diversification. As a service provider, there is more incentive to continuously update the detection sensors and terminals of the line, so as to provide better updated detection solutions to the grassroots users and avoid grassroots medical treatment. Institutions invest too much in detecting equipment.

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Abstract

一种远程检测及医疗综合系统,其包括通信网络(100);连接至通信网络(100)的用于保存诊疗数据的医疗服务器(200);连接至通信网络(100)的多个远程检测设备(300),用于对患者的相应体征数据进行检测,形成检测数据;运载终端(400),运载终端(400)用于装载远程检测设备(300),并将远程检测设备(300)运送至指定的检测地点;获取远程检测设备(300)检测数据的基层医生端(500),基层医生端(500)根据检测数据做出诊断,诊断与检测数据共同形成诊疗数据。通过可以预约的远程检测设备(300)实现了定制化的检测项目设备的预约,基层医疗机构不再需要购买检测设备,节约设备的投入同时保证多样化的检测需求得到满足;另外,通过运载终端(400)克服了基层医疗机构位置偏僻,分布不均衡导致患者就诊不方便的问题。

Description

一种远程检测及医疗综合系统 技术领域
本发明涉及医疗检测领域,具体地说,涉及一种远程检测及医疗综合系统。
背景技术
目前世界上各个国家的医疗服务大多采用的是,患者前往指定医疗机构针对自身病情做出检验,诊治的诊疗方案;但是针对很多疾病,例如慢性病,癌症以及其他病程时间较长的疾病,常常只有在患者发病后,才能引起注意。当这类疾病发病后再前往医疗机构治疗,常因错过最佳治疗时间,往往治疗效果不佳。
目前国内的医疗服务针对这个问题,提出了全民基层医疗,即在基层做出检测、档案管理、传染病控制、定期跟踪等服务,从而能够使疾病及早发现,及早在基层得到治疗。
针对国内的全民基层医疗服务也存在以下问题:
1、由于人口众多,分布发展不均衡,基层医疗的检测设备、检测服务投入过高,跟进缓慢,设备较少,存在基层检测难的问题;
2、基层医疗中心的坐诊医生普遍专业素质不高,使得基层患者无法得到最有效和及时的救治服务;
3、国内人口分布不均衡,部分地区人口密度小,基层医疗中心往往较为偏僻,距离较远,存在患者前往基层诊治不方便的问题。
发明内容
本发明的目的在于提供一种远程检测及医疗综合系统,旨在解决的全民基层医疗机构的设备投入高,检测难、基层医生专业素质不高以及基层诊疗中心较偏僻诊治不方便的技术问题。
本发明提供一种远程检测及医疗综合系统,其包括:
通信网络;
连接至通信网络的医疗服务器,所述医疗服务器用于保存诊疗数据;
连接至通信网络的多个远程检测设备,所述远程检测设备与通信网络通信,用于对患者的相应体征数据进行检测,形成检测数据;
运载终端,所述运载终端用于装载所述远程检测设备,并将所述远程检测设备运送至指定的检测地点;
通过通信网络连接至所述远程检测设备,并获取远程检测设备检测数据的基层医生端,所述基层医生端根据所述检测数据做出诊断,所述诊断与所述检测数据共同形成所述诊疗数据。
进一步地,所述远程检测终端包括全科检测设备、心电检测仪、B超机、POCT(point-of-care testing)检测盒中的至少一种。
进一步地,所述远程检测终端为一种智能检测箱,所述智能检测箱中装载有多个医疗检测探头及传感器。
进一步地,所述该系统还包括:与所述通信网络通信的远程医院,所述远程医院通过所述通信网络分别与所述基层医生端及所述远程检测设备通信;所述远程检测设备在所述基层医生端的控制下与所述远程医院通信,从而获得远程医院的远程诊断协助。
进一步地,所述该系统还包括应用终端,所述应用终端链接至所述通信网络,客户通过应用终端录入的检测以及诊疗需求,并生成订单;所述订单发送至所述医疗服务器保存,并通过通信网络发送至相应的远程检测设备以及所述运载终端上;所述运载终端根据订单运送相应的远程检测设备至订单指定的检测地址。
进一步地,所述运载终端为无人车、无人机中的至少一种。
进一步地,所述远程检测设备的指定地点还包括:社区、农村卫生室、养老院中的至少一个。
本发明公开的远程检测及医疗综合系统,通过可以预约的远程检测设备针对不同的患者或者基层医疗机构实现了定制化的检测项目设备的预约,患者和基层医疗机构不再需要购买检测设备,节约设备的投入同时保证多样化的检测需求得到满足;另外,该远程检测设备通过运载终端的运载能够根据预约内容及时到达指定的地点,克服了基层医疗机构位置偏僻,分布不均衡导致患者就 诊不方便的问题;通过可以连接至远程医院的远程检测设备以及基层医生端实现远程医疗和远程检测的目的,防止基层医疗机构中坐诊医生专业素质不到导致的检测和诊疗的错误和延误。
附图说明
图1是本发明远程检测及医疗综合系统的模块示意图;
图2是本发明远程检测及医疗综合系统的另一实施方式模块示意图。
具体实施方式
下面结合具体实施例和说明书附图对本发明做进一步阐述和说明:
请参考图1以及图2,本发明提供一种远程检测及医疗综合系统,该系统借助目前的无线通信以及有线互联网组成的通信网络100,并通过连接至该通信网络100中可移动的远程检测设备300实现医疗检测,减少基层医疗机构的设备投入;另外,可以通过运载终端400将远程检测设备300根据需求运送至相应的基层医疗机构以及其他基层中心,完成检测,并不需要患者往返于基层医疗机构,克服了基层医疗机构较偏僻,诊治不方便的问题;再有可以针对部分较为疑难的病症通过通信网络100连接至医疗技术更好的远程医院600获得远程协助和帮助,以免出现耽误治疗或者误诊的情况出现。具体的,该远程检测及医疗综合系统包括:
1、远程检测设备300
远程检测设备300是一种便携式设备,该远程检测设备300具有通信模块31。其中该远程检测设备300为全科检测设备301,该全科检测设备301用于检测患者的头部以及耳鼻喉的状况,形成检测数据。形成的检测数据通过通信模块31对外部发送。
在本发明中,该远程检测设备300为便携式设备,能够移动至偏远地区,以及不便于患者检测诊治的地方,从而克服了现有技术中的检测不方面的技术问题。同时,该远程检测设备300具有多种,可以根据患者不同的需求,有选择的采用不同的远程检测设备300完成患者体征数据的检测,例如:该远程检测设备300还可以是:心电检测仪302、B超机303、POCT(point-of-care  testing)检测盒304。
在本发明中,患者或者基层医疗机构可以根据自身的需求,采用特定的便携式设备做出检测,并得到检测数据。特别的是,对于基层医疗机构不需要购买过多的检测设备,可以根据需求得到多个不同的远程检测设备300中的某一个做出相应的检测,减小了基层医疗机构的设备投入,克服现有技术中的问题。
在本发明的其他实施方式中,该远程检测设备300还可以是智能检测箱305,所述智能检测箱305中装载有多个医疗检测探头及传感器,基层医疗机构可以根据患者的检测需求得到智能检测箱305中的检测探头以及传感器,实现多样化的体检体验。例如:检测探头和传感器血液快速检测分析仪,以及需氧浓度检测传感器等。当患者需要对血液检测时,将血液快速检测分析仪放置于智能检测箱305,并将可携带的智能检测箱305携带至需要检测的患者或基层医疗机构处,直接完成血液检测。
在本发明中,远程检测设备300由服务提供商提供,服务提供商可以根据患者或者基层医疗机构的需求提供具有相应功能的远程检测设备300完成检测。
2、通信网络100
通信网络100包括互联网以及与互联网通信链接的无线通信网络100,其中无线通信网络100包括3G/4G/5G通信网络100,当终端接入该通信网络100后,根据终端所支持的通信网络100通信协议选择相应的接入点,该通信网络100能够保证链接在其上的多个设备以及终端之间的通信,适应范围较广,特别是当在使用5G通信网络100时,能够满足医疗数据的上传以及下载。
在本发明的实施方式中,所述远程检测设备300中的通信模块31与所述通信网络100通信,通信模块31将远程检测设备300的检测数据发送至通信网络100,实现通信网络100的远距离覆盖。
3、应用终端700
应用终端700是指具有功能模块的智能设备,或者安装相应软件程序的智能设备。在该应用终端700上可以通过人为操作选择相应的检测服务,检测地点,以及检测时间;通过对应用终端700的人为操作完成的订单信息,连接至 通信网络100上的远程检测设备300,并根据远程检测设备300的检测结果,输出检测数据至应用终端700,实现了定制化检测,以及数据快速反馈跟踪处理的目的。
4、运载终端400
在本发明中,运载终端400具有运送能力,能够根据应用终端700产生的订单中的检测服务内容、检测地点以及检测时间,装载具有检测服务内容相对应的远程检测设备300在相应的检测时间内运送至相应的服务地点,完成检测。作为患者盒基层医疗机构而言只需要在应用终端700上生成订单,就能在指定的时间和地点获得相应的远程检测设备300完成相应的检测。患者和基层医疗机构并不需要采购多样化的多种检测设备,即能够获得多种检测服务。
在本发明中,该运载终端400为无人机42或者无人车41等具有智能无人驾驶的运载工具,能够解决成本。其中,该运载终端400也是由服务提供商提供。
5、基层医生端500
在本发明中,所述基层医生端500是由全民医疗的基层医生操作的软件控制端或者相应的智能终端。该基层医生端500连接至通信网络100后,接收所述远程检测设备300的检测数据,并根据检测数据做出诊断。其中,诊断结果和检测数据作为诊疗数据发送至通信网络100,实现云端数据的保存和共享。
在本发明的另一实施方式中,其中该系统还包括远程医院600,应用场景为:患者或者基层医疗机构在通过远程检测设备300进行检测存在疑难时,在基层医生端500的控制下,可以通过通信网络100建立远程检测设备300——通信网络100——远程医院600之间的通信链路;由位于远程医院600的专科医生或者检验技师对检测过程以及检测结果做出检测指导,检测结论。
在本发明的另一实施方式中,该系统可以再基层医生端500做出诊疗方案存在疑难时,可以通过通信网络100建立远程检测设备300——通信网络100——远程医院600之间的通信链路。由位于远程医院600的专科医生诊治方案做出指导,结论,实现远程医疗的目的。
本系统实现了远程诊断和治疗的作用,防止由于基层医疗机构中坐诊医生 普遍专业素质不高,使得基层患者无法得到最有效和及时的救治服务的情况出现。
5、医疗服务器200
在本发明中医疗服务器200连接至通信网络100,该医疗服务器200用于记录和保存所述远程检测设备300上的检测数据以及诊断形成的诊疗数据。
其中,连接至通信网络100的应用终端700,同样与所述医联服务器200通信,从医疗服务器200上获取相应的诊疗数据,及时反馈至患者。
当然,在本发明中,所述基层医生端500也可以通过通信网络100从所述医疗服务器200上获取自身所作出的所有的诊断数据,实现病例电子化,云端化,便于管理。
最后,针对本发明的远程检测及医疗综合系统的工作过程说明如下:首先,患者通过应用终端700、或者基层医生通过基层医生端500生成检测预约服务的订单,该订单中含有检测项目、检测时间以及相应的检测地址;
接着,应用终端700或者基层医生端500将该订单发送至通信网络100,通信网络100将订单中的检测项目、检测时间以及检测地址,分别发送至具有相应功能的远程检测设备300和运载终端400,所述运载终端400根据订单内容,携带相应的远程检测设备300按照相应的时间抵达至相应地点;
再有,基层医生或者患者根据远程检测设备300上的检测指导完成项目检测,并形成检测数据;当患者或者基层医生在检测过程中,针对操作内容或者检测结论存在疑难时,基层医生端500控制远程检测设备300通过通信网络100与远程医院600的专业检测技师通信,获得检测指导,得到相应的检测结论,并形成检测数据;
然后,该检测数据通过远程检测设备300上的通信模块31发送至通信网络100中,基层医生端500从所述通信网络100获取检测数据,并作出相应的检测结论,给出诊疗方案至患者;诊疗方案以及检测数据通过通信网络100发送至医疗服务器200保存;其中,当基层医生端500的基层医生在作出诊疗存在疑难时,基层医生端500通过通信网络100与所述远程医院600通信,获得远程医院600中的专科医生的协助,从而能够顺利的得到诊疗方案。
在本实施方式中,检测数据、诊疗方案作为诊疗数据通过通信网络100保存在医疗服务器200,应用终端700以及基层医生端500从所述通信网络100中获取该数据,保证及时反馈至客户。
在本发明中,通过运载终端400以及定制化的订单实现了检测设备的定制化预约,以及检测时间和地点的指定送达,保证的整个检测过程的顺利,克服了现有技术中,偏远地区检测不方便,检测设备较少,检测不全面的技术问题。通过可以连接至远程医院600的远程医疗方式,避免了基层医疗机构中的坐诊医生普遍专业素质不高,使得基层患者无法得到最有效和及时的救治服务的情况出现。
在本发明中,所述远程检测设备300具有多样化,作为服务提供商来说有更多的动力不断更新行的检测传感器以及终端,以向基层用户提供更好更新的检测方案,避免基层医疗机构对检测出设备的过多投入。
最后应当说明的是,以上实施例仅用以说明本发明的技术方案,而非对本发明保护范围的限制,尽管参照较佳实施例对本发明作了详细地说明,本领域的普通技术人员应当理解,可以对本发明的技术方案进行修改或者等同替换,而不脱离本发明技术方案的实质和范围。

Claims (7)

  1. 一种远程检测及医疗综合系统,其特征在于,包括:
    通信网络;
    连接至通信网络的医疗服务器,所述医疗服务器用于保存诊疗数据;
    连接至通信网络的多个远程检测设备,所述远程检测设备与通信网络通信,用于对患者的相应体征数据进行检测,形成检测数据;
    运载终端,所述运载终端用于装载所述远程检测设备,并将所述远程检测设备运送至指定的检测地点;
    通过通信网络连接至所述远程检测设备,并获取远程检测设备检测数据的基层医生端,所述基层医生端根据所述检测数据做出诊断,所述诊断与所述检测数据共同形成所述诊疗数据。
  2. 如权利要求1所述的远程检测及医疗综合系统,其特征在于,所述远程检测终端包括全科检测设备、心电检测仪、B超机、POCT(point-of-care testing)检测盒中的至少一种。
  3. 如权利要求1所述的远程检测以及医疗综合系统,其特征在于,所述远程检测终端为一种智能检测箱,所述智能检测箱中装载有多个医疗检测探头及传感器。
  4. 如权利要求1所述的远程检测及医疗综合系统,其特征在于,所述该系统还包括:与所述通信网络通信的远程医院,所述远程医院通过所述通信网络分别与所述基层医生端及所述远程检测设备通信;所述远程检测设备在所述基层医生端的控制下与所述远程医院通信,从而获得远程医院的远程诊断协助。
  5. 如权利要求1或4所述的远程检测及医疗综合系统,其特征在于,所述该系统还包括应用终端,所述应用终端链接至所述通信网络,客户通过应用终端录入的检测以及诊疗需求,并生成订单;所述订单发送至所述医疗服务器保存,并通过通信网络发送至相应的远程检测设备以及所述运载终端上;所述运载终端根据订单运送相应的远程检测设备至订单指定的检测地址。
  6. 如权利要求5所述的远程检测及医疗综合系统,其特征在于,所述运载终端为无人车、无人机中的至少一种。
  7. 如权利要求1所述的远程检测及医疗综合系统,其特征在于,所述远程 检测设备的指定地点还包括:社区、农村卫生室、养老院中的至少一个。
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