WO2019128774A1 - 超声参数优化系统及方法 - Google Patents
超声参数优化系统及方法 Download PDFInfo
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- WO2019128774A1 WO2019128774A1 PCT/CN2018/121721 CN2018121721W WO2019128774A1 WO 2019128774 A1 WO2019128774 A1 WO 2019128774A1 CN 2018121721 W CN2018121721 W CN 2018121721W WO 2019128774 A1 WO2019128774 A1 WO 2019128774A1
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- H04L67/00—Network arrangements or protocols for supporting network services or applications
- H04L67/01—Protocols
- H04L67/12—Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L67/00—Network arrangements or protocols for supporting network services or applications
- H04L67/01—Protocols
- H04L67/02—Protocols based on web technology, e.g. hypertext transfer protocol [HTTP]
- H04L67/025—Protocols based on web technology, e.g. hypertext transfer protocol [HTTP] for remote control or remote monitoring of applications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L67/00—Network arrangements or protocols for supporting network services or applications
- H04L67/01—Protocols
- H04L67/12—Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks
- H04L67/125—Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks involving control of end-device applications over a network
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04L—TRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
- H04L67/00—Network arrangements or protocols for supporting network services or applications
- H04L67/50—Network services
- H04L67/60—Scheduling or organising the servicing of application requests, e.g. requests for application data transmissions using the analysis and optimisation of the required network resources
Definitions
- Engineers or doctors optimize the parameters of the ultrasound equipment in the field, which will result in low efficiency of parameter optimization and often rely on the subjective judgment of personnel, or simply through the intelligent optimization algorithm in the ultrasound system, only the parameters and data of the machine can be used, so that after optimization The applicability of the parameters cannot be guaranteed, and because the structural limitations of the existing ultrasonic parameter optimization equipment can only rely on the engineers to optimize the parameters of the ultrasonic equipment use site, the parameters can not be remotely optimized for special application scenarios.
- the present invention provides an ultrasonic parameter optimization system and method, which realizes remote optimization of ultrasonic parameters and ensures the applicability of ultrasonic parameters.
- the present invention provides the following technical solutions:
- An ultrasonic parameter optimization system comprising:
- An ultrasound device and a parameter server including a remote transmission port and connected to the parameter server through the remote transmission port;
- the parameter server is configured to collect ultrasound data information sent by each of the ultrasound devices through the remote transmission port, and perform statistical analysis on the ultrasound data information to generate parameter information applicable to each of the ultrasound devices, and Sending the parameter information to an ultrasound device corresponding to the parameter information;
- the ultrasound device is configured to receive the parameter information, and perform parameter optimization on the ultrasound device by using a trigger instruction of the user according to the parameter information.
- the parameter server comprises:
- An acquisition module configured to collect ultrasound data information sent by each of the ultrasound devices
- An analysis module is configured to perform feature extraction on the ultrasound data information, set corresponding weights on the extracted feature values, perform weighting calculation to obtain parameter adjustment values corresponding to the feature values, and adjust the parameters to perform screening Processing, obtaining parameter information;
- a sending module configured to send the parameter information to the ultrasound device corresponding to the parameter information.
- the parameter server further includes:
- a storage module for storing parameter information.
- the ultrasound device comprises:
- a user input module configured to receive a trigger instruction of the user
- an adjustment module configured to perform parameter optimization on the ultrasound device according to the triggering instruction of the user, and when the triggering instruction is an optimization instruction, the current parameter of the ultrasound device according to the parameter information Optimizing, when the triggering instruction is a restore instruction, maintaining the current parameter of the ultrasound device unchanged.
- the ultrasound device further comprises:
- a storage module configured to store parameter information of the ultrasound device
- An automatic update module configured to invoke parameter information of the storage module in a preset time period, and generate a parameter upgrade request according to the parameter information in the preset time period, and send the upgrade request to the parameter server, And the parameter to be upgraded is received by the parameter server, and the parameter to be upgraded is a parameter that is generated by the parameter server according to the parameter information in the preset time period.
- An ultrasonic parameter optimization method is applied to a parameter server, and the parameter server is connected to a remote transmission port of the ultrasound device, and the method includes:
- the parameter information is transmitted to the ultrasound device corresponding to the parameter information.
- the method further comprises:
- the parameter information is stored.
- An ultrasonic parameter optimization method is applied to an ultrasound device, the ultrasound device being connected to a parameter server through a remote transmission port, the method comprising:
- parameter information sent by the parameter server where the parameter information is parameter information applicable to the ultrasound device generated by the parameter server according to statistical analysis of the collected ultrasound data information;
- Parameterizing the ultrasonic device by a trigger command of the user according to the parameter information is a parameterizing the ultrasonic device by a trigger command of the user according to the parameter information.
- the method further comprises:
- Performing parameter optimization on the ultrasound device according to a triggering instruction of the user wherein when the triggering instruction is an optimization instruction, the current parameter of the ultrasound device is optimized according to the parameter information, when the triggering instruction is a restoration instruction Maintaining the current parameters of the ultrasound device unchanged.
- the method further comprises:
- An ultrasonic parameter optimization system comprising:
- An ultrasound device and a parameter server including a remote transmission port and connected to the parameter server through the remote transmission port;
- the parameter server collects ultrasound data information sent by each of the ultrasound devices through the remote transmission end, and performs statistical analysis on the ultrasound data information to generate and apply the Parameter information of the ultrasound device, and transmitting the parameter information to an ultrasound device corresponding to the parameter information; the ultrasound device receives the parameter information, and according to the parameter information, the ultrasound device is triggered by a user Perform parameter optimization.
- the parameter server comprises:
- An acquisition module, an analysis module, and a transmission module wherein an input end of the acquisition module is connected to a remote transmission port of each of the ultrasound devices, and an output end of the acquisition module is connected to an input end of the analysis module, where the analysis module is The output end is connected to the input end of the sending module, and the output end of the sending module is connected to the ultrasonic device;
- the acquisition module sends the collected ultrasound data information sent by each of the ultrasound devices to the analysis module, and the analysis module performs feature extraction on the ultrasound data information, and Extracting the corresponding feature value to set a corresponding weight, performing weighting calculation to obtain a parameter adjustment value corresponding to the feature value, adjusting the parameter to perform filtering processing, obtaining parameter information, and sending the parameter information to the sending module And sending, by the sending module, the parameter information to the ultrasound device corresponding to the parameter information.
- the parameter server further includes a storage module, and the storage module is connected to the analysis module to store the parameter information.
- the ultrasound device comprises a user input module and an adjustment module, the user input module is connected to the first input end of the adjustment module, and the second input end of the adjustment module is connected to the parameter server;
- the user input module sends the received user trigger instruction to the adjustment module, and the adjustment module receives the parameter information sent by the parameter server, and according to the user trigger instruction
- the ultrasound device performs parameter optimization.
- the ultrasound device further comprises a memory, the memory being connected to the adjustment module, the memory storing the parameter information.
- the user input module comprises:
- the remote transmission port of the ultrasound device comprises a Bluetooth transmission port, a public network transmission port, a wireless network module, and a wired network transmission port;
- the parameter server includes the Bluetooth transmission port
- the parameter server includes the public network transmission port
- the parameter server includes the wireless network module
- the parameter server When the remote transmission end is the wired transmission port, the parameter server includes the wired transmission port.
- the parameter server is connected with a display screen for displaying parameter information.
- the ultrasound device further includes an information input module, and the information input module is connected to the user input module, and records information input by the user input module.
- the invention provides an ultrasonic parameter optimization system and method.
- the ultrasound device is connected to the parameter server via a remote transmission port.
- the parameter server collects ultrasonic data information sent by each ultrasonic device through the remote transmission port, and performs statistical analysis on the ultrasonic data information, generates parameter information applicable to each ultrasonic device, and sends the parameter information to the ultrasonic device corresponding to the parameter information;
- the device receives the parameter information, and optimizes the parameters of the ultrasonic device according to the parameter information through the triggering instruction of the user.
- the parameter server matches the remote transmission port of the ultrasound device, and realizes the remote connection between the ultrasound device and the parameter server, thereby realizing the remote transmission of information in the parameter adjustment process, and solving the parameter debugging engineer must use the ultrasound device.
- the problem of debugging on site can be applied to parameter optimization of ultrasonic equipment in special scenes; on the other hand, since the parameter server performs various ultrasonic data acquisition, parameter information suitable for each ultrasonic device is generated through statistical analysis, so that The obtained parameter information does not depend on the subjective factors of the staff, which ensures the practicability of the parameters and improves the efficiency of parameter optimization.
- FIG. 1 is a schematic structural diagram of an ultrasonic parameter optimization system according to an embodiment of the present invention.
- FIG. 2 is a schematic structural diagram of another ultrasonic parameter optimization system according to an embodiment of the present invention.
- FIG. 3 is a schematic flowchart of an ultrasonic parameter optimization method according to an embodiment of the present invention.
- FIG. 4 is a schematic flowchart diagram of another ultrasonic parameter optimization method according to an embodiment of the present invention.
- the embodiment of the invention discloses an ultrasonic parameter optimization system and method.
- the ultrasound device is connected to the parameter server via a remote transmission port.
- the parameter server collects ultrasonic data information sent by each ultrasonic device through the remote transmission port, and performs statistical analysis on the ultrasonic data information, generates parameter information applicable to each ultrasonic device, and sends the parameter information to the ultrasonic device corresponding to the parameter information;
- the device receives the parameter information, and optimizes the parameters of the ultrasonic device according to the parameter information through the triggering instruction of the user.
- the parameter server matches the remote transmission port of the ultrasound device, and realizes the remote connection between the ultrasound device and the parameter server, thereby realizing the remote transmission of information in the parameter adjustment process, and solving the parameter debugging engineer must use the ultrasound device.
- the problem of debugging on site can be applied to parameter optimization of ultrasonic equipment in special scenes; on the other hand, since the parameter server performs various ultrasonic data acquisition, parameter information suitable for each ultrasonic device is generated through statistical analysis, so that The obtained parameter information does not depend on the subjective factors of the staff, which ensures the practicability of the parameters and improves the efficiency of parameter optimization.
- Embodiments of the present invention provide an ultrasound parameter optimization system, see FIG. 1, including:
- An ultrasound device 1 and a parameter server 2 the ultrasound device 1 comprising a remote transmission port 10 and being connected to the parameter server 2 via the remote transmission port 10;
- the parameter server 2 is configured to collect ultrasound data information sent by each ultrasound device 1 through the remote transmission port 10, and perform statistical analysis on the ultrasound data information to generate parameter information applicable to each of the ultrasound devices, and the parameters are Sending information to the ultrasound device 1 corresponding to the parameter information;
- the ultrasound device 1 is configured to receive the parameter information, and perform parameter optimization on the ultrasound device by using a trigger instruction of the user according to the parameter information.
- the parameter server 2 is configured to collect ultrasound data information, where the ultrasound data information includes parameter information and basic information, and the parameter information is some related parameter information of the current ultrasound device, and the basic information includes the ultrasound device.
- the basic information is acquired while collecting the parameter information. The main purpose of this is to optimize the obtained parameter information according to the basic information, thereby obtaining more accurate and more consistent parameter information for clinical application.
- the parameter information includes related parameter information input by a doctor or a user, and parameter information of an ultrasound device currently connected to the parameter server.
- the parameter server 2 generates parameter optimization information according to the collected ultrasound information analysis, and sends the parameter optimization information to the ultrasound device 1. For example, when the relevant parameter information input by the doctor is collected, and the doctor's information of the doctor is obtained at the same time, the doctor's doctor's information is analyzed to obtain the doctor's professional title and technical experience information, etc., and then the doctor's input can be determined. Whether the parameter information has the necessity to be converted into the parameter optimization information, if the parameter information has the necessity of optimization, the relevant parameter information input by the doctor is converted into the parameter optimization information, and sent to the ultrasound device 1, the ultrasound device 1 Perform parameter optimization.
- the parameter server 2 may include:
- An acquisition module configured to collect ultrasound data information sent by each of the ultrasound devices
- An analysis module is configured to perform feature extraction on the ultrasound data information, set corresponding weights on the extracted feature values, perform weighting calculation to obtain parameter adjustment values corresponding to the feature values, and adjust the parameters to perform screening Processing, obtaining parameter information;
- a sending module configured to send the parameter information to the ultrasound device corresponding to the parameter information.
- the information about the ultrasound data collected by the collection module may be divided into basic information and parameter information, and the basic information may specifically include the following information, but is not limited to the information:
- the parameter information includes related parameter information input by the doctor or the user, and also includes parameter information of the ultrasound device currently connected to the parameter server.
- the current parameter information and the historical parameter information of the ultrasound device are utilized in the process of analyzing the collected ultrasound information by the parameter server, that is, the related algorithm based on machine learning of the ultrasound information, and the ultrasound information is utilized.
- Relevant data or previous experience of parameter optimization through the correlation of ultrasonic information to generate parameter optimization information to be optimized, so as to achieve the purpose of processing parameter information.
- the preset algorithm is mainly realized by the relevant data analysis function in the analysis software used in the statistical analysis of the ultrasonic information.
- the analysis of the ultrasonic data information can be performed by using an analysis function, that is, a DataAnalysis function:
- model and probe, diagnostic mode, parameter adjustment name, value DataAnalysis (hospital and doctor information, patient information, machine and probe information, diagnostic part, parameter adjustment name and value);
- the patient's information is used for parameter applicability analysis.
- the physical quality of different body types and ages is quite different. It is necessary to count the real-time use parameters of different patients, and choose whether to update the parameters according to the number of people of different ages and weights;
- Machines and probes are used to classify parameters of the same type of machine or probe;
- a probe has multiple terminal modes, and the parameters need to be separately calculated according to different terminal modes
- the name and value of the parameter adjustment are used as the primary reference sample for the input.
- the host of each ultrasound device 1 of the hospital is connected to the parameter server 2, and the parameter server 2 has a specific application program, and can analyze the medical record information and adjustment parameters uploaded by each ultrasound host, and the parameters are Statistical analysis is performed to automatically update the parameters of the final analysis to each ultrasound device 1. That is, the generated data information obtained by the parameter server 2 may be obtained by connecting the ultrasound device 1, or may be obtained by connecting a separate collector, or may be obtained by connecting the collector to the ultrasound device, and the specific process of acquiring the ultrasound data information. There may be many, and the invention is not limited.
- the collector may be an input device such as a keyboard having an input function, a touch screen display, and a tablet, or may be a smart device with an input function such as a tablet computer, a mobile phone, etc., and the specific type is not limited in the present invention.
- the artificial intelligence algorithm is mainly used to perform statistical analysis on the ultrasonic data.
- the ultrasonic data information required by the ultrasound data is the adjustment parameters recorded by the ultrasound device, the ultrasound image data, the hospital where the ultrasound device is located, and the doctor information. After the training analysis by the artificial intelligence algorithm, the required information of each ultrasound device can be obtained. A unique set of parameters.
- the feature extraction is first carried out, and the ultrasonic data information is extracted by the cross-entropy as a loss function training full-featured feature extraction network, and the features or trends of different models, parameters, hospitals, doctors' parameter adjustments are extracted;
- the eigenvalue is used as the input information of the feature regression analysis, and the extracted feature values are decoded and mapped into the actual adjustment values of the respective parameters.
- the actual adjustment values are filtered. Corresponding classification and combination, in order to output the category of the classification and its corresponding parameter values.
- a weighting algorithm can be used to analyze the actual application value of the parameter information, and more accurate parameter information to be optimized can be obtained, that is, the medical record and the doctor information can be weighted and calculated, and finally a diagnosis corresponding to a certain model and probe can be obtained.
- the parameter names and values that need to be optimized for the model will be based on the characteristics of the hospital patients, and the appropriate parameters for the hospital, such as specialist hospitals, or specialist departments, will be analyzed.
- the artificial intelligence algorithm analyzes the pathology and the doctor information, and performs weighted calculation of the data according to the information, and finally obtains the parameter names and values that need to be optimized corresponding to a certain model and the probe part diagnosis mode, and the algorithm
- the appropriate parameters for the hospital such as specialist hospitals or specialist departments, will be analyzed, and patients tend to concentrate on some diseases.
- the parameter server 2 may further include:
- a storage module for storing parameter information.
- the storage module of the parameter server can store the parameter information, it can also be analyzed according to the stored parameter information, so as to provide the ultrasound device user with optimal parameters for optimization and upgrade.
- the ultrasound device 1 after receiving the parameter optimization information sent by the parameter server 2, the ultrasound device 1 optimizes the parameters.
- the ultrasound device 1 may also choose to ignore the parameter optimization information or optimize the parameter information.
- the ultrasonic device further determines whether to perform optimization or ignoring according to the triggering instruction of the user. Therefore, in another embodiment of the present invention, the ultrasonic device further includes:
- a user input module configured to receive a trigger instruction of the user
- an adjustment module configured to perform parameter optimization on the ultrasound device according to the triggering instruction of the user, and when the triggering instruction is an optimization instruction, the current parameter of the ultrasound device according to the parameter information Optimizing, when the triggering instruction is a restore instruction, maintaining the current parameter of the ultrasound device unchanged.
- the ultrasound device may receive the processing of the parameter optimization information by the user of the ultrasound device through the user input module, that is, receive the trigger instruction of the user.
- the trigger instruction correspondingly indicates that the parameter optimization information is received.
- the trigger instruction is to ignore the parameter optimization information sent by the current parameter server, The ultrasound device performs parameter reduction or remains unchanged.
- an ultrasonic parameter active optimization method is further provided, and the corresponding ultrasound device may include:
- a storage module configured to store parameter information of the ultrasound device
- An automatic update module configured to invoke parameter information of the storage module in a preset time period, and generate a parameter upgrade request according to the parameter information in the preset time period, and send the upgrade request to the parameter server, And the parameter to be upgraded is received by the parameter server, and the parameter to be upgraded is a parameter that is generated by the parameter server according to the parameter information in the preset time period.
- the ultrasound device can select the parameter optimization active mode, that is, the parameter information that the ultrasound device periodically packs and stores is sent to the parameter server, and then the parameter server statistical analysis returns to the ultrasound device to be upgraded.
- the ultrasound device connects to the parameter server in real time, and when the parameter server analyzes the parameters that the ultrasound device can be upgraded or optimized, the parameter information is pushed to the ultrasound device.
- the latest software version can be stored on the parameter server.
- the ultrasound device user can automatically upgrade the ultrasound device to the latest software version when allowed, thereby solving the current ultrasound device and relying on the artificial field upgrade mode. Automated remote upgrade issues.
- the remaining settings of the corresponding ultrasonic device in the embodiment of the present invention are the same as the existing ultrasonic device, and also include the ultrasonic hardware part, the ultrasonic software module part, the trackball mouse, the keyboard and the touch screen and other peripheral parts, and the present invention The parts with the same technology are not described.
- Another embodiment of the present invention provides another ultrasonic parameter optimization system.
- the connection relationship of the ultrasonic parameter optimization system described in FIG. 2 is only one of the preferred modes, and for other purposes that can achieve the object of the present invention.
- the connection method is not limited by the present invention.
- An ultrasonic parameter optimization system in FIG. 2 includes:
- the ultrasound device 1 includes a remote transmission port 10, and is connected to the parameter server 2 through the remote transmission port 10;
- the parameter server collects ultrasound data information sent by each of the ultrasound devices through the remote transmission end, and performs statistical analysis on the ultrasound data information to generate and apply the Parameter information of the ultrasound device, and transmitting the parameter information to an ultrasound device corresponding to the parameter information; the ultrasound device receives the parameter information, and according to the parameter information, the ultrasound device is triggered by a user Perform parameter optimization.
- the parameter server 2 includes:
- the acquisition module sends the collected ultrasound data information sent by each of the ultrasound devices to the analysis module, and the analysis module performs feature extraction on the ultrasound data information, and Extracting the corresponding feature value to set a corresponding weight, performing weighting calculation to obtain a parameter adjustment value corresponding to the feature value, adjusting the parameter to perform filtering processing, obtaining parameter information, and sending the parameter information to the sending module And sending, by the sending module, the parameter information to the ultrasound device corresponding to the parameter information.
- the parameter server 2 further includes a storage module 24, and the storage module 24 is connected to the analysis module 22 to store the parameter information.
- the ultrasound device 1 includes a user input module 11 and an adjustment module 12, the user input module 11 is connected to a first input end of the adjustment module 12, and the second input end of the adjustment module 12 is Parameter server 1 is connected;
- the user input module sends the received user trigger instruction to the adjustment module, and the adjustment module receives the parameter information sent by the parameter server, and according to the user trigger instruction
- the ultrasound device performs parameter optimization.
- the ultrasound device 1 further comprises a memory 13 connected to the adjustment module 12, the memory storing the parameter information.
- the user input module includes:
- the remote transmission port of the ultrasound device includes a Bluetooth transmission port, a public network transmission port, a wireless network module, and a wired network transmission port;
- the parameter server includes the Bluetooth transmission port
- the parameter server includes the public network transmission port
- the parameter server includes the wireless network module
- the parameter server When the remote transmission end is the wired transmission port, the parameter server includes the wired transmission port.
- the parameter server is connected to a display screen, and the display screen is used to display parameter information.
- the ultrasound device further includes an information input module, and the information input module is connected to the user input module, and records information input by the user input module.
- the invention provides an ultrasound parameter optimization system.
- the ultrasound device is connected to the parameter server via a remote transmission port.
- the parameter server collects ultrasonic data information sent by each ultrasonic device through the remote transmission port, and performs statistical analysis on the ultrasonic data information, generates parameter information applicable to each ultrasonic device, and sends the parameter information to the ultrasonic device corresponding to the parameter information;
- the device receives the parameter information, and optimizes the parameters of the ultrasonic device according to the parameter information through the triggering instruction of the user.
- the parameter server matches the remote transmission port of the ultrasound device, and realizes the remote connection between the ultrasound device and the parameter server, thereby realizing the remote transmission of information in the parameter adjustment process, and solving the parameter debugging engineer must use the ultrasound device.
- the problem of debugging on site can be applied to parameter optimization of ultrasonic equipment in special scenes; on the other hand, since the parameter server performs various ultrasonic data acquisition, parameter information suitable for each ultrasonic device is generated through statistical analysis, so that The obtained parameter information does not depend on the subjective factors of the staff, which ensures the practicability of the parameters and improves the efficiency of parameter optimization.
- an ultrasound parameter optimization method is applied to a parameter server, where the parameter server is connected to a remote transmission port of the ultrasound device, and the method includes:
- the parameter information is stored.
- an embodiment of the present invention further provides another ultrasonic parameter optimization method, which is applied to an ultrasound device, where the ultrasound device is connected to a parameter server through a remote transmission port, and the method includes:
- S21 Receive parameter information sent by the parameter server, where the parameter information is parameter information that is generated by the parameter server according to statistical analysis of the collected ultrasound data information and is applicable to the ultrasound device.
- Performing parameter optimization on the ultrasound device according to a triggering instruction of the user wherein when the triggering instruction is an optimization instruction, the current parameter of the ultrasound device is optimized according to the parameter information, when the triggering instruction is a restoration instruction Maintaining the current parameters of the ultrasound device unchanged.
- the invention provides an ultrasonic parameter optimization method, which is applied to an ultrasound device and a parameter server, respectively.
- the parameter server collects ultrasonic data information sent by each ultrasonic device through the remote transmission port, and performs statistical analysis on the ultrasonic data information, generates parameter information applicable to each ultrasonic device, and sends the parameter information to the ultrasonic device corresponding to the parameter information;
- the device receives the parameter information, and optimizes the parameters of the ultrasonic device according to the parameter information through the triggering instruction of the user.
- the parameter server matches the remote transmission port of the ultrasound device, and realizes the remote connection between the ultrasound device and the parameter server, thereby realizing the remote transmission of information in the parameter adjustment process, and solving the parameter debugging engineer must use the ultrasound device.
- the problem of debugging on site can be applied to parameter optimization of ultrasonic equipment in special scenes; on the other hand, since the parameter server performs various ultrasonic data acquisition, parameter information suitable for each ultrasonic device is generated through statistical analysis, so that The obtained parameter information does not depend on the subjective factors of the staff, which ensures the practicability of the parameters and improves the efficiency of parameter optimization.
- the functions described in the method of the present embodiment can be stored in a computing device readable storage medium if implemented in the form of a software functional unit and sold or used as a standalone product. Based on such understanding, a portion of the embodiments of the present invention that contributes to the prior art or a portion of the technical solution may be embodied in the form of a software product stored in a storage medium, including a plurality of instructions for causing a
- the computing device (which may be a personal computer, server, mobile computing device, or network device, etc.) performs all or part of the steps of the methods described in various embodiments of the present invention.
- the foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like. .
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Abstract
本发明实施例提供了一种超声参数优化系统及方法,该系统包括:超声设备和参数服务器,超声设备包括远程传输端口,并通过远程传输端口与参数服务器连接;参数服务器,用于采集各个超声设备通过远程传输端口发送的超声数据信息,并对超声数据信息进行统计分析,生成适用于各个超声设备的参数信息,并将参数信息发送至与参数信息对应的超声设备;超声设备接收参数信息,并根据参数信息通过用户的触发指令对超声设备进行参数优化。通过本发明实现了对超声参数的远程优化,并保证了超声参数的适用性的目的。
Description
本申请要求于2017年12月29日提交中国专利局、申请号为201711485538.6、发明名称为“超声参数优化系统及方法”的国内申请的优先权,其全部内容通过引用结合在本申请中。
随着超声设备在医学领域的广泛应用,为了适应医学领域的发展,常常要对超声参数进行优化即对参数进行更新或者升级。现有的超声参数优化方法都是工程师或者医生通过调出超声设备参数的可视化界面,或者通过超声设备中的模糊逻辑或神经网络等算法进行优化参数。或者通过超声设备跟随的软件版本进行参数升级,基本都是通过硬盘、存储器或者计算机等移动存储设备去升级。
工程师或者医生在现场对超声设备进参数优化,会造成参数优化效率低并且往往依赖于人员的主观判断,或者单纯通过超声系统中智能优化算法,只能利用本机的参数和数据,使得优化后的参数的适用性无法得到保证,并且由于现有超声参数优化设备的结构限制只能依靠工程师在超声设备使用现场进行参数优化,对于特殊的应用场景下无法实现参数的远程优化。
发明内容
针对于上述问题,本发明提供一种超声参数优化系统及方法,实现了对超声参数的远程优化,并保证了超声参数的适用性的目的。
为了实现上述目的,本发明提供如下技术方案:
一种超声参数优化系统,该系统包括:
超声设备和参数服务器,所述超声设备包括远程传输端口,并通过所述远程传输端口与所述参数服务器连接;
所述参数服务器,用于采集各个所述超声设备通过所述远程传输端口发送的超声数据信息,并对所述超声数据信息进行统计分析,生成适用于各个所述超声设备的参数信息,并将所述参数信息发送至与所述参数信息对应的超声设备;
所述超声设备,用于接收所述参数信息,并根据所述参数信息通过用户的触发指令对所述超声设备进行参数优化。
优选地,所述参数服务器包括:
采集模块,用于采集各个所述超声设备发送的超声数据信息;
分析模块,用于对所述超声数据信息进行特征提取,并对提取到的特征值设置对应的权值,进行加权计算得到所述特征值对应的参数调整值,将所述参数调整至进行筛选处理,得到参数信息;
发送模块,用于将所述参数信息发送到与所述参数信息对应的所述超声设备。
优选地,所述参数服务器还包括:
存储模块,用于对参数信息进行存储。
优选地,所述超声设备包括:
用户输入模块,用于接收用户的触发指令;
调整模块,用于根据用户的触发指令,并根据所述参数信息对所述超声设备进行参数优化,其中,当所述触发指令为优化指令时,根据所述参数信息对所述超声设备当前参数进行优化,当所述触发指令为还原指令时,维持所述超声设备当前参数不变。
优选地,所述超声设备还包括:
存储模块,用于存储所述超声设备的参数信息;
自动更新模块,用于调用所述存储模块在预设时间段内的参数信息,并根据所述预设时间段内的参数信息生成参数升级请求,将所述升级请求发送至所述参数服务器,并接收所述参数服务器返回的待升级参数,进行升级,其中,所述待升级参数为所述参数服务器根据所述预设时间段内的 参数信息统计生成的参数。
一种超声参数优化方法,应用于参数服务器,所述参数服务器与所述超声设备的远程传输端口连接,该方法包括:
采集各个所述超声设备发送的超声数据信息;
对所述超声数据信息进行特征提取,并对提取到的特征值设置对应的权值,进行加权计算得到所述特征值对应的参数调整值,将所述参数调整至进行筛选处理,得到参数信息;
将所述参数信息发送到与所述参数信息对应的所述超声设备。
优选地,还包括:
对参数信息进行存储。
一种超声参数优化方法,应用于超声设备,所述超声设备通过远程传输端口与参数服务器连接,该方法包括:
接收所述参数服务器发送的参数信息,其中,所述参数信息为所述参数服务器根据采集的超声数据信息统计分析生成的适用于所述超声设备的参数信息;
根据所述参数信息通过用户的触发指令对所述超声设备进行参数优化。
优选地,还包括:
接收用户的触发指令;
根据用户的触发指令对所述超声设备进行参数优化,其中,当所述触发指令为优化指令时,根据所述参数信息对所述超声设备当前参数进行优化,当所述触发指令为还原指令时,维持所述超声设备当前参数不变。
优选地,还包括:
存储所述超声设备的参数信息;
调用在预设时间段内的参数信息,并根据所述预设时间段内的参数信息生成参数升级请求,将所述升级请求发送至所述参数服务器,并接收所述参数服务器返回的待升级参数,进行升级,其中,所述待升级参数为所 述参数服务器根据所述预设时间段内的参数信息统计生成的参数。
一种超声参数优化系统,该系统包括:
超声设备和参数服务器,所述超声设备包括远程传输端口,并通过所述远程传输端口与所述参数服务器连接;
当对所述超声设备进行参数优化时,所述参数服务器采集各个所述超声设备通过所述远程传输端发送的超声数据信息,并对所述超声数据信息进行统计分析,生成适用于各个所述超声设备的参数信息,并将所述参数信息发送至与所述参数信息对应的超声设备;所述超声设备接收所述参数信息,并根据所述参数信息通过用户的触发指令对所述超声设备进行参数优化。
优选地,所述参数服务器包括:
采集模块、分析模块和发送模块,所述采集模块的输入端与各个所述超声设备的远程传输端口相连,所述采集模块的输出端与所述分析模块的输入端相连,所述分析模块的输出端与所述发送模块的输入端相连,所述发送模块的输出端与所述超声设备相连;
当对所述超声设备进行参数优化时,所述采集模块将采集到的各个所述超声设备发送的超声数据信息发送至所述分析模块,分析模块对所述超声数据信息进行特征提取,并对提取到的特征值设置对应的权值,进行加权计算得到所述特征值对应的参数调整值,将所述参数调整至进行筛选处理,得到参数信息,将所述参数信息发送至所述发送模块,所述发送模块将所述参数信息发送到与所述参数信息对应的所述超声设备。
优选地,所述参数服务器还包括存储模块,所述存储模块与所述分析模块相连,对所述参数信息进行存储。
优选地,所述超声设备包括用户输入模块和调整模块,所述用户输入模块与所述调整模块的第一输入端相连,所述调整模块的第二输入端与所述参数服务器相连;
当对所述超声设备进行参数优化时,所述用户输入模块将接收到的用 户触发指令发送至所述调整模块,所述调整模块接收所述参数服务器发送的参数信息,并根据用户触发指令对所述超声设备进行参数优化。
优选地,所述超声设备还包括存储器,所述存储器与所述调整模块相连,所述存储器对所述参数信息进行存储。
优选地,所述用户输入模块包括:
键盘、按键操作版、语音输入装置和触屏输入面板。
优选地,所述超声设备的远程传输端口包括括蓝牙传输端口、公共网络传输端口、无线网络模块和有线网络传输端口;
当所述程传输端为所述蓝牙传输端口时,所述参数服务器包括所述蓝牙传输端口;
当所述远程传输端为所述公共网络传输端口时,所述参数服务器包括所述公共网络传输端口;
当所述远程传输端为所述无线网络模块时,所述参数服务器包括所述无线网络模块;
当所述远程传输端为所述有线传输端口时,所述参数服务器包括所述有线传输端口。
优选地,所述参数服务器连接有显示屏,所述显示屏用于对参数信息进行显示。
优选地,所述超声设备还包括信息录入模块,所述信息录入模块与所述用户输入模块相连,记录所述用户输入模块输入的信息。
本发明提供了一种超声参数优化系统及方法。在该超声参数优化系统中超声设备通过远程传输端口与参数服务器连接。参数服务器采集各个超声设备通过远程传输端口发送的超声数据信息,并对超声数据信息进行统计分析,生成适用于各个超声设备的参数信息,并将参数信息发送至与参数信息对应的超声设备;超声设备接收参数信息,并根据参数信息通过用户的触发指令对超声设备进行参数优化。在本发明中一方面参数服务器匹配超声设备的远程传输端口,实现了超声设备与参数服务器的远程连接, 进而可以实现参数调整过程中的信息的远程传输,解决了参数调试工程师必须在超声设备使用现场进行调试的问题,因此可以应用于特殊场景的超声设备的参数优化;另一方面由于参数服务器通过采集了各种超声数据进行,通过统计分析生成了适用于每个超声设备的参数信息,这样得到的参数信息并不依赖于工作人员的主观因素产生,保证了参数的实用性也提高了参数优化的效率。
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为本发明实施例提供的一种超声参数优化系统的结构示意图;
图2为本发明实施例提供的另一种超声参数优化系统的结构示意图;
图3为本发明实施例提供的一种超声参数优化方法的流程示意图;
图4为本发明实施例提供的另一种超声参数优化方法的流程示意图。
本发明实施例公开了一种超声参数优化系统及方法。在该超声参数优化系统中超声设备通过远程传输端口与参数服务器连接。参数服务器采集各个超声设备通过远程传输端口发送的超声数据信息,并对超声数据信息进行统计分析,生成适用于各个超声设备的参数信息,并将参数信息发送至与参数信息对应的超声设备;超声设备接收参数信息,并根据参数信息通过用户的触发指令对超声设备进行参数优化。在本发明中一方面参数服务器匹配超声设备的远程传输端口,实现了超声设备与参数服务器的远程连接,进而可以实现参数调整过程中的信息的远程传输,解决了参数调试 工程师必须在超声设备使用现场进行调试的问题,因此可以应用于特殊场景的超声设备的参数优化;另一方面由于参数服务器通过采集了各种超声数据进行,通过统计分析生成了适用于每个超声设备的参数信息,这样得到的参数信息并不依赖于工作人员的主观因素产生,保证了参数的实用性也提高了参数优化的效率。
下面将结合本发明实施例中的附图,对本发明实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。基于本发明中的实施例,本领域普通技术人员在没有做出创造性劳动前提下所获得的所有其他实施例,都属于本发明保护的范围。
本发明的实施例提供了一种超声参数优化系统,参见图1,包括:
超声设备1和参数服务器2,所述超声设备1包括远程传输端口10,并通过所述远程传输端口10与所述参数服务器2连接;
参数服务器2,用于采集各个超声设备1通过远程传输端口10发送的超声数据信息,并对所述超声数据信息进行统计分析,生成适用于各个所述超声设备的参数信息,并将所述参数信息发送至与所述参数信息对应的超声设备1;
超声设备1,用于接收所述参数信息,并根据所述参数信息通过用户的触发指令对所述超声设备进行参数优化。
在本实施例中,所述参数服务器2用于采集超声数据信息,其中所述超声数据信息包括了参数信息和基本信息,参数信息为当前超声设备的一些相关参数信息,基本信息包括了超声设备所在医院的医院信息,超声设备的使用医生的医生信息,超声设备针对的临床病人的病人信息,超声设备的型号及探头信息,诊断部位信息,以及超声设备的历史参数信息。在采集参数信息的同时获取了基本信息,这样做的主要目的是根据基本信息对获得到的参数信息进行优化,进而可以得到更准确和更符合临床应用的参数信息。对应的,所述参数信息包括了医生或用户输入的相关参数信息, 也包括当前与所述参数服务器连接的超声设备的参数信息。所述参数服务器2根据采集的超声信息分析生成参数优化信息,将所述参数优化信息发送至所述超声设备1。例如,当采集到医生输入的相关参数信息,并同时获得了该医生的医生信息,根据该医生的医生信息进行分析获得所述医生的职称和技术经验信息等,进而可以判断所述医生输入的参数信息是否具有要转换成参数优化信息的必要,如果该参数信息具有优化的必要性,则将医生输入的相关参数信息转换成参数优化信息,发送至所述超声设备1,所述超声设备1进行参数优化。
具体的,在参数服务器对采集的超声数据进行分析时,该参数服务器2可以包括:
采集模块,用于采集各个所述超声设备发送的超声数据信息;
分析模块,用于对所述超声数据信息进行特征提取,并对提取到的特征值设置对应的权值,进行加权计算得到所述特征值对应的参数调整值,将所述参数调整至进行筛选处理,得到参数信息;
发送模块,用于将所述参数信息发送到与所述参数信息对应的所述超声设备。
其中,采集模块采集到的超声数据信息可以分为基本信息和参数信息,基本信息可以具体包括如下信息,但不局限于这些信息:
操作的医院及医生的职称;
临床病人的年龄、性别、体重等基本信息;
当前医生使用的超声设备的型号及探头型号;
当前医生使用的诊断部位;
当前医生调节过的参数名称及参数值得记录。
相应的,参数信息包括了医生或用户输入的相关参数信息,也包括当前与所述参数服务器连接的超声设备的参数信息。
需要说明的是,在参数服务器对所述采集的超声信息进行分析的过程中利用了超声设备的当前参数信息和历史参数信息,也就是是基于对超声 信息进行机器学习的相关算法,利用超声信息相关数据或者以往参数优化的经验,通过超声信息之间的相互联系关系调整生成待优化的参数优化信息,从而达到处理参数信息的目的。并且该预设算法主要是依靠在超声信息统计分析中利用的分析软件中的相关数据分析函数实现的。对所述超声数据信息进行分析,可以采用分析函数进行分析,即DataAnalysis函数:
(机型及探头,诊断模式,参数调节名称,数值)=DataAnalysis(医院及医生信息,病人信息,机器和探头信息,诊断部分,参数调节名称及数值);
之所以对这些超声数据信息进行分析,是为了:
医院及医生信息作为参数可行度的参考,医院评级及医生职称越高,该医生输入的参数的可行度系数越大;
病人的信息用于参数适用性分析,不同体型和年龄的身体素质差异较大,需要统计不同病人的实时的使用参数,并根据不同年龄及体重人员数量统计选择是否更新参数;
机器和探头用于同一类型机器或者探头的参数归类;
一个探头有多个终端模式,需要根据不同的终端模式分别统计参数;
参数调节的名称和数值作为输入的主要参考样本。
需要注意的是,上述信息是本实施例给出的优选信息,可以结合实际情况进行适当的增减。
可以理解的是,在实际应用中,将医院的各个超声设备1的主机接入参数服务器2,参数服务器2中有特定的应用程序,可以分析各超声主机上传的病历信息及调节参数,对参数进行统计分析,将最终的分析的参数自动更新到各超声设备1。也就是,参数服务器2获取到的产生数据信息可以为通过连接超声设备1获得,也可以为连接单独的采集器获得,也可以将采集器与超声设备连接获得,具体的获取超声数据信息的过程可以有多种,本发明不做限制。采集器可以为具有输入功能的键盘、触屏显示器和手写板等输入装置,也可以为带有输入功能的智能设备比如平板电脑、 手机等,具体类型本发明不做限制。
在参数服务器的分析模块中主要是采用了人工智能算法对超声数据信息进行统计分析。其所需要的超声数据信息就是其采集到的包括超声设备记录的调节参数、超声图像数据、超声设备所在医院和使用医生信息,经过人工智能算法的训练分析,可以得到每个超声设备所需要的独特的一套参数。
在人工智能算法中,首先进行特征提取,将超声数据信息以交叉熵作为损失函数训练的全连接特征提取网络,提取不同机型、参数、医院、医生参数调整的特征或趋势;然后以特征提取后的特征值作为特征回归分析的输入信息,对提取的特征值进行解码、映射成各个参数的实际调整值;最后根据超声设备用户的实际参数组选择偏好,将实际调整值进行筛选也就是进行对应的分类与组合,以便输出分类的类别与其对应的参数数值。
同样,可以采用加权算法对参数信息的实际应用价值进行分析,获得更准确的待优化参数信息,即可以对病历和医生信息进行相关的加权计算,最终得到对应到某一个机型及探头部分诊断模式的需要优化的参数名称及数值,会根据医院病人的特点,分析针对该医院的合适参数,如专科医院,或者专科科室,病人的疾病类型往往比较集中部分疾病。
举例说明,该人工智能算法会对病理及医生信息进行分析,根据这些信息进行数据的加权计算,最终得到对应到某一个机型及探头部分诊断模式的需要优化的参数名称及数值,同时该算法会根据医院病人的特点分析对该医院的合适参数,如专科医院或者专科科室,病人往往比较集中于部分疾病。
在本发明的另一实施例中,参数服务器2还可以包括:
存储模块,用于对参数信息进行存储。
由于参数服务器的存储模块可以实现对参数信息的存储,因此也可以根据存储的参数信息进行分析,以便为超声设备用户提供最优的参数用于优化和升级。
需要说明的是,所述超声设备1在接收到所述参数服务器2发送的参数优化信息后,对参数进行优化,当然所述超声设备1也可以选择忽略此参数优化信息或者对此参数优化信息进行回退,即选择拒绝参数优化的过程。
而超声设备主要是根据用户的触发指令来判断是否进行优化还是忽略,因此,在本发明的另一实施例中超声设备还包括:
用户输入模块,用于接收用户的触发指令;
调整模块,用于根据用户的触发指令,并根据所述参数信息对所述超声设备进行参数优化,其中,当所述触发指令为优化指令时,根据所述参数信息对所述超声设备当前参数进行优化,当所述触发指令为还原指令时,维持所述超声设备当前参数不变。
需要说明的是,超声设备在接收到参数优化信息后,可以通过用户输入模块接收超声设备用户对参数优化信息的处理,即接收用户的触发指令。当用户确认根据参数优化信息进行优化时,则触发指令对应指示为接收所述参数优化信息,当用户决定不对超声设备进行参数优化时,则触发指令为忽略当前参数服务器发送的参数优化信息,对超声设备进行参数还原或者保持不变。
在本发明的另一实施例中还提供了一种超声参数主动优化方法,对应的超声设备可以包括:
存储模块,用于存储所述超声设备的参数信息;
自动更新模块,用于调用所述存储模块在预设时间段内的参数信息,并根据所述预设时间段内的参数信息生成参数升级请求,将所述升级请求发送至所述参数服务器,并接收所述参数服务器返回的待升级参数,进行升级,其中,所述待升级参数为所述参数服务器根据所述预设时间段内的参数信息统计生成的参数。
也是就是,当超声设备无法实时连接参数服务器时,超声设备可以选择参数优化主动模式,也是就是超声设备会定时打包存储的参数信息发送 至参数服务器然后参数服务器统计分析返回给该超声设备待升级参数。
对应的,另一种实现方式就是超声设备实时连接参数服务器,当参数服务器分析得到该超声设备可以进行升级或优化的参数,便将该参数信息推送给该超声设备。同时可以在参数服务器上存放最新的软件版本,超声设备用户可以在允许的情况下自动为超声设备升级到最新的软件版本,进而解决了当前的超声设备还依赖于人为现场升级的模式,无法实现自动化远程升级的问题。
对应的本发明实施例中的超声设备其余的设置与现有的超声设备相同,也包括超声硬件部分、超声软件模块部分、轨迹球鼠标、键盘和触摸屏等其他外设部分,本发明对与现有技术相同的部分不做赘述。
本发明实施例还提供了另一种超声参数优化系统,参见图2,在图2中所描述的超声参数优化系统的连接关系只是其中的一种优选方式,对于其他的可实现本发明目的的连接方式,本发明不做限制。
在图2中的一种超声参数优化系统包括:
超声设备1和参数服务器2,所述超声设备1包括远程传输端口10,并通过所述远程传输端口10与所述参数服务器连接2;
当对所述超声设备进行参数优化时,所述参数服务器采集各个所述超声设备通过所述远程传输端发送的超声数据信息,并对所述超声数据信息进行统计分析,生成适用于各个所述超声设备的参数信息,并将所述参数信息发送至与所述参数信息对应的超声设备;所述超声设备接收所述参数信息,并根据所述参数信息通过用户的触发指令对所述超声设备进行参数优化。
所述参数服务器2包括:
采集模块21、分析模块22和发送模块23,所述采集模块21的输入端与各个所述超声设备的远程传输端口10相连,所述采集模块21的输出端与所述分析模块22的输入端相连,所述分析模块22的输出端与所述发送模块23的输入端相连,所述发送模块的输出端与所述超声设备1相连;
当对所述超声设备进行参数优化时,所述采集模块将采集到的各个所述超声设备发送的超声数据信息发送至所述分析模块,分析模块对所述超声数据信息进行特征提取,并对提取到的特征值设置对应的权值,进行加权计算得到所述特征值对应的参数调整值,将所述参数调整至进行筛选处理,得到参数信息,将所述参数信息发送至所述发送模块,所述发送模块将所述参数信息发送到与所述参数信息对应的所述超声设备。
对应的,所述参数服务器2还包括存储模块24,所述存储模块24与所述分析模块22相连,对所述参数信息进行存储。
进一步地,所述超声设备1包括用户输入模块11和调整模块12,所述用户输入模块11与所述调整模块12的第一输入端相连,所述调整模块12的第二输入端与所述参数服务器1相连;
当对所述超声设备进行参数优化时,所述用户输入模块将接收到的用户触发指令发送至所述调整模块,所述调整模块接收所述参数服务器发送的参数信息,并根据用户触发指令对所述超声设备进行参数优化。
对应的,所述超声设备1还包括存储器13,所述存储器13与所述调整模块12相连,所述存储器对所述参数信息进行存储。
可选的,所述用户输入模块包括:
键盘、按键操作版、语音输入装置和触屏输入面板。
可选的,所述超声设备的远程传输端口包括括蓝牙传输端口、公共网络传输端口、无线网络模块和有线网络传输端口;
当所述程传输端为所述蓝牙传输端口时,所述参数服务器包括所述蓝牙传输端口;
当所述远程传输端为所述公共网络传输端口时,所述参数服务器包括所述公共网络传输端口;
当所述远程传输端为所述无线网络模块时,所述参数服务器包括所述无线网络模块;
当所述远程传输端为所述有线传输端口时,所述参数服务器包括所述 有线传输端口。
可选的,所述参数服务器连接有显示屏,所述显示屏用于对参数信息进行显示。
可选的,所述超声设备还包括信息录入模块,所述信息录入模块与所述用户输入模块相连,记录所述用户输入模块输入的信息。
本发明提供了一种超声参数优化系统。在该超声参数优化系统中超声设备通过远程传输端口与参数服务器连接。参数服务器采集各个超声设备通过远程传输端口发送的超声数据信息,并对超声数据信息进行统计分析,生成适用于各个超声设备的参数信息,并将参数信息发送至与参数信息对应的超声设备;超声设备接收参数信息,并根据参数信息通过用户的触发指令对超声设备进行参数优化。在本发明中一方面参数服务器匹配超声设备的远程传输端口,实现了超声设备与参数服务器的远程连接,进而可以实现参数调整过程中的信息的远程传输,解决了参数调试工程师必须在超声设备使用现场进行调试的问题,因此可以应用于特殊场景的超声设备的参数优化;另一方面由于参数服务器通过采集了各种超声数据进行,通过统计分析生成了适用于每个超声设备的参数信息,这样得到的参数信息并不依赖于工作人员的主观因素产生,保证了参数的实用性也提高了参数优化的效率。
参见图3,在本发明实施例提供的一种超声参数优化方法,应用于参数服务器,所述参数服务器与所述超声设备的远程传输端口连接,该方法包括:
S11、采集各个所述超声设备发送的超声数据信息;
S12、对所述超声数据信息进行特征提取,并对提取到的特征值设置对应的权值,进行加权计算得到所述特征值对应的参数调整值,将所述参数调整至进行筛选处理,得到参数信息;
S13、将所述参数信息发送到与所述参数信息对应的所述超声设备。
对应的,还包括:
对参数信息进行存储。
参见图4,本发明实施例还提供了另一种超声参数优化方法,应用于超声设备,所述超声设备通过远程传输端口与参数服务器连接,该方法包括:
S21、接收所述参数服务器发送的参数信息,其中,所述参数信息为所述参数服务器根据采集的超声数据信息统计分析生成的适用于所述超声设备的参数信息;
S22、根据所述参数信息通过用户的触发指令对所述超声设备进行参数优化。
对应的,还包括:
接收用户的触发指令;
根据用户的触发指令对所述超声设备进行参数优化,其中,当所述触发指令为优化指令时,根据所述参数信息对所述超声设备当前参数进行优化,当所述触发指令为还原指令时,维持所述超声设备当前参数不变。
具体的,还包括:
存储所述超声设备的参数信息;
调用在预设时间段内的参数信息,并根据所述预设时间段内的参数信息生成参数升级请求,将所述升级请求发送至所述参数服务器,并接收所述参数服务器返回的待升级参数,进行升级,其中,所述待升级参数为所述参数服务器根据所述预设时间段内的参数信息统计生成的参数。
本发明提供了一种超声参数优化方法,该方法分别应用于超声设备和参数服务器。参数服务器采集各个超声设备通过远程传输端口发送的超声数据信息,并对超声数据信息进行统计分析,生成适用于各个超声设备的参数信息,并将参数信息发送至与参数信息对应的超声设备;超声设备接收参数信息,并根据参数信息通过用户的触发指令对超声设备进行参数优化。在本发明中一方面参数服务器匹配超声设备的远程传输端口,实现了超声设备与参数服务器的远程连接,进而可以实现参数调整过程中的信息 的远程传输,解决了参数调试工程师必须在超声设备使用现场进行调试的问题,因此可以应用于特殊场景的超声设备的参数优化;另一方面由于参数服务器通过采集了各种超声数据进行,通过统计分析生成了适用于每个超声设备的参数信息,这样得到的参数信息并不依赖于工作人员的主观因素产生,保证了参数的实用性也提高了参数优化的效率。
本实施例方法所述的功能如果以软件功能单元的形式实现并作为独立的产品销售或使用时,可以存储在一个计算设备可读取存储介质中。基于这样的理解,本发明实施例对现有技术做出贡献的部分或者该技术方案的部分可以以软件产品的形式体现出来,该软件产品存储在一个存储介质中,包括若干指令用以使得一台计算设备(可以是个人计算机,服务器,移动计算设备或者网络设备等)执行本发明各个实施例所述方法的全部或部分步骤。而前述的存储介质包括:U盘、移动硬盘、只读存储器(ROM,Read-Only Memory)、随机存取存储器(RAM,Random Access Memory)、磁碟或者光盘等各种可以存储程序代码的介质。
本说明书中各个实施例采用递进的方式描述,每个实施例重点说明的都是与其它实施例的不同之处,各个实施例之间相同或相似部分互相参见即可。
对所公开的实施例的上述说明,使本领域专业技术人员能够实现或使用本发明。对这些实施例的多种修改对本领域的专业技术人员来说将是显而易见的,本文中所定义的一般原理可以在不脱离本发明的精神或范围的情况下,在其它实施例中实现。因此,本发明将不会被限制于本文所示的这些实施例,而是要符合与本文所公开的原理和新颖特点相一致的最宽的范围。
Claims (10)
- 一种超声参数优化系统,其特征在于,该系统包括:超声设备和参数服务器,所述超声设备包括远程传输端口,并通过所述远程传输端口与所述参数服务器连接;所述参数服务器,用于采集各个所述超声设备通过所述远程传输端口发送的超声数据信息,并对所述超声数据信息进行统计分析,生成适用于各个所述超声设备的参数信息,并将所述参数信息发送至与所述参数信息对应的超声设备;所述超声设备,用于接收所述参数信息,并根据所述参数信息通过用户的触发指令对所述超声设备进行参数优化。
- 根据权利要求1所述的系统,其特征在于,所述参数服务器包括:采集模块,用于采集各个所述超声设备发送的超声数据信息;分析模块,用于对所述超声数据信息进行特征提取,并对提取到的特征值设置对应的权值,进行加权计算得到所述特征值对应的参数调整值,将所述参数调整至进行筛选处理,得到参数信息;发送模块,用于将所述参数信息发送到与所述参数信息对应的所述超声设备。
- 根据权利要求2所述的系统,其特征在于,所述参数服务器还包括:存储模块,用于对参数信息进行存储。
- 根据权利要求1所述的系统,其特征在于,所述超声设备包括:用户输入模块,用于接收用户的触发指令;调整模块,用于根据用户的触发指令,并根据所述参数信息对所述超声设备进行参数优化,其中,当所述触发指令为优化指令时,根据所述参数信息对所述超声设备当前参数进行优化,当所述触发指令为还原指令时,维持所述超声设备当前参数不变。
- 根据权利要求1所述的系统,其特征在于,所述超声设备还包括:存储模块,用于存储所述超声设备的参数信息;自动更新模块,用于调用所述存储模块在预设时间段内的参数信息,并根据所述预设时间段内的参数信息生成参数升级请求,将所述升级请求发送至所述参数服务器,并接收所述参数服务器返回的待升级参数,进行升级,其中,所述待升级参数为所述参数服务器根据所述预设时间段内的参数信息统计生成的参数。
- 一种超声参数优化方法,其特征在于,应用于参数服务器,所述参数服务器与所述超声设备的远程传输端口连接,该方法包括:采集各个所述超声设备发送的超声数据信息;对所述超声数据信息进行特征提取,并对提取到的特征值设置对应的权值,进行加权计算得到所述特征值对应的参数调整值,将所述参数调整至进行筛选处理,得到参数信息;将所述参数信息发送到与所述参数信息对应的所述超声设备。
- 根据权利要求6所述的方法,其特征在于,还包括:对参数信息进行存储。
- 一种超声参数优化方法,其特征在于,应用于超声设备,所述超声设备通过远程传输端口与参数服务器连接,该方法包括:接收所述参数服务器发送的参数信息,其中,所述参数信息为所述参数服务器根据采集的超声数据信息统计分析生成的适用于所述超声设备的参数信息;根据所述参数信息通过用户的触发指令对所述超声设备进行参数优化。
- 根据权利要求8所述的方法,其特征在于,还包括:接收用户的触发指令;根据用户的触发指令对所述超声设备进行参数优化,其中,当所述触发指令为优化指令时,根据所述参数信息对所述超声设备当前参数进行优化,当所述触发指令为还原指令时,维持所述超声设备当前参数不变。
- 根据权利要求8所述的方法,其特征在于,还包括:存储所述超声设备的参数信息;调用在预设时间段内的参数信息,并根据所述预设时间段内的参数信息生成参数升级请求,将所述升级请求发送至所述参数服务器,并接收所述参数服务器返回的待升级参数,进行升级,其中,所述待升级参数为所述参数服务器根据所述预设时间段内的参数信息统计生成的参数。
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CN107273705A (zh) * | 2017-07-25 | 2017-10-20 | 北京品驰医疗设备有限公司 | 人体植入式医疗装置参数确定、设置方法及设备 |
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