Ayyoubzadeh Seyed Mohammad, Baniasadi Tayebeh, Shirkhoda Mohammad, Rostam Niakan Kalhori Sharareh, Mohammadzadeh Niloofar, Roudini Kamran, Ghalehtaki Reza, Memari Fereidoon, Jalaeefar Amirmohsen
Department of Health Information Management, School of Allied Medical Sciences, Tehran University of Medical Sciences, Tehran, Iran.
Department of Health Information Technology, Faculty of Para-Medicine, Hormozgan University of Medical Sciences, Bandar Abbas, Iran.
JMIR Cancer. 2023 Feb 15;9:e42250. doi: 10.2196/42250.
Patients with colorectal cancer who undergo surgery face many postoperative problems. These problems include the risk of relapse, side effects, and long-term complications.
This study sought to design and develop a remote monitoring system as a technological solution for the postdischarge care of these patients.
This research was conducted in 3 main steps: system feature extraction, system design, and evaluation. After feature extraction from a systematic review, the necessary features were defined by 18 clinical experts in Iran. In the next step, the architecture of the system was designed based on the requirements; the software and hardware parts of the system were embedded in the architecture, then the software system components were drawn using the unified modeling language diagrams, and the details of software system implementation were identified. Regarding the hardware design, different accessible hardware modules were evaluated, and suitable ones were selected. Finally, the usability of the system was evaluated by demonstrating it over a Skype virtual meeting session and using Nilsen's usability principles.
A total of 21 mandatory features in 5 main categories, including patient information registration, periodic monitoring of health parameters, education, reminders, and assessments, were defined and validated for the system. The software was developed using an ASP.Net core backend, a Microsoft SQL Server database, and an Ionic frontend alongside the Angular framework, to build an Android app. The user roles of the system included 3 roles: physicians, patients, and the system administrator. The hardware was designed to contain an Esp8266 as the Internet of Things module, an MLX90614 infrared temperature sensor, and the Maxim Integrated MAX30101 sensor for sensing the heartbeat. The hardware was designed in the shape of a wristband device using SolidWorks 2020 and printed using a 3D printer. The firmware of the hardware was developed in Arduino with the capability of firmware over the air. In evaluating the software system from the perspective of usability, the system received an average score of 3.8 out of 5 from 4 evaluators.
Sensor-based telemonitoring systems for patients with colorectal cancer after surgery are possible solutions that can make the process automatic for patients and caregivers. The apps for remote colorectal patient monitoring could be designed to be useful; however, more research regarding the developed system's implementation in clinic settings and hospitals is required to understand the probable barriers and limitations.
接受手术的结直肠癌患者面临许多术后问题。这些问题包括复发风险、副作用和长期并发症。
本研究旨在设计和开发一种远程监测系统,作为这些患者出院后护理的技术解决方案。
本研究分3个主要步骤进行:系统特征提取、系统设计和评估。在从系统评价中提取特征后,由伊朗的18位临床专家确定必要的特征。下一步,根据需求设计系统架构;将系统的软件和硬件部分嵌入架构中,然后使用统一建模语言图绘制软件系统组件,并确定软件系统实现的细节。在硬件设计方面,对不同的可访问硬件模块进行了评估,并选择了合适的模块。最后,通过在Skype虚拟会议上展示并使用尼尔森可用性原则对系统的可用性进行了评估。
为该系统定义并验证了5个主要类别中的21个强制功能,包括患者信息登记、健康参数定期监测、教育、提醒和评估。该软件使用ASP.Net核心后端、Microsoft SQL Server数据库和Ionic前端以及Angular框架开发,以构建一个安卓应用程序。该系统的用户角色包括3种角色:医生、患者和系统管理员。硬件设计包含一个作为物联网模块的Esp8266、一个MLX90614红外温度传感器和用于检测心跳的Maxim Integrated MAX30101传感器。硬件采用SolidWorks 2020设计成腕带设备形状,并使用3D打印机打印。硬件固件在Arduino中开发,具备空中固件更新能力。从可用性角度评估软件系统时,4名评估人员给出的系统平均得分为3.8(满分5分)。
基于传感器的术后结直肠癌患者远程监测系统是可行的解决方案,可为患者和护理人员实现流程自动化。用于远程结直肠癌患者监测的应用程序可以设计得很实用;然而,需要对该系统在临床环境和医院中的实施进行更多研究,以了解可能存在的障碍和局限性。