implantable

简明释义

[ɪmˈplæntəbəl][ɪmˈplæntəbl]

adj. 可移植的,可植入的

英英释义

Capable of being implanted in the body, typically referring to medical devices or materials.

能够植入体内,通常指医疗设备或材料。

单词用法

implantable cardioverter-defibrillator

可植入心脏复律除颤器

implantable drug delivery system

可植入药物输送系统

implantable biosensor

可植入生物传感器

surgical implantation of implantable devices

可植入设备的外科植入

long-term safety of implantable devices

可植入设备的长期安全性

regulatory approval for implantable devices

可植入设备的监管批准

同义词

insertable

可插入的

The device is designed to be insertable into the patient's body.

该设备旨在可插入患者体内。

implanted

植入的

Once implanted, the monitor can track health metrics continuously.

一旦植入,监测器可以持续跟踪健康指标。

embedded

嵌入的

The embedded chip allows for better tracking of medical conditions.

嵌入式芯片可以更好地跟踪医疗状况。

反义词

removable

可移除的

The device is designed to be removable for easy maintenance.

该设备设计为可移除,以便于维护。

non-implantable

不可植入的

Non-implantable devices are often used in outpatient settings.

不可植入设备通常用于门诊环境。

例句

1.Methods H22 implantable tumor models on mice were applied.

方法采用小鼠移植型肝癌H 22模型。

2.Another option for some, such as those with hypertrophic cardiomyopathy, is an implantable cardioverter-defibrillator (ICD).

对于一些人,比如说那些患肥厚性心肌病的人,另一个方法则是植入一个心律转复除颤器(ICD)。

3.The computing system – the tiniest fabricated to date – is a prototype of an implantable eye pressure monitor for glaucoma patients.

该计算机系统—迄今所生产出来的最小的—是一部供青光眼患者使用的可植入式眼压监测器的原型机。

4.Despite these drawbacks, the first implantable pacemakers were an improvement over what had come before.

尽管有许多缺点,第一个植入式心律调整器比之过去还是一个很大的进步。

5.Treatment for heart arrhythmias also may involve use of an implantable device.

植入设备心率失常的治疗也包括植入性设备的应用。

6.The Optimizer System is an implantable pulse generator that delivers electrical impulses to the heart for treatment of moderate to severe heart failure.

这个优化系统通过植入式心脏起搏器产生电脉冲对严重心衰患者进行适度的治疗。

7.Before Mr Larsson received his implantable device, patients had received pacing from huge external devices.

在拉森之前的很多病人通过巨大的外部设备调节心律。

8.Derek, his mom Leslie and his dad Jeffrey are the first volunteer test subjects for a new, implantable computer device called VeriChip.

德里克的妈妈莱斯琳和爸爸杰佛里是一种叫做“绝对芯片”的人体植入电子装置的第一批自愿试验者。

9.If effective, the implantable neurostimulator would provide a new treatment option to free these patients from their long-standing headache pain.

如果有效的话,可植入的神经刺激仪将会为缓解长期偏头痛患者的疼痛提供新的治疗理念。

10.The new implantable 植入式 hearing aid has improved sound quality significantly.

新的<植入式>助听器显著改善了音质。

11.Research is ongoing for implantable 植入式 devices that can monitor blood glucose levels continuously.

研究正在进行中,旨在开发可以持续监测血糖水平的<植入式>设备。

12.An implantable 植入式 cardioverter-defibrillator can save lives during cardiac arrest.

一种<植入式>心脏复律除颤器可以在心脏骤停时挽救生命。

13.The doctor recommended an implantable 植入式 device to help regulate my heart rhythm.

医生建议使用一种<插入式>装置来帮助调节我的心律。

14.She received an implantable 植入式 contraceptive device to prevent pregnancy.

她接受了一种<植入式>避孕装置以防止怀孕。

作文

In recent years, the field of medicine has witnessed remarkable advancements, particularly in the realm of technology that enhances patient care and treatment outcomes. One such innovation is the development of implantable devices, which are designed to be inserted into the human body for various medical purposes. These devices range from pacemakers that regulate heartbeats to neurostimulators that alleviate chronic pain. The significance of implantable technology lies not only in its ability to improve the quality of life for patients but also in its potential to revolutionize the way we approach healthcare. The concept of implantable devices is rooted in the idea of providing long-term solutions to health issues that were previously managed through temporary measures. For instance, traditional treatments for arrhythmias often involved medication or external monitoring devices. However, with the advent of implantable cardiac devices, patients can now enjoy a more stable and reliable management of their conditions without the constant need for external intervention. This shift not only enhances patient comfort but also reduces the burden on healthcare systems.Moreover, implantable devices have paved the way for personalized medicine. With advancements in technology, these devices can be tailored to meet the specific needs of individual patients. For example, some implantable insulin pumps can automatically adjust insulin delivery based on real-time glucose monitoring, providing a customized approach to diabetes management. This level of personalization is crucial, as it allows for more effective treatments that cater to the unique physiological characteristics of each patient.Despite the numerous benefits associated with implantable devices, there are challenges that must be addressed. One of the primary concerns is the risk of infection or complications arising from the surgical procedures required for implantation. Patients must be thoroughly informed about these risks and monitored closely post-surgery to ensure their safety. Additionally, the longevity and functionality of implantable devices are critical factors that influence patient outcomes. Continuous research and development are needed to enhance the durability of these devices and minimize the likelihood of malfunctions.Another important aspect of implantable technology is the ethical considerations surrounding its use. As these devices become more sophisticated, questions arise regarding data privacy and the implications of having devices that can monitor and transmit personal health information. It is essential for healthcare providers and manufacturers to establish clear guidelines and protocols to protect patient data while ensuring that the benefits of implantable technology are maximized.In conclusion, the evolution of implantable devices represents a significant leap forward in medical technology. Their ability to provide long-term solutions, promote personalized medicine, and enhance patient care underscores their importance in contemporary healthcare. However, as we embrace these innovations, it is crucial to remain vigilant about the associated risks and ethical considerations. By doing so, we can harness the full potential of implantable technology to improve health outcomes and ultimately transform the landscape of medicine for future generations.

近年来,医学领域见证了显著的进步,特别是在增强患者护理和治疗效果的技术方面。其中一项创新是可植入设备的开发,这些设备旨在为各种医疗目的插入人体。这些设备包括调节心跳的起搏器和缓解慢性疼痛的神经刺激器。可植入技术的重要性不仅在于其改善患者生活质量的能力,还在于其革命性地改变我们处理医疗保健的方法。可植入设备的概念源于为健康问题提供长期解决方案的想法,这些问题以前是通过临时措施进行管理的。例如,心律失常的传统治疗通常涉及药物或外部监测设备。然而,随着可植入心脏设备的出现,患者现在可以享受更稳定和可靠的病情管理,而无需不断的外部干预。这种转变不仅提高了患者的舒适度,还减轻了医疗系统的负担。此外,可植入设备为个性化医疗铺平了道路。随着技术的进步,这些设备可以根据每个患者的特定需求进行定制。例如,一些可植入的胰岛素泵可以根据实时血糖监测自动调整胰岛素输送,提供个性化的糖尿病管理方法。这种个性化水平至关重要,因为它允许更有效的治疗,满足每个患者独特的生理特征。尽管与可植入设备相关的好处众多,但仍然存在必须解决的挑战。主要问题之一是感染或因植入所需的手术程序而引发的并发症风险。患者必须充分了解这些风险,并在手术后进行密切监测,以确保他们的安全。此外,可植入设备的耐用性和功能性是影响患者结果的关键因素。需要持续的研究和开发来增强这些设备的耐用性,并最小化故障的可能性。可植入技术的另一个重要方面是围绕其使用的伦理考虑。随着这些设备变得越来越复杂,关于数据隐私和拥有能够监测和传输个人健康信息的设备的影响的问题随之而来。医疗服务提供者和制造商必须建立明确的指南和协议,以保护患者数据,同时确保最大限度地发挥可植入技术的好处。总之,可植入设备的发展代表了医学技术的重大飞跃。它们提供长期解决方案、促进个性化医疗和增强患者护理的能力突显了它们在当代医疗保健中的重要性。然而,在我们接受这些创新的同时,保持对相关风险和伦理考虑的警惕至关重要。通过这样做,我们可以利用可植入技术的全部潜力,提高健康结果,并最终改变未来几代人的医疗格局。