prosthetics

简明释义

[prɒsˈθetɪks][prɑːsˈθetɪks]

n. [外科] 修复学,修补学;弥补术

英英释义

The branch of medicine that deals with the design, fabrication, and fitting of artificial limbs or devices to replace missing body parts.

医学的一个分支,涉及人工肢体或替代缺失身体部位的装置的设计、制造和配备。

An artificial device that is used to replace a missing body part, such as a leg or arm.

用于替代缺失身体部位(如腿或手臂)的人工装置。

单词用法

advanced prosthetics

先进的假肢

customized prosthetics

定制的假肢

prosthetics fitting

假肢配适

prosthetics rehabilitation

假肢康复

prosthetics and orthotics

假肢和矫形器

prosthetics technology

假肢技术

prosthetics industry

假肢行业

prosthetics device

假肢设备

同义词

artificial limbs

假肢

He was fitted with artificial limbs after the accident.

事故后,他被安装了假肢。

prosthetic devices

假肢装置

The clinic specializes in prosthetic devices for amputees.

该诊所专门为截肢者提供假肢装置。

orthotics

矫形器具

Orthotics can help improve mobility and reduce pain.

矫形器具可以帮助改善活动能力并减少疼痛。

反义词

natural limbs

自然肢体

He was born with natural limbs, allowing him to play sports without any limitations.

他天生有自然肢体,使他可以毫无障碍地参加体育运动。

biological parts

生物部件

The doctor explained the advantages of biological parts over prosthetics in certain cases.

医生解释了在某些情况下生物部件相对于假肢的优势。

例句

1.His prosthetics have no knee joints so he had to run with stiff upper legs - a much more physically taxing style.

他的义肢没有膝关节,所以他只能依靠略显僵直的大腿来跑步,而用这种方式要比普通人跑起步来费力得多。

2.Prosthetics. Structural testing of lower - limb prostheses - test samples.

修复术。下肢假体结构检验。试验样品。

3.She approached the trainers, who put her in touch with the inventors, Hanger Prosthetics & Orthotics in Bethesda, Maryland.

她找到了训练师,从他们那儿她得以联系上发明者,马里兰州贝塞斯达的“支架的修复和矫正”公司。

4.They have so much more access to information and to learn about what prosthetics are out there.

他们有更加多的信息来源,让他们了解什么是义肢。

5.He wore 47 different prosthetics, slept in animal carcasses, and ate a bison liver, even though he's a vegetarian.

他前后共戴过47种特效假体,还曾睡在动物尸体里,尽管小李子是素食主义者,他还是吃了一块野牛肝脏。

6.For individuals who lose an arm or leg and rely on prosthetics, implanted stimulators offer promise in restoring feelings of sensation.

对于失去了手臂或腿部后依靠假肢个人,植入刺激器提供恢复感情感觉的保证。

7.But years later ms Jaber finds him back in Baghdad, his exams unfinished and without the prosthetics which he found too heavy.

但多年后她贾比尔认为他回到巴格达,他的考试完成,但他发现假肢太重。

8.After filming "Avatar", Mr Alonso worked on a film in the Caribbean in which he played an old man. This involved many prosthetics and lots of glue.

拍摄完《阿凡达》之后,阿隆索到加勒比地区拍摄另一部影片,他在其中饰演一位老人,这需要贴很多面贴,涂很多胶水。

9.He was fitted with a new prosthetics 假肢 that improved his walking ability.

他被装配了一只新的假肢,改善了他的行走能力。

10.The field of prosthetics 义肢技术 has made significant advancements in recent years.

近年来,义肢技术领域取得了显著进展。

11.The clinic specializes in prosthetics 义肢 for both upper and lower limbs.

该诊所专门提供上下肢的义肢服务。

12.Innovative prosthetics 义肢 can now be controlled by brain signals.

创新的义肢现在可以通过脑信号控制。

13.After her accident, she received advanced prosthetics 义肢 to help her regain mobility.

在事故后,她获得了先进的义肢,帮助她恢复了活动能力。

作文

The field of medicine has seen remarkable advancements over the past few decades, particularly in the area of rehabilitation and recovery. One of the most significant developments has been in the realm of prosthetics, which refers to the artificial devices that are used to replace missing body parts. These devices have not only improved the quality of life for individuals with limb loss but have also revolutionized the way we think about human capability and adaptability. As technology continues to evolve, so too does the potential for prosthetics to enhance physical functions and provide users with a sense of normalcy.Historically, prosthetics were rudimentary and often uncomfortable. Early models were made from wood and metal, lacking the sophistication required for natural movement. However, with the advent of modern materials such as carbon fiber and advanced robotics, contemporary prosthetics are lightweight, durable, and capable of mimicking the natural motion of limbs. This evolution has allowed amputees to engage in activities that were once thought impossible, such as running or playing sports.One of the most exciting aspects of modern prosthetics is the integration of technology. Many new devices are now equipped with sensors and microprocessors that can adapt to the user’s movements. For instance, some bionic arms can detect muscle signals and respond accordingly, allowing for more precise control. This level of responsiveness not only aids in daily tasks but also contributes to the psychological well-being of users, who may feel more connected to their bodies.Moreover, the development of prosthetics is not solely focused on physical functionality. There is a growing recognition of the importance of aesthetics and personal expression. Many users desire prosthetics that reflect their individuality, leading to innovations in design. Customizable options allow users to choose colors, patterns, and styles that resonate with their personalities, making prosthetics not just functional tools but also fashion statements.In addition to individual benefits, the impact of prosthetics extends to society as a whole. By enabling individuals with disabilities to participate more fully in their communities, prosthetics contribute to greater inclusivity and diversity. When people are empowered to pursue their passions without limitations, it enriches the social fabric and inspires others. However, challenges remain in the field of prosthetics. Accessibility and affordability are significant barriers for many individuals, especially in low-income regions. The cost of advanced prosthetics can be prohibitive, leaving many without the necessary support to regain their mobility. Efforts must be made to ensure that these life-changing devices are available to all who need them, regardless of their socioeconomic status.In conclusion, prosthetics represent a fascinating intersection of medicine, technology, and personal identity. As we continue to push the boundaries of what is possible, it is crucial to prioritize accessibility and inclusivity in the development of these devices. By doing so, we can create a world where everyone, regardless of their physical circumstances, has the opportunity to lead fulfilling lives. The journey of prosthetics is not just about restoring physical capabilities; it is about empowering individuals to reclaim their place in society and inspire future generations to overcome their own challenges.

医学领域在过去几十年中经历了显著的进步,特别是在康复和恢复方面。其中一个最重要的发展就是在假肢领域,即用于替代缺失身体部位的人工装置。这些装置不仅改善了肢体缺失者的生活质量,还彻底改变了我们对人类能力和适应性的思考。随着科技的不断发展,假肢提升身体功能的潜力也在不断增加,为用户提供了一种正常生活的感觉。历史上,假肢是粗糙且常常不舒适的。早期模型由木材和金属制成,缺乏自然运动所需的复杂性。然而,随着现代材料如碳纤维和先进机器人技术的出现,当代假肢变得轻便、耐用,并能够模拟四肢的自然运动。这一演变使得截肢者能够参与曾被认为不可能的活动,如跑步或运动。现代假肢最令人兴奋的方面之一就是技术的整合。许多新设备现在配备了传感器和微处理器,可以适应用户的运动。例如,一些仿生手臂可以检测肌肉信号并做出相应反应,从而实现更精确的控制。这种响应能力不仅有助于日常任务,还促进了用户的心理健康,使他们与自己的身体更加紧密联系。此外,假肢的发展不仅仅关注身体功能。越来越多的人意识到美学和个人表达的重要性。许多用户希望自己的假肢能够反映他们的个性,这导致了设计上的创新。可定制选项允许用户选择与自己个性相符的颜色、图案和风格,使假肢不仅成为功能工具,也成为时尚声明。除了个人利益,假肢的影响还延伸到整个社会。通过使残疾人士能够更全面地参与社区,假肢促进了更大的包容性和多样性。当人们能够毫无限制地追求自己的激情时,这丰富了社会结构,并激励他人。然而,假肢领域仍然存在挑战。可及性和负担能力是许多人面临的重大障碍,尤其是在低收入地区。先进的假肢的成本可能过高,让许多人无法获得恢复行动能力所需的支持。必须努力确保这些改变生活的设备能够提供给所有需要它们的人,无论其社会经济地位如何。总之,假肢代表了医学、技术和个人身份之间的迷人交汇点。随着我们不断突破可能性的界限,优先考虑这些设备的可及性和包容性至关重要。通过这样做,我们可以创造一个每个人,无论其身体状况如何,都有机会过上充实生活的世界。假肢的旅程不仅仅是恢复身体能力;更是赋予个人重新夺回他们在社会中位置的能力,并激励未来几代人克服自己的挑战。