An estimated 17 million individuals suffer a stroke each year with over 5 million resulting in permanent disability. For many of these, the provision of gravity support to the impaired upper limb can provide significant and immediate improvement in arm mobility. This added mobility has the potential to improve arm function and user independence overall, but, so far, wearable arm supports have found only limited uptake by end-users. The reasons are unclear, but it is hypothesized that device uptake is strongly affected by aspects of arm support implementation such as added weight and volume and the effectiveness of the support provided. In the interest of reducing the size and visibility of wearable arm supports, cable driven actuation was investigated, and a device called the series wrapping cam was developed. This device uses two wrapping cams to stretch a spring as the user's arm elevation decreases. It optimally uses the range of motion of a custom latex spring in a compact mechanism. A one degree-of-freedom proof-of-concept prototype of the series wrapping cam was manufactured and tested. The torque supplied by the prototype correctly responds to shoulder elevation to balance the weight of the extended arm at any level of elevation. However, the support is unaffected by the degree of elbow flexion-extension. Shoulder joint torque is a function of both shoulder elevation and elbow flexion, suggesting further benefits could be achieved through a bi-articular design.

Download full-text PDF

Source
http://dx.doi.org/10.1109/ICORR.2017.8009311DOI Listing

Publication Analysis

Top Keywords

series wrapping
12
wrapping cam
12
wearable arm
12
arm
8
arm support
8
arm supports
8
shoulder elevation
8
support
5
development series
4
wrapping
4

Similar Publications

Gross recurrent laryngeal nerve invasion by extranodal extension in thyroid carcinoma.

BMC Cancer

January 2025

Department of Ultrasound, Peking University Third Hospital, 49 North Garden Road, Haidian District, Beijing, 100191, China.

Background: Lymphatic metastasis commonly occurs in patients with papillary thyroid carcinoma and medullary thyroid carcinoma. The clinical and imaging characteristics of recurrent laryngeal nerve (RLN) invasion by extranodal extension (ENE) of metastatic lymph nodes remain understudied. This study aimed to evaluate these characteristics in patients with thyroid carcinoma.

View Article and Find Full Text PDF

Microvascular decompression is considered a first-line treatment in classical trigeminal neuralgia. Teflon is the material commonly used. The use of autologous muscle has been occasionally reported.

View Article and Find Full Text PDF

In an effort to meet the high demand for silver nanostructures in both research and consumer applications, we devise a simple and readily scaleable photochemical method through which silver nanostructures of varying morphologies, sizes, and optical properties can be synthesized using batch and flow photochemical strategies. For the latter we build upon the application of a wrapped-lamp photochemical flow system recently developed by our group to enable sequential irradiation with several wavelengths of LEDs in series in an approach that we describe as "plasmon pushing". We find that this strategy can accelerate the conversion of silver nanoparticle seeds to decahedral and triangular nanostructures, and that with it we have control over the tuning of the size and optical properties of triangular nanostructures in the red and near-IR regions.

View Article and Find Full Text PDF

Background: Surgical fundoplication remains integral in managing gastroesophageal reflux disease (GERD) by addressing gastroesophageal valve incompetence. This study introduces a novel hybrid approach, the Eversion Cruroplasty and Collar Overwrap (ECCO) procedure, aiming to combine benefits of conventional partial wrapping and posteromedial cardiopexy, considering gastric fundus anatomical peculiarities as an anti-reflux barrier.

Methods: A retrospective analysis of pediatric patients presenting with refractory GERD from 2021 to 2023 was conducted.

View Article and Find Full Text PDF

A low switching loss GaN trench MOSFET design utilizing a triple-shield structure.

Sci Rep

January 2025

College of Physics and Electronic Information, Baicheng Normal University, Jilin, 137000, China.

An innovative GaN trench MOSFET featuring an ultra-low gate-drain charge (Q) is proposed, with its operational mechanisms thoroughly investigated using TCAD simulations. This novel MOSFET design introduces a triple-shield structure (BPSG-MOS) comprising three critical components: (1) a grounded split gate (SG), (2) a P+ shield region (PSR), and (3) a semi-wrapped BP layer that extends the P-shield beneath the gate and along the sidewalls of the trench gate. Both the SG and PSR effectively reduce gate-drain coupling, transforming most of the gate-drain capacitance (C) into a series combination of gate-source capacitance (C) and drain-source capacitance (C).

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!