Robotic thread-assisted clot removal for stroke treatment: A comprehensive review.

Abdul Baquee Ahmed, Damiki Laloo, Ram Kumar Sahu, K Sandhanam, Damanbhalang Rynjah, Shatabdi Ghose, M Sumitra, Bedanta Bhattacharjee

Journal: Neuroscience 2025;570():95-109

PMID: 39984029

Abstract

Stroke is the predominant factor of long-term impairment in developed nations and is a major contributor to death globally. Stroke is a life-threatening neurological condition caused by the occlusion or rupture of blood vessels in the brain. Brain clot restricts blood movement by causing obstruction thus, damaging the blood vessels and tissues, which ultimately causes stroke. Thus, stroke requires immediate and efficient treatment to reduce neurological deterioration and increase patient recuperation. Over the last decade, there have been significant breakthroughs in diagnostic and therapeutic interventionsfor stroke. Stroke is typically treated with immediate therapeutic interventions, which may involve thrombolytic medication infusions like tissue plasminogen activator, anti-coagulants like heparin, or surgical clot clearance procedures like thrombectomy. Despite the significant benefits of these treatments, several disadvantages, including restricted therapeutic index, allergic reactions, and adverse effects (such as hypotension, recurrent stroke, hypoglycaemia, and atypical bleeding), highlight the need for far more innovative solutions. In response to these challenges, a novel approach to treating brain clots has emerged. The study investigates a novel approach to treating strokes caused by brain clots through the utilization of a steerable micro-robotic thread guided by real-time imaging to enhance precision in clot removal. This method addresses the limitations of traditional treatments namely thrombolytics and thrombectomy. In this work, we emphasized the innovative approaches in the removal of brain clots, the use and mechanisms of cutting-edge robotic thread technology, and presented specific case studies demonstrating its application.

Copyright © 2025 International Brain Research Organization (IBRO). Published by Elsevier Inc. All rights reserved.

Address: Department of Pharmacology, SRM College of Pharmacy, SRMIST, Kattankulathur, Chennai 603203, India.; School of Pharmaceutical Sciences, Girijananda Chowdhury University-Tezpur Campus, 784501 Assam, India.; Phytochemical Research Laboratory, School of Pharmaceutical Sciences, Girijananda Chowdhury University- Guwahati, 781017 Assam, India.; Department of Pharmaceutical Sciences, Hemvati Nandan Bahuguna Garhwal University (A Central University), Chauras Campus, Tehri Garhwal 249161 Uttarakhand, India.; School of Pharmaceutical Sciences, Girijananda Chowdhury University-Tezpur Campus, 784501 Assam, India. Electronic address: [email protected].
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