3D PRINTED QUICK HEALING CAST: THE EXOSKELETAL IMMOBILIZER

被引:0
作者
Sankar, Sriram [1 ]
Paulose, Jithu [1 ]
Thomas, Nirmal [1 ]
机构
[1] Fed Inst Sci & Technol FISAT, Dept Mech Engn, Angamaly, Kerala, India
来源
PROCEEDINGS OF THE ASME INTERNATIONAL MECHANICAL ENGINEERING CONGRESS AND EXPOSITION, 2017 VOL 14 | 2018年
关键词
D O I
暂无
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
A cast is used to encase a limb or part of the body to stabilize and hold anatomical structures in place to allow healing of broken bones and ligament tears by promoting immobilization. Conventional orthopedic casts have been made out of Plaster of Paris or fiberglass since ages. The traditional plaster casts have a wide range of problems that have been long since evaded due to the lack of a better alternative. Ever since the advent of additive manufacturing, many remarkable things have been made possible by the technology of 3D printing. The Exoskeletal Immobilizer is a custom 3D printed orthopedic cast that is well ventilated, light weighted, aesthetically pleasing and anatomically accurate. Even though printing the immobilizer on spot takes a little longer than the conventional cast, its countless benefits make up for the waiting time. It is extremely logical and useful for the ones suffering from cerebral palsy, who are forced to wear casts for their entire life. This project is not just another profit making business idea but is the cornerstone that is being laid to serve the people better and lead humanity into the next phase of medical advancement. By integrating parts of physiotherapy, eastern medicine, orthopedics and latest technologies, the Immobilizer promises a speedy recovery. The possibility of performing ultrasound therapy, electrical stimulation therapy, chromotherapy, cryotherapy and acupuncture therapy during the immobilization period reduces the healing time at least by about 40% ([4]) and eases discomfort of the patients. The features imparted to the cast have been specially handpicked and researched to provide a safe overlap of post immobilization treatment and the immobilization period to facilitate faster healing. The Exoskeletal Immobilizer can not only heal the fracture or a tear faster but can also keep the patient comfortable during the treatment.
引用
收藏
页数:7
相关论文
共 50 条
[21]   Specifics in Production of Fixed Partial Dentures Using 3D Printed Cast Patterns [J].
Dikova, Tsanka .
COMPUTATIONAL AND EXPERIMENTAL APPROACHES IN MATERIALS SCIENCE AND ENGINEERING, CNNTECH 2019, 2020, 90 :92-102
[22]   Behavior of Steel Foam Sandwich Members Cast with 3D Printed Sand Cores [J].
Jian Zhao ;
Amir Kordijazi ;
Colin Valensa ;
Hathibelagal Roshan ;
Yugg Kolhe ;
Pradeep K. Rohatgi .
JOM, 2022, 74 :2083-2093
[23]   Behavior of Steel Foam Sandwich Members Cast with 3D Printed Sand Cores [J].
Zhao, Jian ;
Kordijazi, Amir ;
Valensa, Colin ;
Roshan, Hathibelagal ;
Kolhe, Yugg ;
Rohatgi, Pradeep K. .
JOM, 2022, 74 (05) :2083-2093
[24]   3D Printed Microfluidics [J].
Nielsen, Anna V. ;
Beauchamp, Michael J. ;
Nordin, Gregory P. ;
Woolley, Adam T. .
ANNUAL REVIEW OF ANALYTICAL CHEMISTRY, VOL 13, 2020, 13 :45-65
[25]   3D PRINTED MAN [J].
Di Leo, Jeffrey R. .
AMERICAN BOOK REVIEW, 2015, 37 (01) :2-+
[26]   3D PRINTED MEMS [J].
Huang, Po-Han ;
Lai, Lee-Lun ;
Iordanidis, Theocharis ;
Watanabe, Shiro ;
Stemme, Goran ;
Roxhed, Niclas ;
Gylfason, Kristinn B. ;
Niklaus, Frank .
2025 IEEE 38TH INTERNATIONAL CONFERENCE ON MICRO ELECTRO MECHANICAL SYSTEMS, MEMS, 2025, :62-67
[27]   3D printed electronics [J].
Tokito S. ;
Masuichi M. ;
Sato N. .
Journal of Japan Institute of Electronics Packaging, 2020, 23 (06) :459-464
[28]   3D PRINTED BUILDINGS [J].
Fox-Skelly, Jasmin .
CHEMISTRY & INDUSTRY, 2022, 86 (05) :32-35
[29]   3D printed tumours [J].
Burke, Maria .
CHEMISTRY & INDUSTRY, 2022, 86 (12) :8-8
[30]   3D printed wood [J].
Kam, Doron ;
Layani, Michael ;
Shoseyov, Oded ;
Magdassi, Shlomo .
ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2019, 257