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Experimental wireless pacemaker harvests energy from heart to recharge battery

By converting mechanical energy into electrical energy, an experimental wireless, or leadless, pacemaker housing is able to partially recharge its battery, according to a proof-of-principle study to be presented at the American Heart Association's Scientific Sessions 2023. ....

United States , Kennetha Ellenbogen , Megan Craig , Babak Nazer , American Heart Association , American Heart Association Disease , School Of Medicine , American Heart Association Scientific Sessions , University Of Washington , Scientific Sessions , Heart Disease , Patients With Bradycardia , Cardiac Conduction Delay , Kimmerling Professor , Medical Devices ,

Scientists develop tissue adhesive gelatin hydrogels to speed up wound healing, prevent infections

Open wounds, whether caused by accidents or from medical procedures like surgery, require proper management to speed up healing and prevent infections. ....

Megan Craig , Associate Professor Kyung Min Park , Incheon National University , Wound Healing ,

Butterfly-inspired imaging sensor can detect cancer cells with high accuracy

There are many creatures on our planet with more advanced senses than humans. Turtles can sense Earth's magnetic field. Mantis shrimp can detect polarized light. ....

Danielle Ellis , Viktor Gruev , University Of Illinois Urbana Champaign , Illinois Urbana Champaign , Shuming Nie , Magnetic Field ,

"3D Printing StarPoreⓇ for Bone Tissue Engineering" by Jeremy Nicolas Dinoro

Since the advent of Tissue Engineering (TE) in the late 1980’s, significant progress has been made within the biomedical landscape. A recently established branch within TE is biofabrication, a field that aims to automate the fabrication of biologically functional materials through the use of additive manufacturing or three-dimensional (3D) printing, among other techniques. Additive manufacturing offers fine control over part porosity, with the capacity to match the complex internal architecture of human bone. Coupled with clinical 3D scanning techniques, 3D printing has the capacity to generate implants that accurately match defected areas. However, due to the limited number of regulatory approved devices for human implantation and high cost of sophisticated powder bed fusion printers, the printing techniques are restricted.
To be compatible with regulatory requirements, this work aims to utilise a widely accessible and regulatory approved device, high-density polyethylene (HDPE) ....

United States , Therapeutic Goods Administration , Anatomics Pty Ltd , Drug Administration , Tissue Engineering , Federal Drug Administration , 3d Printing , Tissue Engineering ,