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US Manufacturing Technology Orders totaled $437.85 million in March 2021

AMT US Manufacturing Technology Orders totaled $437.85 million in March 2021 This total was an increase of 16.1% from February 2021 and a 41.6% increase over March 2020. U.S. Manufacturing Technology Orders totaled $437.9 million, an increase of 16.1% over February 2021 and an increase of 41.6% over March 2020, according to the latest U.S. Manufacturing Technology Orders report published by AMT – The Association For Manufacturing Technology. Total orders for 2021 reached $1.1 billion, almost one-third above the total orders in the first quarter of 2020. “It is noteworthy that total orders in the first quarter were significantly higher than total orders in Q1 2020, given the strength of the first three months of 2020, when the pandemic had not yet affected the industry,” says Douglas K. Woods, president of AMT. “And while these are certainly impressive numbers, they should have been even higher when looking at Oxford Economics’ prediction that U.S. GDP could have been

South-korea
Geun-hyung-kim
Sungkyunkwan-university
Applied-physics-reviews
Geun-hyung
தெற்கு-கொரியா
பயன்படுத்தப்பட்டது-இயற்பியல்-மதிப்புரைகள்

Bioengineering approach for functional muscle regeneration

 E-Mail IMAGE: The dECM-MA derived from porcine skeletal muscles is combined with PVA fibrillation, which provides the topographical cues for proper cellular alignment when bioengineering rat muscles. view more  Credit: Sang Jin Lee WASHINGTON, May 11, 2021 When trauma, illness, or injury causes significant muscle loss, reconstructive procedures for bioengineering functional skeletal muscles can fall short, resulting in permanent impairments. Finding a synergy in the importance of biochemical signals and topographical cues, researchers from Wake Forest Institute for Regenerative Medicine, Sungkyunkwan University, and Chonnam National University developed an efficient technique for muscle regeneration and functional restoration in injured rats. They describe results from the technique in the journal

Washington
United-states
Anthony-atala
Jamesj-yoo
Geun-hyung-kim
Hyeongjin-lee
Jiun-lee
Kwonjin-kim
Jin-lee
Sungkyunkwan-university
Wake-forest-institute-for-regenerative-medicine
Chonnam-national-university

4D printing strategy helps fabricate biomimetic microchannel scaffold for spinal fusion

4D printing strategy helps fabricate biomimetic microchannel scaffold for spinal fusion Spinal fusion is frequently performed to restore spinal stability in patients with spinal diseases, such as spinal stenosis, vertebral fractures, progressive deformities, and instability. In the past two decades, there has been marked increase in the number of people over 65 years in age who have needed spinal fusion surgery. While autogenous bone grafts have long been considered the reference standard for spinal fusion, painful pseudoarthrosis remains a leading cause of poor clinical outcomes. Many researchers have consequently focused on trying to create a biomimetic scaffold that induces vascularization to enable bone tissue regeneration and spinal fusion.

South-korea
Geun-hyung-kim
Emily-henderson
Sungkyunkwan-university
Applied-physics-reviews
Hyung-kim
Bone
Spinal-fusion
Collagen
Hydroxyapatite
N-vivo
Muscle

Using 4D printing to enable vascularization, bone tissue regeneration, spinal fusion

 E-Mail IMAGE: Surface, cross-sectional optical/SEM images showing the uniaxially aligned surface patterns and microchannels within the struts of the fabricated collagen scaffolds. A schematic showing the osteogenesis and angiogenesis of the fabrication. view more  Credit: Hanjun Hwangbo, Hyeongjin Lee WASHINGTON, May 4, 2021 Spinal fusion is frequently performed to restore spinal stability in patients with spinal diseases, such as spinal stenosis, vertebral fractures, progressive deformities, and instability. In the past two decades, there has been marked increase in the number of people over 65 years in age who have needed spinal fusion surgery. While autogenous bone grafts have long been considered the reference standard for spinal fusion, painful pseudoarthrosis remains a leading cause of poor clinical outcomes. Many researchers have consequently focused on trying to create a biomimetic scaffold that induces vascularization to enable bone tissue regeneration and

South-korea
Washington
United-states
Su-yeon-kwon
Geun-hyung-kim
Hyeongjin-lee
Kwonjin-kim
Bo-han
Hanjun-hwangbo
Byong-choi
Eun-ji-roh
Hari-prasad-joshi

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