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Bone & Joint 360
Vol. 13, Issue 1 | Pages 46 - 46
1 Feb 2024


Bone & Joint 360
Vol. 13, Issue 2 | Pages 50 - 50
1 Apr 2024


Bone & Joint 360
Vol. 11, Issue 4 | Pages 11 - 14
1 Aug 2022


Bone & Joint 360
Vol. 11, Issue 1 | Pages 38 - 41
1 Feb 2022


Bone & Joint 360
Vol. 10, Issue 5 | Pages 12 - 13
1 Oct 2021


Bone & Joint 360
Vol. 10, Issue 4 | Pages 52 - 52
1 Aug 2021


Bone & Joint 360
Vol. 10, Issue 3 | Pages 40 - 40
1 Jun 2021


Bone & Joint 360
Vol. 9, Issue 2 | Pages 33 - 37
1 Apr 2020


Bone & Joint 360
Vol. 6, Issue 6 | Pages 28 - 31
1 Dec 2017


Bone & Joint 360
Vol. 5, Issue 6 | Pages 26 - 27
1 Dec 2016


Bone & Joint 360
Vol. 1, Issue 5 | Pages 17 - 19
1 Oct 2012

The October 2012 Wrist & Hand Roundup360 looks at: osteoarticular flaps to the PIPJ; prognosis after wrist arthroscopy; adipofascial flaps and post-traumatic adhesions; the torn TFCC alone; ulna-shortening osteotomy for ulnar impaction syndrome; Dupuytren’s disease; when a wrist sprain is not a sprain; and shrinking the torn intercarpal ligament.


Bone & Joint 360
Vol. 1, Issue 4 | Pages 5 - 7
1 Aug 2012
Rajasekaran S

In 2006, approximately 1.3 million peer-reviewed scientific articles were published, aided by a large rise in the number of available scientific journals from 16 000 in 2001 to 23 750 by 2006. Is this evidence of an explosion in scientific knowledge or just the accumulation of wasteful publications and junk science? Data show that only 45% of the articles published in the 4500 top scientific journals are cited within the first five years of publication, a figure that is dropping steadily. Only 42% receive more than one citation. For better or for worse, “Publish or Perish” appears here to stay as the number of published papers becomes the basis for selection to academic positions, for tenure and promotions, a criterion for the awarding of grants and also the source of funding for salaries. The high pressure to publish has, however, ushered in an era where scientists are increasingly conducting and publishing data from research performed with ‘questionable research practices’ or even committing outright fraud. The few cases which are reported will in fact be the tip of an iceberg and the scientific community needs to be vigilant against this corruption of science.


Bone & Joint 360
Vol. 1, Issue 3 | Pages 2 - 4
1 Jun 2012
Cobb JP Andrews BL

In a global environment of rising costs and limited funds, robotic and computer-assisted orthopaedic technologies could provide the means to drive a necessary revolution in arthroplasty productivity. Robots have been used to operate on humans for 20 years, but the adoption of the technology has lagged behind that of the manufacturing industry. The use of robots in surgery should enable cost savings by reducing instrumentation and inventories, and improving accuracy. Despite these benefits, the orthopaedic community has been resistant to change. If the ergonomics and economics are right, robotic technology just might transform the provision of joint replacement.