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pore S-PRO
formation O
on O
the O
microsphere O
surface S-CONPRI
. O
Layered O
parts O
fabricated S-CONPRI
by O
L-PBF S-MANP
using O
these O
composite S-MATE
microspheres O
as S-MATE
a O
material S-MATE
source O
showed O
good O
biocompatibility S-PRO
and O
osteogenesis O
. O
A O
10 O
wt O
% O
of O
nano-HAP O
content O
in O
the O
layered O
part O
could O
effectively O
facilitate O
osteogenic O
differentiation O
of O
rat O
mesenchymal B-MATE
stem I-MATE
cells E-MATE
( O
rMSCs O
) O
. O
Thus O
, O
L-PBF S-MANP
is O
a O
promising O
technology S-CONPRI
that O
can O
be S-MATE
used O
for O
manufacturing S-MANP
bone-repair O
implants S-APPL
consisting O
of O
PLA/nano-HAP O
composites S-MATE
materials O
. O
In O
additive B-MANP
manufacturing E-MANP
( O
AM S-MANP
) O
processes S-CONPRI
, O
part O
and O
process S-CONPRI
attributes O
are O
often O
optimized O
with O
build S-PARA
orientation/tool-path O
direction O
. O