text
stringlengths
0
43
the O
same O
material S-MATE
model O
making O
up O
the O
fabricated S-CONPRI
scaffolds O
demonstrated O
excellent O
agreement O
with O
a O
small O
margin O
of O
error S-CONPRI
at O
6.94 O
% O
from O
the O
experimental S-CONPRI
mean O
modulus O
( O
0.69 O
± O
0.29 O
MPa S-CONPRI
) O
. O
The O
inter-relationships O
between O
different O
dimensional O
parameters S-CONPRI
making O
up O
the O
Schwarz O
P S-MATE
architecture S-APPL
and O
resulting O
effective O
modulus O
are O
also O
assessed O
and O
discussed O
. O
With O
the O
ability O
to O
accommodate O
the O
geometrical O
transformations O
, O
maintain O
efficiency O
in O
terms O
of O
time O
and O
computational O
resources O
, O
micromechanical O
analysis O
has O
the O
potential O
to O
be S-MATE
implemented O
in O
tissue O
scaffolds S-FEAT
with O
a O
periodic O
microstructure S-CONPRI
as S-MATE
well O
as S-MATE
other O
structures O
outside O
the O