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. Author manuscript; available in PMC: 2015 Dec 30.
Published in final edited form as: J Neurosci Methods. 2014 Sep 22;238:82–87. doi: 10.1016/j.jneumeth.2014.09.012

Table 1.

Intrinsic membrane properties of PPN neurons and layer V cortical pyramidal neurons in the presence of each plastic.

PPN Neurons
Resting Membrane Potential (mV) Input Resistance (MOhm) Membrane Capacticance (pF) AP Amplitude (mV) AP Frequency (Hz)
Control n=13 −51±1 364±33 25±2 (n=14) 54±2 23±3
ABS n = 7 −51±2 330±41 25±3 55±4 30±3
PLA n = 9 −56±3 350±39 36±4 (n=8) 63±5 31±7
Nylon 618 n = 8 −58±3 391±31 32±3 55±4 16±3
Nylon 680 n = 10 −66±2*** 420±24 28±2 (n=9) 56±4 26±6
T-glase n = 8 −64±2** 409±25 34±4 65±5 24±6
Shapeways n = 11 −55±1 380±16 28±2 62±3 22±4
F(6,59) =6.26, p = 3.9×10^−5 F(6,59) = .096, p = 0.46 F(6, 59) = 2.16, p = 0.06 F(6,58) = 1.53, p = 0.18 F(6, 58) = 0.99, p = 0.44
LV Cortical Pyramidal Neurons
Resting Membrane Potential (mV) Input Resistance (MOhm) Membrane Capacticance (pF) AP Amplitude (mV) AP Frequency (Hz)
Control n=10 −66±1 335±10 92±11 71±4 11±2
ABS n = 10 −69±1 392±10* 69±12 (n=8) 56±3* 25±5**
PLA n = 8 −69±4 316±14 101±9 72±3 16±2
Nylon 618 n = 8 −66±1 358±7 100±6 73±4 17±3
Nylon 680 n = 10 −67±1 328±17 92±4 78±3 15±2
T-glase n = 10 −69±1 356±13 84±6 67±3 16±6
Shapeways n = 11 −63±3 353±17 95±4 (n=10) 69±3 15±4
F(6,60) = 1.34, p = 0.25 F(6,60) = 3.36, p = 0.006 F(6,60) = 1.97, p = 0.08 F(6,57) = 4.01, p = 0.002 F(6,57) = 2.49, p = 0.03

Note, only significance between plastic and control is marked.

*

P<0.05;

**

P<0.01;

***

P<0.001.