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生物物理學(xué)Biophysics第5章神經(jīng)生物物理學(xué)——神經(jīng)細(xì)胞的電生理現(xiàn)象及理論內(nèi)容:神經(jīng)元靜息電位動(dòng)作電位離子通道隨機(jī)性誘發(fā)的自發(fā)動(dòng)作電位的溫度效應(yīng)突起人腦是宇宙中已知的最復(fù)雜的結(jié)構(gòu),大約有1011個(gè)神經(jīng)元,研究神經(jīng)元及神經(jīng)系統(tǒng),是人類探索人腦奧秘的基礎(chǔ)!樹(shù)突髓鞘突觸前終末胞體軸突細(xì)胞核神經(jīng)元的結(jié)構(gòu)神經(jīng)元膜結(jié)構(gòu)樹(shù)突軸突突觸細(xì)胞膜內(nèi)、外離子濃度的分布去極化復(fù)極化恢復(fù)期靜息期刺激加入閾值上的刺激第四節(jié):離子通道隨機(jī)性誘發(fā)的自發(fā)動(dòng)作電位的溫度效應(yīng)OutlineStructure
of
Neuron
and
Action
potentialStochastic
Kinetic
of
ion
ChannelEffects
of
Temperature
on
Spontaneous
ActionPotentials
due
to
Channel
FluctuationsI.
Structure
of
Neuron
and
Action
potential·
Structure
of
Neuron樹(shù)突軸突髓鞘突觸前終末·
Basic
Neural
ProcessesSignal樹(shù)突軸突突觸前終末·
Neuron
Internal
Structure·
Structure
of
Cell
Membrane·
Ion
ChannelsThe
voltage-gated
channels
for
Na+
,
K+
,
and
Ca2+ionsall
share
the
same
basic
structural
themes.The
channel
is
essentially
arectangular
tube
whose
fourwalls
are
formed
from
either
four
subunits
(e.g.,
K+
channel),or
four
domains
of
a
singlepolypeptide
(e.g.,
Na+
channel).Each
subunit
or
domain
contains
six
transmembranealpha
helices,
labeled
S1-S6.Two
of
the
four
subunits
of
a
voltage-gated
ion
channel·
Relative
ion
concentrations
Across
the
Membrane·
Action
Potential
of
Neuron·
Hodgkin-Huxley
Equation
(1952)CdVmg
n4
(V
V
)m3gh(VV
)
gL
(VmLextV
)
I
(mKKmNamNadtn(1
n)ndtmn,
(1
m)mdt0.01(Vm
55)h(1
h)hhdtdhm,,0.125exp(
(V65)
/
80)1
exp[(V
55)
/1n0]0.1(Vm
40),0.108exp(
V
/18)1
exp[(V
40)/10m
]11
exp[
(V0.07exp[
(V65)
/20],35)
/10]nmmmmmhmhmdndmII.
Stochastic
Kinetic
of
ion
ChannelStochastic
Kinetic
of
K+
Channel:Stochastic
Kinetic
of
Na+
Channel:A:
View
of
the
foursubunits,
all
in
theresting
positionB:
One
subunit
in
theactive
positionC:
Two
subunitsin
theactive
positionD:
Three
subunits
inthe
active
positionE:
The
four
subunitsinthe
active
positionwhich
makes
the
channel
conductingK+
ChannelBNa+
ChannelA:
Closed
stateB:
Inactivated
stateC:
Open
stateCAIII.
Effects
of
Temperature
on
Spontaneous
ActionPotentials
due
to
Channel
FluctuationsααiBioSystems
81,
(2005)267-280i
:
The
opening
rateof
ion
channeli
:
The
closing
rateof
ion
channeliBioSystems
81,
(2005)267-280·
Spontaneous
potential
at
different
temperature6007008009001005000-800-20-40-6080604020T=
0
.
3
o
C6007008009001005000-800-20-40-6080604020T=
16
.
3
o
C600900100-80500080604020-20-40-60V
(mv)
0T=
26
.
3
o
C700
800time(ms)mThe
patch
size
is
fixed
at
Area=1
μm2600700800900100-805000806040200-20-40-60T=
31
.
3
o
C·
Mean
open
rate
of
channels
and
mean
duration
of
spike51015
20temperature(o
C)25300.000.010.021.00.030.050.060.070.08(a)Mean
Open
Rate
o0.f04C
hannelsNa+K+51015
20temperature(o
C)25300.00.51.52.0(
b)2.5Mean
Duration
of
Spikes(ms)area0.5area1.0area5.0Consistent
with
the
experimental
results
of
Correa
et
al.(1992),
and
that
of
Hodgkin
et
al.
(1952),
respectively.·
Mean
interspike
interval5
10
15202540302010706050Area=
0
.
055102510161412222018Area=
0
.
5510152020406080100Area=
5
.
0Mean
InterSpike
Interval
(ms)temperature
(o
C)25
5
101520010020030040050015
20Area=
20
.
00204060801000.0000.0050.0100.0150.020T=0.3o
C0204060801000.0000.0050.0100.0150.020T=10.3o
C020801000.0000.0050.0150.020T=20.3o
CISIH0.01040
60time
(ms)The
patch
size
is
fixed
at
Area=0.05
μm20204060801000.0000.0050.0100.0150.020T=28.3o
C·
Interspike
interval
histogram
(ISIH)0.0120.012020801000.0000.002ISIH0.0060.0040.0080.010T=12.3oC40
60time
(ms)The
patch
size
is
fixed
at
Area=20
μm20204060801000.010T=0.3oC0.010T=6.3oC0.0080.0080.0060.0060.0040.0040.0020.0020.0000.00000.0122040608010000.012204060801000.0000.0020.0040.0060.0080.010T=17.3oC·
Coherence
resonance
phenomenonCoherence
factor
is
defined
as
:HPis
the
half-width
of
the
peak[
Phys.
Rev.
Lett.
71,
(1993)807
]H
is
the
height
of
the
ISIH
peak
atP0510152025300.01.00.52.01.53.02.53.5Area=0.10510152025300.01.00.52.01.53.0
Area=0.52.53.50510
15
20temperature(oC)25300.50.01.51.02.52.03.53.0Area=20.0Area=5.036912150.50.00181.51.02.52.03.53.05100152temperature
(oC)250.0-0.5-1.00.51.0lg(Area)00
.
50001
.
0001
.
5002
.
0002
.
5003
.
0003
.
5004
.
000Characteristic
correlation
time:C
2
(
s
)ds0where
the
autocorrelation
C(t)
function
isC%x2
(t
)x%(t
)
x%(t),
x%(t
)
x
(t
)C
(
)x[
Phys.
Rev.
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