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Q48891809: Difference between revisions
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Revision as of 22:32, 17 November 2019
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Created claim:
language of work or name
(P407)
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English
(Q1860)
, #petscan
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Widar [1.4]
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Latest revision as of 22:31, 26 July 2024
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title
(P1476)
: Modulation of kir4.1 and kir5.1 by hypercapnia and intracellular acidosis
(5 intermediate revisions by 3 users not shown)
label / en
label / en
Modulation of kir4.1 and kir5.1 by hypercapnia and intracellular acidosis
.
Modulation of kir4.1 and kir5.1 by hypercapnia and intracellular acidosis
label / nl
label / nl
Modulation of kir4.1 and kir5.1 by hypercapnia and intracellular acidosis
.
Modulation of kir4.1 and kir5.1 by hypercapnia and intracellular acidosis
Property /
title
Property /
title
Modulation of kir4.1 and kir5.1 by hypercapnia and intracellular acidosis.
(English)
Modulation of kir4.1 and kir5.1 by hypercapnia and intracellular acidosis
(English)
Property /
cites work
Stimulation of total CO2 flux by 10% CO2 in rabbit CCD: role of an apical Sch-28080- and Ba-sensitive mechanism
Property /
cites work
:
Stimulation of total CO2 flux by 10% CO2 in rabbit CCD: role of an apical Sch-28080- and Ba-sensitive mechanism
/ rank
Normal rank
Property /
cites work
:
Stimulation of total CO2 flux by 10% CO2 in rabbit CCD: role of an apical Sch-28080- and Ba-sensitive mechanism
/ reference
stated in
:
PubMed
reference URL
:
https://pubmed.ncbi.nlm.nih.gov/10790154
retrieved
:
12 December 2020
Timestamp
+2020-12-12T00:00:00Z
Timezone
+00:00
Calendar
Gregorian
Precision
1 day
Before
0
After
0
based on heuristic
:
inferred from PubMed ID database lookup
Property /
cites work
Responses of respiratory modulated and tonic units in the retrotrapezoid nucleus to CO2
Property /
cites work
:
Responses of respiratory modulated and tonic units in the retrotrapezoid nucleus to CO2
/ rank
Normal rank
Property /
cites work
:
Responses of respiratory modulated and tonic units in the retrotrapezoid nucleus to CO2
/ reference
stated in
:
PubMed
reference URL
:
https://pubmed.ncbi.nlm.nih.gov/10790154
retrieved
:
12 December 2020
Timestamp
+2020-12-12T00:00:00Z
Timezone
+00:00
Calendar
Gregorian
Precision
1 day
Before
0
After
0
based on heuristic
:
inferred from PubMed ID database lookup
Property /
cites work
Regulation of ATP-sensitive K+ channel by membrane-bound protein phosphatases in rat principal tubule cell
Property /
cites work
:
Regulation of ATP-sensitive K+ channel by membrane-bound protein phosphatases in rat principal tubule cell
/ rank
Normal rank
Property /
cites work
:
Regulation of ATP-sensitive K+ channel by membrane-bound protein phosphatases in rat principal tubule cell
/ reference
stated in
:
PubMed
reference URL
:
https://pubmed.ncbi.nlm.nih.gov/10790154
retrieved
:
12 December 2020
Timestamp
+2020-12-12T00:00:00Z
Timezone
+00:00
Calendar
Gregorian
Precision
1 day
Before
0
After
0
based on heuristic
:
inferred from PubMed ID database lookup
Property /
cites work
Identification of a critical motif responsible for gating of Kir2.3 channel by intracellular protons
Property /
cites work
:
Identification of a critical motif responsible for gating of Kir2.3 channel by intracellular protons
/ rank
Normal rank
Property /
cites work
:
Identification of a critical motif responsible for gating of Kir2.3 channel by intracellular protons
/ reference
stated in
:
PubMed
reference URL
:
https://pubmed.ncbi.nlm.nih.gov/10790154
retrieved
:
12 December 2020
Timestamp
+2020-12-12T00:00:00Z
Timezone
+00:00
Calendar
Gregorian
Precision
1 day
Before
0
After
0
based on heuristic
:
inferred from PubMed ID database lookup
Property /
cites work
Depolarization and stimulation of neurons in nucleus tractus solitarii by carbon dioxide does not require chemical synaptic input
Property /
cites work
:
Depolarization and stimulation of neurons in nucleus tractus solitarii by carbon dioxide does not require chemical synaptic input
/ rank
Normal rank
Property /
cites work
:
Depolarization and stimulation of neurons in nucleus tractus solitarii by carbon dioxide does not require chemical synaptic input
/ reference
stated in
:
PubMed
reference URL
:
https://pubmed.ncbi.nlm.nih.gov/10790154
retrieved
:
12 December 2020
Timestamp
+2020-12-12T00:00:00Z
Timezone
+00:00
Calendar
Gregorian
Precision
1 day
Before
0
After
0
based on heuristic
:
inferred from PubMed ID database lookup
Property /
cites work
Oxygen deprivation activates an ATP-inhibitable K+ channel in substantia nigra neurons
Property /
cites work
:
Oxygen deprivation activates an ATP-inhibitable K+ channel in substantia nigra neurons
/ rank
Normal rank
Property /
cites work
:
Oxygen deprivation activates an ATP-inhibitable K+ channel in substantia nigra neurons
/ reference
stated in
:
PubMed
reference URL
:
https://pubmed.ncbi.nlm.nih.gov/10790154
retrieved
:
12 December 2020
Timestamp
+2020-12-12T00:00:00Z
Timezone
+00:00
Calendar
Gregorian
Precision
1 day
Before
0
After
0
based on heuristic
:
inferred from PubMed ID database lookup
Property /
main subject
hypercapnia
Property /
main subject
:
hypercapnia
/ rank
Normal rank
Property /
main subject
:
hypercapnia
/ reference
based on heuristic
:
inferred from title