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251. RFX-mod: A multi-configuration fusion facility for three-dimensional physics studies

252. Internal and external electron transport barriers in the RFX-mod reversed field pinch

253. Three-dimensional equilibria and transport in RFX-mod: A description using stellarator tools

254. Helical flow in the RFX-mod Reversed Field Pinch experiment

255. Magnetic coordinate systems for helical SHAx states in reverse field pinch plasmas

256. Vanishing magnetic shear and electron transport barriers in the RFX-mod reversed field pinch

257. Helical equilibria and magnetic structures in the reversed field pinch and analogies to the tokamak and stellarator

258. High current regimes in RFX-mod

259. Magnetic self organization, MHD active control and confinement in RFX-mod

260. Analysis and modelling of the magnetic and plasma profiles during PPCD experiments in RFX

263. Transport mechanisms and enhanced confinement studies in RFX

264. New insights into MHD dynamics of magnetically confined plasmas from experiments in RFX

265. Quasi-single helicity states in the reversed field pinch: Beyond the standard paradigm

266. Stationary quasi single helicity states in RFX

267. Recent Progress in RFP Research on the RFX Experiment

268. Recent progress in reversed field pinch research in the RFX experiment

269. Overview of the RFX-mod fusion science programme

270. Improvement of the magnetic configuration in the reversed field pinch through successive bifurcations

271. Equilibrium reconstruction in RFP SHAx states using Newcomb's equation

272. Overview of the RFX-mod contribution to the international Fusion Science Program

273. KCNQ1 channels voltage dependence through a voltage-dependent binding of the S4-S5 linker to the pore domain.

274. Gender-related differences in ion-channel and transporter subunit expression in non-diseased human hearts.

275. Variable Na(v)1.5 protein expression from the wild-type allele correlates with the penetrance of cardiac conduction disease in the Scn5a(+/-) mouse model.

276. Genetically determined differences in sodium current characteristics modulate conduction disease severity in mice with cardiac sodium channelopathy.

277. Transcriptional profiling of ion channel genes in Brugada syndrome and other right ventricular arrhythmogenic diseases.

278. Biological pacemaker engineered by nonviral gene transfer in a mouse model of complete atrioventricular block.

279. IKs response to protein kinase A-dependent KCNQ1 phosphorylation requires direct interaction with microtubules.

280. Sodium channel β1 subunit mutations associated with Brugada syndrome and cardiac conduction disease in humans.

281. Regional and tissue specific transcript signatures of ion channel genes in the non-diseased human heart.

282. The N-terminal juxtamembranous domain of KCNQ1 is critical for channel surface expression: implications in the Romano-Ward LQT1 syndrome.

283. [Sudden cardiac death: toward the identification of susceptibity genes].

284. 14-3-3 is a regulator of the cardiac voltage-gated sodium channel Nav1.5.

285. Bradycardia and slowing of the atrioventricular conduction in mice lacking CaV3.1/alpha1G T-type calcium channels.

286. Progressive cardiac conduction defect is the prevailing phenotype in carriers of a Brugada syndrome SCN5A mutation.

287. Transport barrier inside the reversal surface in the chaotic regime of the reversed-field pinch.

288. Gene expression profile associated with chronic atrial fibrillation and underlying valvular heart disease in man.

289. KCNQ1 K+ channel-mediated cardiac channelopathies.

290. Chronic heart rate reduction remodels ion channel transcripts in the mouse sinoatrial node but not in the ventricle.

291. Impaired impulse propagation in Scn5a-knockout mice: combined contribution of excitability, connexin expression, and tissue architecture in relation to aging.

292. Functional genomics of cardiac ion channel genes.

293. In vitro molecular interactions and distribution of KCNE family with KCNQ1 in the human heart.

294. Nonionic amphiphilic block copolymers promote gene transfer to the lung.

295. Impaired KCNQ1-KCNE1 and phosphatidylinositol-4,5-bisphosphate interaction underlies the long QT syndrome.

296. Dominant electrostatic nature of the reversed field pinch dynamo.

297. Experimental observation of nonlinear synchronization due to a single wave.

298. Distinct molecular portraits of human failing hearts identified by dedicated cDNA microarrays.

299. Expression of human ERG K+ channels in the mouse heart exerts anti-arrhythmic activity.

300. Specific pattern of ionic channel gene expression associated with pacemaker activity in the mouse heart.

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