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John Bickle 《Topics in Cognitive Science》2015,7(2):299-311
David Marr's three-level method for completely understanding a cognitive system and the importance he attaches to the computational level are so familiar as to scarcely need repeating. Fewer seem to recognize that Marr defends his famous method by criticizing the “reductionistic approach.” This sets up a more interesting relationship between Marr and reductionism than is usually acknowledged. I argue that Marr was correct in his criticism of the reductionists of his time—they were only describing (cellular activity), not explaining (cognitive functions). But a careful metascientific account of reductionistic neuroscience over the past two decades reveals that Marr's criticisms no longer have force. Contemporary neuroscience now explains cognition directly, although in a fashion—causal-mechanistically—quite different than Marr recommended. So while Marr was correct to reject the reductionism of his day and offer an alternative method for genuinely explaining cognition, contemporary cognitive scientists now owe us a new defense of Marr's famous method and the advantages of its explanations over the type now pursued successfully in current reductionist neuroscience. There are familiar reasons for thinking that this debt will not be paid easily. 相似文献
33.
《The Journal of arthroplasty》2022,37(2):252-258
BackgroundThe goal of this study is to investigate the migration and inducible displacement of a bicruciate-stabilized (BCS) total knee arthroplasty implanted using gap balancing (GB) or measured resection (MR) surgical techniques. We hypothesized equal migration and displacement between the techniques.MethodsThe study is a single-blinded, prospective, randomized controlled trial, with allocation of 71 patients to either GB or MR groups. Fifteen patients were withdrawn, resulting in 31 patients in the GB group and 25 in the MR group. Patients received the JOURNEY II? BCS implant. Migration and inducible displacement were evaluated using radiostereometric analysis and patient examinations were performed at a 2-week baseline, and at 6 weeks, 3 months, 6 months, 1 year, and 2 years postoperation.ResultsNo differences (P > .05) existed between GB and MR groups for any measurement of tibial or femoral migration. Both groups had tibial migrations below 0.5 mm from baseline to 6 months, and below 0.2 mm from both 6 months to 1 year and 1-2 years postoperation. No differences (P > .05) were found between GB and MR groups for inducible displacement.ConclusionNo differences were found in implant migration or inducible displacement between GB and MR groups. The BCS implant can be expected to have migration risks on par with industry standards and both surgical techniques are safe and effective options for implantation of this implant design. 相似文献
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《Clinical neurophysiology》2020,131(1):259-264
ObjectivesFasciculation potentials (FP) are an important consideration in the electrophysiological diagnosis of ALS. Muscle ultrasonography (MUS) has a higher sensitivity in detecting fasciculations than electromyography (EMG), while in some cases, it is unable to detect EMG-detected fasciculations. We aimed to investigate the differences of FP between the muscles with and without MUS-detected fasciculations (MUS-fas).MethodsThirty-one consecutive patients with sporadic ALS were prospectively recruited and in those, both needle EMG and MUS were performed. Analyses of the amplitude, duration, and number of phases of EMG-detected FPs were performed for seven muscles per patient, and results were compared between the muscles with and without MUS-fas in the total cohort.ResultsThe mean amplitude and phase number of FP were significantly lower in patients with EMG-detected FP alone (0.39 ± 0.25 mV and 3.21 ± 0.88, respectively) than in those with both FP and MUS-fas (1.22 ± 0.92 mV and 3.74 ± 1.39, respectively; p < 0.0001 and p = 0.017, Welch’s t-test).ConclusionSmall FP may be undetectable with MUS. MUS cannot replace EMG in the diagnostic approach for ALS.SignificanceClinicians should use a combination of EMG and MUS for the detection and quantitative analysis of fasciculation in ALS. 相似文献
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目的分析POLG基因变异致线粒体病的临床表型及基因变异。方法回顾分析于2019年5月就诊,并经采集外周血DNA进行医学外显子、外显子-内含子交界区靶向二代测序和一代验证,1个确诊为POLG基因变异致线粒体病家系的临床资料。结果先证者,男,10岁,与其同卵双胎哥哥均有相同的体征,深感觉受损、腱反射消失、肌肉可疑萎缩。先证者3个兄姐先后于1岁多夭折。提取患儿及其父母的外周血,先证者及同卵双胎哥哥POLG基因均存在G.2558A(p.R853Q)、c.2890T(p.R964C)复合杂合变异,分别来源于患儿父母亲。结论 POLG基因复合杂合变异线粒体病家系成员有不同的表型;POLG相关疾病,即使同种基因变异,其临床异质性也较大。 相似文献
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《Brain stimulation》2020,13(1):175-189
BackgroundTranscranial magnetic stimulation (TMS) enables non-invasive modulation of brain activity with both clinical and research applications, but fundamental questions remain about the neural types and elements TMS activates and how stimulation parameters affect the neural response.ObjectiveTo develop a multi-scale computational model to quantify the effect of TMS parameters on the direct response of individual neurons.MethodsWe integrated morphologically-realistic neuronal models with TMS-induced electric fields computed in a finite element model of a human head to quantify the cortical response to TMS with several combinations of pulse waveforms and current directions.ResultsTMS activated with lowest intensity intracortical axonal terminations in the superficial gyral crown and lip regions. Layer 5 pyramidal cells had the lowest thresholds, but layer 2/3 pyramidal cells and inhibitory basket cells were also activated at most intensities. Direct activation of layers 1 and 6 was unlikely. Neural activation was largely driven by the field magnitude, rather than the field component normal to the cortical surface. Varying the induced current direction caused a waveform-dependent shift in the activation site and provided a potential mechanism for experimentally observed differences in thresholds and latencies of muscle responses.ConclusionsThis biophysically-based simulation provides a novel method to elucidate mechanisms and inform parameter selection of TMS and other cortical stimulation modalities. It also serves as a foundation for more detailed network models of the response to TMS, which may include endogenous activity, synaptic connectivity, inputs from intrinsic and extrinsic axonal projections, and corticofugal axons in white matter. 相似文献
40.
摘要:目的 基于Hippo信号通路核心基因mRNA表达,探索具有补肾填精壮骨之效的金刚丸治疗去卵巢(ovariectomized,OVX)大鼠骨质疏松症的疗效机制。方法 通过OVX法建立绝经后骨质疏松症(postmenopausal osteoporosis,PMOP)大鼠模型,分正常组、假手术组、模型组、金刚丸高剂量组、金刚丸中剂量组、金刚丸低剂量组、仙灵骨葆对照组、骨化三醇对照组。灌胃12周后,通过X射线骨密度仪检测骨密度、镜下观察股骨头显微形态结构、ELISA法检测血清ALP、实时定量RT-PCR检测骨组织Mst2、Lats1、Taz mRNA表达。结果 ①与正常组比较,模型组股骨骨密度显著降低(P<0.01)、骨微结构显著破坏、血清ALP显著降低(P<0.01)、骨组织Mst2、Lats1 mRNA表达显著升高(P<0.01)、Taz mRNA表达显著降低(P<0.01);②与模型组比较,除金刚丸低剂量组外,各给药组的骨密度均显著升高(P<0.01),各给药组骨微结构破坏均得到改善、血清ALP均显著升高(P<0.01)、骨组织Mst2、Lats1 mRNA表达均显著降低(P<0.01)、Taz mRNA表达均显著升高(P<0.01),均以金刚丸高剂量组最为显著。结论 骨组织Hippo信号通路核心基因Mst2、Lats1 mRNA表达上调,Taz mRNA表达下调可能是PMOP的发病机制之一;金刚丸可能通过下调骨组织Hippo信号通路核心基因Mst2、Lats1 mRNA表达、上调Taz mRNA表达的机制,有效防治PMOP。 相似文献