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41.
Field GD Gauthier JL Sher A Greschner M Machado TA Jepson LH Shlens J Gunning DE Mathieson K Dabrowski W Paninski L Litke AM Chichilnisky EJ 《Nature》2010,467(7316):673-677
To understand a neural circuit requires knowledge of its connectivity. Here we report measurements of functional connectivity between the input and ouput layers of the macaque retina at single-cell resolution and the implications of these for colour vision. Multi-electrode technology was used to record simultaneously from complete populations of the retinal ganglion cell types (midget, parasol and small bistratified) that transmit high-resolution visual signals to the brain. Fine-grained visual stimulation was used to identify the location, type and strength of the functional input of each cone photoreceptor to each ganglion cell. The populations of ON and OFF midget and parasol cells each sampled the complete population of long- and middle-wavelength-sensitive cones. However, only OFF midget cells frequently received strong input from short-wavelength-sensitive cones. ON and OFF midget cells showed a small non-random tendency to selectively sample from either long- or middle-wavelength-sensitive cones to a degree not explained by clumping in the cone mosaic. These measurements reveal computations in a neural circuit at the elementary resolution of individual neurons. 相似文献
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本文计算辐射修正对氘的β-蜕变谱终端形状的影响。为使所得的修正项相对于未修正谱为有限,需对各级软实光子的贡献求和。为此,本文提出一个考虑能量守恒约束的求和技巧。尽管辐射效应对电子谱的影响甚小,但用其终端的精确测量来确定子中微质量时,这却是很重要的。 相似文献
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Human β-defensins 总被引:1,自引:0,他引:1
Pazgier M Hoover DM Yang D Lu W Lubkowski J 《Cellular and molecular life sciences : CMLS》2006,63(11):1294-1313
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High-frequency generalised transduction by bacteriophage T4 总被引:30,自引:0,他引:30
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XS Ma T Herbst T Scheidl D Wang S Kropatschek W Naylor B Wittmann A Mech J Kofler E Anisimova V Makarov T Jennewein R Ursin A Zeilinger 《Nature》2012,489(7415):269-273
The quantum internet is predicted to be the next-generation information processing platform, promising secure communication and an exponential speed-up in distributed computation. The distribution of single qubits over large distances via quantum teleportation is a key ingredient for realizing such a global platform. By using quantum teleportation, unknown quantum states can be transferred over arbitrary distances to a party whose location is unknown. Since the first experimental demonstrations of quantum teleportation of independent external qubits, an internal qubit and squeezed states, researchers have progressively extended the communication distance. Usually this occurs without active feed-forward of the classical Bell-state measurement result, which is an essential ingredient in future applications such as communication between quantum computers. The benchmark for a global quantum internet is quantum teleportation of independent qubits over a free-space link whose attenuation corresponds to the path between a satellite and a ground station. Here we report such an experiment, using active feed-forward in real time. The experiment uses two free-space optical links, quantum and classical, over 143?kilometres between the two Canary Islands of La Palma and Tenerife. To achieve this, we combine advanced techniques involving a frequency-uncorrelated polarization-entangled photon pair source, ultra-low-noise single-photon detectors and entanglement-assisted clock synchronization. The average teleported state fidelity is well beyond the classical limit of two-thirds. Furthermore, we confirm the quality of the quantum teleportation procedure without feed-forward by complete quantum process tomography. Our experiment verifies the maturity and applicability of such technologies in real-world scenarios, in particular for future satellite-based quantum teleportation. 相似文献
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