Kai Makita
Hiroshima University
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Publication
Featured researches published by Kai Makita.
Scientific Reports | 2016
Hiroaki Kawamichi; Sho K. Sugawara; Yuki H. Hamano; Kai Makita; Takanori Kochiyama; Norihiro Sadato
Positive social interactions contribute to the sense that one’s life has meaning. Enjoyment of feelings associated through social interaction motivates humans to build social connections according to their personal preferences. Therefore, we hypothesized that social interaction itself activates the reward system in a manner that depends upon individual interaction preferences. To test this hypothesis, we conducted a functional magnetic resonance imaging (fMRI) study in which 38 participants played a virtual ball-toss game in which the number of ball tosses to the participant was either similar to (normal-frequency condition) or higher than (high-frequency condition) the number of tosses to the other players. Participants reported greater-than-anticipated enjoyment during the high-frequency condition, suggesting that receiving a social reward led to unexpected positive feelings. Consistent with this, the high-frequency condition produced stronger activation in the ventral striatum, which is part of the reward system, and the precuneus, representing positive self-image, which might be translated to social reward. Furthermore, ventral striatal activation covaried with individual participants’ preference for interactions with others. These findings suggest that an elevated frequency of social interaction is represented as a social reward, which might motivate individuals to promote social interaction in a manner that is modulated by personal preference.
Scientific Reports | 2017
Jiajia Yang; Ryo Kitada; Takanori Kochiyama; Yinghua Yu; Kai Makita; Yuta Araki; Jinglong Wu; Norihiro Sadato
Humans are able to judge the speed of an object’s motion by touch. Research has suggested that tactile judgment of speed is influenced by physical properties of the moving object, though the neural mechanisms underlying this process remain poorly understood. In the present study, functional magnetic resonance imaging was used to investigate brain networks that may be involved in tactile speed classification and how such networks may be affected by an object’s texture. Participants were asked to classify the speed of 2-D raised dot patterns passing under their right middle finger. Activity in the parietal operculum, insula, and inferior and superior frontal gyri was positively related to the motion speed of dot patterns. Activity in the postcentral gyrus and superior parietal lobule was sensitive to dot periodicity. Psycho-physiological interaction (PPI) analysis revealed that dot periodicity modulated functional connectivity between the parietal operculum (related to speed) and postcentral gyrus (related to dot periodicity). These results suggest that texture-sensitive activity in the primary somatosensory cortex and superior parietal lobule influences brain networks associated with tactually-extracted motion speed. Such effects may be related to the influence of surface texture on tactile speed judgment.
Social Neuroscience | 2016
Hiroaki Kawamichi; Kazufumi Yoshihara; Sho K. Sugawara; Masahiro Matsunaga; Kai Makita; Yuki H. Hamano; Hiroki C. Tanabe; Norihiro Sadato
Helping behavior is motivated by empathic concern for others in distress. Although empathic concern is pervasive in daily life, its neural mechanisms remain unclear. Empathic concern involves the suppression of the emotional response to others’ distress, which occurs when individuals distance themselves emotionally from the distressed individual. We hypothesized that helping behavior induced by empathic concern, accompanied by perspective-taking, would attenuate the neural activation representing aversive feelings. We also predicted reward system activation due to the positive feeling resulting from helping behavior. Participant underwent functional magnetic resonance imaging while playing a virtual ball-toss game. In some blocks (“concern condition”), one player (“isolated player”) did not receive ball-tosses from other players. In this condition, participants increased ball-tosses to the isolated player (helping behavior). Participants then evaluated the improved enjoyment of the isolated player resulting from their helping behavior. Anterior cingulate activation during the concern condition was attenuated by the evaluation of the effect of helping behavior. The right temporoparietal junction, which is involved in perspective-taking and the dorsal striatum, part of the reward system, were also activated during the concern condition. These results suggest that humans can attenuate affective arousal by anticipating the positive outcome of empathic concern through perspective-taking.
Frontiers in Psychology | 2016
Hiroaki Kawamichi; Sho K. Sugawara; Yuki H. Hamano; Kai Makita; Masahiro Matsunaga; Hiroki C. Tanabe; Yuichi Ogino; Shigeru Saito; Norihiro Sadato
Romantic relationship, a widespread feature of human society, is one of the most influential factors in daily life. Although stimuli related to romantic love or being in a romantic relationship commonly result in enhancement of activation or functional connectivity of the reward system, including the striatum, the structure underlying romantic relationship-related regions remain unclear. Because individual experiences can alter gray matter within the adult human brain, we hypothesized that romantic relationship is associated with structural differences in the striatum related to the positive subjective experience of being in a romantic relationship. Because intimate romantic relationships contribute to perceived subjective happiness, this subjective enhancement of happiness might be accompanied by the experience of positive events related to being in a romantic relationship. To test this hypothesis and elucidate the structure involved, we compared subjective happiness, an indirect measure of the existence of positive experiences caused by being in a romantic relationship, of participants with or without romantic partners (N = 68). Furthermore, we also conducted a voxel-based morphometry study of the effects of being in a romantic relationship (N = 113). Being in a romantic relationship was associated with greater subjective happiness and reduced gray matter density within the right dorsal striatum. These results suggest that being in a romantic relationship enhances perceived subjective happiness via positive experiences. Furthermore, the observed reduction in gray matter density in the right dorsal striatum may reflect an increase in saliency of social reward within a romantic relationship. Thus, being in a romantic relationship is associated with positive experiences and a reduction of gray matter density in the right dorsal striatum, representing a modulation of social reward.
Neuroscience | 2015
Koji Shimada; Masako Hirotani; Hirokazu Yokokawa; Haruyo Yoshida; Kai Makita; M. Yamazaki-Murase; Hiroki C. Tanabe; Norihiro Sadato
This functional magnetic resonance imaging (fMRI) study investigated the brain regions underlying language task performance in adult second language (L2) learners. Specifically, we identified brain regions where the level of activation was associated with L2 fluency levels. Thirty Japanese-speaking adults participated in the study. All participants were L2 learners of English and had achieved varying levels of fluency, as determined by a standardized L2 English proficiency test, the Versant English Test (Pearson Education Inc., 2011). When participants performed the oral sentence building task from the production tasks administered, the dorsal part of the left inferior frontal gyrus (dIFG) showed activation patterns that differed depending on the L2 fluency levels: The more fluent the participants were, the more dIFG activation decreased. This decreased activation of the dIFG might reflect the increased automaticity of a syntactic building process. In contrast, when participants performed an oral story comprehension task, the left posterior superior temporal gyrus (pSTG) showed increased activation with higher fluency levels. This suggests that the learners with higher L2 fluency were actively engaged in post-syntactic integration processing supported by the left pSTG. These data imply that L2 fluency predicts neural resource allocation during language comprehension tasks as well as in production tasks. This study sheds light on the neural underpinnings of L2 learning by identifying the brain regions recruited during different language tasks across different modalities (production vs. comprehension).
Social Neuroscience | 2018
Tagiru Nakamura; Tomoko Matsui; Akira Utsumi; Mika Yamazaki; Kai Makita; Tokiko Harada; Hiroki C. Tanabe; Norihiro Sadato
ABSTRACT A dominant theory of humor comprehension suggests that people understand humor by first perceiving some incongruity in an expression and then resolving it. This is called “the incongruity-resolution theory.” Experimental studies have investigated the neural basis of humor comprehension, and multiple neural substrates have been proposed; however, the specific substrate for incongruity resolution is still unknown. The reason may be that the resolution phase, despite its importance in humor comprehension, has not been successfully distinguished from the perception phase because both phases occur almost simultaneously. To reveal the substrate, we conducted a functional magnetic resonance study using 51 healthy participants. We used a humor-producing frame of “Given A, I’d say B, because C” so as to focus on the resolution phase independently by suspending humor processing just after the perception phase. This frame allowed us to separate the two phases. Based on our results, incongruity resolution evoked positive emotion and activated the left amygdala, which is known to be related to positive emotion. On the basis of these findings, we argue that the amygdala plays an important role in humor comprehension, considering its functional role in emotional evaluation, particularly the relevance detection for incoming stimuli.
Behavior Research Methods | 2018
Wanlu Yang; Kai Makita; Takashi Nakao; Noriaki Kanayama; Maro Machizawa; Takafumi Sasaoka; Ayako Sugata; Ryota Kobayashi; Ryosuke Hiramoto; Shigeto Yamawaki; Makoto Iwanaga; Makoto Miyatani
Using appropriate stimuli to evoke emotions is especially important for researching emotion. Psychologists have provided several standardized affective stimulus databases—such as the International Affective Picture System (IAPS) and the Nencki Affective Picture System (NAPS) as visual stimulus databases, as well as the International Affective Digitized Sounds (IADS) and the Montreal Affective Voices as auditory stimulus databases for emotional experiments. However, considering the limitations of the existing auditory stimulus database studies, research using auditory stimuli is relatively limited compared with the studies using visual stimuli. First, the number of sample sounds is limited, making it difficult to equate across emotional conditions and semantic categories. Second, some artificially created materials (music or human voice) may fail to accurately drive the intended emotional processes. Our principal aim was to expand existing auditory affective sample database to sufficiently cover natural sounds. We asked 207 participants to rate 935 sounds (including the sounds from the IADS-2) using the Self-Assessment Manikin (SAM) and three basic-emotion rating scales. The results showed that emotions in sounds can be distinguished on the affective rating scales, and the stability of the evaluations of sounds revealed that we have successfully provided a larger corpus of natural, emotionally evocative auditory stimuli, covering a wide range of semantic categories. Our expanded, standardized sound sample database may promote a wide range of research in auditory systems and the possible interactions with other sensory modalities, encouraging direct reliable comparisons of outcomes from different researchers in the field of psychology.
Neuroscience Research | 2017
Sho K. Sugawara; Takahiko Koike; Hiroaki Kawamichi; Kai Makita; Yuki H. Hamano; Haruka K. Takahashi; Eri Nakagawa; Norihiro Sadato
Daytime napping offers various benefits for healthy adults, including enhancement of motor skill learning. It remains controversial whether napping can provide the same enhancement as overnight sleep, and if so, whether the same neural underpinning is recruited. To investigate this issue, we conducted functional MRI during motor skill learning, before and after a short day-nap, in 13 participants, and compared them with a larger group (n=47) who were tested following regular overnight sleep. Training in a sequential finger-tapping task required participants to press a keyboard in the MRI scanner with their non-dominant left hand as quickly and accurately as possible. The nap group slept for 60min in the scanner after the training run, and the previously trained skill was subsequently re-tested. The whole-night sleep group went home after the training, and was tested the next day. Offline improvement of speed was observed in both groups, whereas accuracy was significantly improved only in the whole-night sleep group. Correspondingly, the offline increment in task-related activation was significant in the putamen of the whole-night group. This finding reveals a qualitative difference in the offline improvement effect between daytime napping and overnight sleep.
Mind, Brain, and Education | 2013
Kai Makita; Mika Yamazaki; Hiroki C. Tanabe; Takahiko Koike; Takanori Kochiyama; Hirokazu Yokokawa; Haruyo Yoshida; Norihiro Sadato
Japanese Journal of Physiological Psychology and Psychophysiology | 2016
Kai Makita; Noriaki Kanayama; Takuto Uyama; Maro Machizawa; Takafumi Sasaoka; Shigeto Yamawaki